PIC32MZ1064DAK169 |
PIC32MZ1064DAK169 |
PIC32MZ2064DAK169 |
PIC32MZ2064DAK169 |
PIC32MZ2025DAK176 |
PIC32MZ2025DAK176 |
PIC32MZ1064DAL169 |
PIC32MZ1064DAL169 |
PIC32MZ2025DAK169 |
PIC32MZ2025DAK169 |
PIC32MZ2025DAL169 |
PIC32MZ2025DAL169 |
PIC32MZ1025DAK176 |
PIC32MZ1025DAK176 |
PIC32MZ1025DAL176 |
PIC32MZ1025DAL176 |
PIC32MZ1064DAK176 |
PIC32MZ1064DAK176 |
PIC32MZ1064DAL176 |
PIC32MZ1064DAL176 |
PIC32MZ1025DAR169 |
PIC32MZ1025DAR169 |
PIC32MZ1025DAS169 |
PIC32MZ1025DAS169 |
PIC32MZ1064DAR169 |
PIC32MZ1064DAR169 |
PIC32MZ1064DAS169 |
PIC32MZ1064DAS169 |
PIC32MZ2025DAR169 |
PIC32MZ2025DAR169 |
ATSAML11D16A |
ATSAML11D16A |
ATSAML11D15A |
ATSAML11D15A |
ATSAML11D14A |
ATSAML11D14A |
ATSAML10D16A |
ATSAML10D16A |
ATSAML10D14A |
ATSAML10D14A |
ATSAML10D15A |
ATSAML10D15A |
ATSAML10E15A |
ATSAML10E15A |
ATSAML11E15A |
ATSAML11E15A |
ATSAML10E16A |
ATSAML10E16A |
ATSAML10E14A |
ATSAML10E14A |
ATSAML11E14A |
ATSAML11E14A |
ATSAML11E16A |
ATSAML11E16A |
ATSAMG55J19A |
ATSAMG55J19A |
ATSAMG55G19A |
ATSAMG55G19A |
ATSAMG55J19B |
ATSAMG55J19B |
ATSAMG55G19B |
ATSAMG55G19B |
ATSAMG55G19B-UUT |
ATSAMG55G19B-UUT |
ATSAMG55 |
ATSAMG55 |
HV2803 |
HV2803 |
HV2903 |
HV2903 |
HV2904 |
HV2904 |
HV2070 |
HV2070 |
ATSAME51J20A |
ATSAME51J20A |
ATSAMD51G18A |
ATSAMD51G18A |
ATSAMD51G19A |
ATSAMD51G19A |
ATSAMD51P19A |
ATSAMD51P19A |
ATSAMD51N20A |
ATSAMD51N20A |
ATSAMD51J20A |
ATSAMD51J20A |
ATSAMD51J19A |
ATSAMD51J19A |
ATSAMD51J18A |
ATSAMD51J18A |
ATSAME51J18A |
ATSAME51J18A |
ATSAME54P20A |
ATSAME54P20A |
ATSAME54P19A |
ATSAME54P19A |
ATSAME54N20A |
ATSAME54N20A |
ATSAME54N19A |
ATSAME54N19A |
ATSAME53N20A |
ATSAME53N20A |
ATSAME53N19A |
ATSAME53N19A |
ATSAME53J20A |
ATSAME53J20A |
ATSAME53J19A |
ATSAME53J19A |
ATSAME53J18A |
ATSAME53J18A |
ATSAME51N20A |
ATSAME51N20A |
ATSAME51N19A |
ATSAME51N19A |
ATSAME51J19A |
ATSAME51J19A |
ATSAMD51P20A |
ATSAMD51P20A |
ATSAMD51N19A |
ATSAMD51N19A |
PIC32MM0064GPM064 |
PIC32MM0064GPM064 |
PIC32MM0128GPM064 |
PIC32MM0128GPM064 |
PIC32MM0256GPM064 |
PIC32MM0256GPM064 |
PIC32MM0064GPM036 |
PIC32MM0064GPM036 |
PIC32MM0064GPM048 |
PIC32MM0064GPM048 |
PIC32MM0064GPM028 |
PIC32MM0064GPM028 |
PIC32MM0256GPM028 |
PIC32MM0256GPM028 |
PIC32MM0256GPM036 |
PIC32MM0256GPM036 |
PIC32MM0256GPM048 |
PIC32MM0256GPM048 |
PIC32MM0128GPM028 |
PIC32MM0128GPM028 |
PIC32MM0128GPM036 |
PIC32MM0128GPM036 |
PIC32MM0128GPM048 |
PIC32MM0128GPM048 |
PIC32MZ1025DAA169 |
PIC32MZ1025DAA169 |
PIC32MZ1025DAB169 |
PIC32MZ1025DAB169 |
PIC32MZ2025DAB169 |
PIC32MZ2025DAB169 |
PIC32MZ2064DAA169 |
PIC32MZ2064DAA169 |
PIC32MZ2064DAB169 |
PIC32MZ2064DAB169 |
PIC32MZ1064DAA169 |
PIC32MZ1064DAA169 |
PIC32MZ1064DAB169 |
PIC32MZ1064DAB169 |
PIC32MZ2025DAA169 |
PIC32MZ2025DAA169 |
PIC32MZ2025DAA288 |
PIC32MZ2025DAA288 |
PIC32MZ2025DAB288 |
PIC32MZ2025DAB288 |
PIC32MZ2064DAA288 |
PIC32MZ2064DAA288 |
PIC32MZ2064DAB288 |
PIC32MZ2064DAB288 |
PIC32MZ1025DAA288 |
PIC32MZ1025DAA288 |
PIC32MZ1025DAB288 |
PIC32MZ1025DAB288 |
PIC32MZ1064DAA288 |
PIC32MZ1064DAA288 |
ATSAMDA1E14B |
ATSAMDA1E14B |
ATSAMDA1E15B |
ATSAMDA1E15B |
ATSAMDA1E16B |
ATSAMDA1E16B |
ATSAMDA1G14B |
ATSAMDA1G14B |
ATSAMDA1G15B |
ATSAMDA1G15B |
ATSAMDA1G16B |
ATSAMDA1G16B |
ATSAMDA1J14B |
ATSAMDA1J14B |
ATSAMDA1J15B |
ATSAMDA1J15B |
PIC32MX174F256D |
PIC32MX174F256D |
ATSAMDA1J16B |
ATSAMDA1J16B |
PIC32MX154F128B |
PIC32MX154F128B |
PIC32MK0512GPD064 |
PIC32MK0512GPD064 |
PIC32MK1024GPE100 |
PIC32MK1024GPE100 |
PIC32MK1024GPE064 |
PIC32MK1024GPE064 |
PIC32MK0512GPE064 |
PIC32MK0512GPE064 |
PIC32MK1024GPD064 |
PIC32MK1024GPD064 |
PIC32MK1024MCF100 |
PIC32MK1024MCF100 |
PIC32MK0512MCF064 |
PIC32MK0512MCF064 |
PIC32MK1024MCF064 |
PIC32MK1024MCF064 |
PIC32MK0512MCF100 |
PIC32MK0512MCF100 |
PIC32MX274F256D |
PIC32MX274F256D |
PIC32MX274F256B |
PIC32MX274F256B |
PIC32MX254F128D |
PIC32MX254F128D |
PIC32MX254F128B |
PIC32MX254F128B |
PIC32MX174FF256D |
PIC32MX174FF256D |
PIC32MX174F256B |
PIC32MX174F256B |
PIC32MX155F128D |
PIC32MX155F128D |
PIC32MX154F128D |
PIC32MX154F128D |
PIC32MX174F256 |
PIC32MX174F256 |
PIC32MX155F128 |
PIC32MX155F128 |
PIC32MX154F128 |
PIC32MX154F128 |
ATSAMC20N18A |
ATSAMC20N18A |
ATSAMC20N17A |
ATSAMC20N17A |
ATSAMC21N18A |
ATSAMC21N18A |
ATSAMC21N17A |
ATSAMC21N17A |
PIC32MK0512GPE100 |
PIC32MK0512GPE100 |
CEC1702 |
CEC1702 |
AT91M40800 |
AT91M40800 |
AT91M42800A |
AT91M42800A |
AT91M55800A |
AT91M55800A |
AT91R40008 |
AT91R40008 |
AT91RM9200 |
AT91RM9200 |
AT91SAM7L128 |
AT91SAM7L128 |
AT91SAM7L64 |
AT91SAM7L64 |
AT91SAM7S128 |
AT91SAM7S128 |
AT91SAM7S16 |
AT91SAM7S16 |
AT91SAM7S161 |
AT91SAM7S161 |
AT91SAM7S256 |
AT91SAM7S256 |
AT91SAM7S32 |
AT91SAM7S32 |
AT91SAM7S321 |
AT91SAM7S321 |
AT91SAM7S512 |
AT91SAM7S512 |
AT91SAM7S64 |
AT91SAM7S64 |
AT91SAM9CN11 |
AT91SAM9CN11 |
AT91SAM9CN12 |
AT91SAM9CN12 |
AT91SAM9G10 |
AT91SAM9G10 |
AT91SAM9G15 |
AT91SAM9G15 |
AT91SAM9G20 |
AT91SAM9G20 |
AT91SAM9G25 |
AT91SAM9G25 |
AT91SAM9G35 |
AT91SAM9G35 |
AT91SAM9G45 |
AT91SAM9G45 |
AT91SAM9G46 |
AT91SAM9G46 |
AT91SAM9M10 |
AT91SAM9M10 |
AT91SAM9M11 |
AT91SAM9M11 |
ATSAMD21E15 |
ATSAMD21E15 |
ATSAMD21E15L |
ATSAMD21E15L |
ATSAMD21E16 |
ATSAMD21E16 |
ATSAMV71Q19 |
ATSAMV71Q19 |
ATSAM3A4C |
ATSAM3A4C |
ATSAM3A8C |
ATSAM3A8C |
AT32UC3A0128 |
AT32UC3A0128 |
AT32UC3A0128AU |
AT32UC3A0128AU |
AT32UC3A0256 |
AT32UC3A0256 |
AT32UC3A0256AU |
AT32UC3A0256AU |
AT32UC3A0512 |
AT32UC3A0512 |
AT32UC3A0512AU |
AT32UC3A0512AU |
AT32UC3A1128 |
AT32UC3A1128 |
AT32UC3A1256 |
AT32UC3A1256 |
AT32UC3A1256AU |
AT32UC3A1256AU |
AT32UC3A1512 |
AT32UC3A1512 |
AT32UC3A1512AU |
AT32UC3A1512AU |
AT32UC3A3128 |
AT32UC3A3128 |
AT32UC3A3128S |
AT32UC3A3128S |
AT91SAM7SE256 |
AT91SAM7SE256 |
ATSAMV71J19 |
ATSAMV71J19 |
ATSAMV71J20 |
ATSAMV71J20 |
ATSAMV71J21 |
ATSAMV71J21 |
ATSAMV71N19 |
ATSAMV71N19 |
ATSAMV71N20 |
ATSAMV71N20 |
ATSAMV71N21 |
ATSAMV71N21 |
ATSAML21E15B |
ATSAML21E15B |
ATSAML21E16B |
ATSAML21E16B |
ATSAML21E17B |
ATSAML21E17B |
ATSAML21E18B |
ATSAML21E18B |
AT91SAM7SE32 |
AT91SAM7SE32 |
AT91SAM7SE512 |
AT91SAM7SE512 |
AT30TSE002B |
AT30TSE002B |
AT30TSE004A |
AT30TSE004A |
AT30TSE752A |
AT30TSE752A |
AT30TSE754A |
AT30TSE754A |
AT30TSE758A |
AT30TSE758A |
AT30TS00 |
AT30TS00 |
AT30TS74 |
AT30TS74 |
AT30TS750A |
AT30TS750A |
AT30TS75A |
AT30TS75A |
AT30TSE002A |
AT30TSE002A |
PIC32MZ1024ECK100 |
PIC32MZ1024ECK100 |
PIC32MM0016GPL020 |
PIC32MM0016GPL020 |
PIC32MM0032GPL020 |
PIC32MM0032GPL020 |
PIC32MM0064GPL020 |
PIC32MM0064GPL020 |
PIC32MM0016GPL028 |
PIC32MM0016GPL028 |
PIC32MM0032GPL028 |
PIC32MM0032GPL028 |
PIC32MM0064GPL028 |
PIC32MM0064GPL028 |
PIC32MM0016GPL036 |
PIC32MM0016GPL036 |
PIC32MM0032GPL036 |
PIC32MM0032GPL036 |
PIC32MM0064GPL036 |
PIC32MM0064GPL036 |
HV2802 |
HV2802 |
HV2902 |
HV2902 |
PIC32MZ1024EFG064 |
PIC32MZ1024EFG064 |
PIC32MZ2048EFG064 |
PIC32MZ2048EFG064 |
PIC32MZ0512EFF064 |
PIC32MZ0512EFF064 |
PIC32MZ1024EFF064 |
PIC32MZ1024EFF064 |
PIC32MZ1024EFH064 |
PIC32MZ1024EFH064 |
PIC32MZ2048EFH064 |
PIC32MZ2048EFH064 |
PIC32MZ0512EFK064 |
PIC32MZ0512EFK064 |
PIC32MZ1024EFK064 |
PIC32MZ1024EFK064 |
PIC32MZ1024EFM064 |
PIC32MZ1024EFM064 |
PIC32MZ2048EFM064 |
PIC32MZ2048EFM064 |
PIC32MZ0512EFE064 |
PIC32MZ0512EFE064 |
PIC32MZ1024EFE064 |
PIC32MZ1024EFE064 |
PIC32MZ1024EFG100 |
PIC32MZ1024EFG100 |
PIC32MZ2048EFG100 |
PIC32MZ2048EFG100 |
PIC32MZ0512EFK100 |
PIC32MZ0512EFK100 |
MCP2021A |
MCP2021A |
AD9234, 12-Bit, 1 GSPS JESD204B, Dual Analog-to-Digital Converter |
The AD9234 is a dual, 12-bit, 1 GSPS ADC. The device has an
on-chip buffer and sample-and-hold circuit designed for low
power, small size, and ease of use. This product is designed for
sampling wide bandwidth analog signals. The AD9234 is
optimized for wide input bandwidth, high sampling rate,
excellent linearity, and low power in a small package.
The dual ADC cores feature a multistage, di |
ADP1606, 2 MHz, Synchronous Boost DC-to-DC Converters |
The ADP1606/ADP1607 are high efficiency, synchronous, fixed frequency, step-up dc-to-dc switching converters with a 1.8 V fixed output voltage option and a 1.8 V to 3.3 V adjustable output voltage option for use in portable applications.
The 2 MHz operating frequency enables the use of small footprint, low profile external components. Additionally, the synchronous rectification, internal co |
ADV7283, 10-Bit, 4ç. Oversampled SDTV Video Decoder with Differential Inputs and Deinterlacer |
The ADV7283 is a versatile one-chip, multiformat video decoder that automatically detects standard analog baseband video signals compatible with worldwide NTSC, PAL, and SECAM standards in the form of composite, S-Video, and component video.
The ADV7283 converts the analog video signals into a YCrCb 4:2:2 video data stream that is compatible with the 8-bit ITU-R BT.656 interface standard. |
ADXRS645, High Temperature, Vibration Rejecting ÷.2000÷./sec Gyroscope |
The ADXRS645 is a high performance angular rate sensor with excellent vibration immunity for use in high temperature environments. The ADXRS645 is manufactured using the Analog Devices, Inc., patented high volume BiMOS surface-micromachining process with years of proven field reliability. An advanced, differential, quad sensor design provides superior acceleration and vibration rejection.
T |
AD7175-2, 24-Bit, 250 kSPS Sigma Delta ADC with 20ï.s Settling & True Rail to Rail Buffers |
The AD7175-2 is a low noise, fast settling, multiplexed, 2-/4- channel (fully/pseudo differential) ï.-ï. analog-to-digital converter (ADC) for low bandwidth inputs. It has a maximum channel scan rate of 50 kSPS (20 ï.s) for fully settled data. The output data rates range from 5 SPS to 250 kSPS.
The AD7175-2 integrates key analog and digital signal condition-ing blocks to allow users to configu |
ADA4084-1, 30 V, Low Noise, Rail-to-Rail Input/Output, Low Power Operational Amplifiers |
The ADA4084-1 (single), ADA4084-2 (dual), and ADA4084-4 (quad) are single-supply, 10 MHz bandwidth amplifiers featuring rail-to-rail inputs and outputs. They are guaranteed to operate from +3 V to +30 V (or ÷.1.5 V to ÷.15 V).
These amplifiers are well suited for single-supply applications requiring bo |
ADRF6573, 100 MHz to 4000 MHz, Digitally Controlled RF Dual VGA |
The ADRF6573 is a high performance, digitally controlled, dual variable gain amplifier (VGA) operating from 100 MHz to 4000 MHz. Each channel includes a 6-bit digital step attenuator (DSA) with a 31.5 dB gain control range, 0.5 dB steps, and ÷.0.25 dB gain accuracy. The attenuation of the DSA is controlled using a serial peripheral interface (SPI). The SPI is a serial in, parallel out shift registe |
ADA4805-1, 0.2 ÷.V/÷.C Offset Drift, 105 MHz Low Power, Low Noise, Rail-to-Rail Amplifier |
The ADA4805-1 is a high speed voltage feedback rail-to-rail output amplifier with an exceptionally low quiescent current of 495 ï.A, making it ideal for low power, high resolution data conversion systems. Despite being low power, this amplifier provides excellent overall performance. It offers a high bandwidth of 105 MHz at a gain of 1, high slew rate of 160 V/ï.s, and a low input offset voltage of |
1.2 V Dual Channel CMOS Buffer / Translator |
NB3U23C : 1.2 V Dual Channel CMOS Buffer / Translator - Low standby power < 10 uA
- Low phase noise outputs
- Available in SC-70-6 and UDFN-6 packages
|
Low Dropout Linear Voltage Regulator, 50 mA Ultra-Low Iq, Wide Input Voltage |
NCP715 : Low Dropout Linear Voltage Regulator, 50 mA Ultra-Low Iq, Wide Input Voltage - Ultra low quiescent current of max 4.7 uA
- Operating input voltage range: 2.5 V to 24 V
- +/- 2% accuracy over full load/line/temp.
|
AD9554-1, Quad PLL, Quad Input, 4-output Multiservice Line Card Adaptive Clock Translator |
The AD9554-1 is a low loop bandwidth clock multiplier that provides jitter cleanup and synchronization for many systems, including synchronous optical networks (SONET/SDH). The AD9554-1 generates an output clock synchronized to up to four external input references. The digital PLL allows for reduction of input time jitter or phase noise associated with the external references. The digitally contro |
AD780S, Aerospace 2.5 V Ultrahigh Precision Bandgap Voltage Reference |
The AD780S is an ultrahigh precision bandgap reference voltage which provides a 2.5 V output from inputs between 4.0 V and 36 V. Low initial error and temperature drift combined with low output noise and the ability to drive any value of capacitance make the AD780S the ideal choice for enhancing the performance of high resolution ADCs and DACs and for any general purpose precision reference applic |
ADE7858A, PolyPhase Multifunction Energy Metering IC with per Phase Active and Reactive Powers |
The ADE7854A/ADE7858A/ADE7868A/ADE7878A are high
accuracy, 3-phase electrical energy measurement ICs with serial
interfaces and three flexible pulse outputs. The devices incorporate
second-order ï.-ï. analog-to-digital converters (ADCs), a digital
integrator, referen |
ADE7868A, PolyPhase Multifunction Energy Metering IC with Tamper Detection and Low Power Mode |
The ADE7854A/ADE7858A/ADE7868A/ADE7878A are high
accuracy, 3-phase electrical energy measurement ICs with serial
interfaces and three flexible pulse outputs. The devices incorporate
second-order ï.-ï. analog-to-digital converters (ADCs), a digital
integrator, referen |
ADE7854A, Polyphase Multifunction Energy Metering IC |
The ADE7854A/ADE7858A/ADE7868A/ADE7878A are high
accuracy, 3-phase electrical energy measurement ICs with serial
interfaces and three flexible pulse outputs. The devices incorporate
second-order ï.-ï. analog-to-digital converters (ADCs), a digital
integrator, referen |
ADE7878A, Polyphase Multifunction Energy Metering IC with per Phase Active and Reactive Powers |
The ADE7854A/ADE7858A/ADE7868A/ADE7878A are high accuracy, 3-phase electrical energy measurement ICs with serial
interfaces and three flexible pulse outputs. The devices incorporate
second-order ï.-ï. analog-to-digital converters (ADCs), a digital
integrator, referen |
ADL6010, Fast Responding, 45 dB Range, 0.5 GHz to 43.5 GHz Envelope Detector |
The ADL6010 is a versatile, broadband envelope detector covering the microwave spectrum. It provides state-of-the-art accuracy with very low power consumption (8 mW) in a simple, easy to use 6-lead format. The output is a baseband voltage proportional to the instantaneous amplitude of the radio frequency (RF) input signal. It exhibits minimal slope variation of the RF input to envelope output tr |
ADUM3150, 3.75kV, 6-Channel, SPIsolator Digital Isolator for SPI with Delay Clock |
The ADuM3150 is a 6-channel SPIsolator×.¾ digital isolator optimized for isolated serial peripheral interfaces (SPIs). Based
on the Analog Devices, Inc., iCoupler÷œ chip scale transformer
technology, the low propagation delay in the CLK, MO/SI,
MI/SO, and SS SPI bus signals supports SPI clock rates of up to 17 MHz. These channels operate with 1 |
AD9144, Quad, 16-Bit, 2.8 GSPS, TxDAC+® Digital-to-Analog Converter |
The AD9144 is a quad, 16-bit, high dynamic range digital-to-analog converter (DAC) that provides a maximum sample rate of 2.8 GSPS, permitting a multicarrier generation up to the Nyquist frequency. The DAC outputs are optimized to interface seamlessly with the ADRF672x analog quadrature modulators (AQMs) from Analog Devices, Inc. An optional 3-wire or 4-wire serial port interface (SPI) provides fo |
System Basis Chip with Integrated LIN and Voltage Regulator |
NCV7428 : System Basis Chip with Integrated LIN and Voltage Regulator - Integrated LIN transceiver and voltage regulator
- Excellent ESD/EMC performance
- Protection and monitoring functions
|
ADV7481, Integrated Video Decoder and Dual-Mode HDMI/MHL Receiver |
The ADV7481 is an integrated video decoder and combined
HDMI÷œ/MHL÷œ receiver. It is targeted at connectivity enabled
head units requiring a wired, uncompressed digital audio/video
link from smartphones and other consumer electronics devices
to support streaming and integration of cloud-based
multimedia content and applications into an automotive
infotainment system.
The ADV7481 MHL 2.1 capab |
ADV7482, Integrated Video Decoder and HDMI Receiver |
The ADV7482 is an integrated video decoder and HDMI÷œ
receiver, targeted at connectivity enabled head units requiring a
wired, uncompressed digital audio/video link from smartphones,
and other consumer electronics devices to support streaming
and integration of cloud-based multimedia content and
applications into an automotive infotainment system.
The ADV7482 HDMI capable receiver supports a |
ADV7480, Dual Mode HDMI/MHL Receiver |
The ADV7480 is a combined HDMI÷œ/MHL÷œ receiver targeted at
connectivity enabled head units requiring a wired, uncompressed
digital audio/video link from smartphones and other consumer
electronics devices to support streaming and integration of
cloud-based multimedia content and applications into an
automotive infotainment system.
The ADV7480 MHL 2.1 capable receiver supports a maximum
pixel |
ADM1278, Hot Swap Controller and Digital Power and Energy Monitor with PMBus Interface |
The ADM1278 is a hot swap controller that allows a circuit board to be removed from or inserted into a live backplane. It also features current, voltage, and power readback via an integrated 12-bit analog-to-digital converter (ADC), accessed using a PMBus×.¾ interface. The load current is measured using an internal current sense amplifier that measures the voltage across a sense resistor in the powe |
ADAS1131, 256-Channel, 24-Bit Current-to-Digital ADC Module |
The ADAS1131 is a 256-channel, current-to-digital analog-to-
digital converter (ADC) module. It contains 256 low power, low
noise, low input current integrators, simultaneous sample-and-
holds, and two high speed, high resolution ADCs with configurable sampling rate and resolutions of up to 24 bits. The signal chain and sampling architecture of the ADAS1131 is designed to guarantee that all channe |
ADP166, Very Low Quiescent Current, 150 mA, LDO Regulator |
The ADP165/ADP166 are very low quiescent current, low dropout, linear regulator that operate from 2.2 V to 5.5 V and provides up to 150 mA of output current. The low 120 mV dropout voltage at 150 mA load improves efficiency and allows operation over a wide input voltage range.
The ADP165/ADP166 are specifically designed for stable operation with a tiny 1 ÷.F ÷. 30% ceramic input and output ca |
ADP165, Very Low Quiescent Current, 150 mA, with Output Discharge LDO Regulator |
The ADP165/ADP166 are very low quiescent current, low dropout, linear regulator that operate from 2.2 V to 5.5 V and provides up to 150 mA of output current. The low 120 mV dropout voltage at 150 mA load improves efficiency and allows operation over a wide input voltage range.
The ADP165/ADP166 are specifically designed for stable operation with a tiny 1 ÷.F ÷. 30% ceramic input and output ca |
Power MOSFET, 60 V, Single N×..Channel |
NTMFS5C604NL NTMFS5C612NL NTMFS5C646NL : Power MOSFET, 60 V, Single N×..Channel - Low RDS(on)
- Low input capacitance
- Optimized gate charge
|
HV20220 |
HV20220 |
HV20320 |
HV20320 |
HV20822 |
HV20822 |
HV209 |
HV209 |
HV214 |
HV214 |
HV219 |
HV219 |
HV2201 |
HV2201 |
HV2221 |
HV2221 |
HV2301 |
HV2301 |
HV230 |
HV230 |
HV2321 |
HV2321 |
HV232 |
HV232 |
HV238 |
HV238 |
HV2601 |
HV2601 |
HV2605 |
HV2605 |
HV2706 |
HV2706 |
HV2808 |
HV2808 |
HV2809 |
HV2809 |
HV2901 |
HV2901 |
ADUM3151, 3.75 kV, Seven-Channel Isolators for SPI Interfaces (5/2 channel directionality) |
The ADuM3151/ADuM3152/ADuM3153 are 7-channel SPIsolator×.¾ digital isolators optimized for isolated serial peripheral interfaces (SPIs). Based on the Analog Devices, Inc., iCoupler÷œ chip scale transformer technology, the low propagation delay in the CLK, MO/SI, MI/SO, an |
ADUM3152, 3.75 kV, Seven-Channel Isolators for SPI Interfaces (4/3 channel directionality) |
The ADuM3151/ADuM3152/ADuM3153 are 7-channel SPIsolator×.¾ digital isolators optimized for isolated serial peripheral interfaces (SPIs). Based on the Analog Devices, Inc., iCoupler÷œ chip scale transformer technology, the low propagation delay in the CLK, MO/SI, MI/SO, and |
High PF Offline Single Stage LED Driver with High Voltage Startup |
NCL30060 : High PF Offline Single Stage LED Driver with High Voltage Startup - 700 V startup
- Constant on-time Critical Conduction Mode Operation
- Frequency dithering
|
ADF7024, Easy-To-Use, Low Power, Sub GHz, ISM/SRD, FSK/GFSK, Transceiver IC |
The ADF7024 is an ultralow power, integrated transceiver for use in the license-free ISM bands at 433 MHz, 868 MHz, and 915 MHz. Its ease-of-use and high performance make it suitable for a wide variety of wireless applications. The ADF7024 is suitable for operation under the European ETSI EN300-220 regulation, the North American FCC Part 15 regulation, and other similar regulatory standards.
T |
ADAU1451, SigmaDSP Digital Audio Processor |
The ADAU1452/ADAU1451/ADAU1450 are automotive qualified audio processors that far exceed the digital signal processing capabilities of earlier SigmaDSP÷œ devices. The restructured hardware architecture is optimized for efficient audio processing. The audio processing algorithms are realized in sample-by-sample and block-by-block paradigms that can both be executed simultaneously in a signal process |
ADAU1450, SigmaDSP Digital Audio Processor |
The ADAU1452/ADAU1451/ADAU1450 are automotive qualified audio processors that far exceed the digital signal processing capabilities of earlier SigmaDSP÷œ devices. The restructured hardware architecture is optimized for efficient audio processing. The audio processing algorithms are realized in sample-by-sample and block-by-block paradigms that can both be executed simultaneously in a signal process |
ADUCM320, Precision Analog Microcontroller, 14-Bit Analog I/O with MDIO Interface, ARM Cortex-M3 |
The ADuCM320 is a fully integrated single package device that incorporates high performance analog peripherals together with digital peripherals controlled by an 80 MHz ARM÷œ Cortex×.¾-M3 processor and integral flash for code and data.
The ADC on the ADuCM320 provides 14-bit, 1 MSPS data acquisition on up to 16 input pins that can be programmed for single-ended or differential operation. The |
Ultra-Low Dropout Voltage Regulator with Bias Rail |
NCP59748 NCP59749 : Ultra-Low Dropout Voltage Regulator with Bias Rail - Ultra-Low dropout voltage of 60/120 mV typ for 1.5/3.0 A
- Output voltage range of 0.8 V to 3.6 V
- Very fast transient response
|
AD8285, Radar Receive Path AFE: 4-Channel LNA/PGA/AAF with ADC |
The AD8285 is designed for low cost, low power, compact size, flexibility, and ease of use. It contains four channels of a low noise preamplifier (LNA) with a programmable gain amplifier (PGA) and an antialiasing filter (AAF) plus one direct-to-ADC channel, all integrated with a single 12-bit analog-to-digital converter (ADC).
Each channel features a gain range of 16 dB to 34 dB in 6 dB inc |
ADA4870, High Speed, High Voltage, 1 A Output Drive Amplifier |
The ADA4870 is a unity gain stable, high speed current feedback amplifier capable of delivering 1 A of output current and 2500 V/ï.s slew rate from a 40 V supply. Manufactured using the Analog Devices, Inc., proprietary high voltage extra fast complementary bipolar (XFCB) process, the innovative architecture of the ADA4870 enables high output power, high speed signal processing solutions in applica |
Serial SRAM, 1 Mb, Ultra-Low-Power, 2.5 to 5.5 V |
N01S830HA/D : Serial SRAM, 1 Mb, Ultra-Low-Power, 2.5 to 5.5 V - Power Supply Range: 2.5 to 5.5 V
- Very Low Typical Standby Current < 4 ÷.A
- Flexible Operating Modes
|
3.3 V, Clock Generator with Crystal/External input to Quad 100 MHz or 125 MHz HCSL/LVDS outputs |
NB3N51044 : 3.3 V, Clock Generator with Crystal/External input to Quad 100 MHz or 125 MHz HCSL/LVDS outputs - Individual output enable pin for each output
- 0.2 ps typical RMS phase jitter @ 100 MHz/125 MHz (Integration range: 1.875 MHz to 20 MHz)
- 20 ps typical cycle-cycle jitter @ 100 MHz/125 MHz
|
ADUM3154, 3.75 kV, 7-Channel Digital Isolators for SPI Interfaces |
The ADuM3154 is a SPIsolator×.¾ digital isolator optimized for a
serial peripheral interface (SPI) that includes support for up to
four slave devices. Based on the Analog Devices, Inc., iCoupler÷œ
chip scale transformer technology, the low propagation delay and
jitter in the CLK, MO/SI, MI/SO, and SS channels support SPI clock rates of up to 17 |
ADUM3153, 3.75 kV, Seven-Channel Isolators for SPI Interfaces (3/4 channel directionality) |
The ADuM3151/ADuM3152/ADuM3153 are 7-channel SPIsolator×.¾ digital isolators optimized for isolated serial peripheral interfaces (SPIs). Based on the Analog Devices, Inc., iCoupler÷œ chip scale transformer technology, the low propagation delay in the CLK, MO/SI, MI/SO, an |
High Voltage Switching Regulator |
NCP1076 NCP1077 : High Voltage Switching Regulator - Built-in 700 V MOSFET with RDS(on) of 4 ï¿
- Current-mode fixed frequency operation (65/100/130 kHz)
- 300 ÷.A no load power consumption
|
ADCMP393, Quad Comparator |
The ADCMP393 is a quad, rail-to-rail input, low power comparator ideal for use in general-purpose applications. The device operates from a single supply voltage of 2.3 V to 5.5 V and draws a minimal amount of current. The quad ADCMP393 consumes only 26.8 ï.A of supply current. The low voltage and low current operation of the ADCMP393 makes it ideal for battery-powered systems.
The ADCMP393 |
High Voltage Switching Regulator for Offline SMPS |
NCP1124 NCP1126 NCP1129 : High Voltage Switching Regulator for Offline SMPS - Built-in 650 V avalanche rated MOSFET
- Fixed frequency at 65 or 100 kHz
- Current mode control with adjustable internal ramp compensation
|
ADA4961, Low Distortion, 2.5 GHz, Differential DGA |
The ADA4961 is a high performance BiCMOS RF differential
amplifier (DGA) optimized for driving heavy loads out to 2.0
GHz and beyond. It typically achieves ×..90 dBc IMD3
performance at 500 MHz and ×..85 dBc at 1.5 GHz. The device
also exhibits very low output noise (6.8nv/×..Hz). Together, these
performance numbers result in an SFDR of 133 dB/Hz at 1.5 GHz
and set a new benchmark for dynamic range for |
Ultra-Low Dropout Voltage Regulator with Bias Rail |
NCP130 : Ultra-Low Dropout Voltage Regulator with Bias Rail - Ultra low dropout of 75 mV Typical
- Fixed output voltage options from 0.8 V to 2.1 V
- Guaranteed output current from 0 mA to 300 mA
|
Ultra-Low Dropout Voltage Regulator with Bias Rail |
NCP120 : Ultra-Low Dropout Voltage Regulator with Bias Rail - Ultra low dropout of 37 mV Typical
- Fixed output voltage options from 0.8 V to 2.1 V
- Guaranteed output current from 0 mA to 150 mA
|
Common Cathode Schottky Diode, 15 V, 100 mA Dual-Dual |
NSR0115CQP6 : Common Cathode Schottky Diode, 15 V, 100 mA Dual-Dual - Extremely fast switching speed
- Low forward voltage 0.4 V (Max) @ IF = 10 mA
- Devices are Pb Free, Halogen Free/BFR Free and RoHS Compliant
|
ADUCM350, 16-Bit Precision, Low Power Meter on a Chip with Cortex-M3 and Connectivity |
The ADuCM350 is a complete, coin cell powered, high precision, meter-on-chip for portable device applications such as point-of-care diagnostics and body-worn devices for monitoring vital signs. The ADuCM350 is designed for high precision potentiostat, current, voltage, and impedance measurement capabilities.
The ADuCM350 analog front end (AFE) features a 16-bit, precision, 160 kSPS analog- |
High Current Synchronous Buck Converter |
NCP3231 : High Current Synchronous Buck Converter - Wide input voltage range from 4.5 V to 18 V
- 500 KHz switching frequency
- Output current up to 25 A
|
High Speed Low Power CAN Transceiver |
NCV7349 : High Speed Low Power CAN Transceiver - CAN Transceiver according to ISO11898-5
- Third generation CAN transceiver: compliant to most stringent automotive OEM requirements, including VeLIO test
- Different versions with VSPLIT pin or VIO pin
|
High Speed Low Power CAN Transceiver |
NCV7342 : High Speed Low Power CAN Transceiver - CAN Transceiver according to ISO11898-5
- Third generation CAN transceiver: compliant to most stringent automotive OEM requirements (EMC, ESD)
- Different versions with VSPLIT pin or VIO pin
|
High Speed CAN Transceiver |
NCV7351 : High Speed CAN Transceiver - CAN Transceiver according to ISO11898-2
- Third generation CAN transceiver: compliant to most stringent automotive OEM requirements (EMC, ESD)
- Different versions with EN pin, VIO pin or n.c. on pin 5
|
AD9652, 16-bit, 310 MSPS, 3.3/1.8 V Dual Analog-to-Digital Converter (ADC) |
The AD9652 is a dual, 16-bit analog-to-digital converter (ADC) with sampling speeds of up to 310 MSPS. It is designed to support demanding, high speed signal processing applications that require exceptional dynamic range over a wide input frequency range (up to 465 MHz). Its exceptional low noise floor of ×..157.6 dBFS and large signal spurious-free dynamic range (SFDR) performance (exceeding 85 dBF |
6 ÷.A Micropower CMOS 16 V Supply Dual Comparator |
NCV2393 : 6 ÷.A Micropower CMOS 16 V Supply Dual Comparator - Extremely Low Supply Current: 6 ÷.A Typical Per Channel
- Wide Supply Range: 2.7 to 16 V
- Extremely Low Input Bias Current: 1 pA Typical
|
Dual Op-Amp, 12 V Rail-Rail I/O, 3.5 MHz |
NCV952 : Dual Op-Amp, 12 V Rail-Rail I/O, 3.5 MHz - Rail×..to×..rail Input & Output Swing
- Wide Supply Range: 2.7 V to 12 V
- Low Quiescent Current: 0.7 mA at VS = 3 V per Channel
|
ADA4610-4, Low Noise, Precision, Rail-to-Rail Output, JFET Quad Operational Amplifiers |
The ADA4610-2/ADA4610-4 are precision JFET amplifiers that feature low input noise voltage, current noise, offset voltage, input bias current, and rail-to-rail output. The ADA4610-2/ADA4610-4 are dual and quad amplifiers, respectively.
The combination of low offset, noise, and very low input bias current makes these amplifiers especially suitable for high impedance sensor amplification and |
ADSP-BF702, Low Power 400MHz Blackfin+ Embedded Processor with 256KByte L2 SRAM |
This device is a member of the ADSP-BF70x Blackfin Digital Signal Processor (DSP) product family. The new Blackfin+ processor core combines dual-MAC 16-bit, 32-bit MAC and 16-bit complex MAC in to a state-of-the-art signal processing engine. It also combines advantages of a clean, orthogonal RISC-like microprocessor instruction set, and single-instruction, multiple-data (SIMD) multimedia capabilit |
ADSP-BF705, Low Power 400MHz Blackfin+ Embedded Processor with 512KByte L2 SRAM & DDR2/LPDDR Interface |
This device is a member of the ADSP-BF70x Blackfin Digital Signal Processor (DSP) product family. The new Blackfin+ processor core combines dual-MAC 16-bit, 32-bit MAC and 16-bit complex MAC in to a state-of-the-art signal processing engine. It also combines advantages of a clean, orthogonal RISC-like microprocessor instruction set, and single-instruction, multiple-data (SIMD) multimedia capabilit |
ADSP-BF704, Low Power 400MHz Blackfin+ Embedded Processor with 512KByte L2 SRAM |
This device is a member of the ADSP-BF70x Blackfin Digital Signal Processor (DSP) product family. The new Blackfin+ processor core combines dual-MAC 16-bit, 32-bit MAC and 16-bit complex MAC in to a state-of-the-art signal processing engine. It also combines advantages of a clean, orthogonal RISC-like microprocessor instruction set, and single-instruction, multiple-data (SIMD) multimedia capabilit |
ADSP-BF700, Low Power 200MHz Blackfin+ Embedded Processor with 128KByte L2 SRAM |
This device is a member of the ADSP-BF70x Blackfin Digital Signal Processor (DSP) product family. The new Blackfin+ processor core combines dual-MAC 16-bit, 32-bit MAC and 16-bit complex MAC in to a state-of-the-art signal processing engine. It also combines advantages of a clean, orthogonal RISC-like microprocessor instruction set, and single-instruction, multiple-data (SIMD) multimedia capabilit |
ADSP-BF703, Low Power 400MHz Blackfin+ Embedded Processor with 256KByte L2 SRAM & DDR2/LPDDR Interface |
This device is a member of the ADSP-BF70x Blackfin Digital Signal Processor (DSP) product family. The new Blackfin+ processor core combines dual-MAC 16-bit, 32-bit MAC and 16-bit complex MAC in to a state-of-the-art signal processing engine. It also combines advantages of a clean, orthogonal RISC-like microprocessor instruction set, and single-instruction, multiple-data (SIMD) multimedia capabilit |
ADSP-BF701, Low Power 200MHz Blackfin+ Embedded Processor with 128KByte L2 SRAM & DDR2/LPDDR Interface |
This device is a member of the ADSP-BF70x Blackfin Digital Signal Processor (DSP) product family. The new Blackfin+ processor core combines dual-MAC 16-bit, 32-bit MAC and 16-bit complex MAC in to a state-of-the-art signal processing engine. It also combines advantages of a clean, orthogonal RISC-like microprocessor instruction set, and single-instruction, multiple-data (SIMD) multimedia capabilit |
ADN2917, Continuous Rate 8.5 Gbps to 11.3 Gbps Clock and Data Recovery IC with Integrated Limiting Amp/EQ |
The ADN2917 provides the receiver functions of quantization, signal level detect, and clock and data recovery for continuous data rates from 8.5 Gbps to 11.3 Gbps. The ADN2917 automatically locks to all data rates without the need for an external reference clock or programming. ADN2917 jitter performance exceeds all jitter specifications required by SONET/SDH, including jitter transfer, jitter gen |
AD9625, 12-Bit, 2.0/2.5 GSPS, 1.3 V/2.5 V Analog-to-Digital Converter |
The AD9625 is a 12-bit monolithic sampling analog-to-digital converter (ADC) that operates at conversion rates of up to 2.5 giga samples per second (GSPS). This product is designed for sampling wide bandwidth analog signals up to the second Nyquist zone. The combination of wide input bandwidth, high sampling rate, and excellent linearity of the AD9625 is ideally suited for spectrum analyzers, data |
AD9680, 14-Bit, 1000 MSPS JESD204B, Dual Analog-to-Digital Converter |
The AD9680 is a dual, 14-bit, 1 GSPS analog-to-digital converter (ADC). The device has an on-chip buffer and sample-and-hold circuit designed for low power, small size, and ease of use. This device is designed for sampling wide bandwidth analog signals of up to 2 GHz. The AD9680 is optimized for wide input bandwidth, high sampling rate, excellent linearity, and low power in a small package.
|
AD9993, Integrated Mixed Signal Front End MxFE |
The AD9993 is a mixed-signal front-end (MxFE÷œ) device that integrates four 14-bit ADCs and two 14-bit DACs. Figure 1 shows the block diagram of the MxFE. The MxFE is programmable using registers accessed via a serial peripheral interface (SPI). ADC and DAC datapaths include FIFO buffers to absorb phase differences between LVDS lane clocks and the data converter sampling clocks.
The MxFE DAC |
ADCMP396, Quad Comparator with Accurate Reference Output |
The ADCMP396 is a quad, rail-to-rail input, low power comparator ideal for use in general-purpose applications. The device operates from a supply voltage of 2.3 V to 5.5 V and draws a minimal amount of current. The quad ADCMP396 consumes only 41.61 ï.A of supply current. The low voltage and low current operation of the ADCMP396 makes it ideal for battery-powered systems.
The ADCMP396 feature |
ADXL703, High Precision, Low-g, Digital Triaxial Accelerometer |
The ADXL703 device is a high precision, triaxial accelerometer designed for electronic stability control and other high performance applications. A built in temperature compensation routine ensures sensitivity stability to better than ÷.3% across the entire temperature range. The ADXL703 is designed with selectable ×..3 dB filter corner frequencies to satisfy a range of applications, and the 2 kHz ou |
SSM4567, Digital 2.5 W, 5.1 V, Boost Class-D Audio Amplifier with Output Sensing |
The SSM4567 is a digital input Class-D power amplifier that includes an integrated boost converter, allowing higher output power than with a normal battery supply. This means that maximum output power is constant across the battery voltage range. The SSM4567 is ideal for power sensitive applications where system noise can corrupt the small analog signal sent to the amplifier, such as mobile phones |
ADSP-BF707, Low Power 400MHz Blackfin+ Embedded Processor with 1MByte L2 SRAM & DDR2/LPDDR Interface |
This device is a member of the ADSP-BF70x Blackfin Digital Signal Processor (DSP) product family. The new Blackfin+ processor core combines dual-MAC 16-bit, 32-bit MAC and 16-bit complex MAC in to a state-of-the-art signal processing engine. It also combines advantages of a clean, orthogonal RISC-like microprocessor instruction set, and single-instruction, multiple-data (SIMD) multimedia capabilit |
ADSP-BF706, Low Power 400MHz Blackfin+ Embedded Processor with 1MByte L2 SRAM |
This device is a member of the ADSP-BF70x Blackfin Digital Signal Processor (DSP) product family. The new Blackfin+ processor core combines dual-MAC 16-bit, 32-bit MAC and 16-bit complex MAC in to a state-of-the-art signal processing engine. It also combines advantages of a clean, orthogonal RISC-like microprocessor instruction set, and single-instruction, multiple-data (SIMD) multimedia capabilit |
ADP5133, Dual 3MHz, 800mA Buck Regulators in WLCSP |
The ADP5133 combines two high performance buck regulators in a tiny, 16-ball, 2 mm ç. 2 mm WLCSP to meet demanding performance and board space requirements.
The high switching frequency of the buck regulators enables tiny multilayer external components and minimizes the board space. When the MODE pin is set high, the buck regulators operate in forced PWM mode. When the MODE pin is set low an |
AD7403, 16-Bit, Isolated Sigma-Delta Modulator |
The AD7403 is a high performance, second-order, ï.-ï. modulator that converts an analog input signal into a high speed, single-bit data stream, with on-chip digital isolation based on Analog Devices, Inc., iCoupler÷œ technology. The AD7403 operates from a 5 V (VDD1) power supply and accepts a differential input signal of ÷.250 mV (÷.320 mV full-scale). The differential input is idea |
2.5 V / 3.3 V, 1:8 LVPECL Fanout Buffer |
NB7L1008 : 2.5 V / 3.3 V, 1:8 LVPECL Fanout Buffer - Typical maximum input data rate > 12 Gb/s
- Typical RMS Additive Phase Jitter at 622MHz (12KHz-20MHz) : 25fs
- Low output to output skew, < 20 ps (max)
|
Dual Input Voltage Regulator, Dual 300 mA, Low IQ, Low Dropout |
NCP154 : Dual Input Voltage Regulator, Dual 300 mA, Low IQ, Low Dropout - Low dropout: 140 mV typical at 300 mA
- 1.2mm x 1.6mm xDFN package
- High PSRR: 75 dB at 1 kHz
|
HART Modem |
NCN5193 : HART Modem - Very low current in idle mode
- Integrated watchdog, DAC and power amplifier
- Accepts wide range of supply voltages
|
2.5 V / 3.3 V, 1:8 LVPECL Fanout Buffer |
NB7L1008 : 2.5 V / 3.3 V, 1:8 LVPECL Fanout Buffer - Typical maximum input data rate > 12 Gb/s
- RMS Additive Phase Jitter at 622 MHz (12 KHz-20 MHz) : 25 fs
- Low output to output skew, < 20 ps max
|
ADL5246, 3 GHz Variable Gain LNA with Integrated ÷. W Driver Amplifier |
The ADL5246 is a high performance, low noise variable gain amplifier (VGA) optimized for multistandard base station receivers and point to point receive (Rx) and transmit (Tx) applications. The low noise figure and excellent linearity performance allow the device to be used in a variety of applications.
The device consists of a low noise amplifier, a high linearity VGA, and a ÷. W output driver |
ADF4155, Integer-N / Fractional-N PLL Synthesizer |
The ADF4155 allows implementation of fractional-N or integer-N phase-locked loop (PLL) frequency synthesizers when used with an external loop filter, external voltage controlled oscillator (VCO), and external reference frequency.
The ADF4155 is for use with external VCO parts up to an 8 GHz operating frequency. The high resolution programmable modulus allows synthesis of exact frequencies with |
ADP5080, Tiny 15V PMU with 6 CH DC/DCs and 2 LDOs for Multicell Lithium Ion Battery Applications |
The ADP5080 is a fully integrated, high efficiency power solution for multicell lithium ion battery applications. The device can connect directly to the battery, which eliminates the need for preregulators and, therefore, increases the battery life of the system.
The ADP5080 integrates two keep-alive LDO regulators, five synchronous buck regulators, a configurable four-switch buck boost reg |
ADV7782, APIX2 Receiver with LVDS, HDCP, and MIPI Support |
The ADV7782 is a receiver that is compatible with an APIX÷œ or
APIX2÷œ serial data stream. The ADV7782 performs limited
processing (color space conversion and interpolation 4:2:2 to 4:4:4),
and forwards the data via MIPI÷œ camera serial interface (CSI).
Data from the LVDS input (OpenLDI) can also be routed through
the same processing blocks. It supports a point-to-point connection
topology, and suppo |
Linear Voltage Regulator, Low Dropout (LDO), Dual 150 mA, Low IQ |
NCP152 : Linear Voltage Regulator, Low Dropout (LDO), Dual 150 mA, Low IQ - Low dropout: 150 mV typical at 150 mA
- 1.2mm x 1.2mm xDFN package
- High PSRR: 75 dB at 1 kHz
|
Serial CMOS EEPROM, Low Power 2 Mb SPI |
CAT25AM02 CAT25M02 : Serial CMOS EEPROM, Low Power 2 Mb SPI - Supports SPI protocol
- On chip ECC (Error Correction Code)
- Hardware and software white protection
|
Power Management IC (PMIC), 7 Channels, with 2 DC-DC Converters and 5 LDOs |
NCP6925 : Power Management IC (PMIC), 7 Channels, with 2 DC-DC Converters and 5 LDOs - Two DC×..DC Converters with 95% peak efficiency
- Five low noise ×.. low drop out regulators
- Triple Input 10 Bit ADC
|
AD9554, Quad PLL, Quad Input, 8-output Multiservice Line Card Adaptive Clock Translator |
The AD9554 is a low loop bandwidth clock translator that provides jitter cleanup and synchronization for many systems, including synchronous optical networks (SONET/SDH). The AD9554 generates an output clock synchronized to up to four external input references. The digital PLL (DPLL) allows for reduction of input time jitter or phase noise associated with the external references. The digitally con |
ESD Protection Array |
ESD8004 ESD8006 ESD8008 ESD8104 : ESD Protection Array - Supports high speed differential lines such as USB 3.0
- Low ESD clamping voltage
- Low capacitance of 0.25 pF and 0.35 pF
|
Hex Half-Bridge Driver |
NCV7728 : Hex Half-Bridge Driver - Low quiescent current sleep mode
- Half-bridge connected high-side & low-side driver configuration
- Per channel diagnostic reporting via SPI
|
3:1:10 Differential Clock Fanout Buffer with LVCMOS Reference Output |
NB3M8T3910G : 3:1:10 Differential Clock Fanout Buffer with LVCMOS Reference Output - Input multiplexer accepts crystal, single-ended or differential inputs
- Two output banks of five configurable differential outputs
- Low additive RMS jitter
|
1:3 Clock Fanout Buffer, 2.8 V, High Precision |
NB3L03 : 1:3 Clock Fanout Buffer, 2.8 V, High Precision - Low additive phase noise
- Accepts square wave or clipped sine wave inputs
- Exceeds JEDEC ESD Standards
|
AD8451, Low Cost Precision Analog Front End and Controller for Battery Test/Formation Systems |
The AD8451 is a precision analog front end and controller for testing and monitoring battery cells. A precision fixed gain instrumentation amplifier (IA) measures the battery charge/discharge current, and a fixed gain difference amplifier (DA) measures the battery voltage. Internal laser trimmed resistor networks set the gains for the IA and the DA, optimizing the performance of the AD8451 over th |
AD7578, CMOS 12-Bit Successive Approximation ADC |
The AD7578 is a medium speed, monolithic 12-bit CMOS A/D converter which uses the successive approximation technique to provide a conversion time of 100µs. An auto-zero cycle occurs at the start of each conversion resulting in very low system offset voltages, typically less than 100µV. The device is designed for easy microprocessor interfacing using standard control signals; |
N×..Channel Power MOSFET, 25 V |
NTMFS4H01NF NTMFS4H02NF : N×..Channel Power MOSFET, 25 V - Integrated Schottky Diode
- Low RDS(on) and low capacitance to minimize losses
- In SO8FL and u8FL packages
|
N×..Channel Power MOSFET, 25 V |
NTMFS4H01N NTMFS4H02N NTTFS4H05N NTTFS4H07N : N×..Channel Power MOSFET, 25 V - Low RDS(on) to minimize conduction losses
- Low capacitance to minimize driver losses
- In a SO-8FL and u8FL packages
|
ADP2311, Dual 1 A, 18 V Synchronous Step-Down Regulator with Fail-safe Voltage Monitoring |
The ADP2311 is a fully integrated, dual output, synchronous step-down dc-to-dc regulator. The regulator operates from input voltages of 4.5 V to 18 V, and the output can regulate down to 0.6 V. Each channel can provide up to 1 A of continuous output current.
The ADP2311 integrates the high-side and low-side MOSFETs
to provide a very high efficiency, compact solution. Both channels of the r |
CMOS Low Dropout Regulator, 300 mA |
NCP114 : CMOS Low Dropout Regulator, 300 mA - Operating Input Voltage Range: 1.7 V to 5.5 V
- Low Dropout: 135 mV Typical at 300 mA
- Very Low Quiescent Current of Typ. 50 ÷.A
|
CMOS Low Dropout Regulator, 150 mA |
NCP103 : CMOS Low Dropout Regulator, 150 mA - Operating Input Voltage Range: 1.7 V to 5.5 V
- Low Dropout: 75 mV Typical at 150 mA
- Very Low Quiescent Current of Typ. 50 ÷.A
|
M-BUS Slave Transceiver |
NCN5150 : M-BUS Slave Transceiver - Single-chip MBUS transceiver
- Integrated 3.3 V VDD LDO regulator with extended peak current capability of 15 mA
- Supports powering slave device from the bus.
|
Automotive Switching Regulator, Buck, 1.2 A, 2.0 A, 2 MHz, Reset, Adjustable Delay |
NCV890103 NCV890203 : Automotive Switching Regulator, Buck, 1.2 A, 2.0 A, 2 MHz, Reset, Adjustable Delay - Vin range of 4.5 V to 36 V
- Reset with Adjustable Delay
- Internal N×..Channel Power Switch
|
ADV8005, NatureVue×.¾ Video Signal Processor with Bitmap OSD, Dual HDMI Tx, and Encoder |
The ADV8005 is a multiple input video signal processor that can deinterlace and scale standard definition (SD), enhanced definition (ED), or high definition (HD) video data to ultra HD formats; generate a bitmap on-screen display (OSD); and output the video with OSD overlaid on two High-Definition Multimedia Interface (HDMI÷œ) transmitters and a video encoder.
The 60-bit TTL video port can b |
ADSP-BF514F16, Blackfin Embedded Processor with 16 Mbits Flash memory and RSI |
The ADSP-BF512, ADSP-BF514/ADSP-BF514F16, ADSP-BF516,
ADSP-BF518/ADSP-BF518F16 processors are members
of the Blackfin÷œ family of products, incorporating the Analog
Devices/Intel Micro Signal Architecture (MSA). Blackfin processors
combine a dual-MAC state-of-the-art signal processing
engine, the advantages of a clean, orthogonal RISC-like microprocessor
instruction set, and single-instruction, mul |
ADSP-BF518F16, Blackfin Embedded Processor w/ 16 Mbit Flash memory and IEEE-1588 support |
The ADSP-BF512, ADSP-BF514/ADSP-BF514F16, ADSP-BF516,
ADSP-BF518/ADSP-BF518F16 processors are members
of the Blackfin÷œ family of products, incorporating the Analog
Devices/Intel Micro Signal Architecture (MSA). Blackfin processors
combine a dual-MAC state-of-the-art signal processing
engine, the advantages of a clean, orthogonal RISC-like microprocessor
instruction set, and single-instruction, mul |
ADP1055, Digital Controller for Power Supply Applications with PMBus Interface |
The ADP1055 is a flexible, feature-rich digital secondary side controller that targets ac-to-dc and isolated dc-to-dc secondary side applications. The ADP1055 is optimized for minimal component count, maximum flexibility, and minimum design time. Features include differential remote voltage sense, primary and secondary side current sense, pulse-width modulation (PWM) generation, frequency synchron |
ADP5090, Ultra Low Power Boost Regulator With MPPT and Charge Management |
The ADP5090 is an integrated boost regulator that converts dc
power from PV cells or thermoelectric generators (TEGs).The
device charges storage elements such as batteries and capacitors,
and powers up small electronic devices and battery-free
systems.
The ADP5090 provides efficient conversion of the harvested
limited power-down to a 10ï.W to 1mW range with sub-ï.W
operation losses. With the |
ADM1270, High Voltage Input Protection Device |
The ADM1270 is a current limiting controller that is intended to provide inrush current limiting and overcurrent protection for modular or battery powered systems. When circuit boards are inserted into a live backplane, discharged supply bypass capacitors draw large transient currents from the backplane power bus as they charge. These transient currents can cause permanent damage to connector pin |
AD8210S, Aerospace High Voltage, Bidirectional Current Shunt Monitor |
The AD8210S is a single-supply, difference amplifier ideal for amplifying small differential voltages in the presence of large common-mode voltages. The operating input common-mode voltage range extends from ×..2 V to +65 V. The typical supply voltage is 5 V.
Excellent ac and dc performance over temperature keep errors in the measurement loop to a minimum. Offset drift and gain drift are |
MCP3903 |
MCP3903 |
AD5692R, Tiny 14-Bit I2C nanoDAC+, with ÷.4 LSB INL and 5 ppm/÷.C Reference |
The AD5693R/AD5692R/AD5691R/AD5693, members of the nanoDAC+÷œ family, are low power, single-channel, 16-/14-/12-bit buffered voltage output DACs. The devices include an enabled by default internal 2.5 V reference, |
AD5691R, Tiny 12-Bit I2C nanoDAC+, with ÷.1 LSB INL and 2 ppm/÷.C Reference |
The AD5693R/AD5692R/AD5691R, members of the nanoDAC+÷œ family, are low power, single-channel, 16-/14-/12-bit buffered voltage output DACs. The devices include an enabled by default internal 2.5 V reference, offering 2 ppm/÷.C drift. The output span can be programmed to be |
AD5693R, Tiny 16-Bit I2C nanoDAC+, with ÷.2 (16-Bit) LSB INL and 2 ppm/÷.C Reference |
The AD5693R/AD5692R/AD5691R/AD5693, members of the
nanoDAC+÷œ family, are low power, single-channel, 16-/14-/12-bit buffered voltage out DACs. The devices include an enabled by default internal 2.5 V reference, offering 2 ppm/÷.C drift. The output span can be pr |
ADP7142, 40 V, 200 mA, Low Noise, CMOS LDO |
The ADP7142 is a CMOS, low dropout linear regulator that
operates from 2.7 V to 40 V and provide up to 200 mA of output
current. These high input voltage LDOs are ideal for regulation of
high performance analog and mixed signal circuits operating from
40 V down to 1.2 V rails. Using an advanced proprietary
architecture, they provide high power supply rejection, low noise,
and achieve excellent lin |
ADP7118, 20 V, 200 mA, Low Noise, CMOS LDO |
The ADP7118 is a CMOS, low dropout linear regulator that operates from 2.7 V to 20 V and provide up to 200 mA of output current. These high input voltage LDOs are ideal for regulation of high performance analog and mixed signal circuits operating from 40 V down to 1.2 V rails. Using an advanced proprietary architecture, they provide high power supply rejection, low noise, and achieve excellent lin |
Automotive Switching Regulator, Buck, 1.2 A, 2 A, 2 MHz, Spread Spectrum |
NCV890104 NCV890204 : Automotive Switching Regulator, Buck, 1.2 A, 2 A, 2 MHz, Spread Spectrum - Vin range of 4.5 V to 36 V
- Adjustable spread spectrum
- Internal N×..Channel Power Switch
|
Automotive Grade Start-Stop Non-Synchronous Boost Controller |
NCV8877 : Automotive Grade Start-Stop Non-Synchronous Boost Controller - Operation voltage of 2 V to 45 V
- Automotive operating temperature of -40÷.C to 150÷.C
- Disable function
|
1:2, 1:4, Low Skew LVCMOS/LVTTL Fanout Buffers |
NB3M8302C NB3M8304C : 1:2, 1:4, Low Skew LVCMOS/LVTTL Fanout Buffers - Core supply, Vdd: 3.3V, Output supply, Vddo: 3.3/2.5 V
- Operating frequency up to 200 MHz
- Low additive phase jitter
|
ADN2913, Continuous Rate 6.5 Mbps to 8.5 Gbps Clock and Data Recovery IC with Integrated Limiting Amp/EQ |
The ADN2913 provides the receiver functions of quantization,
signal level detection, and clock and data recovery for continuous
data rates from 6.5 Mbps to 8.5 Gbps. The ADN2913 automatically
locks to all data rates without the need for an external
reference clock or programming. ADN2913 jitter performance
exceeds all jitter specifications required by SONET/SDH, including
jitter transfer, jitter g |
AD7902, Dual Pseudo Differential 16-Bit, 1 MSPS PulSAR ADC 12.0 mW in QSOP |
The AD7902 is a dual 16-bit, successive approximation, analog-to-digital converter (ADC) that operates from a single power supply, VDDx, per ADC. It contains two low power, high speed, 16-bit sampling ADCs and a versatile serial port interface (SPI). On the CNVx rising edge, the AD7902 samples an analog input IN+ in the range of 0 V to VREF with respect to a ground sense IN×... The extern |
MTCH6102-I/MV |
MTCH6102-I/MV |
MTCH6102T-I/MV |
MTCH6102T-I/MV |
MTCH6102T-I/SS |
MTCH6102T-I/SS |
MTCH6102-I/SS |
MTCH6102-I/SS |
HSA2-0C0SIA/A2S24 |
HSA2-0C0SIA/A2S24 |
HSA2-0C0SIA/A2S24TR |
HSA2-0C0SIA/A2S24TR |
ADCMP392, Dual Comparator |
The ADCMP392 is a dual rail-to-rail input low power comparators
ideal for use in general-purpose applications. The ADCMP392
operates from a single 2.3V to 5.5V of supply voltage and draws
minimal amount of current. The dual ADCMP392 consumes
23.9uA of supply current. The low voltage and low current
operation of the ADCMP392 makes it ideal for battery-powered
systems.
The comparators feature |
ADCMP395, Dual Comparator with Accurate Reference Output |
The ADCMP395 is a dual rail-to-rail input low power comparators
ideal for use in general-purpose applications. The devices operate
from a supply voltage of 2.3V up to 5.5V and draws minimal
amount of current. The dual ADCMP395 consumes 39.7uA of
supply current. The low voltage and low current operation of the
ADCMP395 makes it ideal for battery-powered systems.
The comparators feature a com |
ADCMP391, Single Comparator |
The ADCMP391 is a single rail-to-rail input low power comparator
ideal for use in general-purpose applications. The ADCMP391
operates from a single 2.3V to 5.5V of supply voltage and draws
minimal amount of current. The ADCMP391 consumes only
20.1uA of supply current. The low voltage and low current
operation of the ADCMP391 makes it ideal for battery-powered
systems.
The ADCMP391 feature |
ADCMP394, Single Comparator with Accurate Reference Output |
The ADCMP394 is a single rail-to-rail input low power
comparators ideal for use in general-purpose applications. The
devices operate from a supply voltage of 2.3V up to 5.5V and draws
minimal amount of current. The single ADCMP394 consumes only
36uA of supply current. The low voltage and low current operation
of the ADCMP394 makes it ideal for battery-powered systems.
The comparators featur |
ADP1050, Digital Controller for Isolated Power Supply with PMBus Interface |
The ADP1050 is an advanced digital controller with a PMBus×.¾ interface targeting high density, high efficiency dc-to-dc power conversion. This controller implements voltage mode control with high speed, input voltage feedforward operation for enhanced transient and noise performance. The ADP1050 has four programmable pulse-width modulation (PWM) outputs capable of controlling most high efficiency p |
HSA2-040SAA/A2324TR |
HSA2-040SAA/A2324TR |
HSA2-040SAA/A2324 |
HSA2-040SAA/A2324 |
HSA2-040SIA/A2S24TR |
HSA2-040SIA/A2S24TR |
HSA2-040SIA/A2S24 |
HSA2-040SIA/A2S24 |
AD7989-5, 18-Bit, 500 kSPS PulSAR ADCs in MSOP/LFCSP |
The AD7989-1/AD7989-5 are 18-bit, successive approximation, analog-to-digital converters (ADC) that operate from a single power supply, VDD. They contain a low power, high speed, 18-bit sampling ADC and a versatile serial interface port. On the CNV rising edge, the AD7989-1/AD7989-5 sample the voltage difference between the IN+ and IN×.. pins. The voltage |
AD7989-1, 18-Bit, 100 kSPS PulSAR ADCs in MSOP/LFCSP |
The AD7989-1/AD7989-5 are 18-bit, successive approximation, analog-to-digital converters (ADC) that operate from a single power supply, VDD. They contain a low power, high speed, 18-bit sampling ADC and a versatile serial interface port. On the CNV rising edge, the AD7989-1/AD7989-5 sample the voltage difference between the IN+ and IN×.. pins. The voltage |
AD7091R-8, 8-Channel, 1 MSPS, Ultralow Power, 12-Bit ADC in 24-Lead TSSOP |
The AD7091R-2/AD7091R-4/AD7091R-8 family is a multichannel 12-bit, ultralow power, successive approximation analog-to-converter (ADC) that is available in two, four, or eight analog input channel options. The AD7091R-2/AD7091R-4/AD7091R-8
operate from a single 2.7 V to 5.25 V power supply and is capable
of |
AD7091R-2, 2-Channel, 1 MSPS, Ultralow Power, 12-Bit ADC in 16-Lead TSSOP |
The AD7091R-2/AD7091R-4/AD7091R-8 family is a multichannel 12-bit, ultralow power, successive approximation analog-to-converter (ADC) that is available in two, four, or eight analog input channel options. The AD7091R-2/AD7091R-4/AD7091R-8
operate from a single 2.7 V to 5.25 V power supply and is capable
of |
AD7091R-4, 4-Channel, 1 MSPS, Ultralow Power, 12-Bit ADC in 20-Lead TSSOP |
The AD7091R-2/AD7091R-4/AD7091R-8 family is a multichannel 12-bit, ultralow power, successive approximation analog-to-converter (ADC) that is available in two, four, or eight analog input channel options. The AD7091R-2/AD7091R-4/AD7091R-8 operate from a single 2.7 V to 5.25 V power supply and is capable of |
AD8450, Precision Analog Front End and Controller for Battery Test/Formation Systems |
The AD8450 is a precision analog front end for testing and
monitoring battery cells. Referring to figure one, a precision
programmable gain instrumentation amplifier (PGIA)
measures the battery×..s charge/discharge current and a
programmable gain difference amplifier (PGDA) measures the
battery×..s voltage. Internal laser trimmed resistor networks set
the gains for the PGIA and the PGDA, optimizing th |
ADP1972, Buck or Boost, PWM Controller for Battery Test Solutions |
The ADP1972 is a constant frequency, voltage mode, pulse width modulation (PWM) controller for buck or boost, dc-to-dc, asynchronous applications. The ADP1972 is designed for use in asynchronous battery testing applications with an external, high voltage field effect transistor (FET), half bridge driver, and an external control device, such as the AD8450.The asynchronous device operates as a buck |
ADA4077-1, 30V, 4 MHz, 7 nV/×..Hz, Low Offset and Drift, High Precision Single Amplifier |
The single ADA4077-1, dual ADA4077-2, and quad ADA4077-4 amplifiers feature extremely low offset voltage and drift, and low input bias current, noise, and power consumption. Outputs are stable with capacitive loads of more than 1000 pF with no external compensation.
Applications for this amplifier in |
ADUM4224, 5kV rms Isolated Precision Half-Bridge Driver, 4A Output for Automotive |
The ADuM3224/ADuM4224 are 4 A isolated, half-bridge gate drivers that employ the Analog Devices, Inc., iCoupler÷œ technology to provide independent and isolated high-side and low-side outputs. The ADuM3224 provides 3000 V rms isolation in the narrow-body, 16-lead SOIC package, and the
ADuM4224 provides 5000 V rms isolation in the wide-body,
16-l |
ADUM3224, 3kV rms Isolated Precision Half-Bridge Driver, 4A Output for Automotive |
TheADuM3224/ADuM4224 are 4 A isolated, half-bridge
gate drivers that employ the Analog Devices, Inc., iCoupler÷œ
technology to provide independent and isolated high-side
and low-side outputs. The ADuM3224 provides 3000 V rms
isolation in the narrow-body, 16-lead SOIC package, and the
ADuM4224 provides 5000 V rms isolation in the wide-body,
16-le |
ADP5051, Integrated Power Solution with Quad Buck Regulators, Supervisory, and I2C Interface |
The ADP5051 combines four high performance buck regulators,
and a supervisory circuit with a voltage monitor, watchdog, and
manual reset in a 48-lead LFCSP package that meets demanding
performance and board space requirements. The device enables
direct connection to high input voltages up to 15.0 V with no
preregulators.
Channel 1 and Channel 2 integrate high-side power MOSFET and
low-side |
ADP5053, Integrated Power Solution with Quad Buck Regulators and Supervisory Circuits |
The ADP5053 combines four high performance buck regulators,
supervisory, watchdog, and manual reset in a 48-lead LFCSP
package that meets demanding performance and board space
requirements. The device enables direct connection to high
input voltages up to 15.0 V with no preregulators.
Channel 1 and Channel 2 integrate high-side power MOSFET and
low-side MOSFET drivers. External NFETs can be |
ADAU1962, 12-Channel High Performance Differential Output, 192 kHz, 24-Bit DAC |
The ADAU1962 is a high performance, single chip, digital-to-
analog converter (DAC) that provides 12 DACs with
differential outputs using the Analog Devices, Inc., patented
multibit sigma-delta (ï.-ï.) architecture. A SPI/I2C port is included,
allowing a microcontroller to adjust volume and many other
parameters. The ADAU1962 operates from 2.5 V digital and
3.3 V or 5 V analog supplies. A linear reg |
ADIS16488A, Tactical Grade Ten Degrees of Freedom Inertial Sensor |
The ADIS16488A iSensor÷œ device is a complete inertial system that includes a triaxis gyroscope, a triaxis accelerometer, triaxis magnetometer, and pressure sensor. Each inertial sensor in the ADIS16488A combines industry-leading iMEMS÷œ technology with signal conditioning that optimizes dynamic performance. The factory calibration characterizes each sensor for sensitivity, bias, alignment, and line |
AD5311R, 10-Bit nanoDAC, I2C Interface and 2 ppm/÷.C On-Chip Reference |
The AD5310R/AD5311R, members of the nanoDAC×.¾ family, are low power, single-channel, 10-bit buffered voltage-out DACs. The devices include a 2.5 V, 2 ppm/÷.C internal reference. The output span can be programmed to be 0 V to VREF or 0 V to 2 ç.VREF. All devices operate from a single 2.7 V to 5.5 V supply and are guaranteed mon |
AD5683R, Tiny 16-Bit SPI nanoDAC+, with ÷.2 (16-Bit) LSB INL and 2 ppm/÷.C Reference |
The AD5683R/AD5682R/AD5681R/AD5683, members of the nanoDAC+÷œ family, are low power, single-channel, 16-/14-/12-bit buffered voltage out DACs. The devices, except the AD5683,
include an enabled by default internal 2.5 V reference, offering
2 ppm/÷.C drift. The o |
AD5682R, Tiny 14-Bit SPI nanoDAC+, with ÷.2 LSB INL and 2 ppm/÷.C Reference |
The AD5683R/AD5682R/AD5681R/AD5683, members of the nanoDAC+÷œ family, are low power, single-channel, 16-/14-/12-bit buffered voltage out DACs. The devices, except the AD5683,
include an enabled by default internal 2.5 V reference, offering
2 ppm/÷.C drift. T |
AD5310R, 10-Bit nanoDAC, SPI Interface and 2 ppm/÷.C On-Chip Reference |
The AD5310R/AD5311R, members of the nanoDAC×.¾ family, are low power, single-channel, 10-bit buffered voltage-out DACs. The devices include a 2.5 V, 2 ppm/÷.C internal reference. The output span can be programmed to be 0 V to VREF or 0 V to 2 ç.VREF. All devices operate from a single 2.7 V to 5.5 V supply and are guaranteed mon |
AD5683, Tiny 16-Bit SPI nanoDAC+, with ÷.2 (16-Bit) LSB INL and 2 ppm/÷.C External Reference |
The AD5683R/AD5682R/AD5681R/AD5683, members of the nanoDAC+÷œ family, are low power, single-channel, 16-/14-/12-bit buffered voltage out DACs. The devices, except the AD5683,
include an enabled by default internal 2.5 V reference, offering
2 ppm/÷.C drift. The |
AD5681R, Tiny 12-Bit SPI nanoDAC+, with ÷.1 LSB INL and 2 ppm/÷.C Reference |
The AD5683R/AD5682R/AD5681R/AD5683, members of the nanoDAC+÷œ family, are low power, single-channel, 16-/14-/12-bit buffered voltage out DACs. The devices, except the AD5683,
include an enabled by default internal 2.5 V reference, offering
2 ppm/÷.C drift. The o |
ADXL189B, Low Cost, Single X-Axis PSI5-Compatible Satellite Sensor |
The ADXL185B z-axis sensor and the ADXL189B x-axis sensor are g range configurable, integrated single-axis satellite sensors, compliant with the PSI5 Version 1.3 specification. The ADXL185B/ADXL189B enable low cost solutions for front and side impact airbag satellite sensor applications. Acceleration data is sent to the control module via a digital 2-wi |
ADXL185B, Low Cost, Single Z-Axis PSI5-Compatible Satellite Sensor |
The ADXL185B z-axis sensor and the ADXL189B x-axis sensor are g range configurable, integrated single-axis satellite sensors, compliant with the PSI5 Version 1.3 specification. The ADXL185B/ADXL189B enable low cost solutions for front and side impact airbag satellite sensor applications. Acceleration data is sent to the control module via a digital 2-wi |
AD9364, 1 x 1 RF Agile Transceiver |
The AD9364 is a 1 x 1 channel high performance, highly integrated RF Agile Transceiver×.¾. Its programmability and wideband capability make it ideal for a broad range of transceiver applications. The device combines an RF front end with a flexible mixed-signal baseband section and integrated frequency synthesizers, simplifying design-in by providing a configurable digital interface to a processor. T |
FLEXMOS Hex Low-Side MOSFET Pre-Driver |
NCV7518 : FLEXMOS Hex Low-Side MOSFET Pre-Driver - 16-bit SPI with parity and frame error detection
- Ratiometric diagnostic references and currents to battery voltage
- Scalable to load
|
SST25WF040B |
SST25WF040B |
ADV7625, 3GHz HDMI 5:2 cross point Transceiver with On-Screen Display |
The ADV7625 is a high performance, five-input, dual-output, High-Definition Multimedia Interface (HDMI÷œ) transceiver with crosspoint and splitter capabilities. The ADV7625 supports 3 GHz video and features two independent HDMI receivers, two independent HDMI transmitters, two audio output ports, two audio input ports, and a pixel port input. The ADV7625 supports all HDCP repeater functions through |
ADV7626, 3GHz HDMI 2:2 cross point Transceiver with On-Screen Display |
The ADV7626 is a high performance, High-Definition Multi-media Interface (HDMI÷œ) transceiver with crosspoint and splitter capabilities. The ADV7626 supports 3 GHz video and features two independent HDMI receivers, two independent HDMI trans-mitters, two audio output ports, and two audio input ports. The ADV7626 supports all HDCP repeater functions through fully tested Analog Devices, Inc., repeate |
ADV7627, 3GHz HDMI 5:1 Transceiver with On-Screen Display |
The ADV7627 is a high performance, five-input, one-output, High-Definition Multimedia Interface (HDMI÷œ) transceiver. The ADV7627 supports 3 GHz video and features one HDMI receiver, one HDMI transmitter, an audio output port, an audio input port, and a pixel port input. The ADV7627 supports all HDCP repeater functions through fully tested Analog Devices, Inc., repeater software libraries and drive |
AD7656A-1, 250 kSPS, 6-Channel, Simultaneous Sampling, Bipolar, 16-Bit ADC |
The AD7656A-1 is a reduced decoupling pin- and software-compatible
version of AD7656A. The AD7656A-1 contains six 16-bit, fast, low power successive approximation ADCs in a package designed on the iCMOS÷œ process (industrial CMOS). iCMOS is a process combining high voltage silicon with submicron CMOS and complementary bipolar technologie |
AD7656A, 250 kSPS, 6-Channel, Simultaneous Sampling, Bipolar 16-Bit ADC |
The AD7656A contains six 16-bit, fast, low power, successive
approximation analog-to-digital converters (ADCs) all in the
one package that is designed on the iCMOS÷œ process (industrial CMOS). iCMOS is a process combining high voltage silicon with submicron CMOS and complementary bipolar technologies.
It enables the development of a wide range of high performance
analog ICs, capab |
AD7903, Dual Differential 16-Bit, 1 MSPS PulSAR 12.0 mW in QSOP |
The AD7903 is a dual 16-bit, successive approximation, analog-to-digital converter (ADC) that operates from a single power supply, VDDx, per ADC. It contains two low power, high speed, 16-bit sampling ADCs and a versatile serial interface port. On the CNVx rising edge, the AD7903 samples the voltage difference between the INx+ and INx×.. pins. The voltages on these pins usually swing in opposite pha |
ADUM1240, Micropower, Dual-Channel Digital Isolators, Default High (2/0 Channel Directionality) |
The ADuM1240/ADuM1241/ADuM1245/ADuM1246 are micropower, dual-channel digital isolators based on the Analog Devices, Inc., iCoupler÷œ technology ( Qu |
ADUM1241, Micropower, Dual-Channel Digital Isolators, Default High (1/1 Channel Directionality) |
The ADuM1240/ADuM1241/ADuM1245/ADuM1246 are micropower, dual-channel digital isolators based on the Analog Devices, Inc., iCoupler÷œ technology.( Qu |
ADUM1245, Micropower, Dual-Channel Digital Isolators, Default Low (2/0 Channel Directionality) |
The ADuM1240/ADuM1241/ADuM1245/ADuM1246 are micropower, dual-channel digital isolators based on the Analog Devices, Inc., iCoupler÷œ technology.( Qu |
ADUM1246, Micropower, Dual-Channel Digital Isolators, Default High (1/1 Channel Directionality) |
The ADuM1240/ADuM1241/ADuM1245/ADuM1246 are micropower, dual-channel digital isolators based on the Analog Devices, Inc., iCoupler÷œ technology.( Qu |
AD9656, Quad, 16-Bit, 125 MSPS JESD204B 1.8 V Analog-to-Digital Converter |
The AD9656 is a quad, 16-bit, 125 MSPS analog-to-digital converter
(ADC) with an on-chip sample-and-hold circuit designed for low cost, low power, small size, and ease of use. The product operates at a conversion rate of up to 125 MSPS and is optimized for outstanding dynamic performance and low power in applications where a small package size is critical.
The ADC requires a single 1.8 V po |
RN52 |
RN52 |
SST39WF400B |
SST39WF400B |
MCP6406 |
MCP6406 |
MCP6407 |
MCP6407 |
MCP6409 |
MCP6409 |
ADRF6820, 695 MHz to 2700 MHz Quadrature Demodulator with Integrated Fractional-N PLL and VCO |
The ADRF6820 is a highly integrated demodulator and synthesizer ideally suited for next generation communication systems. The feature rich device consists of a high linearity broadband I/Q demodulator, an integrated fractional-N phase-locked loop (PLL), and a low phase noise multicore, voltage controlled oscillator (VCO). The ADRF6820 also integrates a 2:1 RF switch, an on-chip tunable RF balun, a |
MCP39F501 |
MCP39F501 |
MCP39F501 |
MCP39F501 |
SST38VF6401B |
SST38VF6401B |
24AA256 |
24AA256 |
24AA32AF |
24AA32AF |
24LC32AF |
24LC32AF |
24LC08BH |
24LC08BH |
24FC64 |
24FC64 |
24FC256 |
24FC256 |
24AA16 |
24AA16 |
AD5693, Tiny 16-Bit I2C nanoDAC+, with ÷.2 (16-Bit) LSB INL |
The AD5693R/AD5692R/AD5691R/AD5693, members of the nanoDAC+÷œ family, are low power, single-channel, 16-/14-/ 12-bit buffered voltage output DACs. The devices, except the AD5693, include an enabled by default internal 2.5 V reference, offering 2 ppm/÷.C drift. The output span can be programmed to be 0 V to VREF or 0 V to 2 ç. VREF. All devices operate from a single 2.7 |
SST26WF016B |
SST26WF016B |
SST26VF032B |
SST26VF032B |
ADM3260, Hot Swappable, Dual I2C Isolators with Integrated DC-to-DC Converter |
Based on the iCoupler÷œ and isoPower÷œ chip scale transformer technology, the ADM3260 is a hot swappable digital and power isolator with two nonlatching, bidirectional communication channels, supporting a complete isolated I2C interface, and an integrated isolated dc-to-dc converter, supporting up to 150 mW of isolated power conversion.
iCoupler is a chip |
AD9142A, Dual, 16-Bit, 1600 MSPS, TxDAC+ Digital-to-Analog Converter |
The AD9142A is a dual, 16-bit, high dynamic range digital-to-analog converter (DAC) that provides a sample rate of 1600 MSPS, permitting a multicarrier generation up to the Nyquist frequency. The AD9142A TxDAC+÷œ includes features optimized for direct conversion transmit applications, including complex digital modulation, input signal power detection, and gain, phase, and offset compensation. The D |
SST25VF080B |
SST25VF080B |
23LC1024 |
23LC1024 |
SST25VF040B |
SST25VF040B |
MTCH6301 |
MTCH6301 |
SST11LF04 |
SST11LF04 |
SST11LF04 |
SST11LF04 |
SST12CP11C |
SST12CP11C |
SST12CP11C |
SST12CP11C |
AD8418A, Bidirectional, Zero-Drift, Current Sense Amplifier |
The AD8418A is a high voltage, high resolution current shunt amplifier. It features an initial gain of 20 V/V, with a maximum ÷.0.2% gain error over the entire temperature range. The buffered output voltage directly interfaces with any typical converter. The AD8418A offers excellent input common-mode rejection from ×..2 V to +70 V. The AD8418A performs bidirectional current measurements across a shun |
AD8417, Bidirectional, G=60V/V, Zero-Drift Current Sense Amplifier |
The AD8417 is a high voltage, high resolution current shunt amplifier. It features an initial gain of 60 V/V, with a maximum ÷.0.3% gain error over the entire temperature range. The buffered output voltage directly interfaces with any typical converter. The AD8417 offers excellent input common-mode rejection from ×..2 V to +70 V. The AD8417 performs bidirectional current measurements across a shunt r |
HSA2-040SCA/A2324TR |
HSA2-040SCA/A2324TR |
HSA2-040SCA/A2324 |
HSA2-040SCA/A2324 |
MCP1754S |
MCP1754S |
MCP1754 |
MCP1754 |
MCP3913 |
MCP3913 |
MCP3914 |
MCP3914 |
TC4427 |
TC4427 |
MCP14E3 |
MCP14E3 |
MCP1402 |
MCP1402 |
MCP1401 |
MCP1401 |
MCP1402 |
MCP1402 |
MCP1401 |
MCP1401 |
Power Line Carrier Modem |
NCN49599 : Power Line Carrier Modem - Dual 4800 Baud S-FSK Channels
- Compliant with CENELEC EN 50065-1
- Operates at 50 Hz and 60 Hz
|
MCP1703A |
MCP1703A |
1 A, 1% Precision Very Low Dropout Voltage Regulator with Enable |
NCP706 : 1 A, 1% Precision Very Low Dropout Voltage Regulator with Enable - Operating input voltage range of 2.4 to 5.5 V
- ÷. 1% Accuracy Over All Load/Line/Temperature
- Qualcomm×..s MSM8974 Reference Design Bhelper LDO
|
SST12LF09 |
SST12LF09 |
1.5 A & 2 A Ultra-Small Controlled Load Switch with Auto-Discharge Path |
NCP432 NCP433 NCP434 NCP435 : 1.5 A & 2 A Ultra-Small Controlled Load Switch with Auto-Discharge Path - 1 V ×.. 3.6 V operating range
- Output Auto-discharge (NCP433, NCP435)
- Quiescent current of 1 uA
|
Power MOSFET, Single N-CH 30V SO8FL |
NTMFS4C35N : Power MOSFET, Single N-CH 30V SO8FL - LOW RDS(ON) improves system efficiency
- LOW Qg and Qgd improves switching performance
- SO8FL package helps to reduce thermal resistance
|
Dual N-Channel Power MOSFETs |
NVMFD5483NL NVMFD5485NL NVMFD5489NL : Dual N-Channel Power MOSFETs - 60 V with 36 m×.., 44 m×.., and 65 m×.. available
- SO-8 Flat Lead Dual package
- AEC-Q101 Qualified
|
Deca Half-Bridge Driver |
NCV7720 : Deca Half-Bridge Driver - High side and low side drivers connected in half-bridge configuration
- Operates in forward, reverse, brake, and high impedance states
- Independent controls and diagnostics
|
DSN2 0603 Schottky Diode 40 V 2 A |
NSR20F40NX : DSN2 0603 Schottky Diode 40 V 2 A - Very Low Forward Voltage Drop 550 mV @ 2.0 A
- Low Reverse Current 15 A @ 10 V VR
- Power Dissipation of 665 mW with Minimum Trace
|
RE46C101 |
RE46C101 |
ADP1190A, Integrated 500 mA Load Switch with Quad Signal Switch |
The ADP1190A is an integrated high-side load switch with four signal switches designed for operation from 1.4 V to 3.6 V. This load switch provides power domain isolation for extended power battery life. The load switch is a low on-resistance P-channel MOSFET that supports up to 500 mA of continuous load current and minimizes power loss. Integrated with the load switch are four normally open, 3 ï¿ |
DDR Termination Regulators |
NCP51190 NCP51198 NCP51199 NCP51510 : DDR Termination Regulators - Available in 1.5 A, 2 A, 3 A Sink/Source Current
- Available in DFN8 and SOIC8-NB packages
- Compatible with DDR I/II/III/IV
|
X2 Capacitor Discharger |
NCP4810 : X2 Capacitor Discharger - Build-in 700V MOSFET
- Minimum Discharge Capability 0.85 mA
- Self Consumption Below 11 mW @ 700 V
|
Controller, Fixed Frequency, Current Mode, for Flyback Converters |
NCP1247 : Controller, Fixed Frequency, Current Mode, for Flyback Converters - Frequency foldback and skip mode
- High-voltage startup with dynamic self supply
- Adjustable overpower protection
|
Dual SPDT Analog Switch with Negative Swing |
NLAS2750 : Dual SPDT Analog Switch with Negative Swing - Capable to Switch Negative Swing Audio Signals Without Requiring a DC Blocking Capacitor
- Low On×..resistance (RON)
- Low Power Consumption (ICC ×.Ÿ 250 nA)
|
TC4426 |
TC4426 |
TC4428 |
TC4428 |
High Speed, Low Power CAN Transceiver |
NCV7342 : High Speed, Low Power CAN Transceiver - Compatible with the ISO 11898×..2, ISO 11898×..5 standards
- Excellent EMC performance
- Excellent ESD performance
|
Clamp 15 FlexRay×.¾ Transceiver |
NCV7383 : Clamp 15 FlexRay×.¾ Transceiver - Compliant with FlexRay Electrical Physical Layer Specification Rev 3.0.1
- Excellent EMC performance
- Excellent ESD performance
|
3.3 V/ 2.5 V, 1-TO-5 DIFFERENTIAL LVPECL FANOUT BUFFER |
NB3L853141 : 3.3 V/ 2.5 V, 1-TO-5 DIFFERENTIAL LVPECL FANOUT BUFFER - Maximum Operating Frequency: 700 MHz
- CLK1 accepts LVCMOS/LVTTL, and CLK0 accepts differential LVPECL, LVDS, HCSL, LVHSTL, SSTL, LVCMOS
- Additive jitter as low as 50 fs
|
3.3 V/ 2.5 V/ 1.8 V, 1-TO-12 LVCMOS/LVTTL FANOUT BUFFER |
NB3V8312C : 3.3 V/ 2.5 V/ 1.8 V, 1-TO-12 LVCMOS/LVTTL FANOUT BUFFER - Maximum Operating Frequency: 250 MH
- Accepts LVCMOS, LVTTL Clock Inputs
- Additive jitter as low as 20 fs
|
Operational Amplifier, Rail-to-Rail Output, 1.7V supply, low power |
NCS2003 : Operational Amplifier, Rail-to-Rail Output, 1.7V supply, low power - 7 MHz Gain Bandwidth
- Rail to Rail Output
- Low input offset voltage & noise
|
2.1 MHz Low Voltage Dual Output Buck Converter |
NCV896530 : 2.1 MHz Low Voltage Dual Output Buck Converter - 2.1 MHz Switching Frequency, 180÷. Out×..of×..Phase
- Sources up to 1600 mA Total and 1 A Per Channel
- Adjustable Output Voltage from 0.9 V to 3.3 V
|
SST26VF064B |
SST26VF064B |
MCP14E4 |
MCP14E4 |
MCP14E5 |
MCP14E5 |
MRF89XAM9A |
MRF89XAM9A |
AD8418, Bidirectional, Zero-Drift, Current Sense Amplifier |
The AD8418 is a high voltage, high resolution current shunt amplifier. It features an initial gain of 20 V/V, with a maximum ÷.0.15% gain error over the entire temperature range. The buffered output voltage directly interfaces with any typical converter. The AD8418 offers excellent input common-mode rejection from ×..2 V to +70 V. The AD8418 performs bidirectional current measurements across a shunt |
ADG5419, High Voltage Latch-Up Proof, Single SPDT Switch |
The ADG5419 is a monolithic industrial CMOS analog switch containing a latch-up immune single-pole/double-throw (SPDT) switch. An EN input on the LFCSP package is used to enable or disable the device. When disabled, all channels are switched off.
Each switch conducts equally well in both directions when on, and each switch has an input signal range that extends to the power supplies. In the |
SST12CP12 |
SST12CP12 |
Quad LIN Transceiver |
NCV7424 : Quad LIN Transceiver - Compliant with LIN2.x, Backwards Compatible to Version 1.3 and J2602
- Transmission Rate 1 kbps to 20 kbps
- Contains 4 LIN transceivers in one package
|
RNCABLES |
RNCABLES |
MCP6482 |
MCP6482 |
ADG5401, High Voltage Latch-Up Proof, Single SPST Switch |
The ADG5401 is a monolithic industrial CMOS analog switch containing a latch-up immune single-pole/single-throw (SPST) switch. The switch conducts equally well in both directions when on, and has an input signal range that extends to the power supplies. In the off condition, signal levels up to the supplies are blocked.
The ultralow on resistance and on-resistance flatness of these switche |
RNANT |
RNANT |
ADV7282, 10-Bit, 4ç. Oversampled SDTV Video Decoder with Differential Inputs and Deinterlacer |
The ADV7282-M is a versatile one-chip, multiformat video decoder. The ADV7282-M automatically detects standard analog baseband video signals compatible with worldwide NTSC, PAL, and SECAM standards in the form of composite, S-Video, and component video. The ADV7282-M converts these signals into an 8-bit YCrCb 4:2:2 video data stream that is output over a mobile industry processor interface (MIPI÷œ) |
MCP1755 |
MCP1755 |
ADSP-CM402F, ARM Cortex M4 Mixed-Signal Control Processor with Precision 16 bit ADCs in 14x14mm 120 lead LQFP |
The ADSP-CM402F Mixed-Signal Control Processor integrates dual precision 16 bit ADCs and an ARM÷œ Cortex-M4TM processor core with floating-point unit operating at frequencies up to 240 MHz and integrating up to 384KB of SRAM memory, up to 2M byte of flash memory, accelerators and peripherals optimized for photo-voltaic (PV) inverter control, motor control and other embedded c |
ADSP-CM408F, ARM Cortex M4 Mixed-Signal Control Processor with High Precision 16 bit ADCs in 24x24mm 176 lead LQFP |
The ADSP-CM408F Mixed-Signal Control Processor integrates dual high precision 16 bit ADCs and an ARM÷œ Cortex-M4TM processor core with floating-point unit operating at 240 MHz core clock frequency and integrating 384KB of SRAM memory, 2M byte of flash memory, and accelerators and peripherals optimized for motor control, photo-voltaic (PV) inverter control and other embedded contro |
ADSP-CM407F, ARM Cortex M4 Mixed-Signal Control Processor with Precision 16 bit ADCs in 24x24mm 176 lead LQFP |
The ADSP-CM407F Mixed-Signal Control Processor integrates dual precision 16 bit ADCs and an ARM÷œ Cortex-M4TM processor core with floating-point unit operating at 240 MHz core clock frequency and integrating 384KB of SRAM memory, 2M byte of flash memory, and accelerators and peripherals optimized for motor control, photo-voltaic (PV) inverter control and other embedded control |
ADSP-CM403F, ARM Cortex M4 Mixed-Signal Control Processor with High Precision 16 bit ADCs in 14x14mm 120 lead LQFP |
The ADSP-CM403F Mixed-Signal Control Processor integrates dual high precision 16 bit ADCs and an ARM÷œ Cortex-M4TM processor core with floating-point unit operating at frequencies up to 240 MHz and integrating up to 384KB of SRAM memory, up to 2M byte of flash memory, accelerators and peripherals optimized for photo-voltaic (PV) inverter control, motor control and other embedd |
MRF24WG0MB |
MRF24WG0MB |
MRF24WB0MB |
MRF24WB0MB |
MRF24WB0MA |
MRF24WB0MA |
Synchronous Buck Converter, Processor Supply, I2C Programming, Transient Load Helper, 4.0 A |
NCP6335 : Synchronous Buck Converter, Processor Supply, I2C Programming, Transient Load Helper, 4.0 A - 2.3 V to 5.5 V Input Voltage Range
- 3 MHz Switching Frequency
- DVS support through I2C and VSEL pin
|
Load Switch, Very Low Ron, with Low Vin, 2.0 A |
NCP439 : Load Switch, Very Low Ron, with Low Vin, 2.0 A - 1.0 V - 3.6 V operating range
- DC current up to 2 A
- 37 mOhms RDSON at 1.8 V
|
Audio Amplifier, NOCAP, LongPlay, Headphone |
NCP2817 : Audio Amplifier, NOCAP, LongPlay, Headphone - No output capacitor
- Pop and click noise suppression
- Long play architecture
|
ADV7280, 10-Bit, 4ç. Oversampled SDTV Video Decoder with Deinterlacer |
The ADV7280/ADV7280-M are versatile one-chip, multiformat video decoders. The ADV7280/ADV7280-M automatically detect standard analog baseband video signals compatible with worldwide NTSC, PAL, and SECAM standards in the form of composite, S-Video, and component video.
The ADV7280 converts the analog video signals into a 4:2:2 component video data stream that is compatible with the 8-bit ITU |
ADV7281, 10-Bit, 4ç. Oversampled SDTV Video Decoder Decoder with Differential Inputs |
The ADV7281-M/ADV7281-MA are versatile one-chip, multiformat video decoders. The ADV7281-M/ADV7281-MA automatically detect standard analog baseband video signals compatible with worldwide NTSC, PAL, and SECAM standards in the form of composite, S-Video, and component video. The ADV7281-M/ADV7281-MA convert these signals into a mobile industry processor interface (MIPI÷œ) CSI-2 (8-bit YUV) output vi |
MRF24WG0MA |
MRF24WG0MA |
MRF24J40MA |
MRF24J40MA |
MCP19110 |
MCP19110 |
TC2014 |
TC2014 |
ADA4700-1, 100 V, Precision Operational Amplifier |
The ADA4700-1 is a high voltage, precision, single-channel operational amplifier with a wide operating voltage range (÷.5 V to ÷.50 V) and relatively high output current drive. Its advanced design combines low power (170 mW for a ÷.50 V supply), high bandwidth (3.5 MHz), and a high slew rate with unity-gain stability and phase inversion free performance. The ability to swing near rail to rail at the |
ADAU1966A, 16-Channel, High Performance, 192 kHz, 24-Bit DAC |
The ADAU1966A is a high performance, single-chip digital-to-analog converter (DAC) that provides 16 DACs with differential or single-ended outputs using the Analog Devices, Inc., patented multibit sigma-delta (ï.-ï.) architecture. A serial peripheral interface (SPI)/I2C port is included, allowing a microcontroller to adjust volume and many other parameters. The ADAU1966A operates from 2.5 |
MCP16252 |
MCP16252 |
MCP16251 |
MCP16251 |
MCP1643 |
MCP1643 |
23LCV1024 |
23LCV1024 |
23LCV512 |
23LCV512 |
23A512 |
23A512 |
23LC512 |
23LC512 |
23A1024 |
23A1024 |
24AA256UID |
24AA256UID |
ADL5610, 30 MHz to 6 GHz RF/IF Gain Block |
The ADL5610 is a single-ended RF/IF gain block amplifier that provides broadband operation from 30 MHz to 6 GHz. The ADL5610 provides a low noise figure of 2.2 dB with a very high OIP3 of more than 38 dBm simultaneously, which delivers a high dynamic range.
The ADL5610 provides a gain of 18 dB, which is stable over frequency, temperature, and power supply, and from device to device. The amplif |
ADL5611, 30 MHz to 6 GHz RF/IF Gain Block |
The ADL5611 is a single-ended RF/IF gain block amplifier that provides broadband operation from 30 MHz to 6 GHz. The ADL5611 provides a low noise figure of 2.1 dB with a very high OIP3 of 40.0 dBm simultaneously, which delivers a high dynamic range.
The ADL5611 provides a gain of 22.2 dB that is stable over frequency, temperature, and power supply, and from device to device. The amplifier is o |
ADA4096S, Aerospace Dual, 30V, Micropower, Overvoltage Protection, Rail-to-Rail Input/Output, Operational Amplifier |
The ADA4096S dual operational amplifier features micropower operation and rail-to-rail input and output ranges. The extremely low power requirements and guaranteed operation from 3 V to 30 V make these amplifiers perfectly suited to monitor battery usage and to control battery charging. Their dynamic performance, including 27 nV/×..Hz voltage noise density, recommends them for battery-powered aud |
AD7960, 18-Bit, 5 MSPS PULSAR® Differential ADC |
The AD7960 is an 18-bit, 5 MSPS charge redistribution successive approximation (SAR), analog-to-digital converter (ADC). The SAR architecture allows unmatched performance both in
noise and in linearity. The AD7960 contains a low power, high speed, 18-bit sampling ADC, an internal conversion clock and an internal reference buffer. On the CNV÷. edge, the AD7960
samples the voltage difference between |
AD7961, 16-Bit, 5 MSPS PULSAR® Differential ADC |
The AD7961 is a 16-bit, 5 MSPS charge redistribution successive approximation (SAR), analog-to-digital converter (ADC). The SAR architecture allows unmatched performance both in noise
and in linearity. The AD7961 contains a low power, high speed, 16-bit sampling ADC, an internal conversion clock and an internal reference buffer. On the CNV edge, the AD7961
samples the voltage difference between th |
ADIS16229, Digital MEMS Vibration Sensor with Embedded RF Transceiver |
The ADIS16000 and ADIS16229 enable the creation of a simple wireless vibration sensing network for a wide variety of industrial equipment applications. The ADIS16000 provides the gateway function, which manages the network, while the ADIS16229 provides the remote sensing function.
The ADIS16229 iSensor÷œ is a complete wireless vibration |
ADIS16000, Wireless Gateway Node for Remote Sensor |
The ADIS16000 and ADIS16229 enable the creation of a simple wireless vibration sensing network for a wide variety of industrial equipment applications. The ADIS16000 provides the gateway function, which manages the network, while the ADIS16229 provides the remote sensing function.
The ADIS16229 iSensor÷œ is a complete wireless vibration |
ADXL375, 3-Axis, ÷.200 g Digital MEMS Accelerometer |
The ADXL375 is a small, thin, 3-axis MEMS accelerometer that provides low power consumption and high resolution measurement up to ÷.200 g. The digital output data is formatted as 16-bit, twos complement data and is accessible through a SPI (3- or 4-wire) or I2C digital interface.
An integrated memory management system with a 32-level first in, first out (FIFO) buffer can |
ADMP522, Ultralow Noise, Low Sensitivity Tolerance PDM Digital Microphone |
The ADMP522 is a high performance, ultralow noise, low power, digital output, bottom-ported omnidirectional MEMS microphone. The ADMP522 has a sensitivity tolerance of ÷.1 dB from part to part, making it ideal for microphone array and beamforming applications.
The ADMP522 consists of a MEMS microphone element and an impedance converter amplifier followed by a fourth-order ï. ï. modulator. The |
ADN2915, Continuous Rate 6.5 Mbps to 11.3 Gbps Clock and Data Recovery IC with Integrated Limiting Amp/EQ |
The ADN2915 provides the receiver functions of quantization, signal level detect, and clock and data recovery for continuous data rates from 6.5 Mbps to 11.3 Gbps. The ADN2915 automatically locks to all data rates without the need for an external reference clock or programming. ADN2915 jitter performance exceeds all jitter specifications required by SONET/SDH, including jitter transfer, jitter gen |
ADMP621, Wide Dynamic Range Microphone with PDM Digital Output |
The ADMP621 is a high sound pressure level (SPL), ultralow noise, low power, digital output, bottom ported omnidirectional MEMS microphone. This microphone clips at 133 dB SPL, which is useful for clearly capturing audio in loud environments. The ADMP621 consists of a MEMS microphone element and an impedance converter amplifier followed by a fourth-order ï.-ï. modulator. The digital interface allows |
AD8634, High Temperature, Low Noise, RRO Dual Operational Amplifier |
The AD8634 is a precision, 9.7 MHz bandwidth, dual amplifier that features rail-to-rail outputs. The AD8634 is guaranteed to operate from 3 V to 30 V (or from ÷.1.5 V to ÷.15 V) and at very high temperatures.
The AD8634 is well suited for applications that require both ac and dc precision performance. The combination of wide bandwidth, low noise, and precision makes the AD8634 useful in a wid |
AD7228A, LC2MOS Octal 8-Bit DAC |
The AD7228A contains eight 8-bit voltage-mode digital-to-analog converters, with output buffer amplifiers and interface logic on a single monolithic chip. No external trims are required to achieve full specified performance for the part.
Separate on-chip latches are provided for each of the eight D/A converters. Data is transferred into the data latches through a common 8-bit TTL/CMOS (5 V) |
MCP19035 |
MCP19035 |
ADP1051, Digital Controller for Isolated Power Supply with PMBus Interface |
The ADP1051 is an advanced digital controller with a PMBusTM interface targeting high density, high efficiency dc-to-dc power conversion. This controller implements voltage mode control with high speed, input line feedforward for enhanced transient and improved noise performance. The ADP1051 has six programmable pulse-width modulation (PWM) outputs capable of controlling most high effic |
ADR225, High Temperature, Low Drift, Micropower, 2.5V Reference |
The ADR225 is a precision 2.5 V band gap voltage reference specified for a high temperature operation of 175÷.C and 210÷.C. It uses a micropower core topology and laser trimming of highly stable, thin film resistors to achieve a temperature coefficient of 30 ppm/÷.C (maximum) up to 175÷.C and an initial accuracy of 0.4% (÷.10 mV maximum). A maximum operating current of 50 ï.A and a low dropout voltage a |
ADP7105, 20 V, 500 mA, Low Noise LDO Regulator with Soft Start |
The ADP7105 is a CMOS, low dropout (LDO) linear regulator that operates from 3.3 V to 20 V and provides up to 500 mA of output current. This high input voltage LDO is ideal for regula-tion of high performance analog and mixed-signal circuits operating from 1.22 V to 19 V rails. Using an advanced proprietary architecture, the ADP7105 provides high power supply rejection and low noise, and achieves |
ADP1196, 5 V, 3 A Logic Controlled High-Side or Low-Side Load Switch |
The ADP1196 is a high-side or low-side load switch designed for VIN operation between 0 V and 5.5 V with a VB_EN supply of 1.83 V to 5.5 V. The device contains an internal charge pump that operates from either VIN or VB_EN, whichever is higher, and an ultralow on resistance, N-channel MOSFET. This N-channel MOSFET supports more than 2 A of continuous current at VIN close to 0 V, and, with its ultr |
ADAU1962A, 12-Channel High Performance 192 kHz, 24-Bit DAC |
The ADAU1962A is a high performance, single-chip digital-to-analog converter (DAC) that provides 12 DACs with differential or single-ended outputs using the Analog Devices, Inc., patented multibit ï.-ï. architecture. A serial peripheral interface (SPI)/I2C port is included, allowing a microcontroller to adjust volume and many other parameters. The ADAU1962A operates from 2.5 V digital and |
ADAU1978, Quad Analog-to-Digital Converter (ADC) |
The ADAU1978 incorporates four high performance, analog-to-digital converters (ADCs) with 2 V rms capable ac-coupled inputs. The ADCs use a multibit sigma-delta (ï.-ï.) architecture with continuous time front end for low EMI. An I2C/serial peripheral interface (SPI) control port is included that allows a microcontroller to adjust volume and many other parameters. The ADAU1978 uses only a |
ADP5063, Linear LiFePO4 Battery Charger with Power Path and USB Compatibility |
The ADP5063 charger is fully compliant with USB 3.0 and the USB Battery Charging 1.2 Compliance Plan Specification, and enables charging via the mini USB VBUS pin from a wall charger, car charger, or USB host port.
The ADP5063 operates from a 4 V to 6.7 V input voltage range but is tolerant of voltages up to 20 V, thereby alleviating concerns about USB bus spikes during disconnection or con |
ADMP803, Hearing Aid Omnidirectional MEMS Microphone |
The ADMP803 is a high performance MEMS microphone with a unique combination of very low self-noise, tiny package volume (7.3 mm3), and low power consumption. Running from a 1 V supply, the ADMP803 consumes only 17 ÷.A of current while providing an equivalent input noise of 27 dBA SPL with an analog 4.5 kï¿ impedance output. These features, combined with the benefits of MEMS technology, re |
ADMP510, RF-Hardened Ultralow Noise Microphone with Bottom Port and Analog Output |
The ADMP510 is an RF-hardened, high performance, very low noise, low power, analog output, bottom-ported omnidirectional MEMS microphone. The ADMP510 consists of a MEMS microphone element, an impedance converter and an output amplifier. The ADMP510 sensitivity specification makes it an excellent choice for both near field and far field applications. The ADMP510 is pin-compatible with the |
MCP2510 |
MCP2510 |
AD7294-2, 12-Bit Monitor and Control System with Multichannel ADC, DACs, Temperature Sensor, and Current Sense |
The AD7294-2 contains all the functions that are required for general-purpose monitoring and control of current, voltage, and temperature, integrated into a single-chip solution. The part includes low voltage (÷.200 mV) analog input sense amplifiers for current monitoring across shunt resistors, temperature sense inputs, and four uncommitted analog input channels multiplexed into a SAR analog-to-di |
ADUM4190, 5kV rms Isolated Error Amplifier |
The ADuM4190 is an isolated error amplifier based on Analog Devices, Inc., iCoupler÷œ technology. The ADuM4190 is ideal for linear feedback power supplies. The primary side controllers of the ADuM4190 enable improvements in transient response, power density, and stability as compared to commonly used optocoupler and shunt regulator solutions.
Unlike optocoupler-based solutions, whic |
ADM7160, Ultralow Noise, 200 mA, Linear Regulator |
The ADM7160 is an ultralow noise, low dropout linear regulator that operates from 2.2 V to 5.5 V and provides up to 200 mA of output current. The low 150 mV dropout voltage at 200 mA load improves efficiency and allows operation over a wide input voltage range.
Using an innovative circuit topology, the ADM7160 achieves ultralow noise performance without the need for a bypass capacitor, maki |
SST39LF402C |
SST39LF402C |
SST39LF401C |
SST39LF401C |
SST39VF402C |
SST39VF402C |
MCP3909 |
MCP3909 |
MCP3905A |
MCP3905A |
MCP3906A |
MCP3906A |
RE46C311 |
RE46C311 |
RE46C312 |
RE46C312 |
MCP98244 |
MCP98244 |
MCP25020 |
MCP25020 |
Common Mode Filter |
EMI2180 : Common Mode Filter - Tuned to MHL speed
- Integrated ESD protection to IEC61000×..4×..2 Level 4, ÷.8 kV Contact Discharge
- Low profile, 1.6 x 2.0 mm WDFN-6 package
|
Compact SIM and Smart Card Interface |
NCN8026 : Compact SIM and Smart Card Interface - Fully compatible with ISO7816-3, EMV4.3, NDS, and related standards
- Handles Class A, B and C Smart Cards
- Chip Select function for dual card operation
|
HCD2-00ESIJ/D2C60TR |
HCD2-00ESIJ/D2C60TR |
HCD2-00ESIJ/D2C60 |
HCD2-00ESIJ/D2C60 |
Passive Tunable Integrated Circuits (PTIC) |
TCP-3012H TCP-3027H TCP-3033H TCP-3039H TCP-3047H TCP-3056H TCP-3068H TCP-3082H : Passive Tunable Integrated Circuits (PTIC) - Typical capacitance 1.2 ×.. 8.2 pF
- 4:1 tuning range and high Quality Factor (Q) for low-loss performance
- Usable frequency range from 700 MHz to 2.6 GHz
|
IGBT 600 V, 30A-50 A, for Motor drives Inverters and PFC |
NGTB30N60FWG NGTB50N60FWG NGTG30N60FWG NGTG50N60FWG : IGBT 600 V, 30A-50 A, for Motor drives Inverters and PFC - Low Saturation Voltage using Trench with Field Stop Technology
- Low Switching Loss Reduces System Power Dissipation
- 5÷.s Short Circuit Capability
|
IGBT 600 V 30A-40A, for Induction Heating |
NGTB30N60IHLWG NGTB40N60IHLWG : IGBT 600 V 30A-40A, for Induction Heating - Low Saturation Voltage using Trench with Fieldstop Technology
- Low Switching Loss Reduces System Power Dissipation
|
IGBT 600 V, 30 A-50A, for Solar, UPS, Welding and PFC |
NGTB30N60FLWG NGTB50N60FLWG NGTG30N60FLWG NGTG50N60FLWG : IGBT 600 V, 30 A-50A, for Solar, UPS, Welding and PFC - Low Saturation Voltage using Trench with Field Stop Technology
- Low Switching Loss Reduces System Power Dissipation
- 5÷.s Short Circuit Capability
|
50 V, 150 mA +/- 10%, Adjustable Constant Current Regulator & LED Driver, DPAK |
NSI50150AD : 50 V, 150 mA +/- 10%, Adjustable Constant Current Regulator & LED Driver, DPAK - Adjustable from 150 mA to 350 mA
- SBT (SelfBiased Transistor) Technology
- AEC-Q101 Qualified and PPAP Capable, UL94V0 Certified
|
Automotive Start-Stop Boost Controller |
NCV8876 : Automotive Start-Stop Boost Controller - Automatic boost in low battery conditions
- Wide input voltage range 2 V to 44 V
- Programmable output voltage and wide range of inductor values possible
|
SPI Micro-Stepping Motor Driver for Bipolar Stepper Motors |
NCV70501 : SPI Micro-Stepping Motor Driver for Bipolar Stepper Motors - Programmable peak current up to 300 mA with integrated current translator
- Integrated current sensing and regulation
- Sensorless stall detection
|
MCP6484 |
MCP6484 |
MCP1404 |
MCP1404 |
MCP1405 |
MCP1405 |
MCP1403 |
MCP1403 |
TC4429 |
TC4429 |
TC4420 |
TC4420 |
TC4424 |
TC4424 |
TC1413N |
TC1413N |
TC4425 |
TC4425 |
TC1413 |
TC1413 |
TC1412N |
TC1412N |
TC1412 |
TC1412 |
TC427 |
TC427 |
TC1411N |
TC1411N |
Secondary Side Constant Voltage / Constant Current (CV/CC) Controller |
NCP4328 : Secondary Side Constant Voltage / Constant Current (CV/CC) Controller - Operating input voltage range of 2.5 V to 36.0 V
- Very tight 0.5 % Reference Voltage Accuracy
- Supply current less than 100 ÷.A
|
200mA Very Low Noise, Low Dropout Linear Voltage Regulator |
NCP707 : 200mA Very Low Noise, Low Dropout Linear Voltage Regulator - Very small 1x1 xDFN package
- Very low quiescent current of typ. 25 ÷.A
- High PSRR of 70 dB at 1 kHz
|
500 mA, Ultra-Low Iq, Ultra-Low Noise LDO Voltage Regulator |
NCP705 : 500 mA, Ultra-Low Iq, Ultra-Low Noise LDO Voltage Regulator - Ultra-low quiescent current of typ. 13 uA
- Ultra-low noise of 12 uVrms from 100 Hz to 100kHz
- High PSRR of 71 dB at 1 kHz
|
GFCI Controllers |
NCS37010 NCS37012 : GFCI Controllers - UL943 compatible with a single current transformer
- Reduction in the number of external passive components
- NCS37010 has self-test for breaker panel; NCS37012 has self-test for wall socket
|
AD9361, RF Agile Transceiver |
The AD9361 is a high performance, highly integrated RF Agile Transceiver×.¾. Its programmability and wideband capability make it ideal for a broad range of transceiver applications. The device combines an RF front end with a flexible mixed-signal baseband section and integrated frequency synthesizers, simplifying design-in by providing a configurable digital interface to a processor. The AD9361 ope |
23 A ecoSWITCH×.¾ Integrated Load Switch |
NCP45560 : 23 A ecoSWITCH×.¾ Integrated Load Switch - Integrated N-Channel MOSFET, control functionality, protection, and monitoring
- RON typical = 2.4 mï¿ @ VIN = 1.8 V
- ISTBY typical = 0.65 ÷.A
|
Dual Bilateral Analog Switch / Digital Multiplexer |
NLX2G66 : Dual Bilateral Analog Switch / Digital Multiplexer - Single pole, single throw (SPST)
- Rail×..to×..rail input/output
- RON <5 ï¿ typical @ VCC = 4.5 V
|
LIN/CAN System Basis Chip |
NCV7462 : LIN/CAN System Basis Chip - LIN and CAN transceivers
- Two voltage regulators (5V/250mA; 5V/50mA)
- High-side and low-side switches/relay drivers
|
11AA02UID |
11AA02UID |
11AA02E64 |
11AA02E64 |
TC520A |
TC520A |
ESD Protection for FlexRay Transceiver |
NUP2115L : ESD Protection for FlexRay Transceiver - Low capacitance (10pF Max)
- Very tight capacitance matching (0.26% nominal)
- Low Clamping Voltage
|
24AA025UID |
24AA025UID |
24AA02UID |
24AA02UID |
25AA02UID |
25AA02UID |
24AA025E64 |
24AA025E64 |
25AA02E64 |
25AA02E64 |
24AA02E64 |
24AA02E64 |
MCP41HV31 |
MCP41HV31 |
MCP41HV51 |
MCP41HV51 |
MRF89XAM8A |
MRF89XAM8A |
RN174 |
RN174 |
ADF4159, Direct Modulation/Fast Waveform Generating, 13 GHz, Fractional-N Frequency Synthesizer |
The ADF4159 is a 13 GHz, fractional-N frequency synthesizer with modulation and both fast and slow waveform generation capability. The part uses a 25-bit fixed modulus, allowing subhertz frequency resolution.
The ADF4159 consists of a low noise digital phase frequency detector (PFD), a precision charge pump, and a programmable reference divider. The ï.-ï.-based fractional interpolator allows pro |
ADF4108S, Aerospace PLL Frequency Synthesizer |
The ADF4108 frequency synthesizer can be used to implement local oscillators in the up-conversion and down-conversion sections of wireless receivers and transmitters. It consists of a low-noise digital PFD (phase frequency detector), a precision charge pump, a programmable reference divider, programmable A and B counters, and a dual-modulus prescaler (P/P + 1). The A (6-bit) and B (13-bit) coun |
24AA025E48 |
24AA025E48 |
11AA02E48 |
11AA02E48 |
25AA02E48 |
25AA02E48 |
24AA02E48 |
24AA02E48 |
RN134 |
RN134 |
RN121 |
RN121 |
SST12CP11 |
SST12CP11 |
MCP2025 |
MCP2025 |
ADV7682, APIX2 Transmitter with Dual Port HDMI and HDCP Support |
The ADV7682 is a high quality, dual input HDMI÷œ and single input ITU-R BT.656 receiver with an APIX÷œ2 transmitter, compatible with APIX÷œ and APIX2 receiver technology from Inova Semiconductors. It incorporates dual port HDMI receivers that support all mandatory 3D TV formats defined in HDMI. The ITU-R BT.656 8-bit receiver supports resolutions up to 720p when using a 148.5 MHz input clock. A stand |
ADP5050, 5-Channel Integrated Power Solution with Quad Buck Regulators, 200 mA LDO Regulator and I2C interface |
The ADP5050 combines four high performance buck regulators and one 200 mA low dropout (LDO) regulator in a 48-lead LFCSP package that meets demanding performance and board space requirements. The device enables direct connection to high input voltages up to 15 V with no preregulators.
Channel 1 and Channel 2 integrate high-side power MOSFETs and low-side MOSFET drivers. External NFETs can b |
ADP5052, 5-Channel Integrated Power Solution with Quad Buck Regulators and 200 mA LDO Regulator |
The ADP5052 combines four high performance buck regulators and one 200 mA low dropout (LDO) regulator in a 48-lead LFCSP package that meets demanding performance and board space requirements. The device enables direct connection to high input voltages up to 15 V with no preregulators.
Channel 1 and Channel 2 integrate high-side power MOSFETs and low-side MOSFET drivers. External NFETs can b |
ADV7680, APIX2 Transmitter with HDMI and HDCP Support |
The ADV7680 is a high quality, single input HDMI÷œ and single input ITU-R BT.656 receiver with an APIX÷œ2 transmitter, compati-ble with APIX2 receiver technology from Inova Semiconductors. It incorporates a single port HDMI receiver that supports all mandatory and many optional 3D TV formats defined in the HDMI standard. The ITU-R BT.656 8-bit receiver supports resolutions up to 720p when using a 14 |
AD8422, High Performance, Low Power, Rail-to-Rail Precision Instrumentation Amplifier |
The AD8422 is a high precision, low power, low noise, rail-to-rail
instrumentation amplifier that delivers the best performance
per unit microampere in the industry. The AD8422 processes
signals with ultralow distortion performance that is load
independent over its full output range.
The AD8422 is the third generation development of the industry standard |
MRF24XA |
MRF24XA |
AD8479, Very High Common-Mode Voltage Precision Difference Amplifier |
The AD8479 is a difference amplifier with a very high input
common-mode voltage range. The AD8479 is a precision device
that allows the user to accurately measure differential signals in
the presence of high common-mode voltages up to ÷.600 V.
The AD8479 can replace costly isolation amplifiers in applications
that do not require galvanic isolation. The device operates over
a ÷.600 V common-mode volt |
PIC16F1788 |
PIC16F1788 |
PIC16F1789 |
PIC16F1789 |
AD8338, Low Power, 18 MHz Variable Gain Amplifier |
The AD8338 is a variable gain amplifier (VGA) for applications that require a fully differential signal path, low power, low noise, and a well-defined gain over frequencies from LF to 18 MHz. The device can also operate using single-ended sources if required.
The basic gain function is linear-in-dB with a nominal gain range of 0 dB to 80 dB; the nominal gain range corresponds to a control v |
AD6677, 80 MHz Bandwidth, IF Receiver |
The AD6677 is an 11-bit, 250 MSPS, intermediate frequency
(IF) receiver specifically designed to support multi-antenna
systems in telecommunication applications where high dynamic
range performance, low power, and small size are desired.
The device consists of a high performance analog-to-digital
converter (ADC) and a noise shaping requantizer (NSR) digital
block. The ADC consists of a mult |
AD9683, 14-Bit, 170 MSPS/250 MSPS, JESD204B, Analog-to-Digital Converter |
The AD9683 is a 14-bit ADC with sampling speeds of up to
250 MSPS. The AD9683 is designed to support communications
applications where low cost, small size, wide bandwidth, and
versatility are desired.
The ADC core features a multistage, differential pipelined
architecture with integrated output error correction logic. The
ADC core features wide bandwidth inputs supporting a variety
of user |
ADP7182, -30V, 200mA, Low Noise, Linear Regulator |
The ADP7182 is a CMOS, low dropout (LDO) linear regulator that operates from ×..2.7 V to ×..28 V and provides up to ×..200 mA of output current. This high input voltage LDO is ideal for regulation of high performance analog and mixed signal circuits operating from ×..27 V down to ×..1.22 V rails. Using an advanced proprietary architecture, it provides high power supply rejection and low noise, and achieves |
PIC32MX795F512L |
PIC32MX795F512L |
PTIC Controller |
TCC-103 : PTIC Controller - Three independent high-voltage outputs to control up to three tunable capacitors
- Compliant with timing requirements of cellular and other wireless systems
- Auto-detection of SPI or MIPI RFFE interfaces
|
4-Bit Dual-Supply Non-Inverting Level Translator |
NLSV4T3144 : 4-Bit Dual-Supply Non-Inverting Level Translator - Wide VCCA and VCCB Operating Range: 0.9 V to 4.5 V
- Inputs and Outputs have OVT Protection to 4.5 V
- ESD Protection HBM (Human Body Model) > 8000 V
|
GFCI Controller |
NCS37000 : GFCI Controller - UL943 compatible with a single current transformer
- Reduction in the number of external passive components
- Core saturation detection and current limit
|
Single N-Channel Small Signal MOSFET |
NTNS3164NZ : Single N-Channel Small Signal MOSFET - VBR(DSS) Min of 20 V
- RDS(ON) Max of 1.5 ï¿ @ VGS = 4.5 V
- SOT-88s package, 1.0 x 0.6 x 0.4 mm
|
Dual N-Channel Automotive MOSFET |
NVMFD5852NL NVMFD5853NL NVMFD5873NL : Dual N-Channel Automotive MOSFET - AEC-Q101 Qualified
- 40 V and 60 V available
- SO-8 Flat Lead Dual package (5 mm x 6 mm)
|
600 V MOSFETs |
NDT01N60 NDD01N60 : 600 V MOSFETs - Single N-Channel
- RDS(ON) = 8.5 ï¿ Max at VGS = 10 V
- DPAK, IPAK, and SOT-223 packages
|
Micro-Packaged 0.60x0.30mm TVS Diodes for ESD Protection |
ESD5481 ESD5482 ESD5484 : Micro-Packaged 0.60x0.30mm TVS Diodes for ESD Protection - Low clamping voltage
- Range of Stand×..off Voltages: from 3.3 V, through 5.0V
- IEC61000×..4×..2 Level 4 ESD Protection ÷.30kV
|
Stepper Motor Bridge Controller |
AMIS-30422 : Stepper Motor Bridge Controller - High current drive (>8 A) through dual H-bridge pre-drivers
- 9 step modes from full step up to 128 micro-steps for smoother motor operation and improved positional accuracy
- Integrated diagnostics and fault management
|
Step Dimmable QR Primary Side Current-Mode Controller for LED Lighting |
NCL30081 : Step Dimmable QR Primary Side Current-Mode Controller for LED Lighting - Primary side sensing eliminates need for optocoupler and secondary control circuitry
- Precise LED current regulation of ÷.1% typical
- Wide Vcc range enables one transformer to be used with >2:1 LED forward voltage range
|
Step Dimmable QR Primary Side Current-Mode Controller with Thermal Foldback for LED Lighting |
NCL30083 : Step Dimmable QR Primary Side Current-Mode Controller with Thermal Foldback for LED Lighting - Primary side sensing eliminates need for optocoupler and secondary control circuitry
- Precise LED current regulation of ÷.1% typical
- Wide Vcc range enables one transformer to be used with >2:1 LED forward voltage range
|
Dimmable QR Primary Side Current-Mode Controller with Thermal Foldback for LED Lighting |
NCL30082 : Dimmable QR Primary Side Current-Mode Controller with Thermal Foldback for LED Lighting - Primary side sensing eliminates need for optocoupler and secondary control circuitry
- Precise LED current regulation of ÷.1% typical
- Analog/digital dimming input for smart lighting applications
|
QR Primary Side Current-Mode Controller for LED Lighting |
NCL30080 : QR Primary Side Current-Mode Controller for LED Lighting - Primary side sensing eliminates need for optocoupler and secondary control circuitry
- Precise LED current regulation of ÷.1% typical
- Wide Vcc range enables one transformer to be used with >2:1 LED forward voltage range
|
PIC32MX534F064L |
PIC32MX534F064L |
PIC32MX764F128L |
PIC32MX764F128L |
PIC32MX764F128H |
PIC32MX764F128H |
PIC32MX664F064L |
PIC32MX664F064L |
PIC32MX664F128H |
PIC32MX664F128H |
PIC32MX664F128L |
PIC32MX664F128L |
PIC32MX664F064H |
PIC32MX664F064H |
PIC32MX564F128H |
PIC32MX564F128H |
PIC32MX564F128L |
PIC32MX564F128L |
PIC32MX564F064H |
PIC32MX564F064H |
PIC32MX564F064L |
PIC32MX564F064L |
PIC32MX534F064H |
PIC32MX534F064H |
SST25WF020A |
SST25WF020A |
PIC16LF1824T39A |
PIC16LF1824T39A |
MCP2035 |
MCP2035 |
PIC32MX330F064L |
PIC32MX330F064L |
PIC32MX330F064H |
PIC32MX330F064H |
ADP196, 5 V, 3 A Logic Controlled High-Side Power Switch |
The ADP196 is a high-side load switch designed for operation
from 1.8 V to 5.5 V. This load switch provides power domain isolation, helping to extend battery operation. The device contains a low on-resistance, N-channel MOSFET that supports more than 3 A of continuous current and minimizes power loss. In addition, RDSON is constant, independent of the VIN voltage. The low 25 ï.A quiescen |
PIC32MX250F128D |
PIC32MX250F128D |
MCP9844 |
MCP9844 |
ADP5586, Keypad Decoder and I/O Port Expander |
The ADP5586 is a 10-input/output port expander with a built-in keypad matrix decoder, programmable logic, reset generator, and pulse generators. Input/output expander ICs are used in portable devices (phones, remote controls, and cameras) and nonportable applications (healthcare, industrial, and instrumentation). I/O expanders can be used to increase the number of I/Os available to a processor or |
RE46C800 |
RE46C800 |
MCP6286 |
MCP6286 |
PIC24F08KM101 |
PIC24F08KM101 |
PIC24F08KM102 |
PIC24F08KM102 |
PIC24F16KM102 |
PIC24F16KM102 |
PIC24F08KM202 |
PIC24F08KM202 |
PIC24F16KM104 |
PIC24F16KM104 |
PIC24F16KM202 |
PIC24F16KM202 |
PIC24F08KM204 |
PIC24F08KM204 |
ADAS3023, 16-Bit 8 Channel Simultaneous Sampling Data Acquisition System |
The ADAS3023 is a complete 16-bit successive approximation based analog-to-digital data acquisition system. This device is capable of simultaneously sampling up to 500 kSPS for two channels, 250 kSPS for four channels, 167 kSPS for six channels, and 125 kSPS for eight channels manufactured on the Analog Devices, Inc., proprietary iCMOS÷œ high voltage industrial process technology.
Th |
PIC24F16KM204 |
PIC24F16KM204 |
MCP2562 |
MCP2562 |
MCP2561 |
MCP2561 |
ADL5906, 10 MHz TO 10 GHz 67 dB TruPwr×.¾ Detector |
The ADL5906 is a true rms responding power detector that has a 67 dB measurement range when driven with a single-ended 50 ï¿ source. The easy to use input makes the ADL5906 frequency versatile by eliminating the need for a balun or any other form of external input tuning for operation up to 10 GHz.
The ADL5906 provides a solution in a variety of high frequency systems requiring an accurate rms |
RN220XP |
RN220XP |
MCP2551 |
MCP2551 |
MCP6421 |
MCP6421 |
AD5535B, 32-Channel, 14-Bit DAC with Full-Scale Output Voltage Programmable from 50 V to 200 V |
The AD5535B is a 32-channel, 14-bit denseDAC÷œ with an on-chip high voltage output amplifier. This device is targeted for optical micro-electromechanical systems. The output voltage range is programmable via the REF_IN pin. The output range is 0 V to 50 V when REF_IN = 1 V, and 0 V to 200 V when REF_IN = 4 V. Each amplifier can source 700 ï.A, which is ideal for the deflection and control o |
23 V Step-Down Switching Regulator |
LV5980MC : 23 V Step-Down Switching Regulator - Integrated P-channel power MOSFET
- Maximum output current of 3 A
- Light load mode current of 63 ÷.A typical
|
ADL5545, 30 MHz to 6 GHz RF/IF Gain Block |
The ADL5545 is a single-ended RF/IF gain block amplifier that provides broadband operation from 30 MHz to 6 GHz. The ADL5545 provides over 36 dBm of OIP3 using only 56 mA from a 5 V supply.
The ADL5545 provides a gain of 24 dB, which is stable over frequency, temperature, power supply, and from device to device. The amplifier is offered in the industry-standard SOT-89 package and is internally |
ADL5544, 30 MHz to 6 GHz RF/IF Gain Block |
The ADL5544 is a single-ended RF/IF gain block amplifier that provides broadband operation from 30 MHz to 6 GHz. The ADL5544 provides over 34 dBm of OIP3 using only 55 mA from a 5 V supply.
The ADL5544 provides a gain of 17 dB, which is stable over frequency, temperature, power supply, and from device to device. The amplifier is offered in the industry-standard SOT-89 package and is internally |
ADP1190, Integrated 500mA Load Switch with Quad Signal Switch |
The ADP1190 is an integrated high-side load switch with 4
signal switches designed for operation from 1.4 V to 3.6 V. This
load switch provides power domain isolation for extended power
battery life. The load switch is a low on-resistance P-channel
MOSFET that supports up to 500 mA of continuous load current
and minimizes power loss. Integrated with the load switch are 4
normally open two Ohm SPST |
PIC12LF1552 |
PIC12LF1552 |
HCC2-009SIJ/C2C5ETR |
HCC2-009SIJ/C2C5ETR |
HCC2-009SIJ/C2C5E |
HCC2-009SIJ/C2C5E |
RNUSB |
RNUSB |
ADP1046A, Digital Controller for Isolated Power Supply Applications |
The ADP1046A is a flexible, digital secondary side controller designed for ac-to-dc and isolated dc-to-dc secondary side
applications. The ADP1046A is pin-compatible with the
ADP1043A and offers several enhancements and new features,
including voltage feedforward and improved loop response to maximize efficiency.
The ADP1046A is optimized for minimal component count,
maximum flexibility, an |
MCP19111 |
MCP19111 |
PIC16F570 |
PIC16F570 |
PIC16F1784 |
PIC16F1784 |
ADD5211, Four-String, White LED Driver for LCD Backlight Applications |
The ADD5211 is a 4 channel, white LED driver for backlight applications based on high efficiency, current mode, step-up converter technology. The boost controller drives an external MOSFET switch for step-up regulation from an input voltage of 4.5 V to 40 V and a pin adjustable operating frequency between 200 kHz and 1.2 MHz. An adjustable UVLO function is implemented to reduce input current durin |
Unidirectional Transient Voltage Suppressors |
NS6A5.0AF NS6A12AF NS6A13AF : Unidirectional Transient Voltage Suppressors - SMA FL package, low profile (1 mm)
- 600 W peak power dissipation
- ESD ratings of Class 3 per HBM and Class 4 per IEC 61000-4-2
|
ADL5501S, Aerospace 50 MHz TO 6 GHz TruPwr×.¾ Detector |
The ADL5501S is a mean-responding power detector for use in high frequency receiver and transmitter signal chains from 50 MHz to 6 GHz. It is easy to apply, requiring only a single supply between 2.7 V and 5.5 V and a power supply decoupling capacitor. The input is internally ac-coupled and has a nominal input impedance of 50 ï¿. The output is a linear-responding dc voltage with a conversion gai |
AD5687R, Dual, 12-Bit nanoDAC+×.¾ with 2 ppm/÷.C On-Chip Reference and SPI Interface |
The AD5687R nanoDAC+×.¾ is a dual, 12-bit, rail-to-rail, voltage output DACs. The device includes a 2.5 V, 2 ppm/÷.C internal reference (enabled by default) and a gain select pin giving a full-scale output of 2.5 V (gain = 1) or 5 V (gain = 2). The device operates from a single 2.7 V to 5.5 V supply, is guaranteed monotonic by design, and exhibits less than 0.1% FSR gain error and 1.5 mV off |
ADA4666-2, 18 V, 725 ï.A, 4 MHz CMOS RRIO Operational Amplifier |
The ADA4666-2 is a dual, low power, rail-to-rail input/output amplifier optimized for 4 MHz, low power and wide operating supply voltage range applications.
The ADA4666-2 performance is guaranteed at 3.0 V, 10 V, and 18 V power supply voltages. It is an excellent selection for applications using single ended supplies of 3.3V, 5V, 10V, 12V and 15V and dual supplies of ÷.2.5V, ÷.3.3V and ÷.5V. I |
AD9675, Octal Ultrasound AFE with JESD204B |
The AD9675 is designed for low cost, low power, small size,
and ease of use for medical ultrasound. It contains eight
channels of a variable gain amplifier (VGA) with a low noise
preamplifier (LNA), a CW harmonic rejection I/Q demodulator
with programmable phase rotation, an anti-aliasing filter
(AAF), an analog-to-digital converter (ADC), a digital highpass
filter and an RF decimation by 2.
< |
ADA4661-2, 18 V, Precision, 725 ï.A, 4 MHz CMOS RRIO Operational Amplifier |
The ADA4661-2 is a dual, low power, precision, rail-to-rail
input/output amplifier optimized for 4 MHz, low power and
wide operating supply voltage range applications.
The ADA4661-2 performance is guaranteed at 3.0 V, 10 V, and
18 V power supply voltages. It is an excellent selection for
applications using single ended supplies of 3.3V, 5V, 10V, 12V
and 15V and dual supplies of ÷.2.5V, ÷.3.3V |
AD5689, Dual, 16-Bit nanoDAC+×.¾ with SPI Interface |
The AD5689, a member of the nanoDAC+×.¾ family is a low power, dual, 16-bit buffered voltage output DAC. The device includes a gain select pin giving a full-scale output of VREF (gain = 1) or 2VVREF (gain = 2). The device operates from a single 2.7 V to 5.5 V supply, is guaranteed monotonic by design, and exhibits less than 0.1% FSR gain error and 1.5 mV offset error p |
AD5313R, Dual, 10-Bit nanoDAC÷œ with 2 ppm/÷.C Reference, SPI Interface |
The AD5313R is a member of the nanoDAC÷œ family, is a low power, dual, 10-bit buffered voltage output DACs. The device includes a 2.5 V, 2 ppm/÷.C internal reference (enabled by default) and a gain select pin giving a full-scale output of 2.5 V (gain = 1) or 5 V (gain = 2). The device operates from a single 2.7 V to 5.5 V supply, is guaranteed monotonic by design, and exhibits less than 0.1 |
AD5689R, Dual, 16-Bit nanoDAC+×.¾ with 2 ppm/÷.C On-Chip Reference and SPI Interface |
The AD5689R nanoDAC+×.¾ is a dual, 16-bit, rail-to-rail, voltage output DACs. The device includes a 2.5 V, 2 ppm/÷.C internal reference (enabled by default) and a gain select pin giving a full-scale output of 2.5 V (gain = 1) or 5 V (gain = 2). The device operates from a single 2.7 V to 5.5 V supply, is guaranteed monotonic by design, and exhibits less than 0.1% FSR gain error and 1.5 mV off |
AD5687, Dual, 12-Bit nanoDAC+×.¾ with SPI Interface |
The AD5687, a member of the nanoDAC+×.¾ family is a low power, dual, 12-bit buffered voltage output DAC. The device includes a gain select pin giving a full-scale output of VREF (gain = 1) or 2VVREF (gain = 2). The device operates from a single 2.7 V to 5.5 V supply, is guaranteed monotonic by design, and exhibits less than 0.1% FSR gain error and 1.5 mV offset error p |
AD5697R, Dual 12-Bit nanoDAC+×.¾ with 2 ppm/÷.C Reference, I2C Interface |
The AD5697R nanoDAC+×.¾ is a dual, 12-bit, voltage output DACs. The device includes a 2.5 V, 2 ppm/÷.C internal reference (enabled by default) and a gain select pin giving a full-scale output of 2.5 V (gain = 1) or 5 V (gain = 2). The device operates from a single 2.7 V to 5.5 V supply, is guaranteed monotonic by design, and exhibits less than 0.1% FSR gain error and 1.5 mV offset error perf |
AD5338R, Dual 10-Bit nanoDAC÷œ with 2 ppm/÷.C Reference, I2C Interface |
The AD5338R, a member of the nanoDAC÷œ family is a low power, dual, 10-bit buffered voltage output DAC. The device includes a 2.5 V, 2 ppm/÷.C internal reference (enabled by default) and a gain select pin giving a full-scale output of 2.5 V (gain = 1) or 5 V (gain = 2). The device operates from a single 2.7 V to 5.5 V supply, is guaranteed monotonic by design, and exhibits less than 0.1% FS |
ADDI9020, 60 MHz CCD Signal Processor with V-Driver and Precision Timing Generator |
The ADDI9020 is a complete 60 MHz front-end solution for digital
still cameras and other charge-coupled device (CCD) imaging
applications. The ADDI9020 includes the analog front end (AFE),
a fully programmable timing generator (TG), and a 12-channel
V-driver. A Precision Timing÷œ core allows adjustment of high
speed clocks with approximately 260 ps resolution at 60 MHz
operation.
Th |
ADUM3190, 2.5kV rms Isolated Error Amplifier |
The ADuM3190 is an isolated error amplifier based on Analog Devices, Inc. iCoupler÷œ technology. The ADuM3190 is ideal for linear feedback power supplies with primary side controllers enabling improvements in transient response, power density and stability as compared to commonly used optocoupler and shunt regulator solutions.
Unlike optocoupler-based solutions, which have an unc |
ADUM4190, 5kV rms Isolated Error Amplifier |
The ADuM4190 is an isolated error amplifier based on Analog Devices, Inc. iCoupler÷œ technology. The ADuM4190 is ideal for linear feedback power supplies with primary side controllers enabling improvements in transient response, power density and stability as compared to commonly used optocoupler and shunt regulator solutions.
Unlike optocoupler-based solutions, which have an unc |
ADN4612, 11.3 Gbps 12 ç. 12 Digital Crosspoint Switch |
The ADN4612 is a 12 ç. 12 asynchronous, protocol agnostic, digital crosspoint switch with 12 differential PECL-/CML-compatible inputs and 12 differential CML outputs.
The ADN4612 is optimized for nonreturn-to-zero (NRZ) signaling with data rates of up to 11.3 Gbps per port. Each port offers programmable input equalization, loss-of-signal detection, programmable output swing, and output preem |
AD9119, 11-Bit, 5.6 GSPS, RF Digital-to-Analog Converter |
The AD9119/AD9129 are high performance, 11-/14-bit RF digital-to-analog converters (DACs) supporting data rates up to 2.8 GSPS. The DAC core is based on a quad-switch architecture that enables dual-edge clocking operation, effectively increasing the DAC update rate to 5.6 GSPS when configured for Mix-Mode×.¾ or 2ç. interpolation. The high dynamic range and b |
MCP1824 |
MCP1824 |
MCP16323 |
MCP16323 |
MCP16322 |
MCP16322 |
AD9129, 14-Bit, 5.6 GSPS, RF Digital-to-Analog Converter |
The AD9119/AD9129 are high performance, 11-/14-bit RF digital-to-analog converters (DACs) supporting data rates up to 2.8 GSPS. The DAC core is based on a quad-switch architecture that enables dual-edge clocking operation, effectively increasing the DAC update rate to 5.6 GSPS when configured for Mix-Mode×.¾ or 2ç. interpolation. The high dynamic range and b |
AD9508, 1.65 GHz Clock Fan Out Buffer with Output Dividers and Delay Adjust |
The AD9508 provides clock fanout capability in a design that emphasizes low jitter to maximize system performance. This device benefits applications like clocking data converters with demanding phase noise and low jitter requirements.
There are four independent differential clock outputs, each with types of logic levels available. Available logic types include LVDS (1.65 GHz), HSTL (1.65 G |
ADAU7002, Stereo PDM to I2S or TDM Conversion IC |
The ADAU7002 converts a stereo PDM bit stream into a PCM output. The source for the PDM data can be two microphones or other PDM sources. The PCM audio data is output on a serial audio interface port in either I2S or TDM format.
The ADAU7002 is specified over the commercial temperature range (×..40÷.C to +85÷.C). It is available in a halide-free, 8-ball, 1.56 mm ç. 0.76 mm, wafer level chip scal |
MCP1727 |
MCP1727 |
dsPIC33FJ32GP102 |
dsPIC33FJ32GP102 |
dsPIC33FJ32GP104 |
dsPIC33FJ32GP104 |
dsPIC33FJ32GP101 |
dsPIC33FJ32GP101 |
dsPIC33FJ32MC101 |
dsPIC33FJ32MC101 |
dsPIC33FJ32MC102 |
dsPIC33FJ32MC102 |
ADL5303, 160 dB Range 100 pA to 10 mA Low Cost Logarithmic Converter |
The ADL5303 is a monolithic logarithmic detector optimized for the measurement of low frequency signal power in fiber
optic systems and offers a large dynamic range in a versatile and
easily used form. Wide measurement range and accuracy are achieved using proprietary design and precise laser trimming.
The ADL5303 requires only a single positive supply, VPS, of 5 V. When using low suppl |
ADXL195, Single-axis, High Performance Accelerometer with Dual Spectrum Signal Processing |
The ADXL195/ADXL295 are dual spectrum accelerometers that measure baseband acceleration in up to two axes (XL-X and XL-Y), as well as high frequency (HF) acceleration energy. Identical, independent X and Y sense structures are implemented to achieve the best possible fail-safe performance.
The XL-X and XL-Y channels output baseband acceleration information with a nominal full-scale range of |
ADXL295, Dual-axis, High Performance Accelerometer with Dual Spectrum Signal Processing |
The ADXL195/ADXL295 are dual spectrum accelerometers that measure baseband acceleration in up to two axes (XL-X and XL-Y), as well as high frequency (HF) acceleration energy. Identical, independent X and Y sense structures are implemented to achieve the best possible fail-safe performance.
The XL-X and XL-Y channels output baseband acceleration information with a nominal full-scale range of |
ADXL288, High Performance, Dual-Axis Digital Output Accelerometer |
The ADXL288 is a dual-axis accelerometer with signal-conditioned outputs available via a 16-bit SPI interface. Identical, independent X and Y sense structures are implemented to create a high performance, high integrity acceleration sensing system.
The X and Y acceleration channels have a nominal full-scale range of ÷.120 g and a bandwidth of 408 Hz. The acceleration data is provide |
ADUM6211, Dual-Channel Isolators with Integrated DC/DC Converter (1/1 Channel Directionality) |
The ADuM6210/ADuM6211/ADuM6212 are dual-channel digital isolators with isoPower÷œ, an integrated, isolated DC/DC converter. Based on the Analog Devices, Inc., iCoupler÷œ technology, the DC/DC converter provides regulated, isolated power, adjustable between 3.15 V and 5.25 V. Input supply volta |
AD9102, Low Power, 14 Bit, 180MSPS, Digital to Analog Converter and Waveform Generator |
The AD9102 TxDAC÷œ and Waveform Generator is a high performance DAC integrating on-chip pattern memory for complex waveform generation with a Direct Digital Synthesizer (DDS).
The DDS is a 14-bit output, up to 180Mhz master clock sinewave generator with a 24-bit tuning word allowing 10.8Hz/LSB frequency resolution.
SRAM data can include directly generated stored waveforms, amplitude m |
ADUM6210, Dual-Channel Isolators with Integrated DC/DC Converter (2/0 Channel Directionality) |
The ADuM6210/ADuM6211/ADuM6212 are dual-channel digital isolators with isoPower÷œ, an integrated, isolated DC/DC converter. Based on the Analog Devices, Inc., iCoupler÷œ technology, the DC/DC converter provides regulated, isolated power, adjustable between 3.15 V and 5.25 V. Input supply volta |
ADUM6212, Dual-Channel Isolators with Integrated DC/DC Converter (0/2 Channel Directionality) |
The ADuM6210/ADuM6211/ADuM6212 are dual-channel digital isolators with isoPower÷œ, an integrated, isolated DC/DC converter. Based on the Analog Devices, Inc., iCoupler÷œ technology, the DC/DC converter provides regulated, isolated power, adjustable between 3.15 V and 5.25 V. Input supply volta |
dsPIC33FJ06GS101A |
dsPIC33FJ06GS101A |
MCP87018 |
MCP87018 |
MCP87030 |
MCP87030 |
MCP87090 |
MCP87090 |
MCP87130 |
MCP87130 |
25AA160D |
25AA160D |
25AA640A |
25AA640A |
24AA64 |
24AA64 |
AD9674, Octal Ultrasound AFE |
The AD9674 is designed for low cost, low power, small size,
and ease of use for medical ultrasound. It contains eight
channels of a variable gain amplifier (VGA) with a low noise
preamplifier (LNA), a CW harmonic rejection I/Q demodulator
with programmable phase rotation, an anti-aliasing filter
(AAF), an analog-to-digital converter (ADC), a digital highpass
filter and an RF decimation by 2.
< |
ADUM5210, Dual-Channel Isolators with Integrated DC/DC Converter (2/0 Channel Directionality) |
The ADuM5210/ADuM5211/ADuM5212 are dual-channel digital isolators with isoPower÷œ, an integrated, isolated DC/DC converter. Based on the Analog Devices, Inc., iCoupler÷œ technology, the DC/DC converter provides regulated, isolated power, adjustable between 3.15 V and 5.25 V. Input supply volta |
ADUM5211, Dual-Channel Isolators with Integrated DC/DC Converter (1/1 Channel Directionality) |
The ADuM5210/ADuM5211/ADuM5212 are dual-channel digital isolators with isoPower÷œ, an integrated, isolated DC/DC converter. Based on the Analog Devices, Inc., iCoupler÷œ technology, the DC/DC converter provides regulated, isolated power, adjustable between 3.15 V and 5.25 V. Input supply v |
ADUM5212, Dual-Channel Isolators with Integrated DC/DC Converter (0/2 Channel Directionality) |
The ADuM5210/ADuM5211/ADuM5212 are dual-channel digital isolators with isoPower÷œ, an integrated, isolated DC/DC converter. Based on the Analog Devices, Inc., iCoupler÷œ technology, the DC/DC converter provides regulated, isolated power, adjustable between 3.15 V and 5.25 V. Input supply volta |
ADUM4471, Isolated Switch Regulator with Quad-Channel Isolators (3/1 Channel Directionality) |
The ADuM4470/ADuM4471/ADuM4472/ADuM4473/ADuM4474 are quad-channel, digital isolations with a regulated DC/DC isolated power supply controller with an internal MOSFET driver. The DC/DC controller has an internal isolated |
ADUM4472, Isolated Switch Regulator with Quad-Channel Isolators (2/2 Channel Directionality) |
The ADuM4470/ADuM4471/ADuM4472/ADuM4473/ADuM4474 are quad-channel, digital isolations with a regulated DC/DC isolated power supply controller with an internal MOSFET driver. The DC/DC controller has an internal isolated |
ADUM4473, Isolated Switch Regulator with Quad-Channel Isolators (1/3 Channel Directionality) |
The ADuM4470/ADuM4471/ADuM4472/ADuM4473/ADuM4474 are quad-channel, digital isolations with a regulated DC/DC isolated power supply controller with an internal MOSFET driver. The DC/DC controller has an internal isolated |
ADUM4474, Isolated Switch Regulator with Quad-Channel Isolators (0/4 Channel Directionality) |
The ADuM4470/ADuM4471/ADuM4472/ADuM4473/ADuM4474 are quad-channel, digital isolations with a regulated DC/DC isolated power supply controller with an internal MOSFET driver. The DC/DC controller has an internal isolated |
ADUM4470, Isolated Switch Regulator with Quad-Channel Isolators (4/0 Channel Directionality) |
The ADuM4470/ADuM4471/ADuM4472/ADuM4473/ADuM4474 are quad-channel, digital isolations with a regulated DC/DC isolated power supply controller with an internal MOSFET driver. The DC/DC controller has an internal isolated |
ADV7610, Low Power, 165 MHz HDMI Receiver |
The ADV7610 is offered in professional (no HDCP) and industrial versions. The operating temperature range is ×..40÷.C to +85÷.C.
The ADV7610 is a high quality, single input HDMI-capable receiver. It incorporates an HDMI-capable receiver that supports all mandatory 3D TV defined in HDMI specification. The ADV7610 supports formats up to UXGA 60 Hz at eight bits.
It integrates a CEC control |
ADAU1977, Quad ADC with Diagnostics |
The ADAU1977 incorporates four high performance analog-todigital converters (ADCs) with direct-coupled inputs capable of 10 V rms. The ADC uses multibit sigma-delta (ï.-ï.) architecture
with continuous time front end for low EMI. The ADCs can be connected to the electret microphone (ECM) directly and provide the bias for powering the microphone. Built-in diagnostic circuitry detects faults on input |
ADV7182, 10-Bit, SDTV Video Decoder with Differential Inputs |
The ADV7182 automatically detects and converts standard analog baseband video signals compatible with worldwide NTSC, PAL, and SECAM standards into a 4:2:2 component video data stream. This video data stream is compatible with the 8-bit ITU-R BT.656 interface standard.
External HS, VS, and FIELD signals can provide timing references for LCD controllers and other video ASICs. The accurate 1 |
ADP2380, 20 V, 4 A synchronous Step-Down Regulator with Low-Side Driver |
The ADP2380 is a current mode control, synchronous, step-down, dc-to-dc regulator. It integrates a 44 m×.. high-side power MOSFET and a low-side driver to provide a high efficiency solution. The ADP2380 runs from an input voltage of 4.5 V to 20 V and can deliver 4 A of output current. The output voltage can be adjusted to 0.6 V to 90% of the input voltage. The switching frequency of the ADP2380 can |
MCP1755S |
MCP1755S |
MCP1754S |
MCP1754S |
ADT7320, ÷.0.25÷.C Accurate, 16-Bit Digital SPI Temperature Sensor |
The ADT7320 is a high accuracy digital temperature sensor that offers breakthrough performance over a wide industrial temperature
range, housed in a 4 mm ç. 4 mm LFCSP package. It contains an
internal band gap reference, a temperature sensor, and a 16-bit analog-to-digital converter (ADC) to monitor and digitize the temperature to a resolution of 0.0078÷.C. The ADC resolution, by default, is set to |
ADT7420, ÷.0.25÷.C Accurate, 16-Bit Digital I2C Temperature Sensor |
The ADT7420 is a high accuracy digital temperature sensor offering breakthrough performance over a wide industrial range, housed in a 4 mm ç. 4 mm LFCSP package. It contains an internal band gap reference, a temperature sensor, and a 16-bit ADC to monitor and digitize the temperature to 0.0078÷.C resolution. The ADC resolution, by default, is set to 13 bits (0.0625÷.C). The ADC resolution is a user p |
ADA4895-1, Low Power, 1 nV/×..Hz, G ×.½ 10 Stable, Rail-to-Rail Output Amplifier |
The ADA4895-1 is a single, high speed voltage feedback amplifier that is gain ×.½ 10 stable with low input noise, rail-to-rail output, and quiescent current of 3 mA per amplifier. With a 1/f noise of 2 nV/×..Hz at 10 Hz and a spurious-free dynamic range of ×..72 dBc at 2 MHz, the ADA4895-1 is an ideal solution in a variety of applications, including ultrasound, low noise preamplifiers, and drivers of hi |
PIC32MX220F032D |
PIC32MX220F032D |
PIC32MX220F032B |
PIC32MX220F032B |
PIC32MX120F032D |
PIC32MX120F032D |
PIC32MX220F032C |
PIC32MX220F032C |
PIC32MX120F032C |
PIC32MX120F032C |
PIC32MX250F128C |
PIC32MX250F128C |
PIC32MX250F128B |
PIC32MX250F128B |
PIC32MX150F128D |
PIC32MX150F128D |
PIC32MX150F128C |
PIC32MX150F128C |
PIC32MX150F128B |
PIC32MX150F128B |
ADP2442, 36 V,1 A, Synchronous, Step-Down, DC-to-DC Regulator with External Clock Synchronization |
The ADP2442 is a constant frequency, current mode control,
synchronous, step-down, dc-to-dc regulator that is capable of
driving loads of up to 1 A with excellent line and load regulation
characteristics. The ADP2442 operates with a wide input voltage
range from 4.5 V to 36 V, which makes it ideal for regulating power
from a wide variety of sources. In addition, the ADP2442 has
very low minimum on |
PIC32MX120F032B |
PIC32MX120F032B |
ADP2386, 20 V, 6 A, Synchronous Step-Down DC-to-DC Regulator |
The ADP2386 is a synchronous step-down, dc-to-dc regulator with an integrated 44 m×.., high-side power MOSFET and an 11 m×.., synchronous rectifier MOSFET to provide a high efficiency solution in a compact 4 mm ç. 4 mm LFCSP package. This device uses a peak current mode, constant frequency pulse-width modulation (PWM) control scheme for excellent stability and transient response. The switching frequenc |
ADUM2280, 5 kV RMS Dual Channel Digital Isolators (Default High, 2/0 Channel Directionality) |
The ADuM2280/ADuM2281/ADuM2285/ADuM2286 (also referred to as ADuM228x in this data sheet) are 5 kV rms dual-channel digital isolators based on Analog Devices, Inc., iCoupler÷œ technology. Combining high speed CMOS and monolithic air core transformer technol |
ADAS1256, 256-Channel, 16-Bit Charge-to-Digital AFE on Flex |
The ADAS1256 is a 256-channel, charge-to-digital analog-front end (AFE) mounted on high density flex. It can be directly mounted on a digital X-ray panel. It is suitable for a large variety of digital X-ray and photodiode array applications and it works with both hole sensing and electron sensing panels. ADAS1256 allows up to 22us line time, so it can be used in dynamic imaging panels in additi |
ADUM2286, 5 kV RMS Dual Channel Digital Isolators (Default Low, 1/1 Channel Directionality) |
The ADuM2280/ADuM2281/ADuM2285/ADuM2286 (also referred to as ADuM228x in this data sheet) are 5 kV rms dual-channel digital isolators based on Analog Devices, Inc., iCoupler÷œ technology. Combining high speed CMOS and monolithic air core transformer technol |
ADUM2285, 5 kV RMS Dual Channel Digital Isolators (Default Low, 2/0 Channel Directionality) |
The ADuM2280/ADuM2281/ADuM2285/ADuM2286 (also referred to as ADuM228x in this data sheet) are 5 kV rms dual-channel digital isolators based on Analog Devices, Inc., iCoupler÷œ technology. Combining high speed CMOS and monolithic air core transformer technol |
ADUM2281, 5 kV RMS Dual Channel Digital Isolators (Default High, 1/1 Channel Directionality) |
The ADuM2280/ADuM2281/ADuM2285/ADuM2286 (also referred to as ADuM228x in this data sheet) are 5 kV rms dual-channel digital isolators based on Analog Devices, Inc., iCoupler÷œ technology. Combining high speed CMOS and monolithic air core transformer technol |
Single N-Channel Automotive MOSFETs |
NVMFS5830NL NVMFS5832NL NVMFS5834NL NVMFS5844NL : Single N-Channel Automotive MOSFETs - AEC-Q101 Qualified and PPAP Capable
- 20 A, 40 V and 60 V available
- SO-8 Flat Lead package
|
AD9106, Quad, Low Power, 12-Bit, 180 MSPS, Digital-to-Analog Converter and Waveform Generator |
The AD9106 TxDAC÷œ and waveform generator is a high performance quad DAC integrating on-chip pattern memory for complex waveform generation with a direct digital synthesizer (DDS). The DDS is a 12-bit output, up to 180 MHz master clock sinewave generator with a 24-bit tuning word allowing 10.8 Hz/LSB frequency resolution. The DDS has a single frequency output for all four DACs and independent progr |
TC7126A |
TC7126A |
MCP2004 |
MCP2004 |
MCP2003 |
MCP2003 |
MCP2200 |
MCP2200 |
MCP23018 |
MCP23018 |
MCP23S09 |
MCP23S09 |
MCP23009 |
MCP23009 |
TC621 |
TC621 |
PIC24F04KL100 |
PIC24F04KL100 |
MCP2210 |
MCP2210 |
MCP2004A |
MCP2004A |
MCP2003A |
MCP2003A |
MCP2022A |
MCP2022A |
TC623 |
TC623 |
TC622 |
TC622 |
TC6502 |
TC6502 |
TC6503 |
TC6503 |
TC72 |
TC72 |
TC6501 |
TC6501 |
TC6504 |
TC6504 |
TC74 |
TC74 |
TC653 |
TC653 |
TC670 |
TC670 |
TC650 |
TC650 |
TC651 |
TC651 |
TC1320 |
TC1320 |
TC7129 |
TC7129 |
MCP47A1 |
MCP47A1 |
TC652 |
TC652 |
TC664 |
TC664 |
TC624 |
TC624 |
TC654 |
TC654 |
MCP4921 |
MCP4921 |
MCP4912 |
MCP4912 |
MCP4911 |
MCP4911 |
MCP4902 |
MCP4902 |
MCP4901 |
MCP4901 |
MCP4822 |
MCP4822 |
MCP4821 |
MCP4821 |
MCP4812 |
MCP4812 |
SST25VF016B |
SST25VF016B |
MCP1703 |
MCP1703 |
RN240 |
RN240 |
MCP1710 |
MCP1710 |
MCP1804 |
MCP1804 |
Oct 16, 2012 DS32EL0124 DS32ELX0124 - 125 MHz - 312.5 MHz FPGA-Link Deserializer with DDR LVDS Parallel Interface|125 MHz - 312.5 MHz FPGA-Link Deserializer with DDR LVDS Parallel Interface |
125 MHz - 312.5 MHz FPGA-Link Deserializer with DDR LVDS Parallel Interface|125 MHz - 312.5 MHz FPGA-Link Deserializer with DDR LVDS Parallel Interface... |
Oct 16, 2012 TPS92314 TPS92314A - Off-Line Primary Side Sensing Controller with PFC|Off-Line Primary Side Sensing Controller with PFC |
Off-Line Primary Side Sensing Controller with PFC|Off-Line Primary Side Sensing Controller with PFC... |
Oct 16, 2012 ADC12D1000RF ADC12D1600RF - 12-Bit, 3.2/2.0 GSPS RF Sampling ADC|12-Bit, 3.2 GSPS RF Sampling ADC |
12-Bit, 3.2/2.0 GSPS RF Sampling ADC|12-Bit, 3.2 GSPS RF Sampling ADC... |
Oct 16, 2012 ADC12D800RF ADC12D500RF - ADC12D800RF/500RF 12-Bit, 1.6/1.0 GSPS RF Sampling ADC|Low Power, 12-Bit, Dual 500 MSPS or Single 1.0 GSPS ADC |
ADC12D800RF/500RF 12-Bit, 1.6/1.0 GSPS RF Sampling ADC|Low Power, 12-Bit, Dual 500 MSPS or Single 1.0 GSPS ADC... |
RN171 |
RN171 |
RN131 |
RN131 |
dsPIC33FJ06GS102A |
dsPIC33FJ06GS102A |
20 V Small Signal MOSFETs |
NTNS3A91PZ NTNS3193NZ : 20 V Small Signal MOSFETs - N-Channel and P-Channel
- XLLGA-3 package, 0.62 x 0.62 x 0.4 mm
- RDS(ON) Max as low as 1.4 mï¿ @ 4.5 V
|
40 V Single Channel High-Side Driver |
NCV8452 : 40 V Single Channel High-Side Driver - Thermal shutdown with automatic restart
- Integrated reverse battery protection
- Integrated short circuit and ESD protection
|
MCP9701A |
MCP9701A |
MCP9700 |
MCP9700 |
MCP9700A |
MCP9700A |
MCP9701 |
MCP9701 |
TC1046 |
TC1046 |
MCP73831 |
MCP73831 |
MCP103 |
MCP103 |
TCN75A |
TCN75A |
MCP111 |
MCP111 |
MCP112 |
MCP112 |
TC77 |
TC77 |
TCN75 |
TCN75 |
TC962 |
TC962 |
TCM809 |
TCM809 |
MCP120 |
MCP120 |
MCP1252-33X50 |
MCP1252-33X50 |
MCP101 |
MCP101 |
TC9402 |
TC9402 |
TC9400 |
TC9400 |
TC9401 |
TC9401 |
V, 20mA, 30mA, 50mA ÷.15% Constant Current Regulator & LED Driver for A/C off-line Applications |
NSIC2020B NSIC2030B NSIC2050B : V, 20mA, 30mA, 50mA ÷.15% Constant Current Regulator & LED Driver for A/C off-line Applications - The 120 V anode×..cathode voltage rating is designed to withstand the high peak voltage incurred in A/C offline applications.
- The CCR turns on immediately and is at 45% of regulation with only 0.5 V Vak.
- UL94-V0 Certified
|
80 V Low VF Rectifiers |
NTSJ2080CTG NTSV2080CTG NTSV20U80CTG NTSJ3080CTG NTSJ30U80CTG NTSV3080CTG : 80 V Low VF Rectifiers - Fine Lithography Trench-based Schottky technology for VF as low as 0.65 V
- 20 A and 30 A output current available
- TO-220, TO-220 FP packages available
|
1.6A Fully Integrated Li-Ion Switching Battery Charger with Power Path Management |
NCP1851 : 1.6A Fully Integrated Li-Ion Switching Battery Charger with Power Path Management - 1.6A switching battery charger to accelerate portable device charging time
- 500mA 5V boosted supply to support USB OTG peripherals
- Dynamic power path to separate system and battery at dead battery and after end of charge
|
Automotive Non-Synchronous Boost Controller |
NCV8873 : Automotive Non-Synchronous Boost Controller - Wide input voltage range of 3.2 V to 45 V
- 0.2 V 2% reference voltage - suitable for constant current loads in LED applications
- Peak current mode control with internal slope compensation
|
Oct 15, 2012 DS32EL0421 DS32ELX0421 - 125 - 312.5 MHz FPGA-Link Serializer with DDR LVDS Parallel Interface|125 - 312.5 MHz FPGA-Link Serializer with DDR LVDS Parallel Interface |
125 - 312.5 MHz FPGA-Link Serializer with DDR LVDS Parallel Interface|125 - 312.5 MHz FPGA-Link Serializer with DDR LVDS Parallel Interface... |
PIC16F1503 |
PIC16F1503 |
PIC16F1509 |
PIC16F1509 |
PIC16F1508 |
PIC16F1508 |
PIC12F1501 |
PIC12F1501 |
SST25VF020A |
SST25VF020A |
MCP4023 |
MCP4023 |
MCP4012 |
MCP4012 |
PIC16F753 |
PIC16F753 |
PIC24EP64GP203 |
PIC24EP64GP203 |
PIC24EP64MC203 |
PIC24EP64MC203 |
dsPIC33EP64MC503 |
dsPIC33EP64MC503 |
MCP40D17 |
MCP40D17 |
MCP4012 |
MCP4012 |
MCP4011 |
MCP4011 |
TC1321 |
TC1321 |
AD8284, Radar Receive Path AFE: 4-Channel MUX with LNA, PGA, AAF, and ADC |
The AD8284 is an integrated analog front end designed for low cost, compact size, flexibility, and ease of use. It contains a 4-channel differential multiplexer (mux), a 1-channel low noise preamplifier (LNA) with a programmable gain amplifier (PGA) and an antialiasing filter (AAF), as well as one direct-to-ADC channel, all integrated with a single, 12-bit analog-to-digital converter (ADC). The AD |
AD9525, Low Jitter Clock Generator Eight LVPECL Outputs |
The AD9525 is designed to support converter clock requirements for long-term evolution (LTE) and multicarrier GSM base station designs.
The AD9525 provides a low power, multioutput, clock distribution function with low jitter performance, along with an on-chip PLL that can be used with an external VCO or VCXO. The VCO input and eight LVPECL outputs can operate up to a frequency of 3.6 GHz. |
dsPIC33EP64GP503 |
dsPIC33EP64GP503 |
dsPIC33EP64MC203 |
dsPIC33EP64MC203 |
GFCI Controller |
NCS37005 : GFCI Controller - Direct drive CT interface
- Compatible with low turns ratio ferrite current transformers
- Best in class immunity to nuisance loads
|
PIC16F1507 |
PIC16F1507 |
PIC32MX230F064B |
PIC32MX230F064B |
MCP4261 |
MCP4261 |
AD6673, 80 MHz Bandwidth, Dual IF Receiver |
The AD6673 is an 11-bit, 250 MSPS, dual-channel intermediate frequency (IF) receiver specifically designed to support multi-antenna systems in telecommunication applications where high dynamic range performance, low power, and small size are desired.
The device consists of two high performance analog-to-digital converters (ADCs) and noise shaping requantizer (NSR) digital blocks. Each ADC c |
PIC24EP32MC202 |
PIC24EP32MC202 |
dsPIC33EP32GP502 |
dsPIC33EP32GP502 |
dsPIC33EP32MC204 |
dsPIC33EP32MC204 |
dsPIC33EP32MC203 |
dsPIC33EP32MC203 |
dsPIC33EP32MC202 |
dsPIC33EP32MC202 |
dsPIC33EP32GP504 |
dsPIC33EP32GP504 |
dsPIC33EP32GP503 |
dsPIC33EP32GP503 |
dsPIC33EP32MC504 |
dsPIC33EP32MC504 |
dsPIC33EP32MC503 |
dsPIC33EP32MC503 |
Oct 11, 2012 LM25066I LM25066IA - System Power Management and Protection IC with PMBus|Intel Node Manager Compliant System Power Management and Protection IC with PMBus |
System Power Management and Protection IC with PMBus|Intel Node Manager Compliant System Power Management and Protection IC with PMBus... |
MCP4262 |
MCP4262 |
MCP4024 |
MCP4024 |
P-Channel MOSFETs |
NTLUS3A18PZ NTLUS3A39PZ NTLUD3A50PZ : P-Channel MOSFETs - Single and dual available
- 20 V with ultra low RDS(ON)
- UDFN-6 package
|
MCP2021 |
MCP2021 |
MCP2022 |
MCP2022 |
SSM4321, Mono 2.9 W Class-D Audio Amplifier with Digital Current and Voltage Output |
The SSM4321 is a fully integrated, high efficiency, Class-D
audio amplifier with digitized output of output voltage, output
current, and the PVDD supply voltage. It is designed to maximize performance for mobile phone applications. The application circuit requires a minimum of external components and operates from a 2.5 V to 5.5 V supply for the amplifier and a 1.42 V to 3.6 V supply for input/out |
RNXV |
RNXV |
SQBLASTER |
SQBLASTER |
RNG2C547 |
RNG2C547 |
RNT7TAG |
RNT7TAG |
AD9250, 14-Bit, 170 MSPS/250 MSPS, JESD204B, Dual Analog-to-Digital Converter |
The AD9250 is a dual, 14-bit ADC with sampling speeds of up to 250 MSPS. The AD9250 is designed to support communications applications where low cost, small size, wide bandwidth, and versatility are desired.
The ADC cores feature a multistage, differential pipelined architecture with integrated output error correction logic. The ADC cores feature wide bandwidth inputs supporting a variety o |
6 Channel PMIC with 2 DC-DC Converters and 4 LDOs |
NCP6924 : 6 Channel PMIC with 2 DC-DC Converters and 4 LDOs - Two 800mA DC-DC converters programmable output voltage from 0.6 V to 3.3 V by 12.5 mV steps
- Four low noise 2 x 150 mA and 2 x 300mA low dropout regulators, programmable output voltage from 1.0 V to 3.3 V by 50 mV steps
- Enhanced power saving techniques with dynamic voltage scaling (DVS) and low quiescent current (105uA)
|
PIC12LF1840T39A |
PIC12LF1840T39A |
PIC12F529T39A |
PIC12F529T39A |
PIC12F529T48A |
PIC12F529T48A |
ADP2384, 20 V, 4 A, Synchronous Step-Down DC-to-DC Regulator |
The ADP2384 is a synchronous step-down, dc-to-dc regulator with an integrated 44 m×.., high-side power MOSFET and an 11.6 m×.., synchronous rectifier MOSFET to provide a high efficiency solution in a compact 4 mm ç. 4 mm LFCSP package. This device uses a peak current mode, constant frequency pulse-width-modulation (PWM) control scheme for excellent stability and transient response. The switching freque |
AD9671, Octal Ultrasound AFE with Digital Demodulator, JESD204B |
The AD9671 is designed for low cost, low power, small size,
and ease of use for medical ultrasound. It contains eight channels of a variable gain amplifier (VGA) with a low noise preamplifier (LNA), a CW harmonic rejection I/Q demodulator with programmable phase rotation, an anti-aliasing filter (AAF), an analog-to-digital converter (ADC), and a digital demodulator and decimator for data processi |
300 mA BiCMOS Linear Voltage Regulator |
NCP703 : 300 mA BiCMOS Linear Voltage Regulator - Output noise voltage of 13 ÷.Vrms
- 12 ÷.A typical quiescent current
- Dropout voltage of 180 mV typical at 300 mA output
|
3 A Fast Transient Response Linear Voltage Regulator |
NCP58300 : 3 A Fast Transient Response Linear Voltage Regulator - Stable with Tantalum capacitor
- 2.24 to 13.5 V input voltage range and up to 18 V maximum input
- 370 mV dropout voltage at 3 A output current
|
PIC32MX230F064D |
PIC32MX230F064D |
PIC32MX130F064D |
PIC32MX130F064D |
PIC32MX460F256L |
PIC32MX460F256L |
PIC32MX440F128L |
PIC32MX440F128L |
ADUM7640, 1 kV RMS Quad-Channel Digital Isolators (6/0 Channel Directionality) |
The ADuM7640/ADuM7641/ADuM7642/ADuM7643 are 6-channel digital isolators based on the Analog Devices, Inc., iCoupler÷œ technology. These 1 kV digital isolation devices are packaged in a small 20-lead QSOP. They offer space savings and a lower price than 2.5 |
ADUM7642, 1 kV RMS Quad-Channel Digital Isolators (4/2 Channel Directionality) |
The ADuM7640/ADuM7641/ADuM7642/ADuM7643 are 6-channel digital isolators based on the Analog Devices, Inc., iCoupler÷œ technology. These 1 kV digital isolation devices are packaged in a small 20-lead QSOP. They offer space savings and a lower price than 2.5 |
ADUM7641, 1 kV RMS Quad-Channel Digital Isolators (5/1 Channel Directionality) |
The ADuM7640/ADuM7641/ADuM7642/ADuM7643 are 6-channel digital isolators based on the Analog Devices, Inc., iCoupler÷œ technology. These 1 kV digital isolation devices are
packaged in a small 20-lead QSOP. They offer space savings and a lower price than 2.5 |
ADUM7643, 1 kV RMS Quad-Channel Digital Isolators (3/3 Channel Directionality) |
The ADuM7640/ADuM7641/ADuM7642/ADuM7643 are 6-channel digital isolators based on the Analog Devices, Inc., iCoupler÷œ technology. These 1 kV digital isolation devices are
packaged in a small 20-lead QSOP. They offer space savings and a lower price than 2.5 |
300 mA CMOS LDO Linear Voltage Regulator |
CAT6201 : 300 mA CMOS LDO Linear Voltage Regulator - Operating voltage range 3.3 - 13.5 V; reverse current protected if Vout > Vin
- Low dropout of 250 mV typical at 300 mA
- User programmable output voltage and current limit
|
ADXL377, 3-Axis High g Analog MEMS Accelerometer |
The ADXL377 is a small, thin, low power, complete 3-axis accelerometer with signal conditioned voltage outputs. The ADXL377 measures acceleration resulting from motion, shock, or vibration with a typical full-scale range of ÷.200 g.
The user selects the bandwidth of the accelerometer using the CX, CY, and CZ capacitors at the XOUT, YO |
Small Signal MOSFET 20V, 281 mA, 1.6 Ohm, Single P×..Channel SOT×..883 |
NTNS3A65PZ : Small Signal MOSFET 20V, 281 mA, 1.6 Ohm, Single P×..Channel SOT×..883 - Ultra Low Profile SOT×..883 (XDFN3) 1.0 x 0.6 x 0.4 mm for extremely thin environments such as portable electronics
- 1.5 V Gate Drive
- Low RDS(on) Solution
|
MCP3428 |
MCP3428 |
MCP3426 |
MCP3426 |
MCP3427 |
MCP3427 |
PIC32MX110F016B |
PIC32MX110F016B |
PIC32MX110F016D |
PIC32MX110F016D |
PIC32MX110F016C |
PIC32MX110F016C |
PIC32MX130F064B |
PIC32MX130F064B |
PIC32MX230F064C |
PIC32MX230F064C |
PIC32MX130F064C |
PIC32MX130F064C |
ADE7912, 2-Channel, Isolated, Sigma Delta ADC with SPI |
The ADE7913/ADE7912 are isolated three-input channel, analog to digital converter (ADC) for polyphase energy metering applications using shunt current sensors. It features three 24-bit analog to digital converters, each of which provides 70dB signal to noise ratio over a 3 kHz signal bandwidth. One channel is dedicated to measuring the voltage across a shunt when the shunt is used for current sens |
ADE7913, 3-Channel, Isolated, Sigma Delta ADC with SPI |
The ADE7913/ADE7912 are isolated three-input channel, analog to digital converter (ADC) for polyphase energy metering applications using shunt current sensors. It features three 24-bit analog to digital converters, each of which provides 70dB signal to noise ratio over a 3 kHz signal bandwidth. One channel is dedicated to measuring the voltage across a shunt when the shunt is used for current sens |
Complete SoC Solution for Improving Voice Capture for Any Device with a Speech Microphone |
BELASIGNA R262 : Complete SoC Solution for Improving Voice Capture for Any Device with a Speech Microphone - Easy to integrate: special tuning, calibration, or external components are not required
- Versatile voice capture: consistently captures voice regardless of acoustic environment or the orientation of the handheld device while in use
- Design flexibility: industrial design is unconstrained with greater freedom of choice on microphone model and placement
|
ADE7932, 2-Channel, Isolated, Sigma Delta ADC |
The ADE7978 and ADE7933/ADE7932 form a chipset dedicated to measuring 3-phase electrical energy measurement using shunts as current sensors.
The ADE7933/ADE7932 is an isolated three-input channel, analog to digital converter (ADC) for polyphase energy metering applications using shunt current sensors. It features three 24-bit analog to digital converters, each of which provides 70dB signal |
ADE7933, 3-Channel, Isolated, Sigma Delta ADC |
The ADE7978 and ADE7933/ADE7932 form a chipset dedicated to measuring 3-phase electrical energy measurement using shunts as current sensors.
The ADE7933/ADE7932 is an isolated three-input channel, analog to digital converter (ADC) for polyphase energy metering applications using shunt current sensors. It features three 24-bit analog to digital converters, each of which provides 70dB signal |
ADE7978, 3-PH Metrology IC for ADE7932/ADE79333 w/shunts |
The ADE7978 and ADE7933/ADE7932 form a chipset dedicated to measuring 3-phase electrical energy measurement using shunts as current sensors.
The ADE7933/ADE7932 is an isolated three-input channel, analog to digital converter (ADC) for polyphase energy metering applications using shunt current sensors. It features three 24-bit analog to digital converters, each of which provides 70dB signal |
Sept 20, 2012 DAC101C081 DAC101C081Q DAC101C085 - 10-Bit Micro Power Digital-to-Analog Converter with an I2C-Compatible Interface|title|10-Bit Micro Power Digital-to-Analog Converter with an I2C-Compatible Interface and External Reference |
10-Bit Micro Power Digital-to-Analog Converter with an I2C-Compatible Interface|title|10-Bit Micro Power Digital-to-Analog Converter with an I2C-Compatible Interface and External Reference... |
Sept 20, 2012 ADC104S021 ADC104S021Q - 4 Channel, 50 ksps to 200 ksps, 10-Bit A/D Converter|4 Channel, 50 ksps to 200 ksps, 10-Bit A/D Converter |
4 Channel, 50 ksps to 200 ksps, 10-Bit A/D Converter|4 Channel, 50 ksps to 200 ksps, 10-Bit A/D Converter... |
Sept 19, 2012 LM25101A LM25101B LM25101C - 3A High Voltage High-Side and Low-Side Gate Driver|2A High Voltage High-Side and Low-Side Gate Driver|1A High Voltage High-Side and Low-Side Gate Driver |
3A High Voltage High-Side and Low-Side Gate Driver|2A High Voltage High-Side and Low-Side Gate Driver|1A High Voltage High-Side and Low-Side Gate Driver... |
ADUCM360, Low Power Precision Analog Microcontroller, ARM Cortex M3 with Dual Sigma-Delta ADCs |
The ADuCM360 is a fully integrated, 3.9 kSPS, 24-bit data acquisition system that incorporates dual high performance, multichannel sigma-delta (ï.-ï.) analog-to-digital converters (ADCs), a 32-bit ARM Cortex×.¾-M3 processor, and Flash/EE memory on a single chip. The ADuCM360 is designed for direct interfacing to external precision sensors in both wired and battery-powered applications. The ADuCM361 co |
ADA4895-2, Low Power, 1 nV/×..Hz, G ×.½ 10 Stable, Rail-to-Rail Output Amplifier |
The ADA4895-2 is a dual, high speed voltage feedback amplifier that is gain ×.½ 10 stable with low input noise, rail-to-rail output, and quiescent current of 3 mA per amplifier. With a 1/f noise of 2 nV/×..Hz at 10 Hz and a spurious-free dynamic range of ×..72 dBc at 2 MHz, the ADA4895-2 is an ideal solution in a variety of applications, including ultrasound, low noise preamplifiers, and drivers of high |
Positive Overvoltage Protection Controller |
NCP391 : Positive Overvoltage Protection Controller - Overvoltage protection up to 28 V
- Integrated 120 mï¿ NMOS transistor
- 2 A current rating in 1.3 x 1.0 mm WLCSP-6
|
TC647B |
TC647B |
SST39VF401C |
SST39VF401C |
Power Factor Corrected Offline Buck LED Driver |
NCL30002 : Power Factor Corrected Offline Buck LED Driver - Buck topology enables use of smaller magnetics in space constrained designs
- Single stage power factor correction enables true PF > 0.9
- Critical Conduction Mode (CrM) delivers high efficiency at low power levels
|
ADM4168E, ÷.15 kV ESD Protected Dual RS-422 Transceiver |
The ADM4168E has dual RS-422 transceivers suitable for
high speed communication on point-to-point and multidrop
transmission lines. The ADM4168E is designed for balanced
transmission lines and complies with TIA/EIA-422-B.
The differential driver outputs and receiver inputs feature electrostatic
discharge circuitry that provides protection up to ÷.15 kV
HBM and ÷.8 kV IEC 61000-4-2 (contact an |
AD8232, Single-Lead Heart Rate Monitor Analog Front End |
The AD8232 is an integrated signal conditioning block for ECG and other biopotential measurement applications. It is designed to extract, amplify, and filter small biopotential signals in the presence of noisy conditions, such as those created by motion or remote electrode placement. This design allows for an ultralow power analog-to-digital converter (ADC) or an embedded microcontroller to acquir |
ADM8710, Low Voltage, High Accuracy, Quad Voltage Microprocessor Supervisory Circuit |
The ADM8710 is a low voltage, high accuracy supervisory circuit.
The device monitors up to four system supply voltages.
The ADM8710 incorporates two internally pretrimmed undervoltage
threshold options for monitoring 1.8 V and 3.3 V supply
voltages. It also offers two adjustable inputs with 0.62 V internal
reference, allowing users to program the reset threshold through
external resistor di |
ADP1851, Wide Range Input, Synchronous, Step-Down DC-to-DC Controller |
The ADP1851 is a wide range input, dc-to-dc, synchronous buck controller capable of running from commonly used 3.3 V to 12 V (up to 20 V) voltage inputs. The device nominally operates in current mode with valley current sensing providing the fastest step response for digital loads. It can also be configured as a voltage mode controller with low noise and crosstalk for sensitive loads.
The A |
Induction Cooking IGBTs |
NGTB15N120IHL NGTB20N120IHL NGTB25N120IHL : Induction Cooking IGBTs - 1200 V; 15 A, 20 A, and 25 A
- Low saturation voltage using Trench with Field Stop technology
- Low switching losses reduce system power dissipation
|
Hard Switching IGBTs |
NGTB15N60EG NGTB15N60S1EG NGTG15N60S1EG : Hard Switching IGBTs - 600 V; 15 A
- Co-packaged with reverse recovery diode
- 5 ÷.s and 10 ÷.s short circuit capability
|
Motor Drive IGBTs |
NGTB15N120L NGTB20N120L NGTB25N120L : Motor Drive IGBTs - 1200 V; 15 A, 20 A, and 25 A
- Low saturation voltage for low conduction loss
- 5 ÷.s short circuit capability
|
AD9914, 3.5 GSPS Direct Digital Synthesizer with 12-bit DAC |
The AD9914 is a direct digital synthesizer (DDS) featuring a 12-bit DAC targeted at operating up to 3.5 GSPS. The AD9914 uses advanced DDS technology, coupled with an internal high speed, high performance DAC to form a digitally programmable, complete high frequency synthesizer capable of generating a frequency-agile analog output sinusoidal waveform at up to 1.4 GHz. The AD9914 is designed to pro |
AD9915, 2.5 GSPS Direct Digital Synthesizer with 12-bit DAC |
The AD9915 is a direct digital synthesizer (DDS) featuring a 12-bit DAC. The AD9915 uses advanced DDS technology, coupled with an internal high speed, high performance DAC to form a digitally programmable, complete high frequency synthesizer capable of generating a frequency-agile analog output sinusoidal waveform at up to 1.0 GHz. The AD9915 enables fast frequency hopping and fine tuning resoluti |
AD8122, Triple Differential Receiver with 300m Adjustable Cable Equalization |
The AD8122 is a triple, high speed, differential receiver and equalizer that compensates for the transmission losses of UTP and coaxial cables up to 300 meters in length. Various gain stages are summed together to best approximate the inverse frequency response of the cable. Each channel features a high impedance differential input that is ideal for interfacing directly with the cable.>
The A |
AD8237, Micropower, Zero Drift, True Rail-to-Rail Instrumentation Amplifier |
The AD8237 is a micropower, zero drift, rail-to-rail input and output instrumentation amplifier. The relative match of two resistors sets any gain from 1 to 1000. The AD8237 has excellent gain accuracy performance that can be preserved at any gain with two ratio-matched resistors.
The AD8237 employs the indirect current feedback architecture to achieve a true rail-to-rail capability. Unlike |
AD7091R, 1 MSPS, ULTRALOW POWER, 12-BIT ADC WITH ON-CHIP REFERENCE IN 10-LEAD LFCSP AND MSOP |
The AD7091R is a 12-bit successive approximation analog-to-digital converter (ADC) that offers ultralow power consumption (typically 349 ÷.A at 3 V and 1 MSPS) while achieving fast throughput rates (1 MSPS with a 50 MHz SCLK). The AD7091R uses advanced design and process techniques to achieve this very low power dissipation at high throughput rates. The part also features an on-chip, accurate 2.5 V |
ADP1649, 1.0 A LED Flash Driver with I2C-Compatible Interface |
The ADP1649 is a very compact, highly efficient, single white
LED flash driver for high resolution camera phones that improves
picture and video quality in low light environments. The device
integrates a programmable 1.5 MHz or 3 MHz synchronous
inductive boost converter, an I2C-compatible interface, and a
1000 mA current source. The high switching frequency enables
the use of a tiny, 1 |
ADIS16448, Low Noise, High Stability Ten Degree of Freedom MEMS Inertial Sensor |
The ADIS16448 iSensor÷œ device is a complete inertial system
that includes a triaxial gyroscope, a triaxial accelerometer, a triaxial magnetometer, and pressure sensors. Each sensor in the ADIS16448 combines industry-leading iMEMS÷œ technology with signal conditioning that optimizes dynamic performance. The factory calibration characterizes each sensor for sensitivity, bias, alignm |
ADRF6755, 100 MHz TO 2400 MHz I/Q Modulator with Integrated Fractional-N PLL and VCO |
The ADRF6755 is a highly integrated quadrature modulator, frequency synthesizer, and programmable attenuator. The device covers an operating frequency range from 100 MHz to 2400 MHz for use in satellite, cellular, and broadband communications.
The ADRF6755 modulator includes a high modulus, fractional-N frequency synthesizer with integrated VCO, providing less than 1 Hz frequency resolution, a |
SSM2529, Digital Input, Mono 2 W, Class-D Audio Power Amplifier |
The SSM2529 is a digital input, Class-D power amplifier that combines a digital-to-analog converter (DAC), a low power audio specific digital signal processor, and a sigma-delta (ï.-ï.) Class-D modulator.
This unique architecture enables extremely low real-world power consumption from digital audio sources with excellent audio performance. The SSM2529 is ideal for power sensitive application |
ADG5207, High Voltage, Latch-Up Proof, 8-Channel Differential Multiplexer |
The ADG5207 is a monolithic CMOS analog multiplexer comprising eight differential channels. The ADG5207 switches one of eight differential inputs to a common differential output, as determined by the 3-bit binary address lines, A0, A1, and A2. An EN input enables or disables the device. When EN is low, the device is disabled, and all channels switch off.
The ultralow capacitance and charge |
ADG5206, High Voltage, Latch-Up Proof, 16-Channel Multiplexer |
The ADG5206 is a monolithic CMOS analog multiplexer comprising sixteen single channels. The ADG5206 switches one of sixteen inputs to a common output, as determined by the 4-bit binary address lines, A0, A1, A2, and A3. An EN input enables or disables the device. When EN is low, the device is disabled, and all channels switch off.
The ultralow capacitance and charge injection of these swit |
ADA4077-2, 4 MHz, 7 nV/×..Hz, Low Offset and Drift, High Precision Amplifier |
The ADA4077-2 is a dual amplifier featuring extremely low offset voltage and drift and low input bias current, noise, and power consumption. Outputs are stable with capacitive loads of more than 1000 pF with no external compensation.
Applications for this amplifier include sensor signal conditioning (such as thermocouples, RTDs, strain gauges), process control front-end amplifiers, and pre |
AD779, 14-Bit 128 kSPS Complete Sampling ADC |
The AD779 is a complete, multipurpose 14-bit monolithic
analog-to-digital converter, consisting of a sample-hold amplifier
(SHA), a microprocessor compatible bus interface, a voltage
reference and clock generation circuitry.
The AD779 is specified for ac (or ×..dynamic×..) parameters such
as S/N+D ratio, THD and IMD which are important in signal
processing applications. In addition, the AD779K, |
ADUM3482, Small, 3.75 kV RMS Quad Digital Isolators (2/2 Channel Directionality) |
The ADuM3480/ADuM3481/ADuM3482 are quad-channel digital isolators based on the Analog Devices, Inc., iCoupler÷œ technology. Combining high speed CMOS and monolithic air core transformer technology, these isolation components provide outstanding performance characteristics superior to alternatives such as optocoupler devices and other integrated couplers. With typical propagation delay redu |
ADUM3480, Small, 3.75 kV RMS Quad Digital Isolators (4/0 Channel Directionality) |
The ADuM3480/ADuM3481/ADuM3482 are quad-channel digital isolators based on the Analog Devices, Inc., iCoupler÷œ technology. Combining high speed CMOS and monolithic air core transformer technology, these isolation components provide outstanding performance characteristics superior to alternatives such as optocoupler devices and other integrated couplers. With typical propagation delay redu |
ADUM3481, Small, 3.75 kV RMS Quad Digital Isolators (3/1 Channel Directionality) |
The ADuM3480/ADuM3481/ADuM3482 are quad-channel digital isolators based on the Analog Devices, Inc., iCoupler÷œ technology. Combining high speed CMOS and monolithic air core transformer technology, these isolation components provide outstanding performance characteristics superior to alternatives such as optocoupler devices and other integrated couplers. With typical propagation delay redu |
AD5317R, Quad, 10-Bit nanoDAC÷œ with 2 ppm/÷.C reference, SPI Interface |
The AD5317R, a member of the nanoDAC÷œ family, is a low power, quad, 10-bit buffered voltage output DAC. The device includes a 2.5 V, 2 ppm/÷.C internal reference (enabled by default) and a gain select pin giving a full-scale output of 2.5 V (gain = 1) or 5 V (gain = 2). The device operates from a single 2.7 V to 5.5 V supply, is guaranteed monotonic by design, and exhibits less t |
23A640 |
23A640 |
23K640 |
23K640 |
23A256 |
23A256 |
23K256 |
23K256 |
AD5686, Quad, 16-Bit nanoDAC+×.¾ with SPI Interface |
The AD5686, a member of the nanoDAC+×.¾ family is a low power, quad, 16-bit buffered voltage output DAC. The device includes a gain select pin giving a full-scale output of 0V to VREF (gain = 1) or 0V to 2VREF (gain = 2). The device operates from a single 2.7 V to 5.5 V supply, is guaranteed monotonic by design, and exhibits less than 0.1% FSR gain error and 1.5 mV offset error |
AD5696, Quad, 16-Bit nanoDAC+×.¾ with I2C Interface |
The AD5696, a member of the nanoDAC+×.¾ family, is a low power, quad, 16-bit buffered voltage output DAC. The device includes a gain select pin giving a full-scale output of 0V to VREF (gain = 1) or 0V to 2VREF (gain = 2) The device operates from a single 2.7 V to 5.5 V supply, is guaranteed monotonic by design, and exhibits less than 0.1% FSR gain error and 1.5 mV offse |
AD5684, Quad, 12-Bit nanoDAC+×.¾ with SPI Interface |
The AD5684, a member of the nanoDAC+×.¾ family is a low power, quad, 16-bit buffered voltage output DAC. The device includes a gain select pin giving a full-scale output of 0V to VREF (gain = 1) or 0V to 2VREF (gain = 2). The device operates from a single 2.7 V to 5.5 V supply, is guaranteed monotonic by design, and exhibits less than 0.1% FSR gain error and 1.5 mV offse |
AD5694, Quad, 12-Bit nanoDAC+×.¾ with I2C Interface |
The AD5694, a member of the nanoDAC+×.¾ family, is a low power, quad, 16-bit buffered voltage output DAC. The device includes a gain select pin giving a full-scale output of 0V to VREF (gain = 1) or 0V to 2.VREF (gain = 2). The device operates from a single 2.7 V to 5.5 V supply, is guaranteed monotonic by design, and exhibits less than 0.1% FSR gain error and 1.5 mV off |
ADA4096-4, 30 V, Micropower, Overvoltage Protection, RRIO Quad Op Amp |
The ADA4096-2 dual and ADA4096-4 quad operational amplifiers feature micropower operation and rail-to-rail input and output ranges. The extremely low power requirements and guaranteed operation from 3 V to 30 V make these amplifiers perfectly suited to monitor battery usage and to control battery
charging. Their dynamic performance, including 27 nV/×..Hz |
SSM2519, Digital Input 2 W Class-D Audio Power Amplifier |
The SSM2519 is a digital input, Class-D power amplifier that com-
bines a digital-to-analog converter (DAC) and a sigma-delta
(ï.-ï.) Class-D modulator. This unique architecture enables
extremely low, real-world power consumption from digital
audio sources with excellent audio performance. The SSM2519
is ideal for power sensitive applications, such as mobile phones and portable media players, where |
ADA4528-2, 5.0V Ultralow Noise, Zero-Drift, RRIO, Dual Op Amp |
The ADA4528-1/ADA4528-2 are ultralow noise, zero-drift
operational amplifiers featuring rail-to-rail input and output swing. With an offset voltage of 2.5 ï.V, offset voltage drift of 0.015 ï.V/÷.C, and typical noise of 97 nV p-p (0.1 Hz to 10 Hz, AV = +100), the ADA4528-1/ADA4528-2 are well suited for applications in which error sources cannot be tolerat |
ADAU1772, 4 ADC, 2 DAC Low-Power Codec with Audio Processor |
The ADAU1772 is a codec with four inputs and two outputs that incorporates a digital processing engine to perform filtering, level control, signal level monitoring, and mixing. The path from the analog input to the DSP core to the analog output is optimized for low latency and is ideal for noise cancelling headsets. With the addition of just a few passive components, a crystal, and an EEPROM for b |
AD9670, Octal Ultrasound AFE With Digital Demodulator |
The AD9670 is designed for low cost, low power, small size,
and ease of use for medical ultrasound. It contains eight
channels of a variable gain amplifier (VGA) with a low noise
preamplifier (LNA), a CW harmonic rejection I/Q demodulator
with programmable phase rotation, an anti-aliasing filter
(AAF), an analog-to-digital converter (ADC), and a digital
demodulator and decimator for data processin |
ADP8140, 4 Channel High Current LED Driver with Adaptable Power Control |
The ADP8140 provides high current control of up to four LED
drivers. Each driver can sink up to 500 mA. The sink current
is programmed for all four drivers with one external resistor.
The device features a feedback output which controls an
external power supply for optimal efficiency. The ADP8140
also protects the LEDs, power supply, and itself against thermal
events, short circuits, overvo |
AD5316R, Quad 10-Bit nanoDAC÷œ with 2 ppm/÷.C Reference, I2C Interface |
The AD5316R, a member of the nanoDAC÷œ family, is a quad, 10-bit buffered voltage output DAC. The device includes a 2.5 V, 2 ppm/÷.C internal reference (enabled by default) and a gain select pin giving a full-scale output of 2.5 V (gain = 1) or 5 V (gain = 2). The device operates from a single 2.7 V to 5.5 V supply, is guaranteed monotonic by design, and exhibits less than 0.1% FSR gain erro |
ADP2441, 36 V,1 A, Synchronous, Step-Down DC-DC Regulator |
The ADP2441 is a constant frequency, current mode control, synchronous, step-down dc-to-dc regulator that is capable of driving loads up to 1 A with excellent line and load regulation characteristics. The ADP2441 operates with a wide input voltage range of 4.5 V to 36 V, which makes it ideal for regulating power from a wide variety of sources. In addition, the ADP2441 has very low minimum on time |
AD9645, Dual, 14-Bit, 80 MSPS/125 MSPS Serial LVDS 1.8 V Analog-to-Digital Converter |
The AD9645 is a dual, 14-bit, 80 MSPS/125 MSPS analog-to-
digital converter (ADC) with an on-chip sample-and-hold circuit designed for low cost, low power, small size, and ease of use. The product operates at a conversion rate of up to 125 MSPS and is optimized for outstanding dynamic performance and low power in applications where a small package size is critical.
The ADC requires a singl |
AD9635, Dual, 12-Bit, 80 MSPS/125 MSPS Serial LVDS 1.8 V Analog-to-Digital Converter |
The AD9635 is a dual, 12-bit, 80 MSPS/125 MSPS analog-to-
digital converter (ADC) with an on-chip sample-and-hold circuit designed for low cost, low power, small size, and ease of use. The product operates at a conversion rate of up to 125 MSPS and is optimized for outstanding dynamic performance and low power in applications where a small package size is critical.
The ADC requires a singl |
ADL5513S, Aerospace 1 MHz to 4 GHz, 80 dB Logarithmic Detector/Controller |
The ADL5513 is a demodulating logarithmic amplifier, capable of accurately converting an RF input signal to a corresponding decibel-scaled output. It employs the progressive compression technique over a cascaded amplifier chain, each stage of which is equipped with a detector cell. The device can be used in either measurement or controller modes. The ADL5513 maintains accurate log conformance f |
FlexRay×.¾ Bus Driver |
NCV7381 : FlexRay×.¾ Bus Driver - Compliant with the FlexRay×.¾ Electrical Physical Layer Specification Rev 3.0.1
- Transmitter and receiver in normal-power modes for communication speeds up to 10Mb/s
- Bus pins protected against >10kV system ESD pulses
|
Octal Low-Side Relay Driver |
NCV7240 : Octal Low-Side Relay Driver - Automotive eight channel low-side driver provides drive capability up to 600mA per channel
- Parallel input pins for PWM operation
- Available in a SSOP-24 fused lead package
|
3.0 A Ultra Low Dropout Linear Voltage Regulator |
NCP59300 : 3.0 A Ultra Low Dropout Linear Voltage Regulator - 175 mV typical dropout at 1.5 A output, and 300 mV typical dropout at full 3.0 A load
- Can withstand up to 18 V max input voltage which would be an ideal LDO for network and set top box devices
- Internal protection features consist of output current limiting, built×..in thermal shutdown and reverse output current protection
|
200 mA, Ultra-Low Quiescent Current, Ultra-Low Noise, LDO Linear Voltage Regulator |
NCP702 : 200 mA, Ultra-Low Quiescent Current, Ultra-Low Noise, LDO Linear Voltage Regulator - Draws very little quiescent current of 10 uA while dropping only 140 mV across the input and output
- Does not require an additional noise bypass capacitor to achieve ultra×..low noise performance
- High PSRR of 70 dB at 1 kHz while producing 11 uVrms noise output
|
1.5 A, Very Low-Dropout (VLDO) Fast Transient Response Regulator Series |
NCP59150 : 1.5 A, Very Low-Dropout (VLDO) Fast Transient Response Regulator Series - 175 mV typical dropout at 750 mA output and 300 mV typical dropout voltage at 1.5 A output current
- Can withstand up to 18 V max input voltage which would be an ideal LDO for network and set top box devices
- Available in automotive version and in DFN8 package
|
2.5V /3.3V Dual Differential 2:1 Clock / Data Multiplexer with LVPECL Outputs |
NB6L56 : 2.5V /3.3V Dual Differential 2:1 Clock / Data Multiplexer with LVPECL Outputs - Produces minimal clock or data jitter operating up to 2.5 GHz or 2.5 Gbps respectively
- Ideal for clock distribution , networking, high end computing and wireless or wired infrastructure applications
- Offered in a low profile 32-pin QFN package and is a member of the ECLinPS Max×.¾ family of high performance clock/data products
|
MTS2916A |
MTS2916A |
PIC16F785 |
PIC16F785 |
PIC16F527 |
PIC16F527 |
ADDI7018, Dual-Channel, 16-Bit HD Image Signal Processor with Precision Timing Core |
The ADDI7018 is a highly integrated, dual-channel, charge-coupled device (CCD) signal processor for high speed digital video camera applications. Each channel is specified at pixel rates of up to 75 MHz and consists of a complete analog front end (AFE) with ADC conversion. The Precision Timing×.¾ core allows adjustment of the correlated double sampler (CDS) and sample-and-hold amplifier (SH |
AD9128, Dual 16 Bit, 1.25GSPS Signal Processing DAC with JESD204A Serial Interface |
The AD9128 is a dual, 16-bit, high dynamic range, digital-to-analog converter (DAC) that provides a sample rate of 1.25 GSPS, permitting a multi-carrier generation up to the Nyquist frequency. The AD9128 includes features optimized for direct conversion transmit applications, including complex digital modulation, and gain and offset compensation. The DAC outputs can interface seamlessly with Analo |
PIC32MX210F016C |
PIC32MX210F016C |
MTD6505 |
MTD6505 |
RN131C |
RN131C |
ADXL343, 3-Axis, ÷.2 g/÷.4 g/÷.8 g/÷.16 g Digital Accelerometer |
The ADXL343 is a versatile 3-axis, digital-output, low g MEMS accelerometer. Selectable measurement range and bandwidth, and configurable, built-in motion detection make it suitable for sensing acceleration in a wide variety of applications. Robustness to 10,000 g of shock and a wide temperature range (×..40÷.C to +85÷.C) enable use of the accelerometer even in harsh environments. |
ADP1614, 650 kHz /1.3 MHz, 4 A, Step-Up, PWM, DC-to-DC Switching Converter |
The ADP1614 is a step-up, dc-to-dc switching converter with an integrated power switch capable of providing an output voltage as high as 20 V. The ADP1614 is available with a pin-adjustable current limit that is set via an external resistor with the frequency fixed to either 650 kHz or 1.3 MHz. With a package height of 0.8 mm, the ADP1614 is optimal for space constrained applications, such as port |
ADP5061, Tiny I2C Programmable Linear Battery Charger with Power Path and USB Mode Compatibility |
The ADP5061 charger is fully compliant with USB 3.0 and the USB Battery Charging Specification 1.2 and enables charging via the mini USB VBUS pin from a wall charger, car charger, or USB host port.
The ADP5061 operates from a 4 V to 6.7 V input voltage range but is tolerant of voltages up to 20 V. The 20 V voltage tolerance alleviates the concerns about the USB bus spiking during dis-connec |
AR1021 |
AR1021 |
AR1011 |
AR1011 |
Digitally Programmable Potentiometer (Dpp) with 128 Taps and I2C Interface |
CAT5136 CAT5137 CAT5138 : Digitally Programmable Potentiometer (Dpp) with 128 Taps and I2C Interface - I2C compatible interface controls with 7-bit Wiper Control Register.
- CAT5137 and CAT5138 have different device IDs, which makes it possible to use both on same I2C bus.
- Smaller package to be used as a space-saving alternative to mechanical potentiometers.
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5 Channel PMIC: 1 DCDC Converter and 4 LDOs |
NCP6914 : 5 Channel PMIC: 1 DCDC Converter and 4 LDOs - Small package that can fit in cellular phones, digital cameras, media players, and GPS.
- Extended input voltage range of 2.3V to 5.5V
- Is optimized in power efficiency by having a low quiescent current at no load of 72÷.A and less than 1÷.A Off mode current.
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