AD7381-4

RECOMMENDED FOR NEW DESIGNS

Differential Input, Quad,14-Bit, Simultaneous Sampling, SAR ADC

Part Models
3
1ku List Price
Starting From $20.75
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Part Details

  • 14-bit ADC family
  • Quad simultaneous sampling
  • Fully differential analog inputs
  • Wide common-mode range
  • High throughput rate: 4 MSPS
  • Buffered 2.5 V internal voltage reference (10 ppm/°C maximum)
  • On-chip oversampling function
  • INL (maximum): 1.5 LSB
  • SNR (typical)
    • 85.3 dB at VREF = 3.3 V
    • 90.6 dB at OSR = 8× rolling average oversampling, RES = 1
  • 2-bit resolution boost
  • Out of range indicator (ALERT)
  • High-speed serial interface
  • −40°C to +125°C operation
  • 4 mm × 4 mm, 24-lead LFCSP
AD7381-4
Differential Input, Quad,14-Bit, Simultaneous Sampling, SAR ADC
AD7381-4 Functional Block Diagram AD7381-4 Pin Configuration
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Software Resources

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Hardware Ecosystem

Parts Product Life Cycle Description
Differential Amplifiers 1
ADA4940-2 PRODUCTION Ultralow Power, Low Distortion ADC Driver
Linear Regulators 3
ADP7104 RECOMMENDED FOR NEW DESIGNS 20 V, 500 mA, Low Noise, CMOS LDO
ADP7182 RECOMMENDED FOR NEW DESIGNS –28 V, −200 mA, Low Noise, Linear Regulator
ADP166 PRODUCTION Very Low Quiescent Current, 150 mA, LDO Regulator
Operational Amplifiers 4
ADA4807-2 RECOMMENDED FOR NEW DESIGNS

3.1 nV/√Hz, 1 mA, 180 MHz, Rail-to-Rail Input/Output Amplifier

ADA4805-2 RECOMMENDED FOR NEW DESIGNS Dual, 0.2 µV/°C Offset Drift, 105 MHz Low Power, Low Noise, Rail-to-Rail Amplifier
ADA4896-2 RECOMMENDED FOR NEW DESIGNS 1 nV/√Hz, Low Power, Rail-to-Rail Output Amplifiers
ADA4807-1 RECOMMENDED FOR NEW DESIGNS

3.1 nV/√Hz, 1 mA, 180 MHz, Rail-to-Rail Input/Output Amplifier

Voltage References 2
ADR4533 RECOMMENDED FOR NEW DESIGNS Ultra-Low-Noise, High-Accuracy 3.3V Voltage Reference
ADR4525 RECOMMENDED FOR NEW DESIGNS Ultra-Low-Noise, High-Accuracy 2.5V Voltage Reference
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Tools & Simulations

Precision ADC Driver Tool

The Precision ADC Driver Tool is a web application that simulates the performance of precision ADC and driver combinations. Potential issues with driver selection, kickback settling, and distortion are flagged, and design tradeoffs can be quickly evaluated. Simulations and calculations include system noise, distortion, and settling of the ADC input

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