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AD7386

2019-09-26

AD7386 Functional Block Diagram

AD7386 Pin Configuration

概览

  • 16-bit dual simultaneous sampling SAR ADC

  • Single-ended analog inputs

  • Quad channel with 2:1 multiplexers

  • Channel sequencer mode

  • High throughput rate of up to 4 MSPS

  • On-chip oversampling functions

  • SNR (typical)

    • 87.5 dB, VREF = 3.3 V external

    • 93 dB with OSR = 8, VREF = 2.5 V internal

  • INL (typical): ±1.5 LSBs

  • Resolution boost function

  • 2.5 V internal reference at 10 ppm/°C (maximum)

  • Alert function

  • −40°C to +125°C temperature range

  • 16-lead LFCSP, 3 mm × 3 mm


The AD7386 is a 16-bit, dual simultaneous sampling, high speed, successive approximation register (SAR) analog-todigital converter (ADC) that operates from a 3.0 V to 3.6 V power supply and features throughput rates of up to 4 MSPS. The analog input types are single-ended and are sampled and converted on the falling edge of CS.

The AD7386 has an on-chip sequencer and integrated on-chip oversampling blocks to improve dynamic range and reduce noise at lower bandwidths. A buffered internal 2.5 V reference is included. Alternatively, an external reference up to 3.3 V can be used. The conversion process and data acquisition use standard control inputs, allowing easy interfacing to microprocessors or digital signal processors (DSPs). The AD7386 is compatible with 1.8 V, 2.5 V, and 3.3 V interfaces, using the separate logic supply.

The AD7386 is available in a 16-lead LFCSP package with operation specified from −40°C to +125°C.

Product Highlights

  1. 4-channel, dual simultaneous sampling ADC.

  2. Pin-compatible product family.

  3. High 4 MSPS throughput rate.

  4. Space-saving 3 mm × 3 mm LFCSP package.

  5. Integrated oversampling block to increase dynamic range and SNR and reduce SCLK speed requirements.

  6. Single-ended analog inputs.

  7. Small sampling capacitor reduces amplifier drive burden

Applications 

  • Motor control position feedback

  • Motor control current sense

  • Sonar

  • Power quality

  • Data acquisition systems

  • EDFA applications

  • I and Q demodulation