AD5391

PRODUCTION

16-Channel 3V/5V Serial Input Single-Supply 12-Bit Voltage-Output

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Overview

  • AD5390: 16-channel, 14-bit voltage output DAC
  • AD5391: 16-channel, 12-bit voltage output DAC
  • AD5392: 8-channel, 14-bit voltage output DAC
  • Guaranteed monotonic
  • INL
    ±1 LSB max (AD5391)
    ±3 LSB max (AD5390-5/AD5392-5)
    ±4 LSB max (AD5390-3/AD5392-3)
  • Temperature range: −40°C to +85°C
  • Rail-to-rail output amplifier
  • Power-down mode
  • Package types
    64-lead LFCSP (9 mm × 9 mm)
    52-lead LQFP (10 mm × 10 mm)
  • User interfaces
  • See data sheet for additional features

The AD5390 / AD5391 are complete single-supply, 16-channel, 14-bit and 12-bit DACs, respectively. The AD5392 is a complete single-supply, 8-channel, 14-bit DAC. The devices are available in either a 64-lead LFCSP or a 52-lead LQFP. All channels have an on-chip output amplifier with rail-to-rail operation. All devices include an internal 1.25/2.5 V, 10 ppm/°C reference, an on-chip channel monitor function that multiplexes the analog outputs to a common MON_OUT pin for external monitoring, and an output amplifier boost mode that optimizes the output amplifier slew rate.

The AD5390 / AD5391 / AD5392 contain a 3-wire serial interface with interface speeds in excess of 30 MHz that are compatible with SPI®, QSPI, MICROWIRE, and DSP interface standards and an I2C-compatible interface supporting a 400 kHz data transfer rate.

An input register followed by a DAC register provides double-buffering, allowing DAC outputs to be updated independently or simultaneously using the LDAC input. Each channel has a programmable gain and offset adjust register, letting the user fully calibrate any DAC channel.

Power consumption is typically 0.25 mA per channel.

APPLICATIONS

  • Instrumentation and industrial control
  • Power amplifier control
  • Level setting (ATE)
  • Control systems
  • Microelectromechanical systems (MEMS)
  • Variable optical attenuators (VOAs)
  • Optical transceivers (MSA 300, XFP)

AD5391
16-Channel 3V/5V Serial Input Single-Supply 12-Bit Voltage-Output
AD5391 Functional Block Diagram AD5390/AD5391 Pin Configuration AD5390/AD5391 Pin Configuration
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Software Resources

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Tools & Simulations

Precision DAC Error Budget Tool

The Precision DAC Error Budget Tool is a web application that calculates the DC Accuracy of precision DAC signal chains. It shows how the static errors accumulate throughout your signal chain to quickly evaluate the design tradeoffs. Calculations include the DC errors introduced by Voltage References, Operation Amplifiers and Precision DACs.

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ADIsimDDS (Direct Digital Synthesis)

ADIsimDDS uses mathematical equations to model and illustrate the overall performance of the selected device. ADIsimDDS calculates the required FTW, given the reference clock frequency and desired output frequency. This tool also models an estimate of the overall spectral performance, and allows the user to explore the effects of external reconstruction filters.

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Evaluation Kits

EVAL-AD5390

AD5390 Evaluation Board

Product Details

The evaluation board allows the functionality and performance of the AD5390 to be easily evaluated. The eval board connects to a PC via the printer port. Software is provided to allow the user to program the registers of the AD5390.

EVAL-AD5391

AD5391 Evaluation Board

Product Details

The evaluation board allows the functionality and performance of the AD5391 to be easily evaluated. The eval board connects to a PC via the printer port. Software is provided to allow the user to program the registers of the AD5391.

EVAL-AD5390
AD5390 Evaluation Board
EVAL-AD5391
AD5391 Evaluation Board

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