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AD5674
  • AD5674
  • AD5674

AD5674

PRODUCTION

16-Channel, 12-Bit nanoDAC+ with 2 ppm/°C Voltage Reference Temperature Coefficient, SPI Interface

Analog Devices AD5674 Product Info

10 February 2026 6

Features

  • High performance
    • High relative accuracy (INL): ±1 LSB maximum at 12 bits
    • TUE: ±0.14% of FSR maximum
    • Offset error: ±1.5 mV maximum
    • Gain error: ±0.06% of FSR maximum
    • Low drift, 2.5 V voltage reference temperature coefficient: 2 ppm/°C typical
    • 40 mA short-circuit current
  • Wide operating ranges
    • −40°C to +125°C temperature range
    • 2.7 V to 5.5 V power supply range
  • Simplified implementation
    • User selectable gain of 1 or 2 (GAIN pin)
    • 1.8 V logic compatibility
  • 50 MHz serial peripheral interface (SPI) with readback or daisy chain
  • 28-lead, 4 mm × 4 mm, RoHS compliant LFCSP

Part details & applications

The AD5674/AD5674R/AD5679/AD5679R are low power, 16-channel, 12-/16-bit, buffered voltage output, digital-to-analog converters (DACs) that include a 2.5 V, 2 ppm/°C internal reference (enabled by default), and a gain select pin, resulting in a full-scale output of 2.5 V (gain = 1) or 5 V (gain = 2). The devices operate from a single, 2.7 V to 5.5 V supply range and are guaranteed monotonic by design. The AD5674/AD5674R/AD5679/AD5679R are available in a 28-lead lead frame chip scale package (LFCSP) and incorporate a power-on reset (POR) circuit that ensures that the DAC outputs power up to and remains at zero-scale or midscale until a valid write. The AD5674/AD5674R/AD5679/AD5679R contain a power-down mode that reduces the current consumption to 2 μA typical.

Product Highlights

  1. High channel density: 16 channels in 4 mm × 4 mm LFCSP.
  2. High relative accuracy (integral nonlinearity (INL)) ±4 LSB maximum.
  3. Low drift, 2.5 V, on-chip reference.

Applications

  • Optical transceivers
  • Base station power amplifiers
  • Process control (programmable logic controller (PLC) input/output cards)
  • Industrial automation
  • Data acquisition systems

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