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AD5693
  • AD5693
  • AD5693

AD5693

PRODUCTION

Tiny 16-Bit I2C nano DAC+, with ±2 (16-Bit) LSB INL

Analog Devices AD5693 Product Info

10 February 2026 5

Features

  • Ultrasmall package: 2 mm × 2 mm, 8-lead LFCSP
  • High relative accuracy (INL): ±2 LSB maximum at 16 bits
  • External reference only
  • Selectable span output: VREF or 2 × VREF
  • Total unadjusted error (TUE): ±0.06% of FSR maximum
    • Offset error: ±1.5 mV maximum
    • Gain error: ±0.05 % of FSR maximum
  • Low glitch: 0.1 nV-sec
  • High drive capability: 20 mA
  • Low power: 1.2 mW at 3.3 V
  • 1.8 V VLOGIC compatible
  • Wide operating temperature range: −40°C to +105°C

Part details & applications

The AD5693R / AD5692R / AD5691R / AD5693, members of the nanoDAC+® 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 × VREF. All devices operate from a single 2.7 V to 5.5 V supply and are guaranteed monotonic by design. The devices are available in a 2.00 mm × 2.00 mm, 8-lead LFCSP or a 10-lead MSOP.

The internal power-on reset circuit ensures that the DAC register is written to zero scale at power-up while the internal output buffer is configured in normal mode. The AD5693R / AD5692R /  AD5691R / AD5693 contain a power-down mode that reduces the current consumption of the device to 2 μA (maximum) at 5 V and provides software selectable output loads.

The AD5693R / AD5692R / AD5691R / AD5693 use an I2C interface. Some device options also include an asynchronous RESET pin and a VLOGIC pin, allowing 1.8 V compatibility.

Product Highlights

  1. High relative accuracy (INL): ±2 LSB maximum (AD5693R/AD5693, 16-bit).
  2. Low drift, 2.5 V on-chip reference: 2 ppm/°C typical and 5 ppm/°C maximum temperature coefficient.
  3. 2 mm × 2 mm, 8-lead LFCSP and 10-lead MSOP.

Applications

  • Process controls
  • Data acquisition systems
  • Digital gain and offset adjustment
  • Programmable voltage sources
  • Optical modules

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