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DAC9881
  • DAC9881
  • DAC9881
  • DAC9881

DAC9881

ACTIVE

18-bit, single-channel, low-noise, voltage output DAC for high accuracy applications

Texas Instruments DAC9881 Product Info

1 April 2026 0

Parameters

Resolution (Bits)

18

Number of DAC channels

1

Interface type

SPI

Output type

Buffered Voltage

Output voltage range (V)

0 to 5.5

INL (max) (±LSB)

2

Settling time (µs)

5

Reference type

Ext

Architecture

R-2R

Rating

Catalog

Features

Reset to Mid-Scale

Sample/update rate (Msps)

0.2

Power consumption (typ) (mW)

6

Operating temperature range (°C)

-40 to 105

Product type

Precision DAC

Package

VQFN (RGE)-24-16 mm² 4 x 4

Features

  • 18-bit monotonic over temperature range
  • Relative accuracy: ±2 LSB maximum
  • Low-noise: 24 nV/√Hz
  • Fast settling: 5 µs
  • On-chip output buffer amplifier with rail-to-rail operation
  • Single power supply: 2.7 V to 5.5 V
  • DAC loading control
  • Selectable power-on reset to zero-scale or midscale
  • Power-down mode
  • Unipolar straight binary or
    two’s complement input mode
  • Fast SPI with Schmitt-triggered inputs: up to 50 MHz, 1.8-V, 3-V, and 5-V logic
  • Specified temperature range: –40°C to +105°C
  • Small package: VQFN-24, 4 mm × 4 mm
  • 18-bit monotonic over temperature range
  • Relative accuracy: ±2 LSB maximum
  • Low-noise: 24 nV/√Hz
  • Fast settling: 5 µs
  • On-chip output buffer amplifier with rail-to-rail operation
  • Single power supply: 2.7 V to 5.5 V
  • DAC loading control
  • Selectable power-on reset to zero-scale or midscale
  • Power-down mode
  • Unipolar straight binary or
    two’s complement input mode
  • Fast SPI with Schmitt-triggered inputs: up to 50 MHz, 1.8-V, 3-V, and 5-V logic
  • Specified temperature range: –40°C to +105°C
  • Small package: VQFN-24, 4 mm × 4 mm

Description

The DAC9881 is an 18-bit, single-channel, voltage-output digital-to-analog converter (DAC). The device features 18-bit monotonicity, excellent linearity, very low-noise, and fast settling time. The on-chip precision output amplifier allows for a rail-to-rail output swing to be achieved over the full supply range of 2.7 V to 5.5 V.

The device supports a standard serial peripheral interface (SPI) capable of operating with input data clock frequencies of up to 50 MHz. The DAC9881 requires an external reference voltage to set the output range of the DAC channel. A programmable power-on reset circuit is also incorporated into the device to make sure that the DAC output powers up at zero-scale or midscale, and remains there until a valid write command.

Additionally, the DAC9881 has the capability to function in either unipolar straight binary or two’s complement mode. The DAC9881 provides low-power operation. To further save energy, power-down mode can be achieved by accessing the PDN pin, thereby reducing the current consumption to 25 µA at 5 V. Power consumption is 4 mW at 5 V, reducing to 125 µW in power-down mode.

The DAC9881 is an 18-bit, single-channel, voltage-output digital-to-analog converter (DAC). The device features 18-bit monotonicity, excellent linearity, very low-noise, and fast settling time. The on-chip precision output amplifier allows for a rail-to-rail output swing to be achieved over the full supply range of 2.7 V to 5.5 V.

The device supports a standard serial peripheral interface (SPI) capable of operating with input data clock frequencies of up to 50 MHz. The DAC9881 requires an external reference voltage to set the output range of the DAC channel. A programmable power-on reset circuit is also incorporated into the device to make sure that the DAC output powers up at zero-scale or midscale, and remains there until a valid write command.

Additionally, the DAC9881 has the capability to function in either unipolar straight binary or two’s complement mode. The DAC9881 provides low-power operation. To further save energy, power-down mode can be achieved by accessing the PDN pin, thereby reducing the current consumption to 25 µA at 5 V. Power consumption is 4 mW at 5 V, reducing to 125 µW in power-down mode.

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