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AD7291
  • AD7291
  • AD7291

AD7291

PRODUCTION

8-Channel, I2C, 12-Bit SAR ADC with Temperature Sensor

Analog Devices AD7291 Product Info

10 February 2026 6

Features

  • 12-bit SAR ADC
    • 8 single-ended analog input channels
    • Analog input range: 0 V to 2.5 V
  • 12-bit temperature-to-digital converter
    • Temperature sensor accuracy of ±1°C typical
  • Channel sequencer operation
  • Specified for VDD of 2.8 V to 3.6 V
  • Logic voltage VDRIVE = 1.65 V to 3.6 V
  • Internal 2.5 V reference
  • See data sheet for additional features

AD7291-EP supports defense and aerospace applications (AQEC standard)

  • Download AD7291-EP data sheet (pdf)
  • Extended industrial temperature range: −55°C to +125°C
  • Controlled manufacturing baseline
  • 1 assembly/test site
  • 1 fabrication site
  • Product change notification
  • Qualification data available upon request
  • V62/17610 DSCC Drawing Number

Part details & applications

The AD7291 is a 12-bit, low power, 8-channel, successive approximation analog-to-digital converter (ADC) with an internal temperature sensor.

The part operates from a single 3.3 V power supply and features an I2C-compatible interface. The part contains a 9-channel multiplexer and a track-and-hold amplifier than can handle frequencies up to 30 MHz. The device has an on-chip 2.5 V reference that can be disabled to allow the use of an external reference.

The AD7291 provides a 2-wire serial interface compatible with I2C interfaces. The I2C interface supports standard and fast I2C interface modes. The AD7291 normally remains in a partial power-down state while not converting and powers up for conversions. The conversion process can be controlled by a command mode where conversions occur across I2C write operations or an autocycle mode selected through software control.

The AD7291 includes a high accuracy band gap temperature sensor, which is monitored and digitized by the 12-bit ADC to give a resolution of 0.25°C.

The AD7291 offers a programmable sequencer, which enables the selection of a preprogrammable sequence of channels for conversion.

On-chip limit registers can be programmed with high and low limits for the conversion results; an out-of-range indicator output (ALERT) becomes active when the programmed high or low limits are violated by the conversion result. This output can be used as an interrupt.

Product Highlights

  1. Ideally suited to monitoring system variables in a variety of systems including telecommunications, process control, and industrial control.
  2. I2C-compatible serial interface. Standard and fast modes.
  3. Automatic partial power-down while not converting to maximize power efficiency.
  4. Channel sequencer operation.
  5. Integrated temp

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