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ADT7410
  • ADT7410
  • ADT7410

ADT7410

PRODUCTION

±0.5°C Accurate, 16-Bit Digital I2C Temperature Sensor

Analog Devices ADT7410 Product Info

10 February 2026 6

Features

  • High performance
    • Temperature accuracy
      • ±0.5°C from −40°C to +105°C (2.7 V to 3.6 V)
      • ±0.4°C from −40°C to +105°C (3.0 V)
    • 16-bit temperature resolution: 0.0078°C
    • Fast first temperature conversion on power-up of 6 ms
  • Easy implementation
    • No temperature calibration/correction required by user
    • No linearity correction required
  • Low power
    • Power saving 1 sample per second (SPS) mode
    • 700 µW typical at 3.3 V in normal mode
    • 7 µW typical at 3.3 V in shutdown mode
  • Wide operating ranges
    • Temperature range: −55°C to +150°C
    • Voltage range: 2.7 V to 5.5 V
  • Programmable interrupts
    • Critical overtemperature interrupt
    • Overtemperature/undertemperature interrupt
  • I2C-compatible interface
  • 8-lead narrow SOICRoHS-compliant package

Part details & applications

The ADT7410 is a high accuracy digital temperature sensor in a narrow SOIC package. It contains a band gap temperature reference and a 13-bit ADC to monitor and digitize the temperature to a 0.0625°C resolution. The ADC resolution, by default, is set to 13 bits (0.0625°C). This can be changed to 16 bits (0.0078°C) by setting Bit 7 in the configuration register (Register Address 0x03).

The ADT7410 is guaranteed to operate over supply voltages from 2.7 V to 5.5 V. Operating at 3.3 V, the average supply current is typically 210 μA. The ADT7410 has a shutdown mode that powers down the device and offers a shutdown current of typically 2 μA. The ADT7410 is rated for operation over the −55°C to +150°C temperature range.

Pin A0 and Pin A1 are available for address selection, giving the ADT7410 four possible I2C addresses. The CT pin is an open-drain output that becomes active when the temperature exceeds a programmable critical temperature limit. The default critical temperature limit is 147°C. The INT pin is also an open-drain output that becomes active when the temperature exceeds a programmable limit. The INT and CT pins can operate in either comparator or interrupt mode.

Applications

  • Medical equipment
  • Environmental control systems
  • Computer thermal monitoring
  • Thermal protection
  • Industrial process control
  • Power system monitors
  • Hand-held applications

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