0
AD5110
  • AD5110
  • AD5110

AD5110

PRODUCTION

Single Channel, 128-Position, I2C, ±8% Resistor Tolerance, Nonvolatile Digital Potentiometer

Analog Devices AD5110 Product Info

10 February 2026 7

Features

  • Nominal resistor tolerance error: ±8% maximum
  • Wiper current: ±6 mA
  • Rheostat mode temperature coefficient: 35 ppm/°C
  • Low power consumption: 2.5 μA max @ 2.7 V and 125°C
  • Wide bandwidth: 4 MHz (5 kΩ option)
  • Power-on EEPROM refresh time < 50 μs
  • 50-year typical data retention at 125°C
  • 1 million write cycles
  • 2.3 V to 5.5 V analog supply operation
  • 1.8 V to 5.5 V logic supply operation
  • Wide operating temperature: −40°C to +125°C
  • Thin, 2 mm × 2 mm × 0.55 mm 8-lead LFCSP package

Part details & applications

The AD5110 provides a nonvolatile solution for 128-position adjustment applications, offering guaranteed low resistor tolerance errors of ±8% and up to ±6 mA current density in the A, B, and W pins. The low resistor tolerance, low nominal temperature coefficient and high bandwidth simplify open-loop applications, as well as tolerance matching applications.

The new low wiper resistance feature minimizes the wiper resistance in the extremes of the resistor array to only 45 Ω, typical.

The wiper settings are controllable through an I2C-compatible digital interface that is also used to readback the wiper register and EEPROM content. Resistor tolerance is stored within EEPROM, providing an end-to-end tolerance accuracy of 0.1%.

The AD5110 is available in a 2 mm × 2 mm LFCSP package. The parts are guaranteed to operate over the extended industrial temperature range of −40°C to +125°C.

APPLICATIONS

  • Mechanical potentiometer replacement
  • Portable electronics level adjustment
  • Audio volume control
  • Low resolution DAC
  • LCD panel brightness and contrast control
  • Programmable voltage to current conversion
  • Programmable filters, delays, time constants
  • Feedback resistor programmable power supply
  • Sensor calibration

Subscribe to Welllinkchips !
Your Name
* Email
Submit a request