AD5625R

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Quad, 12-Bit nanoDAC® with 5 ppm/°C On-Chip Reference, I2C® Interface

Part Models
7
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Part Details

  • Low power, smallest pin-compatible, quad nanoDACs
  • AD5625R/AD5645R/AD5665R
    • 12-/14-/16-bit nanoDACs
    • On-chip, 2.5 V, 5 ppm/°C reference in TSSOP
    • On-chip, 2.5 V, 10 ppm/°C reference in LFCSP
    • On-chip, 1.25 V, 10 ppm/°C reference in LFCSP
  • AD5625/AD5665
    • 12-/16-bit nanoDACs
    • External reference only
  • 3 mm × 3 mm, 10-lead LFCSP; 14-lead TSSOP; and 1.665 mm × 2.245 mm, 12-ball WLCSP
  • 2.7 V to 5.5 V power supply
  • Guaranteed monotonic by design
  • Power-on reset to zero scale/midscale
  • Per channel power-down
  • Hardware LDAC and CLR functions
  • I2C-compatible serial interface supports standard (100 kHz), fast (400 kHz), and high speed (3.4 MHz) modes
AD5625R
Quad, 12-Bit nanoDAC® with 5 ppm/°C On-Chip Reference, I2C® Interface
AD5625R/AD5645R/AD5665R Functional Block Diagram AD5625R/AD5645R/AD5665R Pin Configuration AD5625R/AD5645R/AD5665R Pin Configuration AD566R Pin Configuration
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Precision DAC Error Budget Tool

The Precision DAC Error Budget Tool is a web application that calculates the DC Accuracy of precision DAC signal chains. It shows how the static errors accumulate throughout your signal chain to quickly evaluate the design tradeoffs. Calculations include the DC errors introduced by Voltage References, Operation Amplifiers and Precision DACs.

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