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DAC63202W
  • DAC63202W
  • DAC63202W
  • DAC63202W

DAC63202W

ACTIVE

12-bit 2-channel voltage/current output smart DAC with Hi-Z, EEPROM and waveform generator in WCSP

Texas Instruments DAC63202W Product Info

1 April 2026 1

Parameters

Resolution (Bits)

12

Number of DAC channels

2

Interface type

I2C, SPI

Output voltage range (V)

0 to 5.5

Reference type

Ext, Int

Architecture

String

Rating

Catalog

Features

Current source/sink DAC, EEPROM, Smart DAC

Sample/update rate (Msps)

0.025

Power consumption (typ) (mW)

0.4

Operating temperature range (°C)

-40 to 125

Product type

General-purpose DAC, Smart DAC

Package

DSBGA (YBH)-16-2.56 mm² 1.6 x 1.6

Features

  • Programmable voltage or current outputs with flexible configuration:
    • Voltage outputs:
      • 1LSB DNL
      • Gains of 1 ×, 1.5 ×, 2 ×, 3 ×, and 4 ×
    • Current outputs:
      • 1LSB INL and DNL (8-bit)
      • ±25µA, ±50µA, ±125µA, ±250µA output-range options
  • Programmable comparator mode for all channels
  • High-impedance output when VDD is off
  • High-impedance and resistive pulldown power-down modes
  • 50MHz SPI-compatible interface
  • Automatically detects I2C, SPI, or PMBus™ interface
    • 1.62V VIH with VDD = 5.5V
  • General-purpose input/output (GPIO) configurable as multiple functions
  • Predefined waveform generation: sine, cosine, triangular, sawtooth
  • User-programmable nonvolatile memory (NVM)
  • Internal, external, or power-supply as reference
  • Wide operating range:
    • Power supply: 1.8V to 5.5V
    • Temperature: –40˚C to +125˚C
  • Tiny package:
    • 16-pin DSBGA: 1.76mm × 1.76mm, nominal
  • Programmable voltage or current outputs with flexible configuration:
    • Voltage outputs:
      • 1LSB DNL
      • Gains of 1 ×, 1.5 ×, 2 ×, 3 ×, and 4 ×
    • Current outputs:
      • 1LSB INL and DNL (8-bit)
      • ±25µA, ±50µA, ±125µA, ±250µA output-range options
  • Programmable comparator mode for all channels
  • High-impedance output when VDD is off
  • High-impedance and resistive pulldown power-down modes
  • 50MHz SPI-compatible interface
  • Automatically detects I2C, SPI, or PMBus™ interface
    • 1.62V VIH with VDD = 5.5V
  • General-purpose input/output (GPIO) configurable as multiple functions
  • Predefined waveform generation: sine, cosine, triangular, sawtooth
  • User-programmable nonvolatile memory (NVM)
  • Internal, external, or power-supply as reference
  • Wide operating range:
    • Power supply: 1.8V to 5.5V
    • Temperature: –40˚C to +125˚C
  • Tiny package:
    • 16-pin DSBGA: 1.76mm × 1.76mm, nominal

Description

The DAC63202W is a 12-bit, dual-channel, buffered, voltage-output and current-output smart digital-to-analog converter (DAC). The DAC63202W devices support Hi-Z power-down mode and Hi-Z output during power-off conditions. The DAC outputs provide a force-sense option for use as a programmable comparator and current sink. The multifunction GPIO, function generation, and programmable nonvolatile memory (NVM) enable these smart DACs for processor-less applications and design reuse. This device automatically detects I2C, SPI and PMBus interfaces, and contain an internal reference.

The feature set combined with the tiny package and low power make this smart DAC an excellent choice for applications such as voltage margining and scaling, dc set-point for biasing and calibration, and waveform generation.

The DAC63202W is a 12-bit, dual-channel, buffered, voltage-output and current-output smart digital-to-analog converter (DAC). The DAC63202W devices support Hi-Z power-down mode and Hi-Z output during power-off conditions. The DAC outputs provide a force-sense option for use as a programmable comparator and current sink. The multifunction GPIO, function generation, and programmable nonvolatile memory (NVM) enable these smart DACs for processor-less applications and design reuse. This device automatically detects I2C, SPI and PMBus interfaces, and contain an internal reference.

The feature set combined with the tiny package and low power make this smart DAC an excellent choice for applications such as voltage margining and scaling, dc set-point for biasing and calibration, and waveform generation.

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