DAC70502

ACTIVE

Dual-channel, 1-LSB INL, 14-bit, SPI voltage-output digital-to-analog converter (DAC)

Product details

Resolution (Bits) 14 Number of DAC channels 2 Interface type I2C, SPI Output type Buffered Voltage Output voltage range (V) 0 to 5.5 INL (max) (±LSB) 1 Settling time (µs) 5 Reference type Ext, Int Architecture R-2R Rating Catalog Features Reset to Mid-Scale Sample/update rate (Msps) 0.2 Power consumption (typ) (mW) 3.6 Operating temperature range (°C) -40 to 125 Product type Precision DAC
Resolution (Bits) 14 Number of DAC channels 2 Interface type I2C, SPI Output type Buffered Voltage Output voltage range (V) 0 to 5.5 INL (max) (±LSB) 1 Settling time (µs) 5 Reference type Ext, Int Architecture R-2R Rating Catalog Features Reset to Mid-Scale Sample/update rate (Msps) 0.2 Power consumption (typ) (mW) 3.6 Operating temperature range (°C) -40 to 125 Product type Precision DAC
WSON (DRX) 10 6.25 mm² (2.5 mm × 2.5 mm)
  • 16-bit performance: 1-LSB INL and DNL (max)
  • Low glitch energy: 4 nV-s
  • Wide power supply: 2.7 V to 5.5 V
  • Buffered output range: 5 V, 2.5 V, or 1.25 V
  • Low power: 1 mA per channel at 5.5 V
  • Integrated 5-ppm/˚C (max), 2.5-V precision reference
  • Pin-selectable serial interface
    • 3-wire, SPI compatible up to 50-MHz
    • 2-wire, I2C compatible
  • Power-on-reset: zero scale or midscale
  • 1.62-V VIH with VDD = 5.5 V
  • Temperature range: –40˚C to +125˚C
  • Package: Tiny 10-pin WSON
  • 16-bit performance: 1-LSB INL and DNL (max)
  • Low glitch energy: 4 nV-s
  • Wide power supply: 2.7 V to 5.5 V
  • Buffered output range: 5 V, 2.5 V, or 1.25 V
  • Low power: 1 mA per channel at 5.5 V
  • Integrated 5-ppm/˚C (max), 2.5-V precision reference
  • Pin-selectable serial interface
    • 3-wire, SPI compatible up to 50-MHz
    • 2-wire, I2C compatible
  • Power-on-reset: zero scale or midscale
  • 1.62-V VIH with VDD = 5.5 V
  • Temperature range: –40˚C to +125˚C
  • Package: Tiny 10-pin WSON

The 16-bit DAC80502, 14-bit DAC70502, and 12-bit DAC60502 (DACx0502) digital-to-analog converters (DACs) are highly accurate, low-power devices with voltage output.

The DACx0502 offer linearity of < 1 LSB. The high accuracy combined with tiny package make the DACx0502 an excellent choice for applications such as gain and offset calibration, current or voltage set point generation, and power-supply control. These devices include a 2.5-V, 5-ppm/°C internal reference, giving full-scale output voltage ranges of 1.25 V,
2.5 V, or 5 V. The DACx0502 incorporate a power-on-reset circuit that makes sure the DAC output powers up at zero scale or midscale based on the status of RSTSEL pin, and remains at that scale until a valid code is written to the device.

The digital interface of the DACx0502 can be configured to SPI or I2C mode using the SPI2C pin. In SPI mode, the DACx0502 use a versatile 3-wire serial interface that operates at clock rates up to 50 MHz. In I2C mode, the DACx0502 operate in standard (100 kbps), fast (400 kbps), and fast+ (1.0 Mbps) modes.

The 16-bit DAC80502, 14-bit DAC70502, and 12-bit DAC60502 (DACx0502) digital-to-analog converters (DACs) are highly accurate, low-power devices with voltage output.

The DACx0502 offer linearity of < 1 LSB. The high accuracy combined with tiny package make the DACx0502 an excellent choice for applications such as gain and offset calibration, current or voltage set point generation, and power-supply control. These devices include a 2.5-V, 5-ppm/°C internal reference, giving full-scale output voltage ranges of 1.25 V,
2.5 V, or 5 V. The DACx0502 incorporate a power-on-reset circuit that makes sure the DAC output powers up at zero scale or midscale based on the status of RSTSEL pin, and remains at that scale until a valid code is written to the device.

The digital interface of the DACx0502 can be configured to SPI or I2C mode using the SPI2C pin. In SPI mode, the DACx0502 use a versatile 3-wire serial interface that operates at clock rates up to 50 MHz. In I2C mode, the DACx0502 operate in standard (100 kbps), fast (400 kbps), and fast+ (1.0 Mbps) modes.

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Technical documentation

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Top documentation Type Title Format options Date
* Data sheet DACx0502, Dual, 16-Bit, 14-Bit, and 12-Bit, 1-LSB INL, Voltage-Output DACs With Precision Internal Reference datasheet (Rev. A) PDF | HTML Apr 16, 2020
Application note Precision Data Converter Selection Guide PDF | HTML May 14, 2026
Circuit design Precision, Three-Wire High-Voltage Output Transmitter Using the DAC80501 and XTR200 PDF | HTML Jan 27, 2026
Circuit design Precision, Three-Wire, Analog Current Output Transmitter Using the DAC80501 and XTR200 PDF | HTML Jan 27, 2026
Application note A Basic Guide to I2C PDF | HTML Nov 8, 2022

Design & development

For additional terms or required resources, click any title below to view the detail page where available.

Evaluation board

DAC80502-01EVM — DAC80502 and DAC80501 evaluation module

The DAC80502-01EVM evaluation module (EVM) is a platform for evaluating the DAC80501 and DAC80502 devices. The DAC80501 and DAC80502 are both installed on the EVM. DAC80501 is a single-channel buffered low-voltage-output digital-to-analog converter (DAC) in 16-bit resolution. DAC80502 is a (...)
User guide: PDF | HTML
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Support software

SBAC259 — DAC80502EVM Software

Supported products & hardware
Simulation model

DAC80502DRX IBIS Model

SBAM433.ZIP (25 KB) - IBIS model
Supported products & hardware
Design tool

ADC-DAC-TO-VREF-SELECT-DESIGN-TOOL — The ADC-TO-VREF-SELECT tool enables the pairing of TI ADCs, DACs, and series voltage references.

The ADC-TO-VREF-SELECT tool enables the pairing of TI analog-to-digital converters (ADCs) and series voltage references. Users can select an ADC device and the desired reference voltage, and the tool will list up to two voltage reference recommendations.
Supported products & hardware
Reference design

TIDA-010089 — Two-quadrant, 15V, 8A, programmable linear DC power supply reference design

This reference design demonstrates a low-noise, efficient, bidirectional power supply that achieves less than ±0.02% full-scale (FS) current and voltage control accuracy. The design utilizes an analog feedback loop for precise current control and implements a voltage tracking circuit to minimize (...)

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Package Pins CAD symbols, footprints & 3D models
WSON (DRX) 10 Ultra Librarian

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