DAC63004

AKTIV

Intelligenter 12-Bit-, 4-Kanal-DAC mit energieeffizientem Spannungs-/Stromausgang und Hi-Z, EEPROM u

Produktdetails

Resolution (Bits) 12 Number of DAC channels 4 Interface type I2C, SPI Output type Buffered Current, Buffered Voltage Output voltage range (V) 0 to 5.5 INL (max) (±LSB) 4 Settling time (µs) 20 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) 0.13 Operating temperature range (°C) -40 to 125 Product type General-purpose DAC, Smart DAC
Resolution (Bits) 12 Number of DAC channels 4 Interface type I2C, SPI Output type Buffered Current, Buffered Voltage Output voltage range (V) 0 to 5.5 INL (max) (±LSB) 4 Settling time (µs) 20 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) 0.13 Operating temperature range (°C) -40 to 125 Product type General-purpose DAC, Smart DAC
WQFN (RTE) 16 9 mm² (3 mm × 3 mm)
  • Programmable voltage or current outputs with flexible configuration:
    • Voltage outputs:
      • 1 LSB INL and DNL (10-bit)
      • Gains of 1x, 1.5x, 2x, 3x, and 4x
    • Current outputs:
      • 1 LSB INL and DNL (8-bit)
      • Unipolar and bipolar output range options from 25 µA to 250 µA
  • 35-µA/channel IDD in voltage-output mode
  • Programmable comparator mode for all channels
  • High-impedance output when VDD is off
  • High-impedance and resistive pulldown power-down modes
  • 50-MHz SPI-compatible interface
  • Automatically detected I2C, PMBus™, or SPI interface
    • 1.62-V VIH with VDD = 5.5 V
  • General-purpose input/output (GPIO) configurable as multiple functions
  • Predefined waveform generation: sine wave, triangular, sawtooth
  • User-programmable nonvolatile memory (NVM)
  • Internal, external, or power-supply as reference
  • Wide operating range:
    • Power supply: 1.8 V to 5.5 V
    • Temperature range: –40˚C to +125˚C
  • Tiny package: 16-pin WQFN (3 mm × 3 mm)
  • Programmable voltage or current outputs with flexible configuration:
    • Voltage outputs:
      • 1 LSB INL and DNL (10-bit)
      • Gains of 1x, 1.5x, 2x, 3x, and 4x
    • Current outputs:
      • 1 LSB INL and DNL (8-bit)
      • Unipolar and bipolar output range options from 25 µA to 250 µA
  • 35-µA/channel IDD in voltage-output mode
  • Programmable comparator mode for all channels
  • High-impedance output when VDD is off
  • High-impedance and resistive pulldown power-down modes
  • 50-MHz SPI-compatible interface
  • Automatically detected I2C, PMBus™, or SPI interface
    • 1.62-V VIH with VDD = 5.5 V
  • General-purpose input/output (GPIO) configurable as multiple functions
  • Predefined waveform generation: sine wave, triangular, sawtooth
  • User-programmable nonvolatile memory (NVM)
  • Internal, external, or power-supply as reference
  • Wide operating range:
    • Power supply: 1.8 V to 5.5 V
    • Temperature range: –40˚C to +125˚C
  • Tiny package: 16-pin WQFN (3 mm × 3 mm)

The 12-bit DAC63004 and 10-bit DAC53004 ( DACx3004) are a pin-compatible family of ultra-low-power, quad-channel, buffered, voltage-output and current-output smart digital-to-analog converters (DACs). These DACx3004 support Hi-Z power-down mode and Hi-Z output during power-off condition. The DAC outputs provide a force-sense option for use as a programmable comparator and current sink. The multifunction GPIO, function generation, and NVM enable these smart DACs for processor-less applications and design reuse. These devices automatically detect I2C, PMBus, and SPI interfaces and contain an internal reference.

The feature set combined with the tiny package and ultra-low power make these smart DACs an excellent choice for applications such as land mobile radios, pulseoximeters, notebook PCs, and other battery-operated applications for biasing, calibration, and waveform generation.

The 12-bit DAC63004 and 10-bit DAC53004 ( DACx3004) are a pin-compatible family of ultra-low-power, quad-channel, buffered, voltage-output and current-output smart digital-to-analog converters (DACs). These DACx3004 support Hi-Z power-down mode and Hi-Z output during power-off condition. The DAC outputs provide a force-sense option for use as a programmable comparator and current sink. The multifunction GPIO, function generation, and NVM enable these smart DACs for processor-less applications and design reuse. These devices automatically detect I2C, PMBus, and SPI interfaces and contain an internal reference.

The feature set combined with the tiny package and ultra-low power make these smart DACs an excellent choice for applications such as land mobile radios, pulseoximeters, notebook PCs, and other battery-operated applications for biasing, calibration, and waveform generation.

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Technische Dokumentation

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Top-Dokumentation Typ Titel Format-Optionen Neueste englische Version herunterladen Datum
* Datenblatt DACx3004 12-Bit and 10-Bit, Ultra-Low-Power, Quad Voltage and Current Output Smart DACs With Auto-Detected I2C, PMBus™, or SPI datasheet (Rev. A) PDF | HTML 08.12.2021
Circuit design Precision, Three-Wire High-Voltage Output Transmitter Using the DAC80501 and XTR200 PDF | HTML 27.01.2026
Circuit design Precision, Three-Wire, Analog Current Output Transmitter Using the DAC80501 and XTR200 PDF | HTML 27.01.2026
Product overview Smart DAC Product Selection Guide PDF | HTML 01.07.2024
Circuit design Negative Voltage Margining and Scaling Circuit With Voltage Output Smart DAC (Rev. A) PDF | HTML 14.06.2023
Circuit design Programmable Comparator Circuit Using Second Gen. Smart DAC and Fault-Dump Mode PDF | HTML 19.01.2023
Circuit design Smart DAC Sine-Wave Generation Circuit PDF | HTML 20.12.2022
Anwendungshinweis A Basic Guide to I2C PDF | HTML 08.11.2022
Anwendungshinweis Smart DAC LED Biasing Circuit with Low-Power Sleep Mode (Rev. A) PDF | HTML 15.03.2022
Anwendungshinweis High-Side Current Source LED Biasing Circuit Using Smart DACs PDF | HTML 11.02.2022
Technischer Artikel What is a smart DAC? PDF | HTML 09.04.2021
Technischer Artikel Generating pulse-width modulation signals with smart DACs PDF | HTML 09.04.2021

Design und Entwicklung

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