Produktdetails

Resolution (Bits) 12 Number of DAC channels 4 Interface type SPI Output type Buffered Voltage Output voltage range (V) -10 to 10, -2.5 to 2.5, -20 to 20, -5 to 5 INL (max) (±LSB) 1 Settling time (µs) 6 Reference type Ext, Int Architecture R-2R Rating Catalog Features SDO Power consumption (typ) (mW) 300 Operating temperature range (°C) -40 to 125
Resolution (Bits) 12 Number of DAC channels 4 Interface type SPI Output type Buffered Voltage Output voltage range (V) -10 to 10, -2.5 to 2.5, -20 to 20, -5 to 5 INL (max) (±LSB) 1 Settling time (µs) 6 Reference type Ext, Int Architecture R-2R Rating Catalog Features SDO Power consumption (typ) (mW) 300 Operating temperature range (°C) -40 to 125
VQFN (RHB) 32 25 mm² (5 mm × 5 mm)
  • Performance:
    • Specified monotonic at 16-bit resolution
    • INL: ±1 LSB maximum at 16-bit resolution
    • TUE: ±0.05% FSR, maximum
  • Integrated output buffer
    • Full-scale output voltage: ±5 V, ±10 V, ±20 V, 5 V, 10 V, 20 V, 40 V
    • High drive capability: ±15 mA
    • Per channel sense pins
  • Integrated 2.5-V precision reference
    • Initial accuracy: ±2.5 mV, maximum
    • Low drift: 10 ppm/°C, maximum
  • Reliability features:
    • CRC error check
    • Short circuit limit
    • Fault pin
  • 50-MHz, SPI-compatible serial interface
    • 4-wire mode, 1.7-V to 5.5-V operation
    • Readback and daisy-chain operations
  • Temperature range: –40°C to +125°C
  • Package: 5-mm × 5-mm, 32-pin QFN
  • Performance:
    • Specified monotonic at 16-bit resolution
    • INL: ±1 LSB maximum at 16-bit resolution
    • TUE: ±0.05% FSR, maximum
  • Integrated output buffer
    • Full-scale output voltage: ±5 V, ±10 V, ±20 V, 5 V, 10 V, 20 V, 40 V
    • High drive capability: ±15 mA
    • Per channel sense pins
  • Integrated 2.5-V precision reference
    • Initial accuracy: ±2.5 mV, maximum
    • Low drift: 10 ppm/°C, maximum
  • Reliability features:
    • CRC error check
    • Short circuit limit
    • Fault pin
  • 50-MHz, SPI-compatible serial interface
    • 4-wire mode, 1.7-V to 5.5-V operation
    • Readback and daisy-chain operations
  • Temperature range: –40°C to +125°C
  • Package: 5-mm × 5-mm, 32-pin QFN

The 16-bit DAC81404 and 12-bit DAC61404 (DACx1404) are pin-compatible, quad-channel, buffered, high-voltage-output, digital-to-analog converters (DACs). These devices include a low-drift, 2.5-V internal reference that eliminates the need for an external precision reference in most applications. The devices are specified monotonic and provide high linearity of ±1 LSB INL. Additionally, the devices implement per channel sense pins to eliminate IR drops and sense up to ±12 V of ground bounce.

A user-selectable output configuration enables full-scale bipolar output voltages of ±20 V, ±10 V, and ±5 V; and full-scale unipolar output voltages of 40 V, 20 V, 10 V and 5 V. The full-scale output range for each DAC channel is independently programmable. The integrated DAC output buffers can sink or source up to 15 mA, thus limiting the need for additional operational amplifiers.

The DACx1404 incorporate a power-on-reset circuit that connects the DAC outputs to ground at power up. The outputs remain in this mode until the device is properly configured for operation. These devices include additional reliability features, such as a CRC error check, short-circuit protection, and a thermal alarm.

Communication to the devices is performed through a 4-wire serial interface that supports operation from 1.7 V to 5.5 V.

The 16-bit DAC81404 and 12-bit DAC61404 (DACx1404) are pin-compatible, quad-channel, buffered, high-voltage-output, digital-to-analog converters (DACs). These devices include a low-drift, 2.5-V internal reference that eliminates the need for an external precision reference in most applications. The devices are specified monotonic and provide high linearity of ±1 LSB INL. Additionally, the devices implement per channel sense pins to eliminate IR drops and sense up to ±12 V of ground bounce.

A user-selectable output configuration enables full-scale bipolar output voltages of ±20 V, ±10 V, and ±5 V; and full-scale unipolar output voltages of 40 V, 20 V, 10 V and 5 V. The full-scale output range for each DAC channel is independently programmable. The integrated DAC output buffers can sink or source up to 15 mA, thus limiting the need for additional operational amplifiers.

The DACx1404 incorporate a power-on-reset circuit that connects the DAC outputs to ground at power up. The outputs remain in this mode until the device is properly configured for operation. These devices include additional reliability features, such as a CRC error check, short-circuit protection, and a thermal alarm.

Communication to the devices is performed through a 4-wire serial interface that supports operation from 1.7 V to 5.5 V.

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Technische Dokumentation

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Top-Dokumentation Typ Titel Format-Optionen Neueste englische Version herunterladen Datum
* Datenblatt DACx1404 Quad, 16-Bit and 12-Bit, High-Voltage-Output DACs With Internal Reference datasheet (Rev. A) PDF | HTML 18.05.2021
Anwendungshinweis Precision Data Converter Selection Guide PDF | HTML 14.05.2026
Anwendungshinweis A Simple, Java-Based CRC Calculator PDF | HTML 04.03.2026
Circuit design Precision, ±15V Power Supply Circuit from a +5V Source for High-Voltage Data Converters PDF | HTML 04.12.2025
Circuit design Output Overvoltage Protection Circuit for Voltage DACs With an External Feedback Pin PDF | HTML 29.07.2025
Zertifikat DAC81404EVM EU Declaration of Conformity (DoC) PDF | HTML 30.10.2023

Design und Entwicklung

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Evaluierungsplatine

DAC81404EVM — DAC81404-Evaluierungsmodul

Das DAC81404-Evaluierungsmodul (EVM) ist eine All-in-One-Entwicklungsplattform für die DACx1404-Familie. Der 4-kanalige 16-Bit-Baustein DAC81404 und der 4-kanalige 12-Bit-Baustein DAC61404 stellen eine pinkompatible Familie von
vierkanaligen, gepufferten Digital-Analog-Wandlern (DACs) mit (...)

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DACX14XX-PYTHON-FTDI-DRIVER — Example python driver for the DACx14xx family

This example python driver interfaces with the on board FTDI controller of the DACx14xx EVM ecosystem.
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