產品詳細資料

Resolution (Bits) 14 Number of DAC channels 4 Interface type SPI Output type Buffered Voltage Settling time (µs) 6 Features On-chip Offset and Gain Calibration, SDO Reference type Ext Architecture R-2R Rating Catalog Output range (max) (mA/V) 16.5 Output range (min) (mA/V) -16.5 Sample/update rate (Msps) 0.125 Power consumption (typ) (mW) 260 Operating temperature range (°C) -40 to 105
Resolution (Bits) 14 Number of DAC channels 4 Interface type SPI Output type Buffered Voltage Settling time (µs) 6 Features On-chip Offset and Gain Calibration, SDO Reference type Ext Architecture R-2R Rating Catalog Output range (max) (mA/V) 16.5 Output range (min) (mA/V) -16.5 Sample/update rate (Msps) 0.125 Power consumption (typ) (mW) 260 Operating temperature range (°C) -40 to 105
TQFP (PFB) 48 81 mm² 9 x 9 VQFN (RHA) 40 36 mm² 6 x 6
  • Bipolar Output: Up to ±16V
  • Unipolar Output: 0V to +20V
  • 14-Bit Monotonic
  • Relative Accuracy: 0.5 LSB Max
  • Low Zero and Gain Errors
    • Before User Calibration: 1 LSB
    • After User Calibration: 0.031 LSB Zero Error, 0.25 LSB Gain Error
  • Low Noise: 60nV/Hz
  • Settling Time: 6µs
  • Configurable Gain: x2/x4
  • Analog Output Monitor
  • Power-Down Mode
  • SPI: Up to 50MHz, 1.8V/3V/5V Logic
  • Daisy-Chain Mode
  • Operating Temperature: -40°C to +105°C
  • Packages: QFN-40 (6x6mm), TQFP-48 (7x7mm)
  • APPLICATIONS
    • Automatic Test Equipment
    • Instrumentation
    • Industrial Process Control
    • Communications

All trademarks are the property of their respective owners.

  • Bipolar Output: Up to ±16V
  • Unipolar Output: 0V to +20V
  • 14-Bit Monotonic
  • Relative Accuracy: 0.5 LSB Max
  • Low Zero and Gain Errors
    • Before User Calibration: 1 LSB
    • After User Calibration: 0.031 LSB Zero Error, 0.25 LSB Gain Error
  • Low Noise: 60nV/Hz
  • Settling Time: 6µs
  • Configurable Gain: x2/x4
  • Analog Output Monitor
  • Power-Down Mode
  • SPI: Up to 50MHz, 1.8V/3V/5V Logic
  • Daisy-Chain Mode
  • Operating Temperature: -40°C to +105°C
  • Packages: QFN-40 (6x6mm), TQFP-48 (7x7mm)
  • APPLICATIONS
    • Automatic Test Equipment
    • Instrumentation
    • Industrial Process Control
    • Communications

All trademarks are the property of their respective owners.

The DAC8234 is a high-accuracy, quad-channel, 14-bit digital-to-analog converter (DAC) that operates from supply voltages of ±5V to ±18V in bipolar output mode, and from ±5V to +24V/-12V in unipolar mode. With a 5V reference, the DAC8234 can be configured to output ±10V, ±5V, 0V to 20V, or 0V to 10V. The DAC8234 provides 14-bit monotonicity, excellent integral nonlinearity (INL) error of ±0.5 LSB, low glitch, and low noise over the operating temperature range of -40°C to +105°C. This device is trimmed in production for very low zero and gain errors. In addition, the DAC8234 implements a user-programmable system-level calibration function to achieve ±0.031 LSB zero error and ±0.25 LSB gain error.

The DAC8234 has integrated reference buffers and output buffers. It features a standard high-speed 1.8V, 3V, or 5V serial peripheral interface (SPI) that operates at clock rates of up to 50MHz to communicate with a DSP or microprocessor. The four DAC channels and the auxiliary registers are addressed with four address bits. The device features double-buffered interface logic for simultaneous updates of all DACs. An asynchronous load input (LDAC) transfers data from the input data register to the DAC latch, and the contents of the DAC latch set the output voltage. The asynchronous RST input sets the output of all four DACs to 0V. The VMON pin is an analog monitor output that multiplexes the individual DAC outputs or the AIN pin.

The DAC8234 is pin-compatible with the DAC8734 (16-bit) and the DAC7716 (12-bit).

The DAC8234 is a high-accuracy, quad-channel, 14-bit digital-to-analog converter (DAC) that operates from supply voltages of ±5V to ±18V in bipolar output mode, and from ±5V to +24V/-12V in unipolar mode. With a 5V reference, the DAC8234 can be configured to output ±10V, ±5V, 0V to 20V, or 0V to 10V. The DAC8234 provides 14-bit monotonicity, excellent integral nonlinearity (INL) error of ±0.5 LSB, low glitch, and low noise over the operating temperature range of -40°C to +105°C. This device is trimmed in production for very low zero and gain errors. In addition, the DAC8234 implements a user-programmable system-level calibration function to achieve ±0.031 LSB zero error and ±0.25 LSB gain error.

The DAC8234 has integrated reference buffers and output buffers. It features a standard high-speed 1.8V, 3V, or 5V serial peripheral interface (SPI) that operates at clock rates of up to 50MHz to communicate with a DSP or microprocessor. The four DAC channels and the auxiliary registers are addressed with four address bits. The device features double-buffered interface logic for simultaneous updates of all DACs. An asynchronous load input (LDAC) transfers data from the input data register to the DAC latch, and the contents of the DAC latch set the output voltage. The asynchronous RST input sets the output of all four DACs to 0V. The VMON pin is an analog monitor output that multiplexes the individual DAC outputs or the AIN pin.

The DAC8234 is pin-compatible with the DAC8734 (16-bit) and the DAC7716 (12-bit).

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* Data sheet Quad, 14-Bit, High-Accuracy, ±16V Output, Serial Input D/A Converter datasheet (Rev. A) 2009年 9月 1日
EVM User's guide DAC8234EVM User Guide 2009年 10月 14日

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DAC Exerciser Program (DXP)is a software tool from Texas Instruments for evaluating DACs without the requirements of expensive pattern generators or writing complex software. When used with a Texas Instruments DAC EVM and a modular motherboard, it allows for simple and easy digital signal (...)

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DAC8411EVM-PDK DAC8411 性能展示套件 DAC8560EVM-PDK DAC8560 性能展示套件 DAC8811EVM-PDK DAC8811 性能展示套件 DAC8832EVM-PDK DAC8832 性能展示套件 DAC9881EVM-PDK DAC9881 性能展示套件
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DAC8234 IBIS Model

SBAM084.ZIP (84 KB) - IBIS Model
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The Analog Engineer’s Calculator is designed to speed up many of the repetitive calculations that analog circuit design engineers use on a regular basis. This PC-based tool provides a graphical interface with a list of various common calculations ranging from setting op-amp gain with feedback (...)
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