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DAC084S085CISD Datasheet PDF - Texas Instruments

Part NameDescriptionManufacturer
DAC084S085CISD 8-Bit Micro Power QUAD Digital-to-Analog Converter with Rail-to-Rail Output TI
Texas Instruments TI
DAC084S085CISD Datasheet PDF : DAC084S085CISD pdf   
DAC084S085 image

The DAC084S085 is a full-featured, general-purpose QUAD 8-bit voltage-output digital-to-analog converter (DAC) that can operate from a single 2.7-V to 5.5-V supply and consumes 1.1 mW at 3 V and 2.5 mW at 5 V. The DAC084S085 is packaged in 10-pin SON and VSSOP packages. The 10-pin SON package makes the DAC084S085 the smallest QUAD DAC in its class. The on-chip output amplifier allows rail-to rail output swing and the three wire serial interface operates at clock rates up to 40 MHz over the entire supply voltage range. Competitive devices are limited to 25-MHz clock rates at supply voltages in the 2.7-V to 3.6-V range. The serial interface is compatible with standard SPI, QSPI, MICROWIRE, and DSP interfaces.
The reference for the DAC084S085 serves all four channels and can vary in voltage between 1 V and VA, providing the widest possible output dynamic range. The DAC084S085 has a 16-bit input shift register that controls the outputs to be updated, the mode of operation, the power-down condition, and the binary input data. All four outputs can be updated simultaneously or individually depending on the setting of the two mode of operation bits.

• Ensured Monotonicity
• Low-Power Operation
• Rail-to-Rail Voltage Output
• Power-On Reset to 0 V
• Simultaneous Output Updating
• Wide Power Supply Range (2.7 V to 5.5 V)
• Industrys Smallest Package
• Power Down Modes
• Key Specifications
   – Resolution: 8 Bits
   – INL: ±0.5 LSB (Maximum)
   – DNL: +0.18 / −0.13 LSB (Maximum)
   – Setting Time: 4.5 µs (Maximum)
   – Zero Code Error: +15 mV (Maximum)
   – Full-Scale Error: −0.75 %FS (Maximum)
   – Supply Power:
   – Normal: 1.1 mW (3 V) / 2.5 mW (5 V)
   – Power Down: 0.3 µW (3 V) / 0.8 µW (5 V)

• Battery-Powered Instruments
• Digital Gain and Offset Adjustment
• Programmable Voltage and Current Sources
• Programmable Attenuators

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