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40-channel 14-bit Single Output Voltage D/A Converter

Model: AD5380

  • 40-channel converter
  • Guaranteed monotonic to 14 bits
  • INL error: ±4 LSB max
  • On-Chip 1.25 V/2.5 V Reference with 10 ppm/ºC reference
  • Temperature range: –40°C to +85°C
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The AD5380 is a complete, single-supply, 40-channel, 14-bit DAC available in a 100-lead LQFP package. All 40 channels have an on-chip output amplifier with rail-to-rail operation. The AD5380 includes a programmable internal 1.25 V/2.5 V, 10 ppm/°C reference, an on-chip channel monitor function that multiplexes the analog outputs to a common MON_OUT pin for external monitoring, and an output amplifier boost mode that allows optimization of the amplifier slew rate. The AD5380 contains a double-buffered parallel interface that features a 20 ns WR pulse width, an SPI-, QSPI-, -MICROWIRE, -DSP compatible serial interface with interface speeds in excess of 30 MHz, and an I2C-compatible interface that supports a 400 kHz data transfer rate.

An input register followed by a DAC register provides double buffering, allowing the DAC outputs to be updated independently or simultaneously using the LDAC input.

Each channel has a programmable gain and offset adjust register that allows the user to fully calibrate any DAC channel. Power consumption is typically 0.25 mA/channel with boost off.

  • 40-channel converter
  • Guaranteed monotonic to 14 bits
  • INL error: ±4 LSB max
  • On-Chip 1.25 V/2.5 V Reference with 10 ppm/ºC reference
  • Temperature range: –40°C to +85°C
  • Rail-to-rail output amplifier
  • Power down
  • Robust 6.5 kV HBM and 2 kV FICDM ESD rating
  • User interfaces: Parallel Serial (SPI®-, QSPIâ„¢-, MICROWIREâ„¢-, DSP-compatible, featuring data readback), I2C®-compatible
  • Integrated Functions
    • Channel monitor
    • Simultaneous output update via LDAC
    • Clear function to user programmable code
    • Amplifier boost mode to optimize slew rate
    • User programmable offset and gain adjust
    • Toggle mode enables square wave generation
    • Thermal monitor
  • Applications
    • Variable optical attenuators (VOA)
    • Level setting (ATE)
    • Optical micro-electro-mechanical systems (MEMS)
    • Control systems
    • Instrumentation
 
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