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2-channel 12-bit Output Current D/A Converter with 4-quadrant Resistor

Model: AD5405

  • 8-channel, 14-bit voltage output DAC
  • Guaranteed monotonic
  • On-chip 1.25 V/2.5 V, 10 ppm/°C reference
  • Temperature range: -40°C to +85°C
  • Rail-to-rail output amplifier
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The AD5405 is a CMOS, 12-bit, dual-channel, current output digital-to-analog converter (DAC). This device operates from a 2.5 V to 5.5 V power supply, making it suited to battery-powered and other applications.

As a result of manufacture with a CMOS submicron process, the device offers excellent 4-quadrant multiplication characteristics, with large signal multiplying bandwidths of up to 10 MHz.

The applied external reference input voltage (VREF) determines the full-scale output current. An integrated feedback resistor (RFB) provides temperature tracking and full-scale voltage output when combined with an external I-to-V precision amplifier. This device also contains the 4-quadrant resistors necessary for bipolar operation and other configuration modes.

This DAC uses data readback, allowing the user to read the contents of the DAC register via the DB pins. On power-up, the internal register and latches are filled with 0s, and the DAC outputs are at zero scale. The AD5405 has a 6 mm × 6 mm, 40-lead LFCSP package.

  • 8-channel, 14-bit voltage output DAC
  • Guaranteed monotonic
  • On-chip 1.25 V/2.5 V, 10 ppm/°C reference
  • Temperature range: -40°C to +85°C
  • Rail-to-rail output amplifier
  • Power-down mode
  • Package types:
    • 64-lead LFCSP (9 mm × 9 mm)
    • 52-lead LQFP (10 mm × 10 mm)
  • 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
    • Instrumentation and industrial control
    • Power amplifier control
    • Level setting (ATE)
    • Control systems
    • Micro electromechanical systems (MEMs)
    • Variable optical attenuators (VOAs)
    • Optical transceivers (MSA 300, XFP)
 
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