AD9859YSVZ

AD9859YSVZ

Category: Available (Qty:9999999)
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Description

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Parameter Description Min Typ Max Unit
Output Frequency Range The range of output frequencies that can be generated 60 MHz
Power Supply Voltage Operating voltage for the device 2.3 5.5 V
Power Consumption Current consumption at 3.3V supply 170 mA
Phase Noise Phase noise at 1 kHz offset from carrier (at 10 MHz output) -124 dBc/Hz
Spurious Free Dynamic Range (SFDR) SFDR at 10 MHz output, typical 68 dBc
Reference Input Frequency Maximum frequency of the reference clock input 30 MHz
Package Type Type of package TSSOP
Operating Temperature Range Range of temperatures over which the device is specified to operate -40 85 °C

Instructions for AD9859YSVZ

  1. Powering the Device:

    • Ensure the power supply voltage is within the specified range of 2.3V to 5.5V.
    • Use a stable and clean power source to minimize noise.
  2. Reference Clock Input:

    • Connect a stable reference clock with a frequency up to 30 MHz to the REFCLK pin.
    • A stable reference clock is crucial for accurate frequency generation.
  3. Setting Output Frequency:

    • Program the device using the SPI interface to set the desired output frequency within the 0 to 60 MHz range.
    • Follow the programming sequence detailed in the datasheet for setting the frequency control word.
  4. Output Signal Handling:

    • The output signal is available on the SIN and COS differential outputs.
    • For single-ended applications, only one of these outputs may be used.
  5. Thermal Considerations:

    • Ensure adequate heat dissipation if operating near the upper limits of power consumption or temperature range.
    • Place the device away from other heat-generating components if possible.
  6. Handling Static Electricity:

    • Handle the device with care to avoid damage from static electricity.
    • Use appropriate ESD protection measures during handling and installation.
  7. Testing and Validation:

    • After setup, verify the output frequency and signal integrity using an oscilloscope or spectrum analyzer.
    • Check phase noise and spurious levels to ensure they meet application requirements.

Refer to the specific datasheet for more detailed information and exact specifications.

(For reference only)

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