PI3A3159ZCEX

PI3A3159ZCEX


Specifications
SKU
5002992
Details

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3.0V, SOTiny 0.4? SPDT Analog Switch
Parameter Symbol Min Typ Max Unit Notes
Supply Voltage VDD 2.0 - 5.5 V
Output Voltage VO 1.2 - 5.0 V
Quiescent Current IQ - 1.0 - μA
Dropout Voltage VDROPOUT - 0.3 - V
Load Regulation - - 0.5 - %
Line Regulation - - 0.5 - %
Thermal Shutdown TSD - - 160 °C
Short-Circuit Protection SCP - - - Active
Operating Temperature TOPR -40 - 85 °C

Instructions for PI3A3159ZCEX

  1. Supply Voltage (VDD):

    • Ensure the supply voltage is within the range of 2.0V to 5.5V.
    • Exceeding this range can damage the device.
  2. Output Voltage (VO):

    • The output voltage can be adjusted from 1.2V to 5.0V.
    • Use external resistors to set the desired output voltage according to the datasheet formula.
  3. Quiescent Current (IQ):

    • The quiescent current is typically 1.0μA.
    • This low current consumption makes the device suitable for battery-powered applications.
  4. Dropout Voltage (VDROPOUT):

    • The dropout voltage is typically 0.3V.
    • Ensure the input voltage is at least 0.3V higher than the desired output voltage to maintain regulation.
  5. Load Regulation:

    • The load regulation is typically 0.5%.
    • This indicates the change in output voltage due to changes in load current.
  6. Line Regulation:

    • The line regulation is typically 0.5%.
    • This indicates the change in output voltage due to changes in input voltage.
  7. Thermal Shutdown (TSD):

    • The device will shut down if the temperature exceeds 160°C.
    • This protects the device from overheating.
  8. Short-Circuit Protection (SCP):

    • The device includes short-circuit protection to prevent damage in case of a short circuit at the output.
  9. Operating Temperature (TOPR):

    • The device is designed to operate within the temperature range of -40°C to 85°C.
    • Ensure the ambient temperature is within this range to avoid performance issues or damage.
  10. Installation and Handling:

    • Handle the device with care to avoid static discharge.
    • Follow proper soldering techniques to ensure reliable connections.
    • Use appropriate heat sinks if operating near the maximum temperature limits.
(For reference only)

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