P314V

P314V


Specifications
SKU
12611553
Details

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Parameter Description Value
Part Number Unique identifier for the component P314V
Type Type of component Phototransistor
Package Physical package type TO-46
Emission Wavelength Wavelength of emitted light 940 nm
Collector-Emitter Voltage (VCE) Maximum voltage between collector and emitter 50 V
Collector Current (IC) Maximum current through the collector 50 mA
Peak Emission Power Maximum peak power of emission 10 mW
Operating Temperature Range Range of temperatures where the device can operate -40掳C to +85掳C
Storage Temperature Range Range of temperatures where the device can be stored -40掳C to +125掳C
Sensitivity (A/W) Responsivity of the phototransistor to light 0.2 A/W
Rise Time (tr) Time taken for the output to rise from 10% to 90% of its final value 5 渭s
Fall Time (tf) Time taken for the output to fall from 90% to 10% of its initial value 5 渭s
Lead Soldering Temperature Maximum temperature for soldering leads 260掳C (10 seconds)

Instructions:

  1. Handling and Storage:

    • Store the P314V in a dry, cool place away from direct sunlight.
    • Avoid exposing the component to temperatures outside the storage temperature range (-40掳C to +125掳C).
  2. Mounting and Soldering:

    • Use a soldering iron with a temperature not exceeding 260掳C.
    • Limit the soldering time to 10 seconds to prevent damage to the component.
    • Ensure that the leads are securely soldered to avoid mechanical stress.
  3. Electrical Connections:

    • Connect the collector (C) to the positive supply or load.
    • Connect the emitter (E) to ground or the other side of the load.
    • The base (B) is typically left unconnected unless used for biasing.
  4. Operational Considerations:

    • Ensure that the operating temperature remains within the specified range (-40掳C to +85掳C).
    • Do not exceed the maximum ratings for collector-emitter voltage (50 V) and collector current (50 mA).
    • For optimal performance, use a suitable optical filter to block ambient light and reduce interference.
  5. Testing:

    • Test the component using a constant current source to avoid exceeding the maximum current ratings.
    • Measure the collector-emitter voltage and current to verify proper operation.
  6. Disposal:

    • Dispose of the component according to local regulations for electronic waste.
(For reference only)

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