2SA1383

2SA1383


Specifications
SKU
12611248
Details

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Parameter Symbol Min Typ Max Unit
Collector-Emitter Voltage VCEO - - 60 V
Collector-Base Voltage VCBO - - 70 V
Emitter-Base Voltage VEBO - - 5 V
Collector Current IC - - 1500 mA
Base Current IB - - 150 mA
Power Dissipation PT - - 62.5 W
Operating Junction Temperature TJ -40 - 150 掳C
Storage Temperature Range TSTG -55 - 150 掳C
Transition Frequency fT - 20 - MHz
DC Current Gain (hFE) hFE 20 100 400 -

Instructions for Use:

  1. Mounting:

    • Ensure proper heat sinking if the transistor is expected to dissipate significant power.
    • Use appropriate mounting hardware to secure the transistor to the heatsink.
  2. Biasing:

    • Bias the base-emitter junction correctly to avoid excessive base current which can lead to thermal runaway.
    • Use a current-limiting resistor in series with the base to control the base current.
  3. Operating Conditions:

    • Do not exceed the maximum ratings for collector-emitter voltage, collector current, or power dissipation.
    • Ensure that the operating junction temperature remains within the specified range to prevent damage to the device.
  4. Storage:

    • Store the transistor in a dry, cool place to prevent moisture damage.
    • Avoid exposing the transistor to extreme temperatures outside the storage temperature range.
  5. Handling:

    • Handle the transistor with care to avoid mechanical stress on the leads and body.
    • Use anti-static precautions to prevent damage from electrostatic discharge (ESD).
  6. Testing:

    • Use a multimeter or transistor tester to verify the functionality of the transistor before installation.
    • Test the circuit under controlled conditions to ensure proper operation and to identify any potential issues.
  7. Soldering:

    • Use a low-wattage soldering iron and avoid prolonged heating to prevent damage to the transistor.
    • Allow the transistor to cool down after soldering before applying power to the circuit.
  8. Circuit Design:

    • Design the circuit to include necessary protection components such as diodes for flyback protection in inductive loads.
    • Consider using a snubber circuit to reduce voltage spikes in high-frequency applications.
(For reference only)

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