Details
BUY 2SJ349 https://www.utsource.net/itm/p/11535088.html
Parameter | Symbol | Value | Unit |
---|---|---|---|
Collector-Emitter Voltage (Max) | VCE(max) | 800 | V |
Collector-Base Voltage (Max) | VCB(max) | 800 | V |
Emitter-Base Voltage (Max) | VEB(max) | 5 | V |
Collector Current (Max) | IC(max) | 15 | A |
Base Current (Max) | IB(max) | 3 | A |
Power Dissipation (Max) | PT(max) | 150 | W |
Operating Temperature Range | Top | -55 to 150 | 掳C |
Storage Temperature Range | Tstg | -65 to 150 | 掳C |
Transition Frequency | fT | 2.5 | MHz |
Maximum Junction Temperature | TJ(max) | 150 | 掳C |
Instructions for Use:
Handling Precautions:
- Handle the 2SJ349 with care to avoid mechanical damage.
- Use proper ESD (Electrostatic Discharge) protection when handling the device.
Mounting:
- Ensure that the mounting surface is clean and flat.
- Use appropriate thermal grease to enhance heat dissipation.
- Torque the mounting screws to the recommended values to avoid over-tightening.
Biasing:
- Ensure that the base current (IB) is within the specified limits to prevent damage.
- Use a current-limiting resistor if necessary to control the base current.
Heat Dissipation:
- Use a suitable heat sink to keep the junction temperature below the maximum limit (150掳C).
- Monitor the temperature during operation to ensure it stays within safe limits.
Operating Conditions:
- Operate the device within the specified voltage and current ratings to avoid damage.
- Avoid exceeding the maximum power dissipation (PT(max)).
Storage:
- Store the device in a dry, cool place away from direct sunlight.
- Follow the storage temperature range (-65掳C to 150掳C) to ensure long-term reliability.
Testing:
- Use appropriate test equipment to verify the device parameters.
- Follow standard testing procedures to avoid damaging the device.
Soldering:
- Use a controlled soldering process to avoid excessive heat.
- Soldering temperature should not exceed 300掳C and should be completed within 10 seconds.
By following these guidelines, you can ensure the reliable and efficient operation of the 2SJ349 transistor.
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