2SD2058-Y

2SD2058-Y


Specifications
SKU
12607861
Details

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Parameter Symbol Min Typ Max Unit Conditions
Collector-Emitter Voltage VCE - - 1000 V -
Emitter-Collector Voltage VEC - - 1000 V -
Base-Emitter Voltage VBE - - 7 V IC = 10 mA
Collector Current IC - - 15 A TA = 25掳C
Continuous Collector Current IC(cont) - - 8 A TC = 25掳C
Power Dissipation PT - - 125 W TC = 25掳C
Storage Temperature TSTG -55 - 150 掳C -
Operating Temperature TOP -55 - 150 掳C -
Transition Frequency fT - 30 - MHz IC = 150 mA
Current Gain (DC) hFE 20 60 120 - IC = 150 mA, VCE = 10 V

Instructions for Use:

  1. Mounting:

    • Ensure that the transistor is mounted on a heatsink to dissipate heat effectively, especially when operating at high currents.
    • Use thermal paste between the transistor and the heatsink to improve thermal conductivity.
  2. Biasing:

    • The base-emitter voltage (VBE) should be kept within the specified limits to avoid damage.
    • Ensure that the base current (IB) is sufficient to drive the transistor into saturation if it is being used as a switch.
  3. Power Dissipation:

    • Monitor the power dissipation (PT) to ensure it does not exceed the maximum rating. This can be calculated using the formula PT = VCE * IC.
  4. Temperature:

    • Operate the transistor within the specified temperature range to prevent thermal runaway and ensure reliable performance.
    • Use appropriate cooling methods (e.g., fans, heatsinks) to maintain the junction temperature below the maximum limit.
  5. Storage:

    • Store the transistor in a dry, cool place away from direct sunlight and sources of heat.
    • Handle the transistor with care to avoid mechanical damage or static discharge.
  6. Testing:

    • Before installing the transistor in a circuit, test its parameters using a multimeter or a transistor tester to ensure it meets the specified values.
    • Check for any short circuits or open circuits between the pins.
  7. Soldering:

    • Use a low-wattage soldering iron to avoid overheating the transistor during soldering.
    • Ensure that the solder joints are clean and free of cold solder joints.
  8. Circuit Design:

    • Design the circuit to include protective components such as diodes and resistors to protect the transistor from overvoltage and overcurrent conditions.
    • Consider using a current-limiting resistor in series with the base to control the base current.
(For reference only)

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