VN920-B513TR

VN920-B513TR


Specifications
SKU
12606876
Details

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Parameter Description
Part Number VN920-B513TR
Type MOSFET (Metal-Oxide-Semiconductor Field-Effect Transistor)
Package TO-220AB
Polarity N-Channel
VDS (Drain-Source Voltage) 60V (Maximum)
VGS (Gate-Source Voltage) 卤20V (Maximum)
RDS(on) (On-State Resistance) 4.5 m惟 (Typical @ VGS = 10V, ID = 20A)
ID (Continuous Drain Current) 20A (Maximum @ TC = 25掳C)
Power Dissipation (PD) 110W (Maximum @ TC = 25掳C)
Junction Temperature (TJ) -55掳C to +175掳C
Storage Temperature (TSTG) -55掳C to +150掳C
Thermal Resistance (R胃JC) 1.5掳C/W (Junction to Case)
Gate Charge (Qg) 105 nC (Typical @ VGS = 10V)
Input Capacitance (Ciss) 2850 pF (Typical @ VDS = 15V, f = 1 MHz)
Output Capacitance (Coss) 115 pF (Typical @ VDS = 15V, f = 1 MHz)
Reverse Transfer Capacitance (Crss) 120 pF (Typical @ VDS = 15V, f = 1 MHz)
Total Capacitance (Ctot) 2970 pF (Typical @ VDS = 15V, f = 1 MHz)
Turn-On Delay Time (td(on)) 12 ns (Typical @ VGS = 10V, ID = 10A)
Rise Time (tr) 35 ns (Typical @ VGS = 10V, ID = 10A)
Turn-Off Delay Time (td(off)) 22 ns (Typical @ VGS = 10V, ID = 10A)
Fall Time (tf) 35 ns (Typical @ VGS = 10V, ID = 10A)

Instructions for Use:

  1. Handling and Storage:

    • Store in a dry, cool place away from direct sunlight.
    • Handle with care to avoid damage to the leads and body.
    • Use appropriate ESD (Electrostatic Discharge) protection when handling.
  2. Mounting:

    • Ensure proper heat sinking if operating at high power levels.
    • Use thermal compound between the transistor and the heatsink for better thermal conductivity.
    • Tighten the mounting screw to the recommended torque (typically 1.5 to 2.5 Nm).
  3. Biasing:

    • Apply the gate voltage (VGS) within the specified limits to avoid damage.
    • Ensure the gate-source voltage does not exceed 卤20V.
    • Use a gate resistor to limit current and prevent oscillations.
  4. Operation:

    • Do not exceed the maximum ratings for VDS, ID, and PD.
    • Monitor the junction temperature to ensure it stays within the safe operating range.
    • Use a snubber circuit if switching inductive loads to protect against voltage spikes.
  5. Testing:

    • Test the device in a controlled environment to verify its performance.
    • Use a multimeter to check for continuity and resistance values.
    • Perform functional tests under load conditions to ensure reliable operation.
  6. Safety:

    • Always follow safety guidelines when working with high voltages and currents.
    • Ensure proper grounding and isolation to prevent electrical hazards.
    • Use protective equipment such as gloves and goggles when necessary.
(For reference only)

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