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VNB20N07TR-E

Specifications

SKU: 5383234

BUY VNB20N07TR-E https://www.utsource.net/itm/p/5383234.html
FULLY AUTOPROTECTED POWER MOSFET
Parameter Symbol Min Typ Max Unit Notes
Drain-Source Voltage VDS - - 70 V
Gate-Source Voltage VGS -15 - 15 V
Continuous Drain Current ID - 20 - A @ TC = 25°C
Pulse Drain Current ID(peak) - 40 - A @ TC = 25°C, tp = 10 μs
Power Dissipation PTOT - - 180 W @ TC = 25°C
Junction Temperature TJ - - 150 °C
Storage Temperature TSTG -65 - 150 °C
Thermal Resistance, Junction to Case RθJC - 0.5 - °C/W
Input Capacitance Ciss - 1200 - pF @ VDS = 30V, f = 1 MHz
Output Capacitance Coss - 270 - pF @ VDS = 30V, f = 1 MHz
Reverse Transfer Capacitance Crss - 130 - pF @ VDS = 30V, f = 1 MHz
Gate Charge QG - 29 - nC @ VGS = 10V, ID = 20A
Turn-On Delay Time td(on) - 20 - ns @ VGS = 10V, ID = 20A
Rise Time tr - 25 - ns @ VGS = 10V, ID = 20A
Turn-Off Delay Time td(off) - 25 - ns @ VGS = 10V, ID = 20A
Fall Time tf - 25 - ns @ VGS = 10V, ID = 20A

Instructions:

  1. Mounting and Handling:

    • Ensure that the device is handled with care to avoid mechanical damage.
    • Use appropriate heat sinks to manage thermal resistance and ensure proper cooling.
  2. Electrical Connections:

    • Connect the drain (D), source (S), and gate (G) terminals correctly to avoid damage.
    • Use short, low-inductance leads for high-frequency applications.
  3. Gate Drive:

    • Apply a gate-source voltage (VGS) within the specified range to turn the device on or off.
    • Ensure the gate drive circuit can provide the required gate charge (QG) to switch the device efficiently.
  4. Thermal Management:

    • Monitor the junction temperature (TJ) to prevent overheating.
    • Use thermal paste between the device and the heat sink to improve thermal conductivity.
  5. Storage and Operating Conditions:

    • Store the device in a dry, cool place within the storage temperature range.
    • Operate the device within the specified operating temperature range to ensure reliability.
  6. Testing and Troubleshooting:

    • Use a multimeter to check continuity and resistance values for initial testing.
    • If the device fails, check for overvoltage, overcurrent, or thermal issues.
(For reference only)

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