BTS410D

BTS410D


Specifications
SKU
12609164
Details

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Parameter Symbol Min Typ Max Unit Conditions
Continuous Drain Current ID - 210 - A Tc = 25掳C, VGS = 10V
Pulse Drain Current IDP - 350 - A Tc = 25掳C, VGS = 10V, tP = 10ms, Duty cycle 1%
Gate-Source Voltage VGS -18 0 18 V
Drain-Source Breakdown Voltage BVdss 45 - 50 V
RDS(on) at 25掳C RDS(on) - 4.4 - m惟 VGS = 10V, ID = 210A
RDS(on) at 125掳C RDS(on) - 7.0 - m惟 VGS = 10V, ID = 210A
Gate Charge Qg - 160 - nC VGS = 10V, VDS = 12V, ID = 210A
Input Capacitance Cin - 1400 - pF VGS = 0V, f = 1MHz
Output Capacitance Cout - 95 - pF VDS = 12V, f = 1MHz
Reverse Transfer Capacitance Crss - 180 - pF VDS = 12V, VGS = 0V, f = 1MHz
Thermal Resistance, Junction to Case R胃JC - 0.45 - 掳C/W
Operating Temperature Range TJ -40 - 150 掳C
Storage Temperature Range Tstg -65 - 150 掳C

Instructions for Use:

  1. Power Supply and Grounding: Ensure that the power supply and ground connections are secure and capable of handling the maximum current specified.
  2. Heat Sinking: Given the high current capabilities, use an appropriate heat sink to maintain the junction temperature within the operating range.
  3. Gate Drive: Apply a gate-source voltage (VGS) of at least 10V to ensure the device is fully on and to minimize RDS(on).
  4. Pulse Operation: For pulse operation, ensure the pulse width and duty cycle do not exceed the specified limits to avoid overheating.
  5. Capacitance Considerations: Be aware of the input, output, and reverse transfer capacitances when designing the circuit to avoid unwanted oscillations or delays.
  6. Thermal Management: Monitor the device temperature to prevent it from exceeding the maximum operating temperature. Use thermal paste and a heatsink if necessary.
  7. Storage and Handling: Store the device in a dry, cool environment and handle with care to avoid damage to the leads and package.
  8. Electrostatic Discharge (ESD) Protection: Use ESD protection measures when handling the device to prevent damage from static electricity.

Safety Precautions:

  • Do not exceed the maximum ratings as this can lead to permanent damage.
  • Ensure proper ventilation to dissipate heat effectively.
  • Use appropriate protective equipment when working with high currents and voltages.
(For reference only)

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