MTY25N60D

Features: • Avalanche Energy Specified• Diode is Characterized for Use in Bridge Circuits• IDSS and VDS(on) Specified at Elevated TemperatureSpecifications Rating Symbol Value Unit DraintoSource Voltage VDSS 600 Vdc DraintoGate Voltage (RGS = 1.0 MW) VDGR 600 ...

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SeekIC No. : 004431021 Detail

MTY25N60D: Features: • Avalanche Energy Specified• Diode is Characterized for Use in Bridge Circuits• IDSS and VDS(on) Specified at Elevated TemperatureSpecifications Rating Symbol Val...

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Part Number:
MTY25N60D
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/5/12

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Product Details

Description



Features:

• Avalanche Energy Specified
• Diode is Characterized for Use in Bridge Circuits
• IDSS and VDS(on) Specified at Elevated Temperature



Specifications

Rating Symbol Value Unit
DraintoSource Voltage VDSS 600 Vdc
DraintoGate Voltage (RGS = 1.0 MW) VDGR 600 Vdc
GatetoSource Voltage - Continuous
VGS
VGSM
± 20
± 40
Vdc
Vpk
Drain Current - Continuous @ TC = 25°C
Drain Current - Single Pulse (tp 10 s)


ID
IDM
25
65
Adc
Apk
Total Power Dissipation
Derate above 25°C

PD
300
2.38
Watts
Single Pulse DraintoSource Avalanche Energy - Starting TJ = 25°C
(VDD = 30 Vdc, VGS = 5.0 Vdc, Peak IL = 9.0 Apk, L = 5.0 mH, RG = 25)
EAS 3000 mJ
Thermal Resistance - Junction to Case
Thermal Resistance - Junction to Ambient
RqJC
RqJA
0.42
40
°C/W
Maximum Lead Temperature for Soldering Purposes, 1/8, from case for 10 seconds TL 260 °C
Operating and Storage Temperature Range TJ, Tstg 55 to 150 °C



Description

This MTY25N60D is designed to withstand high energy in the avalanche and commutation modes. This new energy efficient design also offers a draintosource diode with fast recovery time. Designed for high voltage, high speed switching applications in power supplies, converters, PWM motor controls, and other inductive loads. The avalanche energy capability is specified to eliminate the guesswork in designs where inductive loads are switched and offer additional safety margin against unexpected voltage transients.




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