ARF370

Specifications Symbol Characteristic Conditions Tj[°C] Value Unit BLOCKING V RRM Repetitive peak reverse voltage 150 4500 V V RSM Non-repetitive peak reverse voltage 150 4600 V I RRM Repetitive peak reverse current V=VRRM 150 50 MA CONDUCTING I F (AV)...

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SeekIC No. : 004287955 Detail

ARF370: Specifications Symbol Characteristic Conditions Tj[°C] Value Unit BLOCKING V RRM Repetitive peak reverse voltage 150 4500 V V RSM Non-repetitive peak reverse voltage 1...

floor Price/Ceiling Price

Part Number:
ARF370
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: 2024/12/25

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Product Details

Description



Specifications

Symbol Characteristic Conditions Tj
[°C]
Value Unit
BLOCKING
V RRM
Repetitive peak reverse voltage
150 4500 V
V RSM Non-repetitive peak reverse voltage 150 4600 V
I RRM Repetitive peak reverse current V=VRRM 150 50 MA

CONDUCTING
I F (AV) Mean forward current 180° sin ,50 Hz, Th=55°C, double side cooled 485 A
I F (AV) Mean forward current 180° sin ,50 Hz, Tc=55°C, double side cooled 490 A
I FSM Surge forward current Sine wave, 10 ms
without reverse voltage up to 50% VRSM
150 4 KA
I² t I² t 80 x 1E3 A²s
V FM Forward voltage Forward current = 1200 A 25 3.4 V
V F(TO) Threshold voltage 150 1.74 V
r F Forward slope resistance 150 1.700 mohm
SWITCHING
t rr Reverse recovery time I F = 1000 A
di/dt= 100 A/µs
VR =100 V
150 5 µs
Q rr Reverse recovery charge 700 µC
I rr Peak reverse recovery current 280 A
s Softness (s-factor), min 0.5
V FR Peak forward recovery di/dt = 400 A/µs 150 80 v
MOUNTING
R th(j-h) Thermal impedance, DC Junction to heatsink, double side cooled 52 °C/kW
T j Operating junction temperature -30 / 150 °C
F Mounting force 8.4/9.4 kN
Mass 280 g



VRRM4500[V]IF(AV)sine wave 50 Hz Th=55°C485[A]IFSMsine wave 10 ms Vr<10V4[A]I²tTj max80[A²•s•10³]IRRMTj max50[mA]QrrTj max700[µC]trrTj max5[µs]IFTj max1000[A](di/dt)Tj max100[A/µs]VF(T0)1.74[V]rFTj max1.7[mW]Tj max150[°C]Rth(j-h)Double side RthDC = Rth 180° sin52[²C/kW]Rth(j-h)Double side RthDC = Rth 120° sin57.9[²C/kW]Weight280[g]F8.4/9.4[kN]OUTLINEC0




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