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HFP5N65U Datasheet, PDF (2/8 Pages) SemiHow Co.,Ltd. – Superior Avalanche Rugged Technology
Package Marking and Odering Information
Device Marking Week Marking
Package
Packing
HFP5N65U
YWWX
TO-220
Tube
HFP5N65U
YWWXg
TO-220
Tube
Quantity
50
50
RoHS Status
Pb Free
Halogen Free
Electrical Characteristics TC=25 qC unless otherwise specified
Symbol
Parameter
Test Conditions
Min
On Characteristics
VGS Gate Threshold Voltage
VDS = VGS, ID = 250 Ꮃ
2.5
Static Drain-Source
RDS(ON) On-Resistance
VGS = 10 V, ID = 2.25 A
--
Off Characteristics
BVDSS Drain-Source Breakdown Voltage VGS = 0 V, ID = 250 Ꮃ
650
ǻBVDSS Breakdown Voltage Temperature
/ǻTJ Coefficient
ID = 250 Ꮃ, Referenced to 25୅
--
IDSS
Zero Gate Voltage Drain Current VDS = 650 V, VGS = 0 V
VDS = 520 V, TC = 125୅
--
--
IGSS Gate-Body Leakage Current
VGS = ρ30 V, VDS = 0 V
--
Dynamic Characteristics
Ciss Input Capacitance
Coss Output Capacitance
--
VDS = 25 V, VGS = 0 V,
--
f = 1.0 MHz
Crss Reverse Transfer Capacitance
--
Switching Characteristics
td(on) Turn-On Time
tr Turn-On Rise Time
td(off) Turn-Off Delay Time
tf
Turn-Off Fall Time
Qg Total Gate Charge
Qgs Gate-Source Charge
Qgd Gate-Drain Charge
VDS = 325 V, ID = 4.5 A,
--
RG = 25 Ÿ
--
--
(Note 4,5) --
VDS = 520V, ID = 4.5 A,
--
VGS = 10 V
--
(Note 4,5) --
Source-Drain Diode Maximum Ratings and Characteristics
IS Continuous Source-Drain Diode Forward Current
--
ISM Pulsed Source-Drain Diode Forward Current
--
VSD Source-Drain Diode Forward Voltage IS = 4.5 A, VGS = 0 V
--
trr Reverse Recovery Time
Qrr Reverse Recovery Charge
IS = 4.5 A, VGS = 0 V
--
diFGW $ȝV(Note 4) --
Typ Max Units
--
4.5
V
2.3 2.9
Ÿ
--
--
V
0.6
--
V/୅
--
1
Ꮃ
--
10
Ꮃ
-- ρ100 Ꮂ
600 780 Ꮔ
60
78
Ꮔ
7.7 10
Ꮔ
22
44
Ꭸ
40
80
Ꭸ
45
90
Ꭸ
35
70
Ꭸ
10.5 13.5 nC
3.5
--
nC
3
--
nC
-- 4.5
A
--
18
--
1.4
V
243 --
Ꭸ
1.5
--
ȝ&
Notes ;
1. Repetitive Rating : Pulse width limited by maximum junction temperature
2. L=14.8mH, IAS=4.5A, VDD=50V, RG=25:, Starting TJ =25qC
3. ISD”4.5A, di/dt”$ȝV, VDD”%9DSS , Starting TJ =25 qC
4. Pulse Test : Pulse Width ”ȝV'XW\&\FOH”
5. Essentially Independent of Operating Temperature
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