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Numéro de référence | FQPF7P06 | ||
Description | 60V P-Channel MOSFET | ||
Fabricant | Fairchild Semiconductor | ||
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1 Page
FQPF7P06
60V P-Channel MOSFET
May 2001
QFET TM
General Description
These P-Channel enhancement mode power field effect
transistors are produced using Fairchild’s proprietary,
planar stripe, DMOS technology.
This advanced technology has been especially tailored to
minimize on-state resistance, provide superior switching
performance, and withstand a high energy pulse in the
avalanche and commutation modes. These devices are
well suited for low voltage applications such as automotive,
DC/DC converters, and high efficiency switching for power
management in portable and battery operated products.
Features
• -5.3A, -60V, RDS(on) = 0.41Ω @VGS = -10 V
• Low gate charge ( typical 6.3 nC)
• Low Crss ( typical 25 pF)
• Fast switching
• 100% avalanche tested
• Improved dv/dt capability
• 175°C maximum junction temperature rating
G!
GD S
TO-220F
FQPF Series
Absolute Maximum Ratings TC = 25°C unless otherwise noted
Symbol
VDSS
ID
IDM
VGSS
EAS
IAR
EAR
dv/dt
PD
TJ, TSTG
TL
Parameter
Drain-Source Voltage
Drain Current
- Continuous (TC = 25°C)
- Continuous (TC = 100°C)
Drain Current - Pulsed
(Note 1)
Gate-Source Voltage
Single Pulsed Avalanche Energy
(Note 2)
Avalanche Current
(Note 1)
Repetitive Avalanche Energy
(Note 1)
Peak Diode Recovery dv/dt
(Note 3)
Power Dissipation (TC = 25°C)
- Derate above 25°C
Operating and Storage Temperature Range
Maximum lead temperature for soldering purposes,
1/8" from case for 5 seconds
S
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●
●
▶▲
●
!
D
FQPF7P06
-60
-5.3
-3.75
-21.2
± 25
90
-5.3
2.4
-7.0
24
0.16
-55 to +175
300
Thermal Characteristics
Symbol
RθJC
RθJA
Parameter
Thermal Resistance, Junction-to-Case
Thermal Resistance, Junction-to-Ambient
Typ Max
-- 6.2
-- 62.5
Units
V
A
A
A
V
mJ
A
mJ
V/ns
W
W/°C
°C
°C
Units
°C/W
°C/W
©2001 Fairchild Semiconductor Corporation
Rev. A2. May 2001
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Pages | Pages 8 | ||
Télécharger | [ FQPF7P06 ] |
No | Description détaillée | Fabricant |
FQPF7P06 | 60V P-Channel MOSFET | Fairchild Semiconductor |
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