FQPF16N25C Fairchild Semiconductor, FQPF16N25C Datasheet - Page 5

MOSFET N-CH 250V 15.6A TO-220F

FQPF16N25C

Manufacturer Part Number
FQPF16N25C
Description
MOSFET N-CH 250V 15.6A TO-220F
Manufacturer
Fairchild Semiconductor
Series
QFET™r
Datasheet

Specifications of FQPF16N25C

Fet Type
MOSFET N-Channel, Metal Oxide
Fet Feature
Standard
Rds On (max) @ Id, Vgs
270 mOhm @ 7.8A, 10V
Drain To Source Voltage (vdss)
250V
Current - Continuous Drain (id) @ 25° C
15.6A
Vgs(th) (max) @ Id
4V @ 250µA
Gate Charge (qg) @ Vgs
53.5nC @ 10V
Input Capacitance (ciss) @ Vds
1080pF @ 25V
Power - Max
43W
Mounting Type
Through Hole
Package / Case
TO-220-3 Full Pack (Straight Leads)
Configuration
Single
Transistor Polarity
N-Channel
Resistance Drain-source Rds (on)
0.27 Ohms
Forward Transconductance Gfs (max / Min)
10.5 S
Drain-source Breakdown Voltage
250 V
Gate-source Breakdown Voltage
+/- 30 V
Continuous Drain Current
15.6 A
Power Dissipation
43 W
Maximum Operating Temperature
+ 150 C
Mounting Style
Through Hole
Minimum Operating Temperature
- 55 C
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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Company
Part Number
Manufacturer
Quantity
Price
Part Number:
FQPF16N25C
Manufacturer:
FSC
Quantity:
5 000
Part Number:
FQPF16N25C
Manufacturer:
FAIRCHILD
Quantity:
197
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Manufacturer:
FAIRCHILD
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Part Number:
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Quantity:
20 000
©2004 Fairchild Semiconductor Corporation
Typical Characteristics
Figure 11-2. Transient Thermal Response Curve for FQPF16N25C
1 0
1 0
Figure 11-1. Transient Thermal Response Curve for FQP16N25C
1 0
1 0
1 0
1 0
-1
-2
-1
-2
0
1 0
1 0
0
-5
-5
0 .0 2
0 .0 5
0 .0 2
D = 0 . 5
0 .0 5
0 .0 1
D = 0 .5
0 .0 1
0 .2
0 .1
0 .2
0 .1
(Continued)
1 0
1 0
-4
s in g le p u ls e
-4
s in g le p u ls e
t
t
1
1
, S q u a r e W a v e P u ls e D u r a t io n [ s e c ]
, S q u a r e W a v e P u ls e D u r a t io n [s e c ]
1 0
1 0
-3
-3
1 0
1 0
-2
-2
1 0
1 0
1 . Z
2 . D u t y F a c to r , D = t
3 . T
P
P
N o te s :
DM
DM
-1
-1
1 . Z
2 . D u ty F a c to r , D = t
3 . T
θ
J M
N o te s :
J C
( t) = 0 . 9 0
- T
θ
J M
J C
( t) = 2 .8 9
- T
C
t
t
= P
1
1
C
t
t
2
2
= P
D M
1 0
1 0
* Z
D M
/W M a x .
0
0
1
* Z
θ
/t
J C
/W M a x .
2
1
( t)
θ
/t
J C
2
( t)
1 0
1 0
1
1
Rev. A, March 2004

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