Fairchild FQPF60N03L service manual

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FQPF60N03L
30V LOGIC N-Channel MOSFET
FQPF60N03L
May 2001
TM
QFET
These N-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 high energy pulse in the avalanche and commutation mode. These devices are well suited for low voltage applications such as DC/DC
Features
• 39A, 30V, R
• Low gate charge ( typical 18.5 nC)
• Low Crss ( typical 155 pF)
• Fast switching
• 100% avalanche tested
• Improved dv/dt capability
• 175°C maximum junction temperature rating
= 0.0135 @VGS = 10 V
DS(on)
converters, high efficiency switching for power management in portable and battery operated products.
D
!
!
"
"
"
"
!
!
"
" "
"
!
!
S
D
G
S
Absolute Maximum Ratings T
TO-220F
FQPF Series
= 25°C unless otherwise noted
C
!
!
G
Symbol Parameter FQPF60N03L Units
V
DSS
I
D
I
DM
V
GSS
E
AS
I
AR
E
AR
dv/dt Peak Diode Recovery dv/dt P
D
Drain-Source Voltage 30 V Drain Current
- Continuous (T
- Continuous (T
Drain Current - Pulsed
= 25°C)
C
= 100°C)
C
(Note 1)
39 A
27.6 A 156 A
Gate-Source Voltage ± 20 V Single Pulsed Avalanche Energy Avalanche Current Repetitive Avalanche Energy
Power Dissipation (TC = 25°C)
(Note 2) (Note 1) (Note 1) (Note 3)
220 mJ
39 A
4.2 mJ
7.0 V/ns 42 W
- Derate above 25°C 0.28 W/°C
T
, T
J
STG
T
L
Operating and Storage Temperature Range -55 to +175 °C Maximum lead temperature for soldering purposes, 1/8" from case for 5 seconds
300 °C
Thermal Characteristics
Symbol Parameter Typ Max Units
R
θJC
R
θJA
©2001 Fairchild Semiconductor Corporation Rev. A1. May 2001
Thermal Resistance, Junction-to-Case -- 3.54 °C/W Thermal Resistance, Junction-to-Ambient -- 62.5 °C/W
FQPF60N03L
Electrical Characteristics T
= 25°C unless otherwise noted
C
Symbol Parameter Test Conditions Min Typ Max Units
Off Characteristics
BV
DSS
BV / ∆T I
DSS
I
GSSF
I
GSSR
Drain-Source Breakdown Voltage Breakdown Voltage Temperature
DSS
Coefficient
J
Zero Gate Voltage Drain Current Gate-Body Leakage Current, Forward
Gate-Body Leakage Current, Reverse
= 0 V, ID = 250 µA
V
GS
I
= 250 µA, Referenced to
D
25°C V
= 30 V, VGS = 0 V
DS
V
= 24 V, TC = 150°C
DS
V
= 20 V, VDS = 0 V
GS
= -20 V, VDS = 0 V
V
GS
30 -- -- V
-- 0.02 -- V/°C
-- -- 1 µA
-- -- 10 µA
-- -- 100 nA
-- -- -100 nA
On Characteristics
V R
g
FS
GS(th)
DS(on)
Gate Threshold Voltage Static Drain-Source
On-Resistance Forward Transconductance
V
= VGS, ID = 250 µA
DS
V
= 10 V, ID = 19.5 A
GS
= 5 V , ID =19.5 A
V
GS
V
= 15 V, ID = 19.5 A
DS
(Note 4)
1.0 -- 2.5 V
----0.011
0.015
0.0135
0.019
-- 28 -- S
Dynamic Characteristics
C
iss
C
oss
C
rss
Input Capacitance Output Capacitance -- 570 740 pF Reverse Transfer Capacitance -- 155 200 pF
= 25 V, VGS = 0 V,
V
DS
f = 1.0 MHz
-- 875 1140 pF
Switching Characteristics
t
d(on)
t
r
t
d(off)
t
f
Q Q Q
g gs gd
Turn-On Delay Time Turn-On Rise Time -- 155 320 ns Turn-Off Delay Time -- 10 30 ns Turn-Off Fall Time -- 75 160 ns Total Gate Charge Gate-Source Charge -- 7 -- nC Gate-Drain Charge -- 9.5 -- nC
= 15 V, ID = 30 A,
V
DD
= 25
R
G
= 24 V, ID = 60 A,
V
DS
V
GS
= 5 V
(Note 4, 5)
(Note 4, 5)
-- 17 45 ns
-- 18.5 24 nC
Drain-Source Diode Characteristics and Maximum Ratings
I
S
I
SM
V
SD
t
rr
Q
rr
Notes:
1. Repetitive Rating : Pulse width limited by maximum junction temperature
2. L = 145µH, IAS = 39A, VDD = 15V, RG = 25 Ω, Starting TJ = 25°C
3. ISD 60A, di/dt 300A/µs, VDD BV
4. Pulse Test : Pulse width ≤ 300µs, Duty cycle ≤ 2%
5. Essentially independent of operating temperature
Maximum Continuous Drain-Source Diode Forward Current -- -- 39 A Maximum Pulsed Drain-Source Diode Forward Current -- -- 156 A
= 0 V, IS = 39 A
Drain-Source Diode Forward Voltage Reverse Recovery Time Reverse Recovery Charge -- 35 -- nC
Starting TJ = 25°C
DSS,
V
GS
= 0 V, IS = 60 A,
V
GS
/ dt = 100 A/µs
dI
F
-- -- 1.5 V
-- 40 -- ns
(Note 4)
Rev. A1. May 2001©2001 Fairchild Semiconductor Corporation
Typical Characteristics
FQPF60N03L
V
GS
Top : 10.0 V
8.0 V
6.0 V
2
10
5.0 V
4.5 V
4.0 V
3.5 V Botto m : 3 .0 V
1
10
, Drain Current [A]
D
I
-1
10
!
Note s :
1. 250#s Pulse Test = 25
2. T
C
0
10
"
VDS, Drain-Source Voltage [V]
VGS = 10V
],
$
[m
R
40
30
VGS = 5V
20
DS(ON)
10
Drain-Source On-Resistance
0
0 40 80 120 160 200 240
ID, Drain Current [A]
!
Note : T
2
10
1
10
1
10
"
175
, Drain Current [A]
D
I
"
25
"
0
10
0246810
-55
V
, Gate-Source Voltage [V]
GS
!
Note s :
= 15V
1. V
DS
2. 250#s Pulse Test
Figure 2. Transfer CharacteristicsFigure 1. On-Region Char act er i stic s
2
10
1
10
, Reverse Drain Current [A]
DR
"
= 25
J
I
0
10
0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8
"
175
"
25
!
Note s :
= 0V
1. V
GS
2. 250#s Pulse Test
VSD, Source-Drain voltage [V]
Figure 3. On-Resistance Variati on vs.
Drain Current and Gate Voltage
Figure 4. Body Diode Forward Voltage
Variation vs. Source Current
and Temperature
VDS = 15V
VDS = 24V
!
Note : I
= 60A
D
3000
2500
2000
1500
1000
Capacitance [pF]
500
0
-1
10
VDS, Drain-Source Voltage [V]
C
= Cgs + Cgd (Cds = shorted)
iss
C
= Cds + C
oss
gd
C
= C
rss
gd
C
oss
!
C
iss
C
rss
0
10
Notes :
= 0 V
1. V
GS
2. f = 1 M H z
1
10
12
10
8
6
4
2
, Gate-Source Voltage [V]
GS
V
0
0 5 10 15 20 25 30 35
QG, Total Gate Charge [nC]
Figure 5. Capacitance Characteristics Figure 6. Gate Charge Ch a ra ct eristics
©2001 Fairchild Semiconductor Corporation Rev. A1. May 2001
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