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SM7508NSF PDF Datasheet - N-Channel Enhancement Mode MOSFET - Sinopower

Part Number SM7508NSF
Description N-Channel Enhancement Mode MOSFET
Manufacturers Sinopower 
Logo Sinopower Logo 
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SM7508NSF datasheet, circuit
SM7508NSF
®
N-Channel Enhancement Mode MOSFET
Features
Pin Description
· 75V/80A,
RDS(ON)= 8.4mW (Max.) @ VGS=10V
· Reliable and Rugged
· Lead Free and Green Devices Available
(RoHS Compliant)
Applications
GDS
Top View of TO-220
D
· High Efficiency Synchronous Rectification in
SMPS.
· Uninterruptible Power Supply.
· High Speed Power Switching.
· Hard Switched and High Frequency Circuits.
.
Ordering and Marking Information
G
S
N-Channel MOSFET
SM7508NS
Assembly Material
Handling Code
Temperature Range
Package Code
Package Code
F : TO-220
Operating Junction Temperature Range
C : -55 to 150 oC
Handling Code
TU : Tube (50ea/tube)
Assembly Material
G : Halogen and Lead Free Device
SM7508NS F : SM7508N
XXXXX
XXXXX - Lot Code
Note : SINOPOWER lead-free products contain molding compounds/die attach materials and 100% matte tin plate
termination finish; which are fully compliant with RoHS. SINOPOWER lead-free products meet or exceed the lead-
free requirements of IPC/JEDEC J-STD-020D for MSL classification at lead-free peak reflow temperature. SINOPOWER
defines Greento mean lead-free (RoHS compliant) and halogen free (Br or Cl does not exceed 900ppm by weight
in homogeneous material and total of Br and Cl does not exceed 1500ppm by weight).
SINOPOWER reserves the right to make changes to improve reliability or manufacturability without notice, and
advise customers to obtain the latest version of relevant information to verify before placing orders.
Copyright ã Sinopower Semiconductor, Inc.
Rev. A.2 - January, 2014
1
www.sinopowersemi.com

1 page

SM7508NSF pdf, schematic
SM7508NSF
®
Absolute Maximum Ratings
Symbol
Parameter
Rating
Unit
Common Ratings (TA=25°C Unless Otherwise Noted)
VDSS Drain-Source Voltage
VGSS Gate-Source Voltage
TJ Maximum Junction Temperature
TSTG Storage Temperature Range
IS Diode Continuous Forward Current
ID Continuous Drain Current
IDM Pulsed Drain Current
PD Maximum Power Dissipation
RqJC Thermal Resistance-Junction to Case
ID Continuous Drain Current
PD Maximum Power Dissipation
RqJ A
IAS c
EAS c
Thermal Resistance-Junction to Ambient
Avalanche Current, Single pulse (L=0.5mH)
Avalanche Energy, Single pulse (L=0.5mH)
TC=25°C
TC=25°C
TC=100°C
TC=25°C
TC=25°C
TC=100°C
Steady State
TA=25°C
TA=70°C
TA=25°C
TA=70°C
Steady State
75
±25
150
-55 to 150
80a
80a
55
320
125
50
1
11
9
2
1.25
62.5
28
196
V
°C
A
W
°C/W
A
W
°C/W
A
mJ
Note aBond wire current limit is 80A.
Note bPulse width limited by max. junction temperature.
Note cUIS tested and pulse width limited by maximum junction temperature 150oC (initial temperature Tj=25oC).
Electrical Characteristics (TA = 25°C unless otherwise noted)
Symbol
Parameter
Static Characteristics
BVDSS Drain-Source Breakdown Voltage
IDSS Zero Gate Voltage Drain Current
VGS(th) Gate Threshold Voltage
IGSS Gate Leakage Current
RDS(ON) d Drain-Source On-state Resistance
Test Conditions
Min. Typ. Max. Unit
VGS=0V, IDS=250mA
VDS=60V, VGS=0V
TJ=85°C
VDS=VGS, IDS=250mA
VGS=±25V, VDS=0V
VGS=10V, IDS=40A
75
-
-
2
-
-
- -V
-1
mA
- 30
3 4V
- ±100 nA
7 8.4 mW
Copyright ã Sinopower Semiconductor, Inc.
Rev. A.2 - January, 2014
2
www.sinopowersemi.com

2 Page

SM7508NSF equivalent
SM7508NSF
Typical Operating Characteristics (Cont.)
®
Output Characteristics
200
175
VGS=6,7,8,9,10V
150
125 5.5V
100
75
50 5V
25
4.5V
0
012345
VDS - Drain - Source Voltage (V)
Drain-Source On Resistance
11
10
9
8
VGS=10V
7
6
5
4
3
0 20 40 60 80 100 120
ID- Drain Current (A)
Gate-Source On Resistance
18
IDS=40A
16
14
12
10
8
6
4
4 5 6 7 8 9 10
VGS - Gate - Source Voltage (V)
Gate Threshold Voltage
1.6
IDS =250mA
1.4
1.2
1.0
0.8
0.6
0.4
0.2-50 -25 0 25 50 75 100 125 150
Tj - Junction Temperature (°C)
Copyright ã Sinopower Semiconductor, Inc.
Rev. A.2 - January, 2014
5
www.sinopowersemi.com

5 Page

SM7508NSF diode, scr
SM7508NSF
Classification Profile
®
Copyright ã Sinopower Semiconductor, Inc.
Rev. A.2 - January, 2014
9
www.sinopowersemi.com

9 Page





Information Total 10 Pages
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