DESCRIPTION
The S1040NC is a N-Channel power MOSFET packaged in a hermetic, electrically isolated
TO-254 Package. This small outline package is an ideal replacement for the TO-3 package
and its associated isolation spacers.
FEATURES
- Small Case Size
- Electrically Isolated
- Hermetic Package
- Low Rds(on)
- Available with Military Pin-out
APPLICATIONS
Switching Power Supplies
Choppers
Motor Controls
Audio Amplifiers
PACKAGE DIMENSIONS:
Pin Connections |
S1040NC
- Gate
- Drain
- Source
|
S1040NM
- Gate
- Drain
- Source
|
ABSOLUTE MAXIMUM RATINGS
VDS |
Drain to Source Voltage |
400v |
VGS |
Gate to Source Voltage |
+- 20V |
ID |
Continuous Drain Current, 25°C (Case) |
10A |
IDM |
Pulsed Drain Current |
25A |
PD |
Power Dissipation, 25°C (Case) |
125W |
TJ |
Operating Temperature Range (junction) |
-55°C to +150°C |
OJC |
Thermal Resistance Junction to Case |
0.90°C/W |
TSIG |
Storage Temperature Range |
-65°C to +150° |
TL |
Lead Temperature (.0625 from case for <= 10S) |
300°C |
ELECTRICAL SPECIFICATIONS (to 25°C unless otherwise noted.)
Symbol |
Parameter |
Min |
Typ |
Max |
Units |
Test Conditions |
BVDSS |
Drain to source breakdown voltage |
400V |
|
|
V |
VGS=0V, ID=250 uA |
RDS(on) |
Static drain to source ON state resistance |
|
|
0.55 |
Omega |
VGS=10V, ID=6 A |
VGS(th) |
Gate threshold voltage |
2 |
|
4 |
V |
VGS= ID=250 uA |
qfs |
Forward Transconductance |
5 |
|
|
mho's |
VDS> 50V, Ids=5 A |
IDSS |
Zero Gate Voltage |
|
|
250 |
uA |
VDS= 0.8 X Max Rating |
IDSS |
Drain Current |
|
|
1000 |
uA |
VGS= 0V, Tj = 125°C |
IGSS |
Gate to source leakage forward |
|
|
100 |
nA |
VGS= 20V |
IGSS |
Gate to source leakage reverse |
|
|
-100 |
nA |
VGS= -20V |
CISS |
Input capacitance |
|
|
1600 |
pF |
VGS = 0V, Vds = 25 V |
CISS |
Output capacitance |
|
|
450 |
pF |
f = 1 MHZ |
CRSS |
Reverse transfer capacitance |
|
|
150 |
pF |
|
Source-Drain Diode Characteristics |
IS |
Continuous source current |
|
|
10 |
A |
|
ISM |
Pulsed source current |
|
|
25 |
A |
|
VSD |
Diode forward voltage |
|
|
2 |
V |
Tj= 25°C, Is 10A VGS = 0V |
|