NTP6N50
Preferred Devices
Product Preview
Power MOSFET
6 Amps, 500 Volts
N–Channel TO–220
http://onsemi.com
Designed for high voltage, high speed switching applications in
power supplies, converters, power motor controls and bridge circuits.
6 AMPERES
500 VOLTS
Features
• Higher Current Rating
• Lower R
• Lower Capacitances
DS(on)
R
= 1700 mΩ
DS(on)
• Lower Total Gate Charge
N–Channel
D
• Tighter V Specifications
SD
• Avalanche Energy Specified
Typical Applications
• Switch Mode Power Supplies
• PWM Motor Controls
• Converters
G
S
• Bridge Circuits
MAXIMUM RATINGS (T = 25°C unless otherwise noted)
MARKING DIAGRAMS
AND PIN ASSIGNMENTS
C
Rating
Symbol
Value
500
Unit
Vdc
Vdc
Vdc
Drain–Source Voltage
V
DSS
Drain
Drain–Gate Voltage (R
= 1.0 MΩ)
V
DGR
500
GS
4
Gate–Source Voltage
– Continuous
V
V
"20
"40
GS
GS
– Non–Repetitive (t v10 ms)
p
TO–220AB
CASE 221A
STYLE 5
Drain– Continuous @ T 25°C
I
I
6
5.4
21
Adc
Apk
NTP6N50
LLYWW
A
D
D
– Continuous @ T 100°C
A
– Single Pulse (t v10 µs)
I
p
DM
Gate
Source
Total Power Dissipation @ T 25°C
P
96
0.77
1.75
Watts
W/°C
Watts
A
D
1
Derate above 25°C
2
Total Power Dissipation @ T 25°C
3
A
Drain
(Note NO TAG)
NTP6N50 = Device Code
Operating and Storage
Temperature Range
T , T
J stg
–55 to
+150
°C
LL
= Location Code
Y
WW
= Year
= Work Week
Single Drain–to–Source Avalanche
E
125
mJ
AS
Energy – Starting T = 25°C
J
GS
(V
= 100 V, V
= 10 Vdc,
I (pk) = 6 A, L = 10 mH, V
DD
ORDERING INFORMATION
= 500
DS
L
Vdc, R = 25 Ω)
G
Device
NTP6N50
Package
Shipping
50 Units/Rail
Thermal Resistance
°C/W
°C
TO–220AB
– Junction–to–Case
– Junction–to–Ambient
R
θJC
R
θJA
1.3
62.5
Preferred devices are recommended choices for future use
and best overall value.
Maximum Lead Temperature for
Soldering Purposes, 1/8″ from case
T
260
L
for 10 seconds
1. Repetitive rating; pulse width limited by maximum junction temperature.
This document contains information on a product under development. ON Semiconductor
reserves the right to change or discontinue this product without notice.
Semiconductor Components Industries, LLC, 2000
1
Publication Order Number:
November, 2000 – Rev. 0
NTP6N50/D