Features: `26 and 24A, 100V. RDS(ON) = 0.065 and 0.080.`Critical DC electrical parameters specified at elevated temperature.`Rugged internal source-drain diode can eliminate the need for an external Zener diode transient suppressor.`175°C maximum junction temperature rating.`High density cell desi...
NDP610BE: Features: `26 and 24A, 100V. RDS(ON) = 0.065 and 0.080.`Critical DC electrical parameters specified at elevated temperature.`Rugged internal source-drain diode can eliminate the need for an external...
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`26 and 24A, 100V. RDS(ON) = 0.065 and 0.080.
`Critical DC electrical parameters specified at elevated temperature.
`Rugged internal source-drain diode can eliminate the need for an external Zener diode transient suppressor.
`175°C maximum junction temperature rating.
`High density cell design (3 million/in²) for extremely low RDS(ON).
`TO-220 and TO-263 (D2PAK) package for both through hole and surface mount applications.
Symbol |
Parameter |
NDP610A NDP610AE NDB610A NDB610AE |
NDP610B NDP610BE NDB610B NDB610BE |
Units |
VDSS |
Drain-Source Voltage |
100 |
V | |
VDGR |
Drain-Gate Voltage (RGS 1 M) |
100 |
V | |
VGSS |
Gate-Source Voltage - Continuous - Nonrepetitive (tP < 50 s) |
± 20 |
V | |
± 40 | ||||
ID |
Drain Current - Continuous - Pulsed |
26 |
24 |
A |
104 |
96 | |||
PD |
Total Power Dissipation Derate above 25°C |
100 |
W | |
0.67 |
W/ | |||
TJ,TSTG |
Operating and Storage Temperature Range |
-65 to 175 |
||
TL |
Maximum lead temperature for soldering purposes,1/8" from case for 5 seconds |
275 |
These N-channel enhancement mode power field effect transistors NDP610BE are produced using Fairchild's proprietary, high cell density, DMOS technology. This very high density process has been especially tailored to minimize on-state resistance, provide superior switching performance, and withstand high energy pulses in the avalanche and commutation modes. NDP610BE is particularly suited for low voltage applications such as automotive, DC/DC converters, PWM motor controls, and other battery powered circuits where fast switching, low in-line power loss, and resistance to transients are needed.