Features: Avalanche Energy RatingDynamic dv/dt RatingSimple Drive RequirementsEase of ParallelingHermetically SealedSurface MountLight-weightSpecifications Parameter IRFN150 Units Continuous Drain Current ID @ VGS = 10V, TC = 25°C 18 A Continuous Drain Curr...
IRFN240: Features: Avalanche Energy RatingDynamic dv/dt RatingSimple Drive RequirementsEase of ParallelingHermetically SealedSurface MountLight-weightSpecifications Parameter IRFN150 Units ...
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Features: • HERMETICALLY SEALED SURFACE MOUNT PACKAGE• SMALL FOOTPRINT EFFICIENT USE ...
Parameter |
IRFN150 |
Units | |
Continuous Drain Current |
ID @ VGS = 10V, TC = 25°C |
18 |
A
|
Continuous Drain Current |
ID @ VGS = 10V, TC = 100°C |
11 | |
Pulsed Drain Current Å |
IDM |
72 | |
Max. Power Dissipation |
PD @ TC = 25°±25 |
125 |
W |
Linear Derating Factor |
1.0 |
W/K Ä | |
Gate-to-Source Voltage |
VGS |
±20 |
V |
Single Pulse Avalanche Energy Ç |
EAS |
450 |
mJmW |
Surface Temperature |
EAR |
48 stg |
V/ns°C |
Pckg. Mounting Surface Temp. |
dv/dt |
5.0 |
V/ns |
Operating Junction Storage Temperature Range |
TJ TSTG |
-55 to 150 |
oC |
Avalanche Current ➀ |
300 (for 5 seconds) | ||
Repetitive Avalanche Energy ➀ |
2.6 (typical) |
g |
HEXFET technology IRFN240 is the key to International Rectifier's advanced line of power MOSFET transistors. The efficient geometry achieves very low on-state resistance combined with high transconductance.
HEXFET transistors IRFN240 also feature all of the well-establish advantages of MOSFETs, such as voltage control, very fast switching, ease of paralleling and electrical parameter temperature stability. They are well-suited for applications such as switching power supplies, motor controls, inverters, choppers, audio amplifiers, and high energy pulse circuits.
The Surface Mount Device (SMD-1) IRFN240 package represents another step in the continual evolution of surface mount
technology. The SMD-1 will give designers the extra flexibility they need to increase circuit board density. International
Rectifier has engineered the SMD-1 package to
meet the specific needs of the power market by increasing
the size of the termination pads, thereby enhancing
thermal and electrical performance.