CEP3060
MOSFET. Datasheet pdf. Equivalent
Type Designator: CEP3060
Type of Transistor: MOSFET
Type of Control Channel: N
-Channel
Pdⓘ
- Maximum Power Dissipation: 125
W
|Vds|ⓘ - Maximum Drain-Source Voltage: 30
V
|Vgs|ⓘ - Maximum Gate-Source Voltage: 20
V
|Vgs(th)|ⓘ - Maximum Gate-Threshold Voltage: 3
V
|Id|ⓘ - Maximum Drain Current: 105
A
Tjⓘ - Maximum Junction Temperature: 175
°C
Qgⓘ - Total Gate Charge: 15.8
nC
trⓘ - Rise Time: 6
nS
Cossⓘ -
Output Capacitance: 320
pF
Rdsⓘ - Maximum Drain-Source On-State Resistance: 0.006
Ohm
Package:
TO220
CEP3060
Transistor Equivalent Substitute - MOSFET Cross-Reference Search
CEP3060
Datasheet (PDF)
..1. Size:408K cet
cep3060 ceb3060.pdf
CEP3060/CEB3060N-Channel Enhancement Mode Field Effect TransistorFEATURES30V, 105A,RDS(ON) = 6m @VGS = 10V. RDS(ON) = 8m @VGS = 4.5V.Super high dense cell design for extremely low RDS(ON).DHigh power and current handing capability.Lead free product is acquired.TO-220 & TO-263 package.GCEB SERIESCEP SERIESSTO-263(DD-PAK)TO-220ABSOLUTE MAXIMUM RATINGS Tc = 25
0.1. Size:332K ncepower
ncep3060eq.pdf
Pb Free Producthttp://www.ncepower.com NCEP3060EQNCE N-Channel Super Trench Power MOSFET Description The NCEP3060EQ uses Super Trench technology that is uniquely optimized to provide the most efficient high frequency switching performance. Both conduction and switching power losses are minimized due to an extremely low combination of RDS(ON) and Qg. This device is ideal for hi
8.1. Size:506K ncepower
ncep3065qu.pdf
http://www.ncepower.com NCEP3065QUNCE N-Channel Super Trench Power MOSFETDescriptionThe NCEP3065QU uses Super Trench technology that isuniquely optimized to provide the most efficient highfrequency switching performance. Both conduction andswitching power losses are minimized due to an extremelylow combination of R and Q . This device is ideal forDS(ON) ghigh-frequency switchi
8.2. Size:510K ncepower
ncep3065bqu.pdf
http://www.ncepower.com NCEP3065BQUNCE N-Channel Super Trench Power MOSFETDescriptionThe NCEP3065BQU uses Super Trench technology that isuniquely optimized to provide the most efficient highfrequency switching performance. Both conduction andswitching power losses are minimized due to an extremelylow combination of R and Q . This device is ideal forDS(ON) ghigh-frequency switc
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