AFN4946 MOSFET. Datasheet pdf. Equivalent
Type Designator: AFN4946
Marking Code: 4946
Type of Transistor: MOSFET
Type of Control Channel: N -Channel
Pdⓘ - Maximum Power Dissipation: 2.8 W
|Vds|ⓘ - Maximum Drain-Source Voltage: 60 V
|Vgs|ⓘ - Maximum Gate-Source Voltage: 20 V
|Vgs(th)|ⓘ - Maximum Gate-Threshold Voltage: 2.5 V
|Id|ⓘ - Maximum Drain Current: 6.8 A
Tjⓘ - Maximum Junction Temperature: 150 °C
Qgⓘ - Total Gate Charge: 10 nC
trⓘ - Rise Time: 12 nS
Cossⓘ - Output Capacitance: 85 pF
Rdsⓘ - Maximum Drain-Source On-State Resistance: 0.042 Ohm
Package: SOP-8P
AFN4946 Transistor Equivalent Substitute - MOSFET Cross-Reference Search
AFN4946 Datasheet (PDF)
afn4946.pdf
AFN4946 Alfa-MOS 60V N-Channel Technology Enhancement Mode MOSFET General Description Features AFN4946, N-Channel enhancement mode 60V/6.8A,RDS(ON)=42m@VGS=10V MOSFET, uses Advanced Trench Technology 60V/5.6A,RDS(ON)=50m@VGS=4.5V to provide excellent RDS(ON), low gate charge. Super high density cell design for extremely These devices are particularly suited for
afn4946w.pdf
AFN4946W Alfa-MOS 60V N-Channel Technology Enhancement Mode MOSFET General Description Features AFN4946W, N-Channel enhancement mode 60V/6.8A,RDS(ON)=42m@VGS=10V MOSFET, uses Advanced Trench Technology 60V/5.6A,RDS(ON)=48m@VGS=4.5V to provide excellent RDS(ON), low gate charge. Super high density cell design for extremely These devices are particularly suited f
afn4946bw.pdf
AFN4946BW Alfa-MOS 60V N-Channel Technology Enhancement Mode MOSFET General Description Features AFN4946BW, N-Channel enhancement mode 60V/6.8A,RDS(ON)=60m@VGS=10V MOSFET, uses Advanced Trench Technology 60V/5.6A,RDS(ON)=65m@VGS=4.5V to provide excellent RDS(ON), low gate charge. Super high density cell design for extremely These devices are particularly suited
afn4924.pdf
AFN4924 Alfa-MOS 40V N-Channel Technology Enhancement Mode MOSFET General Description Features AFN4924, N-Channel enhancement mode 40V/8A,RDS(ON)= 22m@VGS=10V MOSFET, uses Advanced Trench Technology 40V/6A,RDS(ON)= 38m@VGS=4.5V to provide excellent RDS(ON), low gate charge. Super high density cell design for extremely These devices are particularly suited for lo
afn4996.pdf
AFN4996 Alfa-MOS 90V N-Channel Technology Enhancement Mode MOSFET General Description Features AFN4996, N-Channel enhancement mode 90V/7.6A,RDS(ON)=68m@VGS=10V MOSFET, uses Advanced Trench Technology 90V/6.8A,RDS(ON)=75m@VGS=4.5V to provide excellent RDS(ON), low gate charge. Super high density cell design for extremely These devices are particularly suited for
afn4997.pdf
AFN4997 Alfa-MOS 90V N-Channel Technology Enhancement Mode MOSFET General Description Features AFN4997, N-Channel enhancement mode 90V/6.8A,RDS(ON)=68m@VGS=10V MOSFET, uses Advanced Trench Technology 90V/5.6A,RDS(ON)=75m@VGS=4.5V to provide excellent RDS(ON), low gate charge. Super high density cell design for extremely These devices are particularly suited for
afn4998w.pdf
AFN4998W Alfa-MOS 100V N-Channel Technology Enhancement Mode MOSFET General Description Features AFN4998W, N-Channel enhancement mode 100V/5.6A,RDS(ON)=120m@VGS=10V MOSFET, uses Advanced Trench Technology 100V/4.2A,RDS(ON)=130m@VGS=4.5V to provide excellent RDS(ON), low gate charge. Super high density cell design for extremely These devices are particularly suit
afn4900w.pdf
AFN4900W Alfa-MOS 60V N-Channel Technology Enhancement Mode MOSFET General Description Features AFN4900W, N-Channel enhancement mode 60V/6.8A,RDS(ON)=115m @VGS=10V MOSFET, uses Advanced Trench Technology 60V/5.6A,RDS(ON)=140m @VGS=4.5V to provide excellent RDS(ON), low gate charge. Super high density cell design for extremely These devices are particularly suited for
afn4924w.pdf
AFN4924W Alfa-MOS 40V N-Channel Technology Enhancement Mode MOSFET General Description Features AFN4924W, N-Channel enhancement mode 40V/8A,RDS(ON)= 22m@VGS=10V MOSFET, uses Advanced Trench Technology 40V/6A,RDS(ON)= 28m@VGS=4.5V to provide excellent RDS(ON), low gate charge. Super high density cell design for extremely These devices are particularly suited for
afn4922w.pdf
AFN4922W Alfa-MOS 100V N-Channel Technology Enhancement Mode MOSFET General Description Features AFN4922W, N-Channel enhancement mode 100V/2.0A,RDS(ON)=290m@VGS=10V MOSFET, uses Advanced Trench Technology 100V/1.5A,RDS(ON)=300m@VGS=4.5V to provide excellent RDS(ON), low gate charge. Super high density cell design for extremely These devices are particularly suit
afn4906.pdf
AFN4906 Alfa-MOS 40V N-Channel Technology Enhancement Mode MOSFET General Description Features AFN4906, N-Channel enhancement mode 40V/6.8A,RDS(ON)=52m@VGS=10V MOSFET, uses Advanced Trench Technology 40V/5.6A,RDS(ON)=70m@VGS=4.5V to provide excellent RDS(ON), low gate charge. Super high density cell design for extremely These devices are particularly suited for
afn4936s.pdf
AFN4936S Alfa-MOS 30V N-Channel Technology Enhancement Mode MOSFET General Description Features AFN4936S, N-Channel enhancement mode 30V/5.0A,RDS(ON)=24m@VGS=10V MOSFET, uses Advanced Trench Technology 30V/4.7A,RDS(ON)=38m@VGS=4.5V to provide excellent RDS(ON), low gate charge. Super high density cell design for extremely These devices are particularly suited fo
afn4998.pdf
AFN4998 Alfa-MOS 100V N-Channel Technology Enhancement Mode MOSFET General Description Features AFN4998, N-Channel enhancement mode 100V/5.6A,RDS(ON)=130m@VGS=10V MOSFET, uses Advanced Trench Technology 100V/4.2A,RDS(ON)=145m@VGS=4.5V to provide excellent RDS(ON), low gate charge. Super high density cell design for extremely These devices are particularly suited
afn4936ws.pdf
AFN4936WS Alfa-MOS 30V N-Channel Technology Enhancement Mode MOSFET General Description Features AFN4936WS, N-Channel enhancement mode 30V/5.0A,RDS(ON)=24m@VGS=10V MOSFET, uses Advanced Trench Technology 30V/4.7A,RDS(ON)=38m@VGS=4.5V to provide excellent RDS(ON), low gate charge. Super high density cell design for extremely These devices are particularly suited
Datasheet: IRFP360LC , IRFP3710 , IRFP430 , IRFP431 , IRFP432 , IRFP433 , IRFP440 , IRFP440A , 4N60 , IRFP442 , IRFP443 , IRFP448 , IRFP450 , IRFP450A , IRFP450FI , IRFP450LC , IRFP451 .
History: BSP75G
History: BSP75G
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