NVMFS5C638NL Datasheet and Replacement
Type Designator: NVMFS5C638NL
Type of Transistor: MOSFET
Type of Control Channel: N
-Channel
Pdⓘ
- Maximum Power Dissipation: 100
W
|Vds|ⓘ - Maximum Drain-Source Voltage: 60
V
|Vgs|ⓘ - Maximum Gate-Source Voltage: 20
V
|Id|ⓘ - Maximum Drain Current: 133
A
Tjⓘ - Maximum Junction Temperature: 175
°C
trⓘ - Rise Time: 58
nS
Cossⓘ -
Output Capacitance: 1680
pF
Rdsⓘ - Maximum Drain-Source On-State Resistance: 0.003
Ohm
Package:
DFN5
- MOSFET Cross-Reference Search
NVMFS5C638NL Datasheet (PDF)
..1. Size:179K onsemi
nvmfs5c638nl.pdf 
NVMFS5C638NLMOSFET Power, SingleN-Channel60 V, 3.0 mW, 133 AFeatureswww.onsemi.com Small Footprint (5x6 mm) for Compact Design Low RDS(on) to Minimize Conduction Losses Low QG and Capacitance to Minimize Driver LossesV(BR)DSS RDS(ON) MAX ID MAX NVMFS5C638NLWF - Wettable Flank Option for Enhanced Optical3.0 mW @ 10 VInspection60 V 133 A AEC-Q101 Qua
6.1. Size:167K onsemi
nvmfs5c670n.pdf 
MOSFET Power, Single,N-Channel60 V, 7.0 mW, 71 ANVMFS5C670NFeatureswww.onsemi.com Small Footprint (5x6 mm) for Compact Design Low RDS(on) to Minimize Conduction Losses Low QG and Capacitance to Minimize Driver LossesV(BR)DSS RDS(ON) MAX ID MAX NVMFS5C670NWF - Wettable Flank Option for Enhanced Optical60 V 7.0 mW @ 10 V 71 AInspection AEC-Q101 Qualifi
6.2. Size:72K onsemi
nvmfs5c604nl.pdf 
NVMFS5C604NLPower MOSFET60 V, 1.2 mW, 287 A, Single N-ChannelFeatures Small Footprint (5x6 mm) for Compact Design Low RDS(on) to Minimize Conduction Losseswww.onsemi.com Low QG and Capacitance to Minimize Driver Losses NVMFS5C604NLWF - Wettable Flank Option for Enhanced OpticalInspectionV(BR)DSS RDS(ON) MAX ID MAX AEC-Q101 Qualified and PPAP Capable1.2 mW
6.3. Size:173K onsemi
nvmfs5c680nl.pdf 
NVMFS5C680NLMOSFET Power, SingleN-Channel60 V, 27.5 mW, 21 AFeatures Small Footprint (5 x 6 mm) for Compact Designwww.onsemi.com Low RDS(on) to Minimize Conduction Losses Low Capacitance to Minimize Driver Losses NVMFS5C680NLWF - Wettable Flanks ProductV(BR)DSS RDS(on) MAX ID MAX AEC-Q101 Qualified and PPAP Capable27.5 mW @ 10 V60 V 21 A These D
6.4. Size:132K onsemi
nvmfs5c673n.pdf 
MOSFET Power, Single,N-Channel60 V, 10.7 mW, 50 ANVMFS5C673NFeatureswww.onsemi.com Small Footprint (5x6 mm) for Compact Design Low RDS(on) to Minimize Conduction Losses Low QG and Capacitance to Minimize Driver LossesV(BR)DSS RDS(ON) MAX ID MAX NVMFS5C673NWF - Wettable Flank Option for Enhanced Optical60 V 10.7 mW @ 10 V 50 AInspection AEC-Q101 Quali
6.5. Size:247K onsemi
nvmfs5c628n.pdf 
MOSFET - Power, SingleN-Channel60 V, 3.0 mW, 150 ANVMFS5C628NFeatures Small Footprint (5x6 mm) for Compact Designwww.onsemi.com Low RDS(on) to Minimize Conduction Losses Low QG and Capacitance to Minimize Driver Losses NVMFS5C628NWF - Wettable Flank Option for Enhanced OpticalV(BR)DSS RDS(ON) MAX ID MAXInspection60 V 3.0 mW @ 10 V 150 A AEC-Q101 Qualifie
6.7. Size:182K onsemi
nvmfs5c682nl.pdf 
NVMFS5C682NLMOSFET Power, SingleN-Channel60 V, 21 mW, 25 AFeatureswww.onsemi.com Small Footprint (5x6 mm) for Compact Design Low RDS(on) to Minimize Conduction Losses Low QG and Capacitance to Minimize Driver Losses V(BR)DSS RDS(ON) MAX ID MAX NVMFS5C682NLWF - Wettable Flank Option for Enhanced Optical21 mW @ 10 V60 V 25 AInspection31.5 mW @ 4.5 V
6.8. Size:177K onsemi
nvmfs5c673nl.pdf 
MOSFET Power, SingleN-Channel60 V, 9.2 mW, 50 ANVMFS5C673NLFeatureswww.onsemi.com Small Footprint (5x6 mm) for Compact Design Low RDS(on) to Minimize Conduction Losses Low QG and Capacitance to Minimize Driver Losses V(BR)DSS RDS(ON) MAX ID MAX NVMFS5C673NLWF - Wettable Flank Option for Enhanced Optical9.2 mW @ 10 V60 V 50 AInspection13 mW @ 4.5 V
6.9. Size:73K onsemi
nvmfs5c612nl.pdf 
NVMFS5C612NLPower MOSFET60 V, 1.5 mW, 235 A, Single N-ChannelFeatures Small Footprint (5x6 mm) for Compact Design Low RDS(on) to Minimize Conduction Losseswww.onsemi.com Low QG and Capacitance to Minimize Driver Losses NVMFS5C612NLWF - Wettable Flank Option for Enhanced OpticalInspectionV(BR)DSS RDS(ON) MAX ID MAX AEC-Q101 Qualified and PPAP Capable1.5 mW
6.10. Size:182K onsemi
nvmfs5c612n.pdf 
NVMFS5C612NPower MOSFETSingle N-Channel, 60 V, 1.65 mW, 225 AFeatures Small Footprint (5x6 mm) for Compact Design Low RDS(on) to Minimize Conduction Losseswww.onsemi.com Low QG and Capacitance to Minimize Driver Losses NVMFS5C612NWF - Wettable Flank Option for Enhanced OpticalInspectionV(BR)DSS RDS(ON) MAX ID MAX AEC-Q101 Qualified and PPAP Capable60 V 1.6
6.11. Size:117K onsemi
nvmfs5c670nl.pdf 
NVMFS5C670NLPower MOSFET60 V, 6.1 mW, 71 A, Single N-ChannelFeatures Small Footprint (5x6 mm) for Compact Design Low RDS(on) to Minimize Conduction Losseswww.onsemi.com Low QG and Capacitance to Minimize Driver Losses NVMFS5C670NLWF - Wettable Flank Option for Enhanced OpticalInspectionV(BR)DSS RDS(ON) MAX ID MAX AEC-Q101 Qualified and PPAP Capable6.1 mW @
6.12. Size:179K onsemi
nvmfs5c645nl.pdf 
NVMFS5C645NLPower MOSFET60 V, 4.0 mW, 100 A, Single N-ChannelFeatures Small Footprint (5x6 mm) for Compact Design Low RDS(on) to Minimize Conduction Losseswww.onsemi.com Low QG and Capacitance to Minimize Driver Losses NVMFS5C645NLWF - Wettable Flank Option for Enhanced OpticalInspectionV(BR)DSS RDS(ON) MAX ID MAX AEC-Q101 Qualified and PPAP Capable4.0 mW
6.13. Size:74K onsemi
nvmfs5c646nl.pdf 
NVMFS5C646NLPower MOSFET60 V, 4.7 mW, 93 A, Single N-ChannelFeatures Small Footprint (5x6 mm) for Compact Design Low RDS(on) to Minimize Conduction Losseswww.onsemi.com Low QG and Capacitance to Minimize Driver Losses NVMFS5C646NLWF - Wettable Flank Option for Enhanced OpticalInspectionV(BR)DSS RDS(ON) MAX ID MAX AEC-Q101 Qualified and PPAP Capable4.7 mW @
6.14. Size:177K onsemi
nvmfs5c628nl.pdf 
NVMFS5C628NLMOSFET Power, SingleN-Channel60 V, 2.4 mW, 150 AFeatureswww.onsemi.com Small Footprint (5x6 mm) for Compact Design Low RDS(on) to Minimize Conduction Losses Low QG and Capacitance to Minimize Driver Losses V(BR)DSS RDS(ON) MAX ID MAX NVMFS5C628NLWF - Wettable Flank Option for Enhanced Optical2.4 mW @ 10 V60 V 150 AInspection3.3 mW @ 4.5 V
Datasheet: FMP36-015P
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.
History: 2SK2544
| RW1C020UN
| IRF441
| AP9926GEO
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| RSR010N10
| STD4N62K3
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