FDP7N50
MOSFET. Datasheet pdf. Equivalent
Type Designator: FDP7N50
Type of Transistor: MOSFET
Type of Control Channel: N
-Channel
Pdⓘ
- Maximum Power Dissipation: 89
W
|Vds|ⓘ - Maximum Drain-Source Voltage: 500
V
|Vgs|ⓘ - Maximum Gate-Source Voltage: 30
V
|Vgs(th)|ⓘ - Maximum Gate-Threshold Voltage: 5
V
|Id|ⓘ - Maximum Drain Current: 7
A
Tjⓘ - Maximum Junction Temperature: 150
°C
Qgⓘ - Total Gate Charge: 12.8
nC
Rdsⓘ - Maximum Drain-Source On-State Resistance: 0.9
Ohm
Package:
TO220
FDP7N50
Transistor Equivalent Substitute - MOSFET Cross-Reference Search
FDP7N50
Datasheet (PDF)
..1. Size:1019K fairchild semi
fdp7n50 fdpf7n50.pdf
April 2007TMUniFETFDP7N50/FDPF7N50 500V N-Channel MOSFETFeatures Description 7A, 500V, RDS(on) = 0.9 @VGS = 10 V These N-Channel enhancement mode power field effect transistors are produced using Fairchilds proprietary, planar Low gate charge ( typical 12.8 nC)stripe, DMOS technology. Low Crss ( typical 9 pF)This advanced technology has been especially tailo
0.1. Size:543K fairchild semi
fdp7n50f fdpf7n50f.pdf
November 2007UniFETTMFDP7N50F / FDPF7N50FtmN-Channel MOSFET, FRFET500V, 6A, 1.15Features Description RDS(on) = 0.95 ( Typ.)@ VGS = 10V, ID = 3A These N-Channel enhancement mode power field effect transis-tors are produced using Fairchilds proprietary, planar stripe, Low gate charge ( Typ. 15nC)DMOS technology. Low Crss ( Typ. 6.3pF)This advance technolo
9.1. Size:280K fairchild semi
fdp7n60nz fdpf7n60nz.pdf
September 2010UniFET-II TMFDP7N60NZ / FDPF7N60NZN-Channel MOSFET600V, 6.5A, 1.25Features Description RDS(on) = 1.05 ( Typ.)@ VGS = 10V, ID = 3.25A These N-Channel enhancement mode power field effect transis-tors are produced using Fairchilds proprietary, planar stripe, Low gate charge ( Typ. 13nC)DOMS technology. Low Crss ( Typ. 7pF)This advance techn
9.2. Size:724K onsemi
fdp7n60nz fdpf7n60nz.pdf
Is Now Part ofTo learn more about ON Semiconductor, please visit our website at www.onsemi.comPlease note: As part of the Fairchild Semiconductor integration, some of the Fairchild orderable part numbers will need to change in order to meet ON Semiconductors system requirements. Since the ON Semiconductor product management systems do not have the ability to manage part nomenclatur
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