NTTFS4C05NTAG Specs and Replacement
Type Designator: NTTFS4C05NTAG
Type of Transistor: MOSFET
Type of Control Channel: N -Channel
Pd ⓘ - Maximum Power Dissipation: 33 W
|Vds|ⓘ - Maximum Drain-Source Voltage: 30 V
|Vgs|ⓘ - Maximum Gate-Source Voltage: 20 V
|Id| ⓘ - Maximum Drain Current: 75 A
Tj ⓘ - Maximum Junction Temperature: 150 °C
tr ⓘ - Rise Time: 30 nS
Cossⓘ - Output Capacitance: 1224 pF
Rds ⓘ - Maximum Drain-Source On-State Resistance: 0.0036 Ohm
Package: WDFN8
NTTFS4C05NTAG substitution
NTTFS4C05NTAG Specs
nttfs4c05n.pdf
NTTFS4C05N Power MOSFET 30 V, 75 A, Single N-Channel, m8FL Features Low RDS(on) to Minimize Conduction Losses Low Capacitance to Minimize Driver Losses Optimized Gate Charge to Minimize Switching Losses http //onsemi.com These Devices are Pb-Free, Halogen Free/BFR Free and are RoHS Compliant V(BR)DSS RDS(on) MAX ID MAX Applications 3.6 mW @ 10 V DC-DC Converters... See More ⇒
nttfs4c06n.pdf
NTTFS4C06N Power MOSFET 30 V, 67 A, Single N-Channel, m8FL Features Low RDS(on) to Minimize Conduction Losses Low Capacitance to Minimize Driver Losses http //onsemi.com Optimized Gate Charge to Minimize Switching Losses These Devices are Pb-Free, Halogen Free/BFR Free and are RoHS V(BR)DSS RDS(on) MAX ID MAX Compliant 4.2 mW @ 10 V Applications 30 V 67 A 6.1 mW @ ... See More ⇒
nttfs4c02n.pdf
NTTFS4C02N MOSFET Power, Single, N-Channel, m8FL 30 V, 170 A Features Low RDS(on) to Minimize Conduction Losses www.onsemi.com Low Capacitance to Minimize Driver Losses Optimized Gate Charge to Minimize Switching Losses V(BR)DSS RDS(on) MAX ID MAX These Devices are Pb-Free, Halogen Free/BFR Free and are RoHS Compliant 2.25 mW @ 10 V 30 V 170 A Applications 3.1... See More ⇒
Detailed specifications: NTMFS6B05NT1G , NTMFS6B05NT3G , NTMFS6B14NT3G , NTMFS6H801NT1G , NTMFS6H818NLT1G , NTMFS6H836NLT1G , NTMFS6H848NLT1G , NTMFS6H852NLT1G , IRF640N , NTTFS4C10NTAG , NTTFS4C25NTAG , NTTFS5C454NLTAG , NVMFD024N06CT1G , NVMFD5483NLT1G , NVMFD5485NLT1G , PE5E4BA , PK6A4BA .
Keywords - NTTFS4C05NTAG MOSFET specs
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Can't find your MOSFET? Learn how to find a substitute transistor by analyzing voltage, current and package compatibility
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