FDC796NF077 Specs and Replacement

Type Designator: FDC796NF077

Type of Transistor: MOSFET

Type of Control Channel: N-Channel

Absolute Maximum Ratings

Pd ⓘ - Maximum Power Dissipation: 2 W

|Vds|ⓘ - Maximum Drain-Source Voltage: 30 V

|Vgs|ⓘ - Maximum Gate-Source Voltage: 20 V

|Id| ⓘ - Maximum Drain Current: 12.5 A

Tj ⓘ - Maximum Junction Temperature: 150 °C

Electrical Characteristics

tr ⓘ - Rise Time: 3.8 nS

Cossⓘ - Output Capacitance: 342 pF

RDSonⓘ - Maximum Drain-Source On-State Resistance: 0.009 Ohm

Package: SSOT-6

FDC796NF077 substitution

- MOSFET ⓘ Cross-Reference Search

 

FDC796NF077 datasheet

 7.1. Size:185K  fairchild semi
fdc796n.pdf pdf_icon

FDC796NF077

February 2004 FDC796N 30V N-Channel PowerTrench MOSFET General Description Features This N-Channel MOSFET has been designed 12.5 A, 30 V. RDS(ON) = 9 m @ VGS = 10 V specifically to improve the overall efficiency of DC/DC RDS(ON) = 12 m @ VGS = 4.5 V converters using either synchronous or conventional switching PWM controllers. It has been optimized for High... See More ⇒

 7.2. Size:184K  fairchild semi
fdc796n fdc796n f077.pdf pdf_icon

FDC796NF077

February 2004 FDC796N 30V N-Channel PowerTrench MOSFET General Description Features This N-Channel MOSFET has been designed 12.5 A, 30 V. RDS(ON) = 9 m @ VGS = 10 V specifically to improve the overall efficiency of DC/DC RDS(ON) = 12 m @ VGS = 4.5 V converters using either synchronous or conventional switching PWM controllers. It has been optimized for High... See More ⇒

Detailed specifications: FDC633NF095, FDC640PF095, FDC645NF095, FDC697P, FDC697PF077, FDC699P, FDC699PF077, FDC796N, RU7088R, FDD044AN03L, FDD068AN03L, FDD107AN06LA0, FDD10N20LZTM, FDD14AN06LA0, FDD16AN08A0NF054, FDD20AN06A0, FDD24AN06LA0

Keywords - FDC796NF077 MOSFET specs

 FDC796NF077 cross reference

 FDC796NF077 equivalent finder

 FDC796NF077 pdf lookup

 FDC796NF077 substitution

 FDC796NF077 replacement

Learn how to find the right MOSFET substitute. A guide to cross-reference, check specs and replace MOSFETs in your circuits.