AM4962NE MOSFET. Datasheet pdf. Equivalent
Type Designator: AM4962NE
Type of Transistor: MOSFET
Type of Control Channel: N -Channel
Pdⓘ - Maximum Power Dissipation: 2.1 W
|Vds|ⓘ - Maximum Drain-Source Voltage: 60 V
|Vgs|ⓘ - Maximum Gate-Source Voltage: 20 V
|Vgs(th)|ⓘ - Maximum Gate-Threshold Voltage: 1 V
|Id|ⓘ - Maximum Drain Current: 6.4 A
Tjⓘ - Maximum Junction Temperature: 150 °C
Qgⓘ - Total Gate Charge: 12.5 nC
trⓘ - Rise Time: 8 nS
Rdsⓘ - Maximum Drain-Source On-State Resistance: 0.035 Ohm
Package: SOIC-8
AM4962NE Transistor Equivalent Substitute - MOSFET Cross-Reference Search
AM4962NE Datasheet (PDF)
am4962ne.pdf
Analog Power AM4962NEN-Channel 60-V (D-S) MOSFETThese miniature surface mount MOSFETs utilize a high cell density trench process to provide low PRODUCT SUMMARYrDS(on) and to ensure minimal power loss and heat VDS (V) rDS(on) m()ID (A)dissipation. Typical applications are DC-DC 35 @ VGS = 10V 6.4converters and power management in portable and 60battery-powered products s
am4963p.pdf
Analog Power AM4963PDual P-Channel 60-V (D-S) MOSFETPRODUCT SUMMARYKey Features: rDS(on) (m)VDS (V) ID(A) Low r trench technology DS(on)120 @ VGS = -10V -3.5 Low thermal impedance -60180 @ VGS = -4.5V -2.8 Fast switching speed Typical Applications: White LED boost converters Automotive Systems Industrial DC/DC Conversion Circuits ABSOLUTE
am4960n.pdf
Analog Power AM4960NN-Channel 60-V (D-S) MOSFETThese miniature surface mount MOSFETs utilize a high cell density trench process to provide low PRODUCT SUMMARYrDS(on) and to ensure minimal power loss and heat VDS (V) rDS(on) m()ID (A)dissipation. Typical applications are DC-DC converters and power management in portable and 89 @ VGS = 10V 4.060battery-powered products such
am4964nt.pdf
Analog Power AM4964NTN-Channel 60-V (D-S) MOSFETPRODUCT SUMMARYKey Features: rDS(on) (m)VDS (V) ID (A) Low r trench technology DS(on)50 @ VGS = 10V5.3 Low thermal impedance 6060 @ VGS = 4.5V4.9 Fast switching speed Typical Applications: White LED boost converters Automotive Systems Industrial DC/DC Conversion Circuits ABSOLUTE MAXIMUM
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