2SC2464, 2SC2465, 2SC2466 Selling Leads, Datasheet
MFG:HITACHI D/C:05+
2SC2464, 2SC2465, 2SC2466 Datasheet download

Part Number: 2SC2464
MFG: HITACHI
Package Cooled:
D/C: 05+
MFG:HITACHI D/C:05+
2SC2464, 2SC2465, 2SC2466 Datasheet download

MFG: HITACHI
Package Cooled:
D/C: 05+
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PDF/DataSheet Download
Datasheet: 2SC0829
File Size: 114565 KB
Manufacturer: PANASONIC [Panasonic Semiconductor]
Download : Click here to Download
PDF/DataSheet Download
Datasheet: 2SC0829
File Size: 114565 KB
Manufacturer: PANASONIC [Panasonic Semiconductor]
Download : Click here to Download
PDF/DataSheet Download
Datasheet: 2SC0829
File Size: 114565 KB
Manufacturer: PANASONIC [Panasonic Semiconductor]
Download : Click here to Download
2SC2464 is a kind of silicon NPN epitaxial.The typical applications include UHF amplifier and UHF TV tuner RF amplifier.
What comes next is about the absolute maximum ratings at Ta=25.The VCBO (Collector-base voltage) is 30 V.The VCEO (Collector-emitter voltage) is 25 V.The VEBO (emitter-base voltage) is 4 V.The IC (Collector Current) is 20 mA.The PC (Collector Dissipation) is 200 mW.The Tstg (Storage Temperature Range) is from -55 to +150.The TJ (Junction Temperature) is 150.
There are the electrical characteristics at Ta=25.The minimum V(BR)CBO (collector to base breakdown voltage) is 30 V at IC=10A,IE=0.The minimum V(BR)CEO (collector to emitter breakdown voltage) is 25 V at IC=1 mA,RBE=.The minimum V(BR)EBO (emitter to base breakdown voltage) is 4 V at IE=10A.IC=0.The minimum hFE(DC Current Gain) is 30 at VCE=10 V,IC=3 mA.The maximum VCE(sat) (collector to emitter saturation voltage) is 5.0 V at IC=10 mA,IB=1 mA.The minimum fT is 750 MHz and the typical is 900 MHz at VCE=10 V,IC=3 mA.The typical Cob is 0.55 pF and the maximum is 0.8 pF at VCB=10 V,IE=0,f=1 MHz.The minimum PG is 14 dB and the typical is 16 dB at VCB=10 V,IC=3 mA,f=900 MHz.The typical NF is 4.0 dB and the maximum is 6.0 dB at VCB=10 V,IC=3 mA,f=900 MHz.The minimum VAGC (VGC voltage) is 3.5 V and the maximum is 4.8 V at VCB=10 V,GB=30 dB,f=900 MHz.
