PU321, PU3219, PU3220 Selling Leads, Datasheet
MFG:Panasonic Package Cooled:Original Package D/C:08+/09+
PU321, PU3219, PU3220 Datasheet download
Part Number: PU321
MFG: Panasonic
Package Cooled: Original Package
D/C: 08+/09+
MFG:Panasonic Package Cooled:Original Package D/C:08+/09+
PU321, PU3219, PU3220 Datasheet download
MFG: Panasonic
Package Cooled: Original Package
D/C: 08+/09+
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Datasheet: PU3210
File Size: 177811 KB
Manufacturer:
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PDF/DataSheet Download
Datasheet: PU3219
File Size: 73688 KB
Manufacturer: PANASONIC [Panasonic Semiconductor]
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PDF/DataSheet Download
Datasheet: PU3220
File Size: 61461 KB
Manufacturer: PANASONIC [Panasonic Semiconductor]
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The PU3219 is designed as silicon NPN epitaxial planar darlington type.
It has three features. The first one is it would have low DC current gain. The next one is it would have high speed switching. The next one is that it would have 3 NPN elements. That are all the main features.
Some absolute maximum ratings have been concluded into several points as follow. The first one is about its collector to base voltage which would be -60V. The next one is about its collector to emitter voltage which would be -60V. The next one is about its emitter to base voltage which would be -5V. The next one is about its peak collector current which would be -4A. The next one is about its collector current which would be -2A. The next one is about its power dissipation which would be 15W. The next one is about its junction temperature range which would be 150°C. The next one is about its storage temperature range which would be from -55 to +150°C.
Also there are some electrical characteristics having been concluded into several points as follow. The first one is about its collector cutoff current which would be max -2mA with condition of Vce=-30V and Ib=0. The next one is about its emitter ctoff current which would be max -2mA with condition of Veb=-5V and Ic=0. The next one is about its collector to emitter voltage which would be min -60V with condition of Ic=-30mA and Ib=0. The next one is about its DC current gain which would be min 1000 and max 10000 with condition of Vce=-4V and Ic=-2A. The next one is collector to emitter saturation voltage which would be max -2.5V. The next one is about its transition frequency which would be typ 20MHz with condition of Vce=-10V, Ic=-0.5A and f=1MHz. And so on. For more information please contact us.
The PU3220 is designed as silicon NPN epitaxial planar darlington type.
It has three features. The first one is it would have high DC current gain. The next one is it would have high speed switching. The next one is that it would have 3 NPN elements. That are all the main features.
Some absolute maximum ratings have been concluded into several points as follow. The first one is about its collector to base voltage which would be -60V. The next one is about its collector to emitter voltage which would be -60V. The next one is about its emitter to base voltage which would be -5V. The next one is about its peak collector current which would be -8A. The next one is about its collector current which would be -4A. The next one is about its power dissipation which would be 15W. The next one is about its junction temperature range which would be 150°C. The next one is about its storage temperature range which would be from -55 to +150°C.
Also there are some electrical characteristics having been concluded into several points as follow. The first one is about its collector cutoff current which would be max -500A with condition of Vce=-30V and Ib=0. The next one is about its emitter ctoff current which would be max -2mA with condition of Veb=-5V and Ic=0. The next one is about its collector to emitter voltage which would be min -60V with condition of Ic=-30mA and Ib=0. The next one is about its DC current gain which would be min 1000 and max 10000 with condition of Vce=-3V and Ic=-3A. The next one is collector to emitter saturation voltage which would be max -2V. The next one is about its transition frequency which would be typ 15MHz with condition of Vce=-10V, Ic=-0.5A and f=1MHz. And so on. For more information please contact us.