1DI240A-060, 1DI300-120, 1DI300A-030 Selling Leads, Datasheet
MFG:FUJI D/C:07+
1DI240A-060, 1DI300-120, 1DI300A-030 Datasheet download
Part Number: 1DI240A-060
MFG: FUJI
Package Cooled:
D/C: 07+
MFG:FUJI D/C:07+
1DI240A-060, 1DI300-120, 1DI300A-030 Datasheet download
MFG: FUJI
Package Cooled:
D/C: 07+
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PDF/DataSheet Download
Datasheet: 1DI200Z-100
File Size: 102697 KB
Manufacturer: FUJI [Fuji Electric]
Download : Click here to Download
PDF/DataSheet Download
Datasheet: 1DI200Z-100
File Size: 102697 KB
Manufacturer: FUJI [Fuji Electric]
Download : Click here to Download
PDF/DataSheet Download
Datasheet: 1DI200Z-100
File Size: 102697 KB
Manufacturer: FUJI [Fuji Electric]
Download : Click here to Download
The 1DI300A-030 is designed as power transistor module. Its typical applications include high power switching, AC motor controls, DC controls and uninterruptible power supply.
It has four features. (1) power transistors and free wheels are built into one package. (2) All terminals are insulated from mounting plate. (3) Best suited for motor control applications with 440 to 480VAC and power supplies. (4) terminal layout in which drive wiring and power wiring do not come accross. That are all the main features.
Some absolute maximum ratings have been concluded into several points as follow. (1) Its collector to base voltage would be 300V. (2) Its collector to emitter voltage would be 300V. (3) Its Vceo(sus) would be 200V. (4) Its emitter to base voltage would be 5V. (5) Its collector current would be 100A for DC and would be 200A for 1ms. (6) Its base current would be 4A for DC and would be 8A for 1ms. (7) Its collector power dissipation would be 2000W. (8) Its junction temperature would be +150°C. (9) Its storage temperature range would be from -40°C to +125°C. It should be stressing above those listed in the "absolute maximum ratings" may cause permanent damage to device.
Also some electrical characteristics about it. (1) Its collector to base voltage would be min 300V. (2) Its collector to emitter voltage would be min 300V. (3) Its emitter to base voltage would be min 5V. (4) Its collector cutoff current would be max 1.0mA. (5) Its emitter cutoff current would be max 200mA. (6) Its DC current gain would be min 1500 and max 9000. (7) Its collector to emitter saturation voltage would be max 1.0V. (8) Its base to emitter saturation voltage would be max 1.5V. And so on. If you have any question or suggestion or want to know more information please contact us for details. Thank you!