High-voltage switch using series-connected IGBTs with simple auxiliary circuit
For high-voltage applications, the series operation of devices is necessary to handle high voltage with limited voltage rating devices. In the case of self turn-off devices, however, the series operation of devices is very difficult. The main problem associated with series-connected devices is how t...
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Published in | IEEE transactions on industry applications Vol. 37; no. 6; pp. 1832 - 1839 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
New York
IEEE
01.11.2001
The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
Subjects | |
Online Access | Get full text |
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Abstract | For high-voltage applications, the series operation of devices is necessary to handle high voltage with limited voltage rating devices. In the case of self turn-off devices, however, the series operation of devices is very difficult. The main problem associated with series-connected devices is how to guarantee the voltage balance among the devices both at the static and the dynamic transient states. This paper presents a simple and reliable voltage-balancing circuit for the series operation of devices to overcome the disadvantages of solutions presented so far, such as complex control or circuit, low reliability, and limited number of devices to be connected. The proposed balancing circuit realizes a complete voltage balancing at both static and dynamic states and allows series operation of an almost unlimited number of devices. The operation principle and analysis are presented and tested on 16 series-connected insulated gate bipolar transistors to handle 20-kV/400-A switching. |
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AbstractList | For high-voltage applications, the series operation of devices is necessary to handle high voltage with limited voltage rating devices. In the case of self turn-off devices, however, the series operation of devices is very difficult. The main problem associated with series-connected devices is how to guarantee the voltage balance among the devices both at the static and the dynamic transient states. This paper presents a simple and reliable voltage-balancing circuit for the series operation of devices to overcome the disadvantages of solutions presented so far, such as complex control or circuit, low reliability, and limited number of devices to be connected. The proposed balancing circuit realizes a complete voltage balancing at both static and dynamic states and allows series operation of an almost unlimited number of devices. The operation principle and analysis are presented and tested on 16 series-connected insulated gate bipolar transistors to handle 20-kV/400-A switching For high-voltage applications, the series operation of devices is necessary to handle high voltage with limited voltage rating devices. In the case of self turn-off devices, however, the series operation of devices is very difficult. The main problem associated with series-connected devices is how to guarantee the voltage balance among the devices both at the static and the dynamic transient states. This paper presents a simple and reliable voltage-balancing circuit for the series operation of devices to overcome the disadvantages of solutions presented so far, such as complex control or circuit, low reliability, and limited number of devices to be connected. The proposed balancing circuit realizes a complete voltage balancing at both static and dynamic states and allows series operation of an almost unlimited number of devices. The operation principle and analysis are presented and tested on 16 series-connected insulated gate bipolar transistors to handle 20-kV/400-A switching. |
Author | Dong-Wook Yoo Heung-Geun Kim Ju Won Baek |
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Cites_doi | 10.1109/APEC.1994.316362 10.1109/PESC.1992.254660 10.1109/IAS.1995.530654 10.1109/PESC.1995.474790 10.1109/PESC.1996.548819 |
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SubjectTerms | Circuit testing Circuits Clamps Devices Dynamics Electric potential Flexible AC transmission systems Handles Industry Applications Society Insulated gate bipolar transistors Semiconductor devices Snubbers Switches Switching circuits Voltage Voltage control |
Title | High-voltage switch using series-connected IGBTs with simple auxiliary circuit |
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