DocumentCode
2620189
Title
An isolated high-voltage DC-to-DC converter with fast turn-off capability for X-ray tube gridding
Author
Laskai, Laszlo ; Ilic, Milan ; Reynolds, Joseph ; Encallaz, Robert
Author_Institution
Gen. Electr. Corp. Res. & Dev. Center, Schenectady, NY, USA
Volume
4
fYear
2000
fDate
36800
Firstpage
2552
Abstract
X-ray tube gridding requires that a high-voltage, in the range of a few kilovolts, is applied and removed very quickly while the length of the voltage on- and off-periods are measured in tens of milliseconds. The application requires high-voltage isolation, as the gridding circuit is referenced to the cathode potential, and requires minimal circuit power dissipation, due to cooling limitations in the environment this converter is operated. The main challenge, however, is how to turn-off the converter and discharge the output capacitor within the required time of approximately one hundred microseconds. The proposed converter provides these features and has a higher reliability, better performance, and lower cost than other known solutions. It employs the conventional forward topology with peak-forward energy transfer. To achieve fast turn-off, a novel crowbar arrangement has been implemented that is controlled via the isolation transformer used for energy transfer. The paper describes the application requirements, the proposed circuit arrangement and its operation, provides detailed circuit analysis, design guidelines and experimental results
Keywords
DC-DC power convertors; X-ray tubes; power transformers; pulse generators; pulsed power supplies; switching circuits; X-ray tube gridding; cathode potential; circuit power dissipation; cooling limitations; cost; crowbar arrangement; energy transfer; fast turn-off capability; forward topology; high-voltage isolation; isolated high-voltage DC/DC power converter; isolation transformer; peak-forward energy transfer; performance; pulsed power supply; reliability; Capacitors; Cathodes; Circuits; Cooling; Costs; DC-DC power converters; Energy exchange; Length measurement; Power dissipation; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Industry Applications Conference, 2000. Conference Record of the 2000 IEEE
Conference_Location
Rome
ISSN
0197-2618
Print_ISBN
0-7803-6401-5
Type
conf
DOI
10.1109/IAS.2000.883182
Filename
883182
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