DocumentCode :
2303101
Title :
A 600 kV, 150 ns Rise-Time Pulse Transformer for Klystron Pulse Modulator
Author :
Akemoto, Mitsuo ; Tokuchi, Akira
Author_Institution :
High Energy Accel. Res. Organ., Tsukuba
fYear :
2008
fDate :
27-31 May 2008
Firstpage :
396
Lastpage :
396
Abstract :
Summary form only given: A 600 kV, 150 ns rise-time pulse transformer with a 1:15 step-up ratio has been developed for klystron pulse modulators. This pulse transformer has been designed to produce pulses with a peak current of 1200 A, a peak voltage of 600 kV, a rise-time of 150 ns, a flat-top width of 400 ns, and a repetition rate of 50 pps. To realize a fast rise-time, the pulse transformer with a low stray capacitance and leakage inductance should be designed. One-turn primary winding as well as a bililer and tapered secondary winding design was adapted to minimize the leakage inductance. Additionally, amorphous alloy toroidal cores with a high magnetic flux swing and a high permeability were used to improve the pulse droop and core losses. The transmission characteristics and pulse time-response were measured to analyze the pulse transformer performance. The data were compared with a simplified lumped constant circuit model. The agreement with the model was very good. The results of high voltage tests using a dummy load are also presented.
Keywords :
klystrons; magnetic flux; modulators; pulse modulation; pulse transformers; transformer windings; core losses; current 1200 A; high magnetic flux swing; klystron pulse modulator; leakage inductance; low stray capacitance; lumped constant circuit model; one-turn primary winding; pulse time-response; pulse transformer; step-up ratio; tapered secondary winding design; time 150 ns; time 400 ns; voltage 600 kV; Amorphous materials; Capacitance; Inductance; Klystrons; Magnetic cores; Pulse measurements; Pulse modulation; Pulse transformers; Space vector pulse width modulation; Transformer cores;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
IEEE International Power Modulators and High Voltage Conference, Proceedings of the 2008
Conference_Location :
Las Vegas, NE
Print_ISBN :
978-1-4244-1534-2
Electronic_ISBN :
978-1-4244-1535-9
Type :
conf
DOI :
10.1109/IPMC.2008.4743671
Filename :
4743671
Link To Document :
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