Title :
Development and Characterization of Repetitive 1-kJ Marx-Generator-Driven Reflex Triode System for High-Power Microwave Generation
Author :
Sharma, Archana ; Kumar, Senthil ; Mitra, Sabyasachi ; Sharma, Vishnu ; Patel, Ankur ; Roy, Amitava ; Menon, Rakhee ; Nagesh, K.V. ; Chakravarthy, D.P.
Author_Institution :
Accel. & Pulse Power Div., Bhabha Atomic Res. Centre, Mumbai, India
fDate :
5/1/2011 12:00:00 AM
Abstract :
This paper presents the design and development of a repetitive Marx generator rated at 1 kJ, 300 kV, 12 kA, and 10 Hz and which is suitable to drive the load directly. Bipolar charging of a Marx generator scheme has been adopted to get the following: 1) faster rise time and 2) relatively low charging voltage. The faster rise time is due to the reduced number of spark gaps down to six for 12 in-series capacitors (0.15 μF and 50 kV) of a six-stage bipolar-charging Marx generator. Interstage inductive charging further enhances the efficiency of the overall system as compared to resistive charging. The generator is characterized by an aqueous resistive load for both polarities at the output voltage. Output voltages of the same magnitude have been achieved for both polarities. The matched impedance is found to be 25 Ω for which a suitable reflex triode is designed. Intense electron beams and high-power microwaves have been generated using this Marx generator and reflex triode system. Experimental results demonstrating the Marx generator and the reflex triode operation are presented and discussed.
Keywords :
impedance matching; microwave generation; power capacitors; pulsed power supplies; triodes; Marx-generator-driven reflex triode system; capacitance 0.15 muF; current 12 kA; energy 1 kJ; frequency 10 Hz; high-power microwave generation; inseries capacitors; interstage inductive charging; resistance 25 ohm; six-stage bipolar-charging Marx generator; voltage 300 kV; voltage 50 kV; Assembly; Capacitors; Cathodes; Electron beams; Generators; Impedance; Inductance; Capacitors; Marx generators; microwave generation; reflex triode;
Journal_Title :
Plasma Science, IEEE Transactions on
DOI :
10.1109/TPS.2011.2116809