Three turn secondary for the prototype SLAC solid state induction modulator

The Next Linear Collider accelerator proposal at SLAC requires a high efficiency, highly reliable, and low cost pulsed power modulator to drive the X band klystrons. The present NLC envisions a solid state induction modulator design to drive up to 8 klystrons to 500 kV for 3(S) at 120 PPS with one m...

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Hauptverfasser: Cassel, R.L., deLamare, J.E., Nguyen, M.N., Pappas, G.C., Cook, E., Sullivan, J., Brooksby, C.
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container_start_page 118
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creator Cassel, R.L.
deLamare, J.E.
Nguyen, M.N.
Pappas, G.C.
Cook, E.
Sullivan, J.
Brooksby, C.
description The Next Linear Collider accelerator proposal at SLAC requires a high efficiency, highly reliable, and low cost pulsed power modulator to drive the X band klystrons. The present NLC envisions a solid state induction modulator design to drive up to 8 klystrons to 500 kV for 3(S) at 120 PPS with one modulator (>1000 megawatt pulse, 500 kW average). A prototype modulator is under construction, which will power 4 each 5045 SLAC klystron to greater than 380 kV for 3(S) (>600 megawatt pulse, >300 kW ave.). The prototype induction modulator utilizes a three-turn secondary to produce the 500 kV pulse. The design, installation and testing of the three turn secondary and its effect on rise time and fault conditions is discussed. The design and implementation of a snubber to improve the arcing condition are covered.
doi_str_mv 10.1109/MODSYM.2002.1189430
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source IEEE Electronic Library (IEL) Conference Proceedings
subjects Applied sciences
Costs
Electrical engineering. Electrical power engineering
Exact sciences and technology
Klystrons
Linear accelerators
Modular construction
Power electronics, power supplies
Proposals
Prototypes
Pulse modulation
Snubbers
Solid state circuits
Testing
title Three turn secondary for the prototype SLAC solid state induction modulator
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