DocumentCode :
3206453
Title :
A 1-MV, 1-MA, 0.1-Hz linear transformer driver utilizing an internal water transmission line
Author :
LeChien, K. ; Mazarakis, M. ; Fowler, W. ; Stygar, W. ; Long, F. ; McKee, R. ; Natoni, G. ; Porter, J. ; Androlewicz, K. ; Chavez, T. ; Feltz, G. ; Garcia, V. ; Guthrie, D. ; Mock, R. ; Montoya, T. ; Puissant, J. ; Smith, A. ; Wakeland, P. ; Ward, K. ; Va
Author_Institution :
Sandia Nat. Labs., Albuquerque, NM, USA
fYear :
2009
fDate :
June 28 2009-July 2 2009
Firstpage :
1186
Lastpage :
1191
Abstract :
Sandia National Laboratories is investigating linear transformer driver (LTD) architecture as a potential replacement of conventional Marx generator based pulsed power systems. Such systems have traditionally been utilized as the primary driver for z-pinch wire-array experiments, radiography, inertial fusion energy (IFE) concepts, and dynamic materials experiments (i.e. ICE). We are developing a 10-cavity LTD voltage adder that has a nominal 1-MV, 1-MA, 1-TW output pulse with a 10-90% rise-time of ~60-ns and FWHM of ~150-ns into an optimized impedance load (when synchronizing the triggering of cavities for maximum current). The driver and the peripheral systems are designed for a repetition rate of 6-shots per minute for short intervals. The driver utilizes an internal water insulated transmission line. This system will be utilized for system level conceptual development for many applications, specifically rep-rate and precision pulse-shaping applications. We shall first implement a 1-MA, 0.2-MV, 0.1-Hz 2-cavity voltage adder that will be operational in early 2010 followed by expansion to a 10-cavity system in late 2010. The 2-cavity system is described in this manuscript.
Keywords :
pulsed power supplies; FWHM; IFE; LTD architecture; LTD voltage adder; Marx generator; Sandia National Laboratories; current 1 MA; frequency 0.1 Hz; inertial fusion energy; internal water transmission line; linear transformer driver; optimized impedance load; pulsed power systems; voltage 1 MV; z-pinch wire-array experiments; Fusion power generation; Laboratories; Power generation; Power system dynamics; Power transformer insulation; Power transmission lines; Pulse generation; Pulse power systems; Pulse transformers; Transmission lines;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Pulsed Power Conference, 2009. PPC '09. IEEE
Conference_Location :
Washington, DC
Print_ISBN :
978-1-4244-4064-1
Electronic_ISBN :
978-1-4244-4065-8
Type :
conf
DOI :
10.1109/PPC.2009.5386430
Filename :
5386430
Link To Document :
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