Factors affecting the output pulse flatness of the linear transformer driver cavity systems with 5th harmonics

We describe the study we have undertaken to evaluate the effect of component tolerances in obtaining a voltage output flat top for a linear transformer driver (LTD) cavity containing 3rd and 5th harmonic bricks [A. A. Kim et al., in Proc. IEEE Pulsed Power and Plasma Science PPPS2013 (San Francisco,...

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Main Authors: V. M. Alexeenko, M. G. Mazarakis, A. A. Kim, S. S. Kondratiev, V. A. Sinebryukhov, S. N. Volkov, M. E. Cuneo, M. L. Kiefer, J. J. Leckby, B. V. Oliver, P. D. Maloney
Format: Article
Language:English
Published: American Physical Society 2016-09-01
Series:Physical Review Accelerators and Beams
Online Access:http://doi.org/10.1103/PhysRevAccelBeams.19.090401
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spelling doaj-b30334c2dd594b37a84458c0ad644bc92020-11-25T00:03:50ZengAmerican Physical SocietyPhysical Review Accelerators and Beams2469-98882016-09-0119909040110.1103/PhysRevAccelBeams.19.090401Factors affecting the output pulse flatness of the linear transformer driver cavity systems with 5th harmonicsV. M. AlexeenkoM. G. MazarakisA. A. KimS. S. KondratievV. A. SinebryukhovS. N. VolkovM. E. CuneoM. L. KieferJ. J. LeckbyB. V. OliverP. D. MaloneyWe describe the study we have undertaken to evaluate the effect of component tolerances in obtaining a voltage output flat top for a linear transformer driver (LTD) cavity containing 3rd and 5th harmonic bricks [A. A. Kim et al., in Proc. IEEE Pulsed Power and Plasma Science PPPS2013 (San Francisco, California, USA, 2013), pp. 1354–1356.] and for 30 cavity voltage adder. Our goal was to define the necessary component value precision in order to obtain a voltage output flat top with no more than ±0.5% amplitude variation.http://doi.org/10.1103/PhysRevAccelBeams.19.090401
collection DOAJ
language English
format Article
sources DOAJ
author V. M. Alexeenko
M. G. Mazarakis
A. A. Kim
S. S. Kondratiev
V. A. Sinebryukhov
S. N. Volkov
M. E. Cuneo
M. L. Kiefer
J. J. Leckby
B. V. Oliver
P. D. Maloney
spellingShingle V. M. Alexeenko
M. G. Mazarakis
A. A. Kim
S. S. Kondratiev
V. A. Sinebryukhov
S. N. Volkov
M. E. Cuneo
M. L. Kiefer
J. J. Leckby
B. V. Oliver
P. D. Maloney
Factors affecting the output pulse flatness of the linear transformer driver cavity systems with 5th harmonics
Physical Review Accelerators and Beams
author_facet V. M. Alexeenko
M. G. Mazarakis
A. A. Kim
S. S. Kondratiev
V. A. Sinebryukhov
S. N. Volkov
M. E. Cuneo
M. L. Kiefer
J. J. Leckby
B. V. Oliver
P. D. Maloney
author_sort V. M. Alexeenko
title Factors affecting the output pulse flatness of the linear transformer driver cavity systems with 5th harmonics
title_short Factors affecting the output pulse flatness of the linear transformer driver cavity systems with 5th harmonics
title_full Factors affecting the output pulse flatness of the linear transformer driver cavity systems with 5th harmonics
title_fullStr Factors affecting the output pulse flatness of the linear transformer driver cavity systems with 5th harmonics
title_full_unstemmed Factors affecting the output pulse flatness of the linear transformer driver cavity systems with 5th harmonics
title_sort factors affecting the output pulse flatness of the linear transformer driver cavity systems with 5th harmonics
publisher American Physical Society
series Physical Review Accelerators and Beams
issn 2469-9888
publishDate 2016-09-01
description We describe the study we have undertaken to evaluate the effect of component tolerances in obtaining a voltage output flat top for a linear transformer driver (LTD) cavity containing 3rd and 5th harmonic bricks [A. A. Kim et al., in Proc. IEEE Pulsed Power and Plasma Science PPPS2013 (San Francisco, California, USA, 2013), pp. 1354–1356.] and for 30 cavity voltage adder. Our goal was to define the necessary component value precision in order to obtain a voltage output flat top with no more than ±0.5% amplitude variation.
url http://doi.org/10.1103/PhysRevAccelBeams.19.090401
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