In this paper, we described the fabrication and testing of a novel plasma-jet triggered gas switch (PJTGS) operated at extremely low working coefficients with excellent triggered jitters. While the structure of the PJTGS is similar to that of a traditional three-electrode field-distortion gas switch, to improve its triggered performance we used a conical micro-plasma-gun with a needle-to-plate spark gap embedded in the trigger electrode. Applying a nanosecond pulse to the trigger electrode caused a spark discharge in the micro-plasma-gun. The electric field drove the discharge plasma to spray into the spark gap of the gas switch, causing fast breakdown. We tested the PJTGS with charging voltages of ±25 kV and a trigger voltage of +80 kV (5 ns rise time and 80 ns full width at half maximum) in two working modes. The PJTGS operated in Mode II had a lower triggered jitter and could be operated over a wider range of working coefficients than in Mode I under the same conditions. At working coefficients higher than 70%, we obtained sub-ns triggered jitters (<0.89 ns) from the PJTGS, at working coefficients lower than 50%, we obtained triggered jitters of 1.6-3.5 ns without no-fires or pre-fires. Even at a working coefficient of 27.4%, the PJTGS could still be triggered reliably with a delay time of 96.1 ns and a triggered jitter of 3.5 ns, respectively.
[1]
Peng Liu,et al.
Effect Analysis of Switch Prefire in Linear Transformer Drivers
,
2012,
IEEE Transactions on Plasma Science.
[2]
S. Kovaleski,et al.
Study of laser target triggering for spark gap switches
,
2009,
IEEE Transactions on Dielectrics and Electrical Insulation.
[3]
Joseph Ray Woodworth,et al.
New low inductance gas switches for linear transformer drivers
,
2009
.
[4]
Qiaogen Zhang,et al.
Experimental Study on Multigap Multichannel Gas Spark Closing Switch for LTD
,
2009,
IEEE Transactions on Plasma Science.
[5]
M. Cuneo,et al.
Architecture of petawatt-class z-pinch accelerators.
,
2007
.
[6]
S. Portillo,et al.
Design, Simulation, and Fault Analysis of a 6.5-MV LTD for Flash X-Ray Radiography
,
2006,
IEEE Transactions on Plasma Science.
[7]
van Ejm Bert Heesch,et al.
Long lifetime, triggered, spark-gap switch for repetitive pulsed power applications
,
2005
.
[8]
K. LeChien,et al.
Investigation of a multichanneling, multigap Marx bank switch
,
2004
.
[9]
J. Niedbalski.
High-voltage multichannel rail gap switch triggered by corona discharges
,
2003
.