Title :
Plasma opening switch scaling relationships derived from operations in the "switch limited" regime
Author :
Commisso, R.J. ; Weber, B.V. ; Rix, W. ; Coleman, Philip ; Thompson, John ; Kortbawi, D. ; Goyer, J.
Author_Institution :
Div. of Plasma Phys., Naval Res. Lab., Washington, DC, USA
Abstract :
Summary form only given. The Defense Special Weapons Agency has accumulated data on plasma opening switch (POS) operations on a number of different pulse power drivers including HAWK at NRL, DM at Physics International, and ACE 4 at Maxwell resulting in a large data base spanning a wide range of conduction times (200 to 1500 ns) and conduction currents (400 to 5000 kA). In this paper the data is examined to draw conclusions on how POS performance scales over this range when the POS is operating in the "switch limited" regime, i.e. where the POS output voltage is below the voltage which would be generated if all the available current from the POS flowed to the load. By examining the entire data base scaling relationships can be established. Dependent variables such as POS voltage, flow impedance, and gap are examined as functions of conduction time, conduction current, plasma density, and magnetic field. The analysis indicates where simple pictures of POS operations appear adequate and where additional independent variables (such as electrode surface conditioning) are required.
Keywords :
plasma density; plasma devices; plasma flow; plasma switches; switches; 200 to 1500 ns; 400 to 5000 kA; ACE 4; DM; Defense Special Weapons Agency; HAWK; conduction current; conduction time; electrode surface conditioning; flow impedance; gap; magnetic field; plasma density; plasma opening switch; pulse power drivers; scaling relationships; switch limited regime; voltage; Delta modulation; Electrodes; Magnetic analysis; Magnetic fields; Physics; Plasma density; Surface impedance; Switches; Voltage; Weapons;
Conference_Titel :
Plasma Science, 1997. IEEE Conference Record - Abstracts., 1997 IEEE International Conference on
Conference_Location :
San Diego, CA, USA
Print_ISBN :
0-7803-3990-8
DOI :
10.1109/PLASMA.1997.605068