Title :
High power solid state switch module
Author :
Sanders, H. ; Glidden, S.
Author_Institution :
Appl. Pulsed Power Inc., Ithaca, NY, USA
Abstract :
A high voltage, high di/dt, solid state switch module has been developed. This compact module can be used to replace thyratrons in high power modular applications. The module contains multiple silicon thyristors packaged in a low inductance series configuration with a strip-line output connection. A self powered gate drive is triggered by a 15 V, 1 A pulse. Each module has a rating of 8000 volts and is capable of conducting 6000 amperes over a 10 microsecond pulse with maximum repetition rates of over 120 hertz. The modules have demonstrated a 70 ns turn-on delay time and operation at 25 kA/us, limited by the external circuit. Switches rated for over 50 kV have been assembled using a modular design to easily connect the modules in series. These modules are suitable for pulse modulators for high power RF and microwave amplifiers used in particle accelerators, radars, medical and defense applications, medium and high power lasers, pulsed magnet drivers, and other high power applications. The performance of the modules under normal and fault conditions is described.
Keywords :
inductance; pulse modulation; silicon; switchgear; thyristors; 1 A; 15 V; Si; defense applications; fault conditions; high power RF amplifier; high voltage di/dt solid state switch module; low inductance series configuration; medical applications; medium-high power lasers; microwave amplifiers; particle accelerators; pulse modulators; pulsed magnet drivers; radars; self powered gate drive; silicon thyristors; strip-line output connection; thyratrons; turn-on delay time; Optical pulses; Packaging; Pulse amplifiers; Pulse modulation; Silicon; Solid state circuits; Switches; Thyratrons; Thyristors; Voltage;
Conference_Titel :
Power Modulator Symposium, 2004 and 2004 High-Voltage Workshop. Conference Record of the Twenty-Sixth International
Print_ISBN :
0-7803-8586-1
DOI :
10.1109/MODSYM.2004.1433639