Optically activated, high gain GaAs switches are being tested for many different pulsed power applications that require long lifetime (longevity). The switches have p and n contact metallization (with intentional or unintentional dopants) configured in such a way as to produce p-i-n or n-i-n switches. The longevity of the switches is determined by circuit parameters and by the ability of the contacts to resist erosion. This paper will describe how the switches performed in test-beds designed to measure switch longevity. The best longevity was achieved with switches made with diffused contacts, achieving over 50 million pulses at 10 A and over 2 million pulses at 80 A
In this letter, we report high-speed photoconductive switches based on low-temperature (LT) grown Ga...
A class of semi-insulating gallium arsenide diodes has been manifactured and tested, with a Schottky...
Optically activated, high gain GaAs switches are being tested for many different applications. TWO s...
The longevity of high gain GaAs photoconductive semiconductor switches (PCSS) has been extended to o...
The longevity of high gain GaAs photoconductive semiconductor switches (PCSS) has been extended to w...
The longevity of high gain GaAs photoconductive semiconductor switches (PCSS) has been extended to o...
High gain GaAs photoconductive semiconductor switches (PCSS) are being used in a variety of electric...
The electrical properties of semi-insulating (SI) Gallium Arsenide (GaAs) have been investigated for...
Abstract – Photoconductive semiconductor switch (PCSS) experiments excited by YAG:Nd laser at 1064 n...
Optically activated GaAs switches operated in their high main mode are being used or tested for puls...
In this paper, a three-layer GaAs photoconductive semiconductor switch (GaAs PCSS) is designed to wi...
Silicon-doped n-type gallium arsenide crystals, compensated with diffused copper, were studied with ...
High gain photoconductive semiconductor switches (PCSS) are being used to produce high power electro...
A high-power semi-insulating GaAs photoconductive semiconductor switch (PCSS) with quantum well stru...
Photoconductive semiconductor switches (PCSS) have been investigated since the late 1970s. Some devi...
In this letter, we report high-speed photoconductive switches based on low-temperature (LT) grown Ga...
A class of semi-insulating gallium arsenide diodes has been manifactured and tested, with a Schottky...
Optically activated, high gain GaAs switches are being tested for many different applications. TWO s...
The longevity of high gain GaAs photoconductive semiconductor switches (PCSS) has been extended to o...
The longevity of high gain GaAs photoconductive semiconductor switches (PCSS) has been extended to w...
The longevity of high gain GaAs photoconductive semiconductor switches (PCSS) has been extended to o...
High gain GaAs photoconductive semiconductor switches (PCSS) are being used in a variety of electric...
The electrical properties of semi-insulating (SI) Gallium Arsenide (GaAs) have been investigated for...
Abstract – Photoconductive semiconductor switch (PCSS) experiments excited by YAG:Nd laser at 1064 n...
Optically activated GaAs switches operated in their high main mode are being used or tested for puls...
In this paper, a three-layer GaAs photoconductive semiconductor switch (GaAs PCSS) is designed to wi...
Silicon-doped n-type gallium arsenide crystals, compensated with diffused copper, were studied with ...
High gain photoconductive semiconductor switches (PCSS) are being used to produce high power electro...
A high-power semi-insulating GaAs photoconductive semiconductor switch (PCSS) with quantum well stru...
Photoconductive semiconductor switches (PCSS) have been investigated since the late 1970s. Some devi...
In this letter, we report high-speed photoconductive switches based on low-temperature (LT) grown Ga...
A class of semi-insulating gallium arsenide diodes has been manifactured and tested, with a Schottky...
Optically activated, high gain GaAs switches are being tested for many different applications. TWO s...