Title :
Microwave solid state power amplifier technology
Author_Institution :
Dept. of Radio Electron., Brno Univ. of Technol., Brno, Czech Republic
Abstract :
This paper is focused on our current research in the field of power amplifier technology for microwaves, especially the X-band. For this purpose we considered different active devices. Unfortunately, we did not manage to obtain super modern GaN transistors (chips) for these frequencies such as TGA2023-05 from TriQuint or module such as TGA-2554-GSG from the same producer. Instead we used internally matched GaAs FETs from Eudyna as well as GaAs module XP-1006A from Mimix. Subsequently we have designed, built and tested three power amplifiers with different active devices and output power of 4, 8 and 20 Watts on 10 GHz. In the paper we would like to introduce design and completion of the amplifiers as well as test results. The highest power we achieved by double stage with 90 degrees 3 dB hybrid couplers at the input and output. The microstrip technique on PTFE substrate has been used. Critical parts of layouts were optimized by using ANSYS modeling software. The dc circuitry needs to be designed according to the proper time sequence and high dc currents. Corresponding cooling system was taken into account.
Keywords :
III-V semiconductors; gallium arsenide; microstrip couplers; microwave field effect transistors; microwave power amplifiers; wide band gap semiconductors; ANSYS modeling software; GaAs; GaN; PTFE substrate; TGA-2554-GSG; TGA2023-05; X-band; XP-1006A module; active devices; frequency 10 GHz; high dc currents; hybrid couplers; internally matched FET; microstrip technique; microwave solid state power amplifier technology; power 20 W; power 4 W; power 8 W; time sequence; transistors; Electromagnetic heating; Gain; Microwave amplifiers; Microwave circuits; Microwave communication; Power amplifiers; linear power amplifier; microwave amplifier; solid state power amplifier;
Conference_Titel :
Microwave Techniques (COMITE), 2013l Conference on
Conference_Location :
Pardubice
Print_ISBN :
978-1-4673-5512-4
DOI :
10.1109/COMITE.2013.6545064