Title :
A fully monolithic broadband power amplifier for Ku-band communications satellite applications
Author :
Upshur, J.I. ; Goettle, P.E. ; Geller, B.D. ; Gupta, R.K. ; Phelleps, F.
Author_Institution :
COMSAT Lab., Clarksburg, MD, USA
Abstract :
An attempt was made to demonstrate a fully monolithic SSPA module for application to Ku-band direct-radiating array antennas. The module design approach incorporates the necessary tradeoffs to simultaneously achieve good performance in efficiency and linearity, in addition to meeting the necessary gain and output power requirements over the full 10.7- to 12.75-GHz band. The authors describe a three-stage monolithic microwave integrated circuit (MMIC) amplifier being developed for this application with a peak efficiency of 33% at a C/I3 of 16 dB, and a nominal gain of 20 dB. To achieve this performance, the FET structure was optimized for efficiency, using broadband harmonic terminations, and the first two stages were designed to operate at sufficient backoff to minimize their contribution to overall nonlinearity. The results show the validity of the basic SSPA design approach and prove that a high-performance amplifier suitable for satellite communications applications can be achieved in fully monolithic form
Keywords :
MMIC; microwave amplifiers; microwave antenna arrays; microwave links; power amplifiers; satellite relay systems; wideband amplifiers; 10.7 to 12.75 GHz; 20 dB; 33 percent; Ku-band communications satellite; SSPA module; broadband harmonic terminations; direct-radiating array antennas; high-performance amplifier; monolithic broadband power amplifier; three-stage MMIC amplifier; Antenna arrays; Application specific integrated circuits; Broadband amplifiers; Broadband antennas; Linearity; MMICs; Microwave integrated circuits; Performance gain; Power amplifiers; Power generation;
Conference_Titel :
Circuits and Systems, 1992., Proceedings of the 35th Midwest Symposium on
Conference_Location :
Washington, DC
Print_ISBN :
0-7803-0510-8
DOI :
10.1109/MWSCAS.1992.271121