DocumentCode :
1864850
Title :
A space-qualified, hermetically-sealed, Ka-band LNA with 2.0dB noise figure
Author :
Sowers, J.J. ; Willis, M. ; Tieu, T. ; Findley, W. ; Hubbard, K.
Author_Institution :
Space Systems/Loral, Palo Alto, CA, USA
fYear :
2001
fDate :
21-24 Oct. 2001
Firstpage :
156
Lastpage :
161
Abstract :
A space-qualified, hermetically-sealed, Ka-Band LNA with 2.0dB typical noise figure and greater than 38dB of temperature compensated gain has been built tested, and integrated into commercial satellite payloads. Noise figures as low as 1.7dB at 25deg C, have been recorded. A novel matching technique was used to minimize noise figure. This involved designing the LNA input stage with the waveguide to microstrip transition as part of the matching circuitry. In this way, input loss was minimized. Additionally, some tuning elements at the input enhanced the consistency of the design by allowing for device and assembly variations. This paper will describe the design and performance of the LNA. This will include a physical description, LNA design drivers and approach, waveguide to microstrip design, production LNA performance, and some ideas for future improvements. To the author´s knowledge, this is the lowest Ka-Band noise figure reported, from a hermetically-sealed, commercial space module currently in production.
Keywords :
circuit noise; microstrip transitions; microwave amplifiers; space vehicle electronics; 1.7 to 2.0 dB; 25 C; 38 dB; design driver; hermetically-sealed Ka-band LNA; input loss; matching circuit; noise figure; satellite payload; space module; temperature compensated gain; tuning element; waveguide-to-microstrip transition; Circuit optimization; Circuit testing; Microstrip components; Noise figure; Payloads; Production; Satellites; Temperature; Waveguide components; Waveguide transitions;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Gallium Arsenide Integrated Circuit (GaAs IC) Symposium, 2001. 23rd Annual Technical Digest
Conference_Location :
Baltimore, MD, USA
ISSN :
1064-7775
Print_ISBN :
0-7803-6663-8
Type :
conf
DOI :
10.1109/GAAS.2001.964368
Filename :
964368
Link To Document :
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