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IC Ku-band Impatt AmplifierHigh efficiency GaAs low-high-low IMPATTs were investigated. Theoretical analyses were employed to establish a design window for the material parameters to maximize microwave performance. Single mesa devices yielded typically 2 to 3 W with 16 to 23% efficiency in waveguide oscillator test circuits. IMPATTs with high reliability Pt/TiW/Pt/Au metallizations were subjected to temperature stress, non-rf bias-temperature stress, and rf bias-temperature stress. Assuming that temperature is the driving force behind the dominant failure mechanism, a mean-time-to-failure considerably greater than 500,000 hours is indicated by the stress tests. A 15 GHz, 4W, 56 dB gain microstrip amplifier was realized using GaAs FETs and IMPATTs. Power combining using a 3 db Lange coupler is employed in the power output stage having an intrinsic power-added efficiency of 15.7%. Overall dc-to-rf efficiency of the amplifier is 10.8%. The amplifier has greater than a 250 MHz, 1 db bandwidth; operates over the 0 deg to 50 C (base plate) temperature range with less than 0.5 db change in the power output; weighs 444 grams; and has a volume of 220 cu cm.
Document ID
19800019100
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Sokolov, V.
(Texas Instruments, Inc. Dallas, TX, United States)
Namordi, M. R.
(Texas Instruments, Inc. Dallas, TX, United States)
Doerbeck, F. H.
(Texas Instruments, Inc. Dallas, TX, United States)
Wisseman, W. R.
(Texas Instruments, Inc. Dallas, TX, United States)
Date Acquired
September 4, 2013
Publication Date
March 1, 1979
Subject Category
Electronics And Electrical Engineering
Report/Patent Number
NASA-CR-160004
Report Number: NASA-CR-160004
Accession Number
80N27601
Funding Number(s)
CONTRACT_GRANT: NAS5-24182
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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