Title :
A compact two-stage 120WGaN high power amplifier for SweepSAR radar systems
Author :
Thrivikraman, Tushar ; Horst, S. ; Price, D. ; Hoffman, Judy ; Veilleux, L.
Author_Institution :
Jet Propulsion Lab., California Inst. of Technol., Pasadena, CA, USA
Abstract :
This work presents the design and measured results of a fully integrated switched power two-stage GaN HEMT high-power amplifier (HPA) achieving 60% power-added efficiency at over 120Woutput power. This high-efficiency GaN HEMT HPA is an enabling technology for L-band SweepSAR interferometric instruments that enable frequent repeat intervals and high-resolution imagery. The L-band HPA was designed using space-qualified state-of-the-art GaN HEMT technology. The amplifier exhibits over 34 dB of power gain at 51 dBm of output power across an 80 MHz bandwidth. The HPA is divided into two stages, an 8 W driver stage and 120 W output stage. The amplifier is designed for pulsed operation, with a high-speed DC drain switch operating at the pulsed-repetition interval and settles within 200 ns. In addition to the electrical design, a thermally optimized package was designed, that allows for direct thermal radiation to maintain low-junction temperatures for the GaN parts maximizing long-term reliability. Lastly, real radar waveforms are characterized and analysis of amplitude and phase stability over temperature demonstrate ultra-stable operation over temperature using integrated bias compensation circuitry allowing less than 0.2 dB amplitude variation and 2° phase variation over a 70°C range.
Keywords :
power amplifiers; synthetic aperture radar; DC drain switch; HPA; bandwidth 80 MHz; direct thermal radiation; electrical design; gain 34 dB; gain 51 dB; high power amplifier; interferometric instruments; power added efficiency; sweep SAR radar systems; switched power; thermally optimized package; Cavity resonators; Gallium nitride; HEMTs; Logic gates; Radio frequency; Switches; Transmission line measurements;
Conference_Titel :
Aerospace Conference, 2014 IEEE
Conference_Location :
Big Sky, MT
Print_ISBN :
978-1-4799-5582-4
DOI :
10.1109/AERO.2014.6836246