Title :
An Ultra-Thin, High-Power, and Multilayer Organic Antenna Array With T/R Functionality in the
-Band
Author :
Morcillo, Carlos A Donado ; Patterson, Chad E. ; Lacroix, Benjamin ; Coen, Christopher ; Poh, Chung H J ; Cressler, John D. ; Papapolymerou, John
Author_Institution :
Sch. of Electr. & Comput. Eng., Georgia Inst. of Technol., Atlanta, GA, USA
Abstract :
The transmit-receive (T/R) operation of an ultra-thin organic antenna array is presented at a center frequency of 9.5 GHz. High transmit power is achieved while maintaining an ultra-low profile in a novel system-on-a-package scheme whereby 32 silicon-germanium (SiGe), transmit/receive integrated-circuit (TRIC) modules have been flip-chip bonded to the array board. Each SiGe TRIC drives a pair of slot-coupled microstrip patch antennas that form an 8 × 8 rectangular array, which is all packaged in an organic substrate stack of liquid crystal polymer and RT/Duroid 5880LZ. The organic package occupies an area of 30.5 cm × 25.4 cm and has a total thickness of only 1.80 mm. The small-signal characterization of the array showed a G/T=-6.64 dB , and a measured receive gain of 20.1 dB with a variation of 0.7 dB over a 1-GHz bandwidth (BW). Finally, far-field large-signal experiments showed a measured effective isotropically radiated power of 47.1 dBm with a variation of 2.36 dB over the same BW, and without the aid of additional thermal management components.
Keywords :
Ge-Si alloys; flip-chip devices; liquid crystal polymers; microstrip antenna arrays; microwave antenna arrays; multilayers; organic compounds; receiving antennas; system-in-package; thermal management (packaging); thin film devices; transmitting antennas; RT/Duroid 5880LZ; SiGe; X-band antenna array; bandwidth 1 GHz; flip-chip bond; frequency 9.5 GHz; gain 20.1 dB; high power antenna array; integrated circuit module; liquid crystal polymer; microstrip patch antennas; multilayer organic antenna array; organic substrate; rectangular array; size 25.4 cm; size 30.5 cm; system-on-a-package; thermal management; transmit/receive functionality; ultralow profile antenna arrray; ultrathin antenna array; ultrathin organic antenna array; Antenna arrays; Arrays; Microstrip; Radio frequency; Silicon germanium; Stripline; Substrates; Microstrip antenna; organic materials; planar arrays; radar antennas; silicon germanium;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2012.2218119