Title :
135-GHz Micromachined On-Chip Antenna and Antenna Array
Author :
Chu, Hui ; Guo, Yong-Xin ; Lim, Teck-Guan ; Khoo, Yee Mong ; Shi, Xiangquan
Author_Institution :
Dept. of Electr. & Comput. Eng., Nat. Univ. of Singapore, Singapore, Singapore
Abstract :
This paper presents the design, fabrication and “on-wafer” characterization of multi-membrane-supported and polymer-cavity-backed monopole antenna and 2× 1 patch antenna array operating in the 135-GHz frequency range. The designs were fabricated on two-layer benzocyclobutene (BCB) material membrane obtained by micromachining of the low resistivity silicon. The silicon material is removed underneath the monopole antenna to produce a cavity surrounded by metal and filled with polymer. This polymer filled cavity provides a better support to the membrane than conventional air cavity which is extremely important for practical applications. In the meantime, the higher synthesized effective dielectric permittivity of the BCB-polymer mixed region than BCB-air mixed one provides the possibility for compact antenna array designs. The proposed monopole antenna shows a measured impedance bandwidth from 124 to 136 GHz for |S11| less than -10 dB and maximum measured gain of 6.74 dBi at 131 GHz; while the 2×1 patch antenna array achieved a measured impedance bandwidth from 126.5 to 138 GHz for |S11| less than -10 dB and maximum measured gain of 8.66 dBi at 130 GHz.
Keywords :
filled polymers; micromachining; microstrip antenna arrays; millimetre wave antenna arrays; monopole antenna arrays; BCB-polymer mixed region; bandwidth 124 GHz to 136 GHz; compact antenna array designs; dielectric permittivity; frequency 135 GHz; low resistivity silicon; micromachined on-chip antenna array; multimembrane-supported monopole antenna; on-wafer characterization; patch antenna array; polymer filled cavity; polymer-cavity-backed monopole antenna; silicon material; two-layer BCB material membrane; two-layer benzocyclobutene material membrane; Antenna arrays; Antenna measurements; Arrays; Cavity resonators; Gain measurement; Patch antennas; Micromachining; on-chip antennas; silicon antennas; sub-terahertz antennas;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2012.2209855