Title :
A V-Band Beam-Steering Antenna on a Thin-Film Substrate With a Flip-Chip Interconnection
Author :
Lee, Sanghyo ; Song, Sangsub ; Kim, Youngmin ; Lee, Jangsoo ; Cheon, Chang-yul ; Seo, Kwang-Seok ; Kwon, Youngwoo
Author_Institution :
Seoul Nat. Univ., Seoul
fDate :
4/1/2008 12:00:00 AM
Abstract :
We propose a planar V-band beam-steering antenna based on a millimeter-wave (mm-wave) system-on-package technology using advanced thin-film technology on a silicon mother board. The thin-film substrate has the capability of integrated passive elements and flip-chip interconnection. Space-consuming components such as a microstrip Rotman lens and patch antennas are implemented on a low-loss, low-cost, and low-dielectric-constant material, benzocyclobutane. V-band monolithic microwave integrated circuits, a power amplifier, and a SP4T switch, are flip-chipped on the thin-film substrate while minimizing parasitic effects. The fabricated antenna module shows if-plane beam steering at four angles, plusmn6deg and plusmn20deg. The measured effective isotropic radiated power is in the range of 17.3-18 dBm. To our knowledge, this is the first demonstration of a planar mm-wave beam-steering antenna module on a thin-film substrate incorporating integrated terminating loads and flip-chip interconnections.
Keywords :
MMIC power amplifiers; beam steering; flip-chip devices; integrated circuit interconnections; microwave antennas; microwave switches; system-in-package; thin film circuits; SP4T switch; advanced thin-film technology; benzocyclobutane; flip-chip interconnection; integrated passive elements; integrated terminating loads; low-cost material; low-dielectric-constant material; low-loss material; microstrip Rotman lens; millimeter-wave system-on-package technology; monolithic microwave integrated circuits; patch antennas; planar V-band beam-steering antenna; power amplifier; thin-film substrate; Beam-steering; V-band; flip-chip; thin-film;
Journal_Title :
Microwave and Wireless Components Letters, IEEE
DOI :
10.1109/LMWC.2008.918966