Title :
An Analog RF MEMS Slotline True-Time-Delay Phase Shifter
Author :
Caekenberghe, Koen Van ; Vaha-Heikkila, Tauno
Author_Institution :
Thales Air Syst., Hengelo
fDate :
9/1/2008 12:00:00 AM
Abstract :
An analog RF microelectromechanical systems (MEMS) slotline true-time-delay (TTD) phase shifter is presented for use in conjunction with tapered slot antennas, such as the Vivaldi aerial and the double exponentially tapered slot antenna. The design is a scalable distributed loaded-line cascade of 62 novel differential slow-wave unit cells. Each differential slow-wave unit cell comprises an electrically short slotline section, which is loaded with a shunt impedance consisting of two center-pulled contactless fixed-fixed beam RF MEMS varactors in series, sharing a common electrode. The analog RF MEMS slotline TTD phase shifter is demonstrated on a borosilicate glass wafer using a microfabrication process requiring six masks. It is designed for transistor-transistor logic bias voltage levels and exhibits a measured phase shift of 28.2deg/dB (7.8 ps/dB) and 59.2deg/cm at 10 GHz, maintaining a 75-Omega differential impedance match (S11dd < -15.8 dB). The input third-order intercept point is 5 dBm at 10 GHz for a Deltaf of 50 kHz, measured in a 100-Omega differential transmission line system. Design and fabrication opportunities, concerning distortion and loss reduction, as well as packaging, are highlighted.
Keywords :
delays; impedance matching; micromechanical devices; phase shifters; slot antennas; transistor-transistor logic; transmission lines; varactors; Vivaldi aerial antenna; analog RF MEMS slotline; borosilicate glass wafer; differential impedance match; differential slow-wave unit cells; differential transmission line system; double exponentially antenna; fixed-fixed beam varactors; frequency 10 GHz; frequency 50 kHz; microelectromechanical systems; microfabrication process; resistance 100 ohm; resistance 75 ohm; scalable distributed loaded-line cascade; shunt impedance; tapered slot antennas; third-order intercept point; transistor-transistor logic bias voltage levels; true-time-delay phase shifter; Electronically scanned array; RF microelectromechanical systems (MEMS); phase shifter; slotline; true time delay (TTD);
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2008.2002236