Title :
A novel wideband variable coupler employing liquid metal
Author :
Niyogi, Soumitra ; Scott, James ; Ghorbani, Kamran
Author_Institution :
Sch. of Electr. & Comput. Eng., RMIT Univ., Melbourne, VIC, Australia
Abstract :
This paper demonstrates a novel technique to obtain coupling variation for a wideband structure. A 5-element multisection broadside-coupled stripline coupler has been used to obtain a bandwidth of 2-8 GHz. Chambers have been cut in the dielectric between the middle pair of strips. The variable coupling has been achieved by pumping a liquid metal called Galinstan into the chambers of the middle section. The Galinstan essentially thickens the strips changing the spacing and thereby changing the coupling. The chambers are isolated from each other by the use of Kapton membranes. A coupling variation from around 20 dB to 10 dB has been achieved. Return loss is also better than 8 dB for all situations. A lubricant called DialaBX has been used to control the isolation. This lubricant has a similar dielectric constant as the Rogers substrate material, so it has been used to maintain the homogeneity of the structure. SONNET EM simulation software and ADS circuit simulation have been used to produce the results presented.
Keywords :
UHF couplers; liquid metals; microwave materials; permittivity; strip line couplers; ADS circuit simulation; DialaBX lubricant; Galinstan; Kapton membrane; Rogers substrate material; SONNET EM simulation; dielectric constant; frequency 2 GHz to 8 GHz; liquid metal; multisection broadside coupled stripline coupler; wideband variable coupler; Couplings; Directional couplers; Metals; Microwave theory and techniques; Strips; Wideband; Multisection couplers; broadside coupled structures; variable coupling; wideband variable couplers;
Conference_Titel :
Microwave Conference Proceedings (APMC), 2011 Asia-Pacific
Conference_Location :
Melbourne, VIC
Print_ISBN :
978-1-4577-2034-5