Title :
Compact single and dual band zero-degree metamaterial N-way radial power combiner/divider
Author :
Dupuy, Alexandre ; Gummalla, Ajay ; Achour, Maha ; Poilasne, Gregory
Author_Institution :
Rayspan Corporation, 11975 El Camino Real, St. 301, San Diego, California, 92130, U.S.A
Abstract :
This paper introduces different types of N-way metamaterial radial power combiners/dividers. The metamaterial properties permit significant size reduction over a conventional N-way radial power combiner/divider. Metamaterial ldquoMTM technologiestraderdquo allow designing transmission lines with an electrical length of zero degree. The first design presented in this paper uses a 0deg MTM line that reduces the size to one third of the conventional N-way radial divider. This size reduction improves overall performance by injecting fewer losses into the system and increasing the bandwidth of the radial power combiner/divider. Dual-band properties of metamaterial are exploited in a second approach to design a dual-band MTM N-way power combiner/divider. In this second case MTM lines have a zero degree phase at a chosen frequency and 180deg phase at a second chosen frequency which is not a multiple of the first one. This dual-band radial power combiner/divider is smaller than a conventional 180deg single band radial power combiner/divider. Simulation and measurement data is presented in this paper for these different devices.
Keywords :
metamaterials; power combiners; power dividers; transmission lines; MTM lines; metamaterial; radial power combiner/divider; size reduction; transmission lines; Capacitance; Dual band; Inductance; Metamaterials; Power combiners; Power transmission lines; Radio frequency; Resonance; Switches; Transmission line theory; Metamaterial; N-way Radial Power Combiner/Divider; dual-band; zero degree;
Conference_Titel :
Microwave Symposium Digest, 2008 IEEE MTT-S International
Conference_Location :
Atlanta, GA
Print_ISBN :
978-1-4244-1780-3
Electronic_ISBN :
0149-645X
DOI :
10.1109/MWSYM.2008.4632918