Title :
Novel Multiplexer Topologies Based on All-Resonator Structures
Author :
Xiaobang Shang ; Yi Wang ; Wenlin Xia ; Lancaster, Michael J.
Author_Institution :
Sch. of Electron., Electr. & Comput. Eng., Univ. of Birmingham, Birmingham, UK
Abstract :
This paper presents two novel multiplexer topologies based on all-resonator structures. Such all-resonator structures remove the need for conventional transmission-line-based splitting networks. The first topology is a diplexer with transmission zeros in the guard band, shared by both channels. These transmission zeros are generated by introducing a cross coupling in a quadruplet in resonators common to both channels. A twelfth-order diplexer with a pair of transmission zeros is presented here as an example. The second topology is a multiplexer with a bifurcate structure that limits the connections to any resonator to three or less, regardless of the number of output channels. A sixteenth-order four-channel multiplexer is presented as an example. Both topologies have been demonstrated at X-band using waveguide technology. Good agreements between measurements and simulations have been achieved.
Keywords :
multiplexing equipment; optimisation; resonator filters; X-band; all-resonator structures; bifurcate structure; cross coupling; guard band; novel multiplexer topologies; sixteenth-order four-channel multiplexer; transmission zeros; transmission-line-based splitting networks; twelfth-order diplexer; waveguide technology; Couplings; Filtering theory; Multiplexing; Passband; Resonant frequency; Topology; Transmission line matrix methods; Coupling matrix optimization; diplexer; multiplexer; resonator filters;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2013.2284496