Passive enhancement of resonator Q in microwave notch filters
Douglas R. Jachowski
Abstract
Douglas R. Jachowski
Abstract
The lumped-element bridged-T notch filter concept is extended to reciprocal distributed-element microwave filters. A prototype microstrip bridged-T notch filter employing single-mode resonators is described that enhances the effective resonator Q/sub u/ by a factor of 325, while a different microstrip filter topology with a triple-mode resonator is described that enhances the effective resonator Q/sub u/ by a factor of 89. The new notch filters can be either partly reflective or fully absorptive within the stopband. Additional enhanced-Q/sub u/ notch filter topologies, such as a hybrid-coupler notch filter, that include at least two resonances and at least two signal paths are suggested.
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The lumped-element bridged-T notch filter concept is extended to reciprocal distributed-element microwave filters. A prototype microstrip bridged-T notch filter employing single-mode resonators is described that enhances the effective resonator Q/sub u/ by a factor of 325, while a different microstrip filter topology with a triple-mode resonator is described that enhances the effective resonator Q/sub u/ by a factor of 89. The new notch filters can be either partly reflective or fully absorptive within the stopband. Additional enhanced-Q/sub u/ notch filter topologies, such as a hybrid-coupler notch filter, that include at least two resonances and at least two signal paths are suggested.
Key concepts: Band-stop filter, Stopband, Resonator, Microstrip, Prototype filter, Filter (signal processing), Distributed element filter, Waveguide filter