Direct Synthesis of Waveguide Filters considering unsymmetrical Filter Losses
Wolfgang Mahler, Julia Brettschneider, F.M. Landstorfer
Abstract
Wolfgang Mahler, Julia Brettschneider, F.M. Landstorfer
Abstract
Filters which are designed exclusively with regard to their geometrical proportions, i.e. neglecting losses, show an ideal transmission behaviour /1/. In contrast to this, measurements of real filters, owing to losses, indicate not only an increase in passband attenuation but also an unsymmetrical distribution of the losses over the bandwidth. Therefore, a method was developed which not only allows to calculate the losses but also to redesign the geometry for the used waveguide material. Such filters represent an optimum for a given window type. Even more symmetrical filters become possible by using both, inductive and capacitive windows in one single "hybrid" filter.
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Filters which are designed exclusively with regard to their geometrical proportions, i.e. neglecting losses, show an ideal transmission behaviour /1/. In contrast to this, measurements of real filters, owing to losses, indicate not only an increase in passband attenuation but also an unsymmetrical distribution of the losses over the bandwidth. Therefore, a method was developed which not only allows to calculate the losses but also to redesign the geometry for the used waveguide material. Such filters represent an optimum for a given window type. Even more symmetrical filters become possible by using both, inductive and capacitive windows in one single "hybrid" filter.
Key concepts: Passband, Attenuation, Prototype filter, Capacitive sensing, Waveguide filter, m-derived filter, Bandwidth (computing), Filter (signal processing)