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oapen-20.500.12657-501672021-07-24T02:43:20Z Breitbandige Frequenzweichen für die Parallelisierung von Millimeterwellen-Messtechnik Klaus Boes, Florian Frequenzweiche Diplexer Multiplexer Filter Millimeterwellen-Filter diplexer multiplexer filter millimeter-wave filter bic Book Industry Communication::T Technology, engineering, agriculture::TH Energy technology & engineering::THR Electrical engineering This work describes the novel use of broadband continuous diplexers that could be integrated into on-wafer probes to parallize millimeter wave on-wafer measurement equipment. A model-based method for the efficient design of diplexers with a large number of adjustable parameters allows the realization of a DC – 110 GHz – 170 GHz diplexer for the first time. 2021-07-23T15:11:19Z 2021-07-23T15:11:19Z 2021 book ONIX_20210723_9783731510789_7 1868-4696 9783731510789 https://library.oapen.org/handle/20.500.12657/50167 ger Karlsruher Forschungsberichte aus dem Institut für Hochfrequenztechnik und Elektronik application/pdf n/a 9783731510789.pdf https://doi.org/10.5445/KSP/1000128278 KIT Scientific Publishing KIT Scientific Publishing 10.5445/KSP/1000128278 This work describes the novel use of broadband continuous diplexers that could be integrated into on-wafer probes to parallize millimeter wave on-wafer measurement equipment. A model-based method for the efficient design of diplexers with a large number of adjustable parameters allows the realization of a DC – 110 GHz – 170 GHz diplexer for the first time. 10.5445/KSP/1000128278 44e29711-8d53-496b-85cc-3d10c9469be9 9783731510789 KIT Scientific Publishing 41 216 Karlsruhe open access
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This work describes the novel use of broadband continuous diplexers that could be integrated into on-wafer probes to parallize millimeter wave on-wafer measurement equipment. A model-based method for the efficient design of diplexers with a large number of adjustable parameters allows the realization of a DC – 110 GHz – 170 GHz diplexer for the first time.
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9783731510789.pdf
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9783731510789.pdf
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KIT Scientific Publishing
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2021
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https://doi.org/10.5445/KSP/1000128278
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