Zobrazeno 1 - 10
of 18
pro vyhledávání: '"Wolfgang Taute"'
Publikováno v:
IEEE Journal of Microwaves, Vol 3, Iss 1, Pp 84-95 (2023)
This paper discusses dielectric TM-mode filters based on high permittivity Y-shaped ceramics. It is shown that this type of ceramic operates as a dual-mode resonator and therefore contributes two reflection zeros as well as one transmission zero (TZ)
Externí odkaz:
https://doaj.org/article/f2edd298e02843909b96da834a79bd46
Autor:
Jörg Breitkreutz, Claas Döscher, Florian Stern, Wolfgang Taute, Michael Hoft, Reinhard Knöchel, Johanna Peters
Publikováno v:
2021 13th International Conference on Electromagnetic Wave Interaction with Water and Moist Substances (ISEMA).
In this paper, the design of a novel multi-resonance microwave resonance sensor for moisture monitoring of pharmaceutical granulations is reviewed. This sensor allows a reliable determination of residual moisture directly in the production container.
Autor:
Reinhard Knöchel, Jörg Breitkreutz, Andreas Teske, Claas Döscher, Wolfgang Taute, Johanna Peters, Michael Hoft
Publikováno v:
International Journal of Pharmaceutics. 537:193-201
The trend towards continuous manufacturing in the pharmaceutical industry is associated with an increasing demand for advanced control strategies. It is a mandatory requirement to obtain reliable real-time information on critical quality attributes (
Autor:
Wolfgang Taute, Kathrin Bartscher, Jörg Breitkreutz, Michael Hoft, Johanna Peters, Reinhard Knöchel, Claas Döscher
Publikováno v:
Talanta. 170:369-376
Microwave resonance technology (MRT) is known as a process analytical technology (PAT) tool for moisture measurements in fluid-bed granulation. It offers a great potential for wet granulation processes even where the suitability of near-infrared (NIR
Publikováno v:
Schimmack, M, Taute, W & Höft, M 2018, Metal-Polymer Hybrid Embroidered Microwave Multiresonator for High-Frequency Sensing : Modelling, Simulation, and Experimental Analysis . in 2018 48th European Microwave Conference, EuMC 2018 ., 8541718, 2018 48th European Microwave Conference, EuMC 2018, IEEE-Institute of Electrical and Electronics Engineers Inc., IEEE Xplore, pp. 495-498, 48th European Microwave Conference-EuMC 2018, Madrid, Spain, 23.09.18 . https://doi.org/10.23919/EuMC.2018.8541718
Schimmack, M, Taute, W & Höft, M 2018, Metal-Polymer Hybrid Embroidered Microwave Multiresonator for High-Frequency Sensing : Modelling, Simulation, and Experimental Analysis . in 2018 48th European Microwave Conference (EuMC) ., 8541718, IEEE Xplore, IEEE Xplore, pp. 495-498, 48th European Microwave Conference-EuMC 2018, Madrid, Spain, 23.09.18 . DOI: 10.23919/EuMC.2018.8541769
Schimmack, M, Taute, W & Höft, M 2018, Metal-Polymer Hybrid Embroidered Microwave Multiresonator for High-Frequency Sensing : Modelling, Simulation, and Experimental Analysis . in 2018 48th European Microwave Conference (EuMC) ., 8541718, IEEE Xplore, IEEE Xplore, pp. 495-498, 48th European Microwave Conference-EuMC 2018, Madrid, Spain, 23.09.18 . DOI: 10.23919/EuMC.2018.8541769
This paper presents a novel metal-polymer hybrid embroidered microwave ring multiresonator, which is implemented in a respiratory filter for high-frequency particle sensing. Metal-polymer multifilament fibres are the fundamental core for wearable tec
Autor:
Jörg Breitkreutz, Michael Hoft, Wolfgang Taute, Johanna Peters, Claas Döscher, Reinhard Knöchel
Publikováno v:
AAPS PharmSciTech. 20(1)
Multi-resonance microwave sensors have recently been introduced for moisture monitoring of pharmaceutical particulates up to > 20% residual moisture. The extended measuring range compared to previous systems as well as the microwave moisture values i
Publikováno v:
2018 Australian Microwave Symposium (AMS).
The requirements for applications such as 5G or phased arrays are becoming more and more demanding, requiring more accurate material data to achieve the required goals. Here it is shown that only simultaneous measurement of the relevant material data
Autor:
Jörg Breitkreutz, Wolfgang Taute, Claas Döscher, Michael Hoft, Robin Meier, Johanna Peters, Reinhard Knöchel
Publikováno v:
Drug development and industrial pharmacy. 44(6)
Recently, microwave resonance technology (MRT) sensor systems operating at four resonances instead of a single resonance frequency were established as a process analytical technology (PAT) tool for moisture monitoring. The additional resonance freque
Autor:
Kathrin Bartscher, Johanna Peters, Claas Döscher, Jörg Breitkreutz, Reinhard Knöchel, Wolfgang Taute, Michael Hoft
Publikováno v:
Analytica chimica acta. 961
Microwave sensor systems using resonance technology at a single resonance in the range of 2–3 GHz have been shown to be a rapid and reliable tool for moisture determination in solid materials including pharmaceutical granules. So far, their applica
Publikováno v:
Schimmack, M, Taute, W & Höft, M 2016, ' Modelling, Simulation and Experimental Analysis of a Metal-Polymer Hybrid Fibre based Microstrip Resonator for High Frequency Characterisation ', Procedia Engineering, vol. 168, pp. 975-978 . https://doi.org/10.1016/j.proeng.2016.11.319
Schimmack, M, Taute, W & Höft, M 2016, ' Modelling, Simulation and Experimental Analysis of a Metal-Polymer Hybrid Fibre based Microstrip Resonator for High Frequency Characterisation ' Procedia Engineering, vol 168, pp. 975-978 . DOI: 10.1016/j.proeng.2016.11.319
Schimmack, M, Taute, W & Höft, M 2016, ' Modelling, Simulation and Experimental Analysis of a Metal-Polymer Hybrid Fibre based Microstrip Resonator for High Frequency Characterisation ' Procedia Engineering, vol 168, pp. 975-978 . DOI: 10.1016/j.proeng.2016.11.319
Conductive multifilament fibres are the fundamental core for wearable technology in the biomedical engineering fields, as conductors in sensors or in bio-sensing textiles for healthcare. This contribution presents a model, simulation and the experime
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::55eea77b47e1a92269441f7ab0aa0fae
https://pure.leuphana.de/ws/files/15272839/1_s2.0_S1877705816336323_main.pdf
https://pure.leuphana.de/ws/files/15272839/1_s2.0_S1877705816336323_main.pdf