Academic literature on the topic 'Waveguide-coaxial transition'

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Journal articles on the topic "Waveguide-coaxial transition"

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Chakrabarty, Soumyabrata, Vijay Kumar Singh, and Shashi Bhusan Sharma. "Dual frequency coaxial rotary joint with multi-stepped transition." International Journal of Microwave and Wireless Technologies 2, no. 2 (2010): 219–24. http://dx.doi.org/10.1017/s1759078710000127.

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The present paper presents the design and development of a dual-channel microwave rotary joint using coaxial waveguide as primary waveguide and rectangular waveguide as the secondary waveguide. Design is presented at 5.85–7.02 GHz with 20% bandwidth and at 14–14.5 GHz bands with 3.6% bandwidth using dual channel mode transducers exciting transverse electromagnetic (TEM) mode in the coaxial waveguide. Rectangular to coaxial waveguide transitions employing multi-stepped doorknob transitions are used to excite the TEM mode from the rectangular waveguide. The measured results for electrical parame
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Dansran, Bayarsaikhan, Songyuan Xu, Jiwon Heo, Chan-Soo Lee, and Bierng-Chearl Ahn. "Design of a Broadband Transition from a Coaxial Cable to a Reduced-Height Rectangular Waveguide." Applied Sciences 13, no. 20 (2023): 11265. http://dx.doi.org/10.3390/app132011265.

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For miniaturization, rectangular waveguides with a reduced height are often required, along with a coaxial transition for signal launching. We present a simulation-based design of a broadband transition from a coaxial cable to a rectangular waveguide with the height(b)-to-width(a) ratio b/a ranging from 0.125 to 0.375. The proposed transition consists of a coaxial probe with a cylindrical head or a disk and two symmetrically placed tuning posts. To extend the operating frequency range, three sections of the rectangular waveguide are employed with properly chosen dimensions. Design examples are
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Shirokov, Igor, Pavel A. Evdokimov, and Maria Sokolova. "Modeling a Coaxial-Waveguide Transition in the ANSYS HFSS Software Package." Infocommunications and Radio Technologies 5, no. 2 (2022): 247–52. http://dx.doi.org/10.29039/2587-9936.2022.05.2.18.

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Within the framework of this work, the process of designing a coaxial-waveguide transition necessary for connecting the waveguide path with the electronic part of the device for controlling changes in the composition of the air environment is described. The results of modeling a coaxial-waveguide transition in the ANSYS HFSS software package are presented. The value of VSWR obtained as a result of modeling for the task is optimal.
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Simone, Marco, Alessandro Fanti, Matteo Bruno Lodi, Tonino Pisanu, and Giuseppe Mazzarella. "An In-Line Coaxial-to-Waveguide Transition for Q-Band Single-Feed-Per-Beam Antenna Systems." Applied Sciences 11, no. 6 (2021): 2524. http://dx.doi.org/10.3390/app11062524.

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An in-line transition between a coaxial cable and rectangular waveguide operating in Q-band (33–50 GHz) is presented. The aim of the work is to minimize the modifications in the waveguide to the strictly necessary to overcome the manufacturing issues due to the high frequencies involved. In addition, the transition is compact and it does not increase the space occupation on the transverse section, this suggests its application in horn antennas clusters arrangement. The operating principle consists of both a modal conversion and an impedance matching between the devices. The modal conversion is
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Altanzaya, Erdenesukh, Jiwon Heo, Songyuan Xu, et al. "Computational Design of an In-Line Coaxial-to-Circular Waveguide Adapter with More Than an Octave Bandwidth." Symmetry 16, no. 3 (2024): 304. http://dx.doi.org/10.3390/sym16030304.

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This paper presents a computer-simulation-based design of an in-line, coaxial-to-circular waveguide adapter for converting the coaxial transverse electromagnetic (TEM) mode to the circular waveguide TE11 mode over more than a one-octave bandwidth. The proposed adapter consists of a coaxial-to-rectangular waveguide transformer employing a stepped-ridge converter and a rectangular-to-circular waveguide transformer employing a curved transition. The proposed adapter has been optimized using a commercial simulation tool. The dimensions of the designed adapter are given so that it can be verified b
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Shams, Shoukry I., and Ahmed A. Kishk. "Wideband Coaxial to Ridge Gap Waveguide Transition." IEEE Transactions on Microwave Theory and Techniques 64, no. 12 (2016): 4117–25. http://dx.doi.org/10.1109/tmtt.2016.2610421.

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Yousefian, Mohsen, Seyed Jalil Hosseini, and Masoud Dahmardeh. "Compact broadband coaxial to rectangular waveguide transition." Journal of Electromagnetic Waves and Applications 33, no. 9 (2019): 1239–47. http://dx.doi.org/10.1080/09205071.2019.1606737.

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Zhang, Qiongyue, Songyuan Xu, Jiwon Heo, et al. "Computational Design of a Broadband In-Line Coaxial-to-Rectangular Waveguide Transition." Applied Sciences 14, no. 1 (2023): 74. http://dx.doi.org/10.3390/app14010074.

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This Communication presents a computational design approach for a broadband in-line coaxial-to-rectangular waveguide transition having a 2.83:1 bandwidth. Existing designs have a bandwidth ranging from 1.36:1 to 2:1. The proposed transition consists of a four-step ridge transformer and three sections of the rectangular waveguide. The proposed design approach extends the bandwidth of the transition by a theory-based design of the width and height of the three-section waveguides and by a computer-aided optimization of the stepped-ridge transformer. The dimensions of the three waveguide sections
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Rossi, Riccardo, and Roberto Vincenti Gatti. "X-Band In-Line Coaxial-to-Groove Gap Waveguide Transition." Electronics 11, no. 15 (2022): 2361. http://dx.doi.org/10.3390/electronics11152361.

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A coaxial-to-groove gap waveguide transition is proposed for the first time, addressing the lack of similar designs in the state-of-the-art literature. An in-line configuration is adopted in case of stringent space requirements in groove gap waveguide systems. This device has no dielectric and makes use of a waveguide multi-step ridged section connected to the inner conductor of a coaxial line. Three versions are presented, covering progressively wider bandwidths depending on the number of employed steps. The three configurations achieve 20-dB return loss fractional bandwidths of 2.63%, 16.79%
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Glushechenko, E. N. "Principles of implementing coaxial microwave connectors for modern radioelectronic systems." Технология и конструирование в электронной аппаратуре, no. 5-6 (2020): 20–27. http://dx.doi.org/10.15222/tkea2020.5-6.20.

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Many modern radioelectronic systems are based on antenna arrays such as APAA (active phased array antenna) or DAAR (digital active array antenna), which require specialized connectors of new types and design solutions for the input/output of the microwave signal. The aim of this work is to improve the performance and reliability of coaxial microstrip connectors and coaxial waveguide transformer connectors of longitudinal type. The paper analyzes the arrangement principles of antenna feeders in modern radioelectronic systems with microwave connectors and substantiates the need to create new typ
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Dissertations / Theses on the topic "Waveguide-coaxial transition"

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Сатюков, А. І., та А. Л. Приступа. "Використання хвилеводно-коаксиального переходу при вимірюванні вологості тіл з довільною геометрією". Thesis, Сумський державний університет, 2014. http://essuir.sumdu.edu.ua/handle/123456789/39480.

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Сфера використання електромагнітних хвиль НВЧ діапазону постійно розширюється. Одним з напрямів є вивчення взаємодії електромагнітних хвиль з речовиною, що зокрема, використовується для вимірювання вологості. За останні роки створені численні пристрої, що вимірюють вологість з використанням НВЧ сигналів. Робота багатьох з них базується на визначенні величини послаблення сигналу або зміни діелектричної проникливості вологою речовиною. Для цього необхідно знати геометричні розміри об'єкту, що розміщується між двома антенами в об’ємному резонаторі або в хвилеводі. Якщо досліджувальні об’єкти мают
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Kloke, Kevin Hugh. "End-launched coaxial and microstrip to partial H-plane waveguide adapters." Diss., 2014. http://hdl.handle.net/2263/45036.

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Conventional rectangular waveguides are commonly used for high power and millimetre wave microwave applications. However their use at lower frequencies has been limited by their bulky nature at these frequencies. A new type of compact waveguide called a partial H-plane waveguide has previously been proposed that has only one quarter of the cross sectional area of a conventional waveguide. However, only limited information relating to the feeding of such waveguides is available. This study focuses on the development of a practical end-launched coaxial and a microstrip to partial H-plane wavegu
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Chiu, Teng-Hao, and 邱鄧豪. "Study on Coaxial-to-Waveguide Transitions at V-Band." Thesis, 2011. http://ndltd.ncl.edu.tw/handle/3grfn9.

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碩士<br>國立臺北科技大學<br>電腦與通訊研究所<br>99<br>The research focuses on the design of waveguide-to-coaxial transitions at V-Band. The design consisted of two sections, the first of which is the transitions of waveguide-to-coaxial at V-Band transitions with Glass Bead being element as taking energy coupling to waveguide for reducing the reflection of electromagnetism energy in transformer. Therefore we put disk tune with on the end of center pin of Glass Bead which can make the much wider pass band. The second section continues first kind of design of transformer which used microstrip line to replace V
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Conference papers on the topic "Waveguide-coaxial transition"

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Falk, Marius, Volker Lücken, and Andreas R. Diewald. "Transfer of a Low-Cost Coaxial-Waveguide-Transition Concept to Larger Waveguide Standards." In 2024 IEEE International Symposium on Antennas and Propagation and INC/USNC‐URSI Radio Science Meeting (AP-S/INC-USNC-URSI). IEEE, 2024. http://dx.doi.org/10.1109/ap-s/inc-usnc-ursi52054.2024.10686344.

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Falk, Marius, Volker Lücken, and Andreas R. Diewald. "Evolution and Optimization of a Low-Cost Coaxial-Waveguide-Transition." In 2025 16th German Microwave Conference (GeMiC). IEEE, 2025. https://doi.org/10.23919/gemic64734.2025.10979120.

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Feng, Linping, and Yinggang Li. "A Nove W-Band Rectangular Waveguide to Micro-coaxial Transition Structure." In 2024 International Conference on Microwave and Millimeter Wave Technology (ICMMT). IEEE, 2024. http://dx.doi.org/10.1109/icmmt61774.2024.10672068.

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Dalarsson, Mariana, and Balwan Rana. "TEM-Mode in an Elliptic Coaxial Waveguide with Impedance-Matched RHM to LHM Transition." In 2023 URSI International Symposium on Electromagnetic Theory (EMTS). IEEE, 2023. https://doi.org/10.1109/emts57498.2023.10925253.

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Zhu, Wensi, Huixiang Li, Mengxia Yu, and Shengqi Shen. "A GaN Power Amplifier for Satellite Applications Using a Hermetically Sealed Broadband Quad-Ridge Waveguide-to-Coaxial Transition." In 2024 IEEE 7th International Conference on Automation, Electronics and Electrical Engineering (AUTEEE). IEEE, 2024. https://doi.org/10.1109/auteee62881.2024.10869762.

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Xu, Jingsong, Qian Yang, Cheng Guo, and Anxue Zhang. "Design of Coaxial to Waveguide Transitions Compatible for WR-6 and WR-4." In 2024 International Conference on Microwave and Millimeter Wave Technology (ICMMT). IEEE, 2024. http://dx.doi.org/10.1109/icmmt61774.2024.10672243.

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Komarov, Vyacheslav V., Alexey I. Korchagin, and Valeriy P. Meschanov. "Broad-Band Coaxial-to-Waveguide Transition." In 2020 International Conference on Actual Problems of Electron Devices Engineering (APEDE). IEEE, 2020. http://dx.doi.org/10.1109/apede48864.2020.9255415.

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Zhang, Xin, Hong Yuan, and Hai-rong Cheng. "A broadband waveguide-to-coaxial transition." In 2009 3rd IEEE International Symposium on Microwave, Antenna, Propagation and EMC Technologies for Wireless Communications (MAPE 2009). IEEE, 2009. http://dx.doi.org/10.1109/mape.2009.5355887.

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Mohamadzade, Bahare, Alex Dunning, Douglas B. Hayman, and Ken Smart. "Broadband Coaxial-to-Rectangular Waveguide Transition." In 2023 International Conference on Electromagnetics in Advanced Applications (ICEAA). IEEE, 2023. http://dx.doi.org/10.1109/iceaa57318.2023.10297906.

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Noh, Youn Sub, Man Seok Uhm, and In Bok Yom. "A Ka-Band Coaxial-to-Waveguide Transition Including Coaxial Airline." In 24th AIAA International Communications Satellite Systems Conference. American Institute of Aeronautics and Astronautics, 2006. http://dx.doi.org/10.2514/6.2006-5436.

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