TY - JOUR
T1 - Periodic printed semi-annular substrate loaded TM 01-TE 11 mode converter
AU - Chittora, Ashish
AU - Yadav, Swati Varun
N1 - Publisher Copyright:
© 2020 The Author(s). Published by Cambridge University Press in association with the European Microwave Association.
PY - 2021/6
Y1 - 2021/6
N2 - A mode converter design using the concept of periodic substrates loading in a circular waveguide, to convert TM01 mode to TE11 mode is presented in this paper. The detailed design principle, simulation, and measurement results are included in this study. Simulation results show that the purity of output fundamental TE11 mode of the converter approaches 99.2% for an operating frequency of 3.2 GHz. The mode conversion efficiency is more than 90% over 3.07-3.25 GHz band and the relative bandwidth is 5.6% (180 MHz). The proposed TM01-TE11 mode converter has advantages, such as the compact, lightweight structure, high conversion efficiency, and proper bandwidth. The fabrication cost is relatively low and the structure is easy to fabricate. The power-handling capability is limited to 10 MW due to dielectric-based design. The compactness and portability of the system (e.g. Space applications, Accelerators, High Power Microwave) can be improved significantly using the proposed mode converter.
AB - A mode converter design using the concept of periodic substrates loading in a circular waveguide, to convert TM01 mode to TE11 mode is presented in this paper. The detailed design principle, simulation, and measurement results are included in this study. Simulation results show that the purity of output fundamental TE11 mode of the converter approaches 99.2% for an operating frequency of 3.2 GHz. The mode conversion efficiency is more than 90% over 3.07-3.25 GHz band and the relative bandwidth is 5.6% (180 MHz). The proposed TM01-TE11 mode converter has advantages, such as the compact, lightweight structure, high conversion efficiency, and proper bandwidth. The fabrication cost is relatively low and the structure is easy to fabricate. The power-handling capability is limited to 10 MW due to dielectric-based design. The compactness and portability of the system (e.g. Space applications, Accelerators, High Power Microwave) can be improved significantly using the proposed mode converter.
UR - https://www.scopus.com/pages/publications/85092399119
UR - https://www.scopus.com/inward/citedby.url?scp=85092399119&partnerID=8YFLogxK
U2 - 10.1017/S1759078720001154
DO - 10.1017/S1759078720001154
M3 - Article
AN - SCOPUS:85092399119
SN - 1759-0787
VL - 13
SP - 447
EP - 453
JO - International Journal of Microwave and Wireless Technologies
JF - International Journal of Microwave and Wireless Technologies
IS - 5
ER -