The original paper is in English. Non-English content has been machine-translated and may contain typographical errors or mistranslations. ex. Some numerals are expressed as "XNUMX".
Copyrights notice
The original paper is in English. Non-English content has been machine-translated and may contain typographical errors or mistranslations. Copyrights notice
Pembahagi kuasa pandu gelombang novel berdasarkan peralihan sepaksi ke pandu gelombang menggunakan kuar satah H dipersembahkan. Pandu gelombang terdiri daripada blok logam terbelah dan substrat yang disusun secara bergantian. Pembahagi kuasa direalisasikan dengan mengatur peralihan yang sama menggunakan probe sepaksi litar pintas dengan corak logam pada substrat. Reaktans parasit probe boleh dibatalkan dengan corak logam pada substrat, jadi ia adalah mudah untuk mereka bentuk pembahagi kuasa. Kelebihan struktur ini adalah jejak kecil, kehilangan sisipan rendah, fabrikasi mudah, dan kemudahan reka bentuk. Kaedah reka bentuk pembahagi kuasa yang dicadangkan diterangkan. Pembahagi kuasa lapan hala yang dibuat menunjukkan prestasi cemerlang pada jalur 10 GHz.
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Salinan
Motomi ABE, Yukihiro TAHARA, Hideyuki OH-HASHI, Naofumi YONEDA, Yoshihiko KONISHI, "A Waveguide-Based Power Divider Using H-Plane Probes Short-Circuited with Substrate Metallization Patterns" in IEICE TRANSACTIONS on Electronics,
vol. E92-C, no. 9, pp. 1144-1149, September 2009, doi: 10.1587/transele.E92.C.1144.
Abstract: A novel waveguide power divider based on a coaxial-to-waveguide transition using a H-plane probe is presented. The waveguide consists of split metal blocks and substrates which are alternately stacked. The power divider is realized by arranging identical transitions using coaxial probes short-circuited with metal patterns on the substrate. The parasitic reactance of probes can be canceled out with the metal patterns on the substrate, so it is ease to design the power divider. The advantages of this structure are small footprint, low insertion loss, simple fabrication, and ease of design. A design method of the proposed power divider is described. The fabricated eight-way power divider shows excellent performances at 10 GHz-band.
URL: https://global.ieice.org/en_transactions/electronics/10.1587/transele.E92.C.1144/_p
Salinan
@ARTICLE{e92-c_9_1144,
author={Motomi ABE, Yukihiro TAHARA, Hideyuki OH-HASHI, Naofumi YONEDA, Yoshihiko KONISHI, },
journal={IEICE TRANSACTIONS on Electronics},
title={A Waveguide-Based Power Divider Using H-Plane Probes Short-Circuited with Substrate Metallization Patterns},
year={2009},
volume={E92-C},
number={9},
pages={1144-1149},
abstract={A novel waveguide power divider based on a coaxial-to-waveguide transition using a H-plane probe is presented. The waveguide consists of split metal blocks and substrates which are alternately stacked. The power divider is realized by arranging identical transitions using coaxial probes short-circuited with metal patterns on the substrate. The parasitic reactance of probes can be canceled out with the metal patterns on the substrate, so it is ease to design the power divider. The advantages of this structure are small footprint, low insertion loss, simple fabrication, and ease of design. A design method of the proposed power divider is described. The fabricated eight-way power divider shows excellent performances at 10 GHz-band.},
keywords={},
doi={10.1587/transele.E92.C.1144},
ISSN={1745-1353},
month={September},}
Salinan
TY - JOUR
TI - A Waveguide-Based Power Divider Using H-Plane Probes Short-Circuited with Substrate Metallization Patterns
T2 - IEICE TRANSACTIONS on Electronics
SP - 1144
EP - 1149
AU - Motomi ABE
AU - Yukihiro TAHARA
AU - Hideyuki OH-HASHI
AU - Naofumi YONEDA
AU - Yoshihiko KONISHI
PY - 2009
DO - 10.1587/transele.E92.C.1144
JO - IEICE TRANSACTIONS on Electronics
SN - 1745-1353
VL - E92-C
IS - 9
JA - IEICE TRANSACTIONS on Electronics
Y1 - September 2009
AB - A novel waveguide power divider based on a coaxial-to-waveguide transition using a H-plane probe is presented. The waveguide consists of split metal blocks and substrates which are alternately stacked. The power divider is realized by arranging identical transitions using coaxial probes short-circuited with metal patterns on the substrate. The parasitic reactance of probes can be canceled out with the metal patterns on the substrate, so it is ease to design the power divider. The advantages of this structure are small footprint, low insertion loss, simple fabrication, and ease of design. A design method of the proposed power divider is described. The fabricated eight-way power divider shows excellent performances at 10 GHz-band.
ER -