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international symposium on electromagnetic compatibility | 2017

Surface mount shunt capacitor filters using bilateral magnetic coupling

Akihito Kobayashi; Satoshi Yoneda; Yuichi Sasaki; Naoto Oka; Hideyuki Oh-Hashi

This paper proposes shunt capacitor filters using magnetic coupling which improves the filter performance. The proposed filter structure is designed to place input/output paths parallel to shunt path from a power supply line to a ground plane. And magnetic couplings between the input/output paths and shunt path are utilized to reduce parasitic inductance of the shunt path. The proposed filter provides higher performance with almost same area compare with conventional filters. Measurement and EM simulation are used to evaluate the filter performance. As a result, the proposed filters improved the performance by 8 dB at 20 MHz compared with filters without the couplings.


international symposium on electromagnetic compatibility | 2017

A study for designing an ESL-cancelling circuit for shunt capacitor filters based on the biot-savart law

Satoshi Yoneda; Kenji Hirose; Akihto Kobayashi; Yuichi Sasaki; Chiharu Miyazaki

In general, insertion loss of a shunt capacitor filter at higher frequencies than its resonant frequency is deteriorated by equivalent series inductance (ESL) of the shunt path. There are some reports on circuits to improve the deterioration by cancelling the ESL by mutual inductance between coupled loops. However, a theory-based design equation is not clearly shown in these reports. On the other hand, another report derived recently that mutual inductance between vertically-stacked coupled square loops can be expressed in a relatively simple equation by applying the Biot-Savart law. In this study, a design process based on the equation for an ESL-cancelling circuit using vertically-stacked coupled square loops is proposed. A test circuit for a 10-μF shunt capacitor filter including a 30-mm microstrip line in its shunt path, which is equivalent to ESL of 10.5 nH, is designed and fabricated with an FR4 substrate. The measured results showed 30-dB improvement of insertion loss at several ten MHz. Moreover, the results were comparable to, or even better than, those of the directly-connected shunt capacitor filter.


international symposium on electromagnetic compatibility | 2016

A gasket-free electromagnetic shielding structure for 2.4 GHz band using folded quarter-wavelength SIW resonators

Satoshi Yoneda; Yasuhiro Shiraki; Yuichi Sasaki; Naoto Oka; Hideyuki Oh-Hashi

In recent years, various types of new shielding structures realizing shielding effectiveness (SE) at specific frequency band have been reported. A gasket-free shielding structure using cascaded substrate integrated waveguide (SIW) resonators is one of them. The structure consists of cascaded SIW resonators with different resonant frequencies placed on inner walls of a gap. Though the structure has an advantage of being almost free of deterioration due to its non-contact structure, miniaturization of the SIW resonators is necessary to be applied at several GHz bands. In this paper, a gasket-free shielding structure using folded quarter-wavelength (FQ)-SIW resonators is proposed and its SE is evaluated. An FQ-SIW resonator is a miniaturized SIW resonator by applying a multilayer substrate and modifying position of the coupling slits. A prototype configuration for 2.4 GHz band is designed and fabricated using a five-layered FR4 substrate. The designed FQ-SIW resonators are miniaturized to almost 1/7 of conventional SIW resonators, and the measured results of the cascaded configuration showed more than 30-dB improvement of SE at 2.4 GHz band.


Archive | 2010

Common mode noise filter, signal transmission cable and cable relay connector

Hiroyuki Matsumura; Koichiro Misu; Hisayuki Nakamoto; Naoto Oka; Yosuke Watanabe; Satoshi Yoneda; 幸一郎 三須; 藤之 中本; 尚人 岡; 博之 松村; 陽介 渡邊; 諭 米田


Archive | 2013

ELECTROMAGNETIC SHIELD DOOR

Kenji Hirose; 健二 廣瀬; Satoshi Yoneda; 諭 米田; Yoshihiko Muronaga; 良彦 室永; Takashi Kanemoto; 貴志 金本; Satoru Owada; 哲 大和田; Naoto Oka; 尚人 岡; Chiharu Miyazaki; 千春 宮崎; Koichiro Misu; 幸一郎 三須


international symposium on electromagnetic compatibility | 2014

A GHz-band gasket-free electromagnetic shielding structure with built-in cascaded SIW resonators

Satoshi Yoneda; Yasuhiro Shiraki; Yuichi Sasaki; Naoto Oka; Hideyuki Oh-Hashi


international symposium on electromagnetic compatibility | 2011

A common mode noise filter for high speed and wide band differential mode signal transmission

Naoto Oka; Koichiro Misu; Satoshi Yoneda; Seiichi Saito; S. Nitta


international symposium on electromagnetic compatibility | 2018

Inductance Analysis for Compact Dual-Mode Choke Considering Magnetic Saturation

Yasuhiro Shiraki; Satoshi Yoneda; Katsuhiko Omae; Takashi Nagao


B - Abstracts of IEICE TRANSACTIONS on Communications (Japanese Edition) | 2016

A GHz-Band Gasket-Free Electromagnetic Shielding Structure with Built-In Cascaded SIW Resonators

Satoshi Yoneda; Yasuhiro Shiraki; Yuichi Sasaki; Naoto Oka; Hideyuki Oh-Hashi


Proceedings of the Society Conference of IEICE | 2015

B-4-28 A Gasket-Free Electromagnetic Shielding Structure with Built-in Cascaded SIW Resonators for Shielding Effectiveness at Discrete Frequencies

Satoshi Yoneda; Yasuhiro Shiraki; Yuichi Sasaki; Naoto Oka; Hideyuki Oh-Hashi

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