ESD試験器の放電電極からみたアドミタンスに基づく気中放電電流のステップ応答と波形計算
ESD試験器の放電電極からみたアドミタンスに基づく気中放電電流のステップ応答と波形計算
カテゴリ: 論文誌(論文単位)
グループ名: 【A】基礎・材料・共通部門
発行日: 2021/02/01
タイトル(英語): Step Response of Discharge Current to Air Discharge and Waveform Calculation based on Admittance seen from Discharge Electrode of ESD Generator
著者名: 石田 武志((株)ノイズ研究所),戸澤 幸大((株)ノイズ研究所),小林 由樹((株)ノイズ研究所),藤原 修((株)ノイズ研究所/電気通信大学 産学官連携センター)
著者名(英語): Takeshi Ishida (Noise Laboratory Co., LTD.), Yukihiro Tozawa (Noise Laboratory Co., LTD.), Yuki Kobayashi (Noise Laboratory Co., LTD.), Osamu Fujiwara (Noise Laboratory Co., LTD./The University of Electro-Communications)
キーワード: ESD試験器,アドミタンス,気中放電電流,ステップ応答,波形計算_x000D_ ESD generator,admittance,air discharge current,step response,waveform calculation
要約(英語): The step response of an ESD generator in the air discharge mode, which reflects the model-specific attributes, is stable and reproducible due to the lack of sparking. It has the potential to be a candidate for calibration requirements to enhance the reproducibility of the test results by air/contact discharge testing methods specified in IEC 61000-4-2. At present, however, it is unclear how the step response involves the current waveforms of air discharge and contact discharge. In this study, to clarify the relationship between the step response and the current waveforms of air and contact discharges, a formula of step response to the air discharge of an ESD generator is given based on the admittance seen from the discharge electrode of the generator. The step responses are calculated for three different types of commercially available ESD generators along with the corresponding frequency spectra, which are compared with the measured current waveforms of both air discharges and contact discharges, to reveal the attributes peculiar to the generators in relation to their ringing waveforms. Furthermore, the air discharge current is analyzed from the falling waveform of the spark voltage obtained from the Rompe-Weizel spark resistance law, and its calculation formula consisting of the step response and the spark current is derived. Comparison between the calculated and measured discharge current waveforms exhibits that the derived formula well represents the whole waveform of the air discharge current measured for each of the generators, and generally agrees with the first current peak waveform being determined by the spark length and the circuit properties specific to the generator.
本誌: 電気学会論文誌A(基礎・材料・共通部門誌) Vol.141 No.2 (2021) 特集:ナノスケール磁性体の構造・組織解析と創製に関する動向と展望
本誌掲載ページ: 147-155 p
原稿種別: 論文/日本語
電子版へのリンク: https://www.jstage.jst.go.jp/article/ieejfms/141/2/141_147/_article/-char/ja/
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