We propose a new electric contact device that greatly improves arc discharge characteristics. Electric contact functions are divided into an energizing operation and a switching operation. A capacitor is connected in series to a contact for switching contact. Using two conventional relay contacts, no arc operation is confirmed for a 42 V/3 A break operation. Contact resistances are measured over many operations, and the surfaces of electrodes are observed. A chip capacitor is arranged at one side of the contact electrodes of a twin relay, confirming the possibility of miniaturization.
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Yu YONEZAWA, Noboru WAKATSUKI, "Relay Contacts of Multi-Electrodes with Timely Controlled Operation" in IEICE TRANSACTIONS on Electronics,
vol. E87-C, no. 8, pp. 1324-1328, August 2004, doi: .
Abstract: We propose a new electric contact device that greatly improves arc discharge characteristics. Electric contact functions are divided into an energizing operation and a switching operation. A capacitor is connected in series to a contact for switching contact. Using two conventional relay contacts, no arc operation is confirmed for a 42 V/3 A break operation. Contact resistances are measured over many operations, and the surfaces of electrodes are observed. A chip capacitor is arranged at one side of the contact electrodes of a twin relay, confirming the possibility of miniaturization.
URL: https://global.ieice.org/en_transactions/electronics/10.1587/e87-c_8_1324/_p
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@ARTICLE{e87-c_8_1324,
author={Yu YONEZAWA, Noboru WAKATSUKI, },
journal={IEICE TRANSACTIONS on Electronics},
title={Relay Contacts of Multi-Electrodes with Timely Controlled Operation},
year={2004},
volume={E87-C},
number={8},
pages={1324-1328},
abstract={We propose a new electric contact device that greatly improves arc discharge characteristics. Electric contact functions are divided into an energizing operation and a switching operation. A capacitor is connected in series to a contact for switching contact. Using two conventional relay contacts, no arc operation is confirmed for a 42 V/3 A break operation. Contact resistances are measured over many operations, and the surfaces of electrodes are observed. A chip capacitor is arranged at one side of the contact electrodes of a twin relay, confirming the possibility of miniaturization.},
keywords={},
doi={},
ISSN={},
month={August},}
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TY - JOUR
TI - Relay Contacts of Multi-Electrodes with Timely Controlled Operation
T2 - IEICE TRANSACTIONS on Electronics
SP - 1324
EP - 1328
AU - Yu YONEZAWA
AU - Noboru WAKATSUKI
PY - 2004
DO -
JO - IEICE TRANSACTIONS on Electronics
SN -
VL - E87-C
IS - 8
JA - IEICE TRANSACTIONS on Electronics
Y1 - August 2004
AB - We propose a new electric contact device that greatly improves arc discharge characteristics. Electric contact functions are divided into an energizing operation and a switching operation. A capacitor is connected in series to a contact for switching contact. Using two conventional relay contacts, no arc operation is confirmed for a 42 V/3 A break operation. Contact resistances are measured over many operations, and the surfaces of electrodes are observed. A chip capacitor is arranged at one side of the contact electrodes of a twin relay, confirming the possibility of miniaturization.
ER -