[1] Shen Q, Lv K, Liu G, et al. Impact of electrical contact resistance on the high-speed transmission and on-line diagnosis of electrical connector intermittent faults[J]. IEEE Access, 2017(5):4221-4232.
[2] Ji R, Gao J, Xie G, et al. Fault analysis and diagnosis of coaxial connectors in RF circuits[J]. IEICE Transactions on Electronics, 2017, 100(11):1052-1060.
[3] 翟国富, 王新宇, 楚兵. 基于等效电路法的高频继电器建模与研究[J]. 中国电机工程学报, 2009(15):119-124. Zhai G, Wang X, Chu B. Modeling and study of high frequency relay based on equivalent circuit method[J]. CSEE, 2009(15):119-124.
[4] Ji R, Gao J, Flowers G, et al. The effect of electrical connector degradation on high-frequency signal transmission[J]. IEEE Trans Compon Packag Technol, 2017, 7(7):1163-1172.
[5] Yang H, Tong Y, Flowers G, et al. Capacitance build-up in electrical connectors due to vibration induce fretting corrosion[C]//IEEE 62nd Holm Conference on Electrical Contacts. Clearwater:[s.n.], 2016:152-158.
[6] Slade P G. Electrical contacts principles and applications[M]. New York:CRC Press, 2013:5-11.
[7] Whinnery J R, Jamieson H W, Robbins T E. Coaxial-line discontinuities[C]//Proceedings of Institute Radio Engineers. New York:[s.n.], 1944:695-709.
[8] Greenwood J A, Williamson J B P. Contact of nominally flat surfaces[C]//Proceedings of the Royal Society of London. Series A, Mathematical and Physical Sciences. London:The Royal Society, 1966:300-319.
[9] Malucci R, Panella A. Contact physics of capacitive interconnects[J]. IEEE Trans on Compon Packag Tech-nol, 2013, 3(3):377-383. |