Y2000-62525-659 0109289现代快恢复二极管的反向恢复失效模式=Reverse re-covery failure modes in modern fast recovery diodes[会,英]/Rahimo,M & Shammas,N.//2000 IEEE Pro-ceedings of 22nd International Conference on Mic...Y2000-62525-659 0109289现代快恢复二极管的反向恢复失效模式=Reverse re-covery failure modes in modern fast recovery diodes[会,英]/Rahimo,M & Shammas,N.//2000 IEEE Pro-ceedings of 22nd International Conference on Microelec-tronics,Vol.2.—659~662(EC)0109290密封器件内部气体分析方法综述[刊]/陈冬梅//电子产品可靠性与环境试验.—2001,(1).—34~39(D)密封器件内部气体分析方法,可广泛用于微电子、航空航天、金属、陶瓷、食品、医药、化工等涉及材料、气体变化的领域,并且可以贯穿于产品的整个寿命周期。介绍了密封器件内部气体分析方法的背景、仪器及其应用。参30109291有效的可靠性增长管理技术[刊]/田开让//电子产品可靠性与环境试验.—2001,(1)—20~24(D)可靠性增长是提高航空电子设备可靠性的重要途径,已为军方和工厂企业所重视。展开更多
Nowadays, rapid technological progress influences the dependability of equipments and also causes rapid obsolescence. The mechatronic and electronic equipment components are mostly affected by obsolescence. A new chal...Nowadays, rapid technological progress influences the dependability of equipments and also causes rapid obsolescence. The mechatronic and electronic equipment components are mostly affected by obsolescence. A new challenger unit possesses identical functionalities, but with higher performances. This work aims to find the optimal number of components which should be replaced by new-type units, under budgetary constraints. In this work, the new challenger unit is characterized by lower energy consumption and the optimization steps are based on genetic algorithm (GA). The result shows the importance of this type of replacement in order to economize energy consumption and to deal with obsolescence.展开更多
文摘Y2000-62525-659 0109289现代快恢复二极管的反向恢复失效模式=Reverse re-covery failure modes in modern fast recovery diodes[会,英]/Rahimo,M & Shammas,N.//2000 IEEE Pro-ceedings of 22nd International Conference on Microelec-tronics,Vol.2.—659~662(EC)0109290密封器件内部气体分析方法综述[刊]/陈冬梅//电子产品可靠性与环境试验.—2001,(1).—34~39(D)密封器件内部气体分析方法,可广泛用于微电子、航空航天、金属、陶瓷、食品、医药、化工等涉及材料、气体变化的领域,并且可以贯穿于产品的整个寿命周期。介绍了密封器件内部气体分析方法的背景、仪器及其应用。参30109291有效的可靠性增长管理技术[刊]/田开让//电子产品可靠性与环境试验.—2001,(1)—20~24(D)可靠性增长是提高航空电子设备可靠性的重要途径,已为军方和工厂企业所重视。
文摘Nowadays, rapid technological progress influences the dependability of equipments and also causes rapid obsolescence. The mechatronic and electronic equipment components are mostly affected by obsolescence. A new challenger unit possesses identical functionalities, but with higher performances. This work aims to find the optimal number of components which should be replaced by new-type units, under budgetary constraints. In this work, the new challenger unit is characterized by lower energy consumption and the optimization steps are based on genetic algorithm (GA). The result shows the importance of this type of replacement in order to economize energy consumption and to deal with obsolescence.