采用陶瓷MLC电容器的高级去耦

J.D. Prymak
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引用次数: 12

摘要

作者追溯了早期解耦方法的演变,以呈现其用途和一些未来的方向。他试图提出一种广泛的认识,以减少重复,并介绍解耦问题的可能解决方案,并指出最近高速解耦的发展是在多个同时方向上进行的。一种设计或技术的改进并不一定会导致下一种设计或技术的发现;相反,不同方法的发展通常是并行的,具体的应用要求。正是多种特定的要求导致了场馆在设计和技术上的多样化。重点介绍了四端电源输入电容、电源平面去耦电容、10亩f20 - ph电容、交叉引线等器件的开发利用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advanced decoupling using ceramic MLC capacitors
The author traces the evolution of early decoupling methods to present uses and some future directions. He tries to present a broad awareness that might reduce repetition and introduce a possible solution to the decoupling problem, noting that recent developments in high-speed decoupling have been in multiple simultaneous directions. The refinement of one design or technique has not necessarily led to the discovery of the next; rather, the developments in the different methods have usually been parallel, specific-application dictated. It is the multiple specific requirements that have led to the varied venues in design and technology. Attention is given to the development and utilization of the following devices: the four-terminal power entry capacitor, the power-plane decoupling capacitor, the 10- mu F 20-pH capacitor, and interdigitated leads.<>
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CiteScore
3.10
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