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Material Requirements for Power and High Temperature Multilayer Ceramic Capacitors (MLCC)

机译:电力高温多层陶瓷电容器(MLCC)的材料要求

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摘要

Recent trends and progresses in power electronics rely on fast, miniaturized, high current and high temperature switching semiconductors. However, in electronics system design, passive components technologies, in particular capacitors, limit their full exploitation. The goal of the present paper is, firstly, to analyse the capacitor technologies, in particular ceramic technologies for the limits set by high current, high voltages, high temperatures, high frequencies, and by cost items. Secondly, for each of the identified limits, to define the tools and technologies that are capable to overcome it. The new technologies include a new PLZT based antiferroelectric ceramic material with high switching field, copper inner electrode for the multilayer construction, firing in reducing atmosphere, applying a sputter method for the outer connecting electrode combined with silver sintering of a flexible termination or of a pressfit connector. The third goal is to show how the new technologies are applied such that the cost forecast in production scale is giving a good economic perspective for future use in power electronic systems. Finally, specific applications in power electronics are selected and described, where the benefits resulting from the newtechnologies are made evident.
机译:电力电子设备近期趋势和进展依赖于快速,小型化,高电流和高温开关半导体。然而,在电子系统设计中,无源元件技术,特别是电容器,限制了它们的完全剥削。本文的目的首先是分析电容器技术,特别是由高电流,高电压,高温,高频和成本项目设置的限制的陶瓷技术。其次,对于每个已识别的限制,要定义能够克服它的工具和技术。新技术包括具有高开关场的新技术的基于PLZT的防火电极陶瓷材料,用于多层结构的铜内电极,在还原气氛中烧制,施加外连接电极的溅射方法与柔性终端的银烧结,施加银烧结连接器。第三次目标是展示如何应用新技术,使生产规模的成本预测是在电力电子系统中使用的良好的经济视角。最后,选择和描述了电力电子器件的特定应用,其中录制的益处是明显的。

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