New LTCC materials: From fundamental to applied research

M. Valant
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引用次数: 2

Abstract

Over the last twenty years, low-temperature co-firing ceramic (LTCC) technology has advanced to such an extent that it now allows the integration of a variety of passive components within the LTCC module. However, to achieve better performance some of them are still mounted as discrete components on the top of the module. An example of this type of component is a capacitor. In principle, no technological or design obstacles exist that would prevent the integration of capacitors into the module. The only problem is a lack of suitable LTCC material that exhibits the proper dielectric characteristics and is compatible with current LTCC materials and technology. Because the NP0-type capacitors represent the largest group of capacitors used with LTCC modules for RF applications we started the development of an NP0-type ceramic layer suitable for direct implementation with existing LTCC production lines. In this talk an example of such development will be presented where the very fundamental research has successfully been upgraded with an applied research and the new functional LTCC layers have been developed. They are characterized by K80, temperature stability, low dielectric loss and cosinterability with commercial low K tapes and silver electrode. The review of all the material properties relevant for the existing LTCC technology shows the possibility of a direct integration of the developed NP0-capacitor layer into the current LTCC modules.
新型LTCC材料:从基础到应用研究
在过去的二十年中,低温共烧陶瓷(LTCC)技术已经发展到这样一个程度,它现在允许在LTCC模块内集成各种无源组件。然而,为了获得更好的性能,它们中的一些仍然作为分立组件安装在模块的顶部。这类元件的一个例子是电容器。原则上,不存在任何技术或设计障碍来阻止电容器集成到模块中。唯一的问题是缺乏合适的LTCC材料,既能表现出适当的介电特性,又能与当前的LTCC材料和技术兼容。由于np0型电容器代表了RF应用中与LTCC模块一起使用的最大电容器组,因此我们开始开发适用于现有LTCC生产线直接实施的np0型陶瓷层。在这次演讲中,我们将展示一个这样的发展的例子,其中非常基础的研究已经成功地升级为应用研究,并且已经开发出新的功能LTCC层。它们的特点是K80,温度稳定,低介电损耗和与商业低K带和银电极的共互性。对现有LTCC技术相关的所有材料特性的回顾表明,将开发的np0 -电容器层直接集成到当前LTCC模块中的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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