Microwave characterization of low temperature cofired ceramic

P. Pruna, R. Gardner, D. Hankey, S. Turvey
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引用次数: 6

Abstract

The use of low temperature cofired ceramic (LTCC) materials for the manufacture of high performance microelectronic packages operating at very high frequencies has found widespread acceptance due to LTCC's durability, compactness and manufacturability. Extensive effort has been devoted to the characterization of the electrical performance of the dielectric and associated conductor materials to determine and predict performance when constructing electronic packages that operate over a broad band of frequencies from DC through high speed digital to the microwave and millimeter bands. This effort has focused on several different areas, including the effect of operating frequency on the bulk dielectric properties of the ceramic and the electrical properties of associated thick film materials, particularly conductors. The interaction of these materials during processing, has been investigated, to determine the interdependence of these characteristics, so that both design rules and processing guidelines for particular package configurations (such as microstrip and stripline) and applications may be optimized. The Ferro A6-M ceramic, has demonstrated low dielectric constant and low dielectric loss at a wide range of frequencies, is compatible with low cost, high performance conductor materials, such as silver, and may also be used in mixed metal configurations with combinations of gold and silver conductors, in applications where such an approach is necessary. This paper reviews some of the results which have been determined in electrical characterizations such as these and proposes new electrical evaluations that may prove useful in the future.
低温共烧陶瓷(LTCC)材料用于制造在非常高频率下工作的高性能微电子封装,由于LTCC的耐用性,紧凑性和可制造性,已经被广泛接受。在构建从直流到高速数字到微波和毫米波段的宽带频率范围内工作的电子封装时,已经投入了大量的努力来表征电介质和相关导体材料的电气性能,以确定和预测其性能。这项工作集中在几个不同的领域,包括工作频率对陶瓷的整体介电性能和相关厚膜材料,特别是导体的电性能的影响。研究了这些材料在加工过程中的相互作用,以确定这些特性的相互依赖性,从而优化特定封装配置(如微带和带状线)和应用的设计规则和加工指南。Ferro A6-M陶瓷在宽频率范围内具有低介电常数和低介电损耗,可与低成本、高性能的导体材料(如银)兼容,也可用于具有金和银导体组合的混合金属配置,在需要这种方法的应用中。本文回顾了一些在诸如此类的电特性中已经确定的结果,并提出了可能在未来证明有用的新的电评价。
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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