集成薄膜电容器用钛酸钡/环氧复合介电材料

S. Liang, S.R. Chong, E. Giannelis
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引用次数: 45

摘要

将无源元件集成到电子封装中将导致微电子工业进一步的结构小型化,性能和可靠性的改进,以及成本的降低。为了用嵌入式电容器取代目前封装中使用的分立电容器,需要合适的介电材料和与PWB技术兼容的薄膜工艺。为此,我们一直在研究一种基于钛酸钡(BaTiO/ sub3 /)/环氧复合材料的薄膜技术,其在可加工性、低加工温度和多功能性方面的优势使其非常有前景。在此过程中,通过硅烷偶联剂对陶瓷粉末进行表面功能化,实现了细晶钛酸钡均匀分散到环氧基体中。采用功能化钛酸钡粉体、双酚A环氧树脂、双氰胺和2-甲基咪唑在有机溶剂中配制颗粒涂料。采用旋量浸镀的方法在Cu衬底上制备复合介质薄层,并在175℃下进行固化。对这些电容器的电学测量表明,对于含有60 vol%钛酸钡的复合介质薄膜,在1 kHz时的介电常数约为40,在宽频率区域内的损耗因数小于0.035。
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Barium titanate/epoxy composite dielectric materials for integrated thin film capacitors
Integration of passive components into electronic packaging will lead to further structural miniaturization, performance and reliability improvements, as well as cost reduction in the microelectronics industry. To replace the discrete capacitors currently employed in packages with the embedded ones, suitable dielectric materials and thin film processes compatible with the PWB technology are desired. Toward this end, we have been investigating a thin film technology based on barium titanate (BaTiO/sub 3/)/epoxy composites, whose advantages in terms of processability, low processing temperature, and versatility make it quite promising. In this process, the homogeneous dispersion of fine-grained barium titanate into the epoxy matrix was achieved through the surface functionalization of the ceramic powders with a silane coupling agent. Particulate coatings were formulated using the functionalized barium titanate powders, bisphenol A epoxy resin, dicyandiamide, and 2-methylimidazole in an organic solvent. The composite dielectric thin layers were processed on Cu substrates by spinor dip-coating followed by curing at 175/spl deg/C. Electrical measurements on these capacitors demonstrate that, for composite dielectric films containing 60 vol% of barium titanate, a dielectric constant of about 40 at 1 kHz and low loss factors of less than 0.035 over a wide frequency region have been obtained.
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