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Characteristics of Fine Patterned Epoxy/BaTiO3 Composite Embedded Capacitor Films (ECFs) for Organic Substrates

机译:用于有机基质的精细图案化环氧树脂/ BaTiO3复合嵌入式电容器膜(ECF)的特性

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In this study, we have demonstrated new patterning method of epoxy/BaTiO3 composite ECFs for fine patterning using the combination of reactive ion etching and ultrasonic cleaning. And the effect of patterning processes on the dielectric properties of epoxy/BaTiO3 composite ECFs has been also investigated. The capacitance and dielectric loss of the fine patterned ECFs were lower than those of non-patterned ECFs. The dielectric constant and capacitance of patterned ECFs decreased by 10% and dielectric loss by 40% due to thermal history during the etching process. In addition, the pattern size of ECFs has also affected dielectric properties. The dielectric constant slightly increased from 34 to 37 and capacitance tolerance from 卤5% to 卤9%, as the pattern size decreased from 4mmx 4mm to lmmx 1mm. It was mainly due to the increased tolerance of finer defined electrode areas. The dielectric constant of 37, capacitance of 2.4nF/cm2, and capacitance tolerance of 卤9% was obtained by lmmx 1mm size fine patterned capacitors. As a result, ECFs patterning method using plasma etching and ultrasonic cleaning was successfully demonstrated for fine patterned embedded capacitors.
机译:在这项研究中,我们展示了使用反应离子刻蚀和超声清洗相结合的用于精细图案化的环氧/ BaTiO3复合ECF的新型图案化方法。并且还研究了构图工艺对环氧/ BaTiO3复合ECFs介电性能的影响。精细图案化的ECF的电容和介电损耗低于非图案化的ECF。由于蚀刻过程中的热历史,图案化ECF的介电常数和电容降低了10%,介电损耗降低了40%。另外,ECF的图案尺寸也影响了介电性能。随着图案尺寸从4mmx 4mm减小到1mmx 1mm,介电常数从34略微增加到37,电容容差从5%提升到-9%。这主要是由于提高了对定义好的电极面积的耐受性。通过1mmx 1mm尺寸的精细图案化电容器可获得37的介电常数,2.4nF / cm2的电容和+/- 9%的电容容差。结果,成功地证明了使用等离子刻蚀和超声清洗的ECF构图方法可用于精细构图的嵌入式电容器。

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