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首页> 外文期刊>Journal of Electronic Materials >Preventing Electrical Shorts in Parallel-Plate Capacitors with Single-Printed Dielectric Layer
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Preventing Electrical Shorts in Parallel-Plate Capacitors with Single-Printed Dielectric Layer

机译:防止具有单层印刷介电层的并联电容器的电气短路

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摘要

Double-printing of dielectric layers is commonly used to prevent electrical shorts in parallel-plate capacitors, but this increases the thickness of the dielectric layer and diminishes the corresponding capacitance. Double-printing also complicates the production process and increases production costs. In this paper, it is demonstrated that capacitors with single-printed dielectric layers are without shorts if the layer is completely polymerized. Therefore, electrical shorts could also be related to the state of polymerization in a defect-free dielectric layer. To demonstrate this, the electrical functionality of capacitors with single-printed dielectric layers was studied in terms of intrinsic properties of the ultraviolet (UV) curable dielectric layer, which were varied according to the curing energy. The chemical structure of the cured layer was analyzed with infrared spectroscopy to obtain the appearance of polymerizable groups and crosslinks within the polymer structure. Differential scanning calorimetry was used to measure the glass transition temperature of the dielectric material. It increases rapidly with UV curing until the polymerization is completed, whereas a small increase with further curing confirms crosslinking of the polymer. The influence of structuring effects within a dielectric layer in the presence of electrical shorts between electrodes is discussed. This research confirms that a completely polymerized layer forms a barrier to leakage and helps to prevent the formation of conductive paths between electrodes. Therefore, a connection between the structure of polymerized layer and its electrical properties is highly reasonable.
机译:通常使用电介质层的两次印刷来防止平行板电容器中的电短路,但这会增加电介质层的厚度并减小相应的电容。双重印刷还使生产过程复杂化并增加了生产成本。本文证明,如果单层印刷的介电层完全聚合,则电容器不会短路。因此,电短路也可能与无缺陷介电层中的聚合状态有关。为了证明这一点,根据可固化的紫外线(UV)介电层的固有特性,研究了具有单层印刷介电层的电容器的电功能。用红外光谱分析固化层的化学结构以获得聚合物结构内可聚合基团和交联的外观。差示扫描量热法用于测量介电材料的玻璃化转变温度。随着紫外线固化直至聚合完成,它会迅速增加,而随着进一步固化的少量增加,则证实了聚合物的交联。讨论了在电极之间存在电短路的情况下,介电层内结构化效应的影响。这项研究证实,完全聚合的层可形成防止泄漏的屏障,并有助于防止电极之间形成导电路径。因此,聚合层的结构与其电性能之间的连接是高度合理的。

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