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1)  disk ceramic capacitor
盘式陶瓷电容器
2)  tubular ceramic capacitor
管式陶瓷电容器
3)  ceramic capacitor
陶瓷电容器
1.
Densification process of Ni electrodes in ceramic capacitors;
陶瓷电容器镍电极的致密化过程
2.
Design of a novel capacitor: multifiber ceramic capacitor;
新型多纤维陶瓷电容器的设计
3.
An experimental investigation was undertaken to study the glass composition and content effects on the adhesion,square resistance and weldability of Ni electrodes in ceramic capacitors.
研究了玻璃粘结剂组成和含量对陶瓷电容器镍电极附着力、方阻和可焊性的影响,并使用SEM和EDS分析了其中的影响机制。
4)  capacitor ceramics
电容器陶瓷
1.
8) on the dielectric properties of(Ba,Sr)TiO_3(Barium Strontium Titanate,BST) ferroelectric capacitor ceramics were investigated.
8]不同对(Ba,Sr)TiO3(Barium strontiumtitanate,BST)铁电电容器陶瓷介电性能的影响,得到不同Nb2O5/Co2O3加入量与BST陶瓷性能的关系。
2.
3TiO(3BST)capacitor ceramics were studied, and mechanism for modifying the properties and microstructure of the BST ceramics by doping of MgO was investigated.
3TiO3基电容器陶瓷。
3.
The influence of doping amount of Bi4Ti3O12 (more than 8%, mass fraction) on the properties of (Ba,Sr)TiO3(barium strontium titanate,BST) series ferroelectric capacitor ceramics were investigated, and the relationship between the additive amount of Bi4Ti3O12 and the properties of BST were obtained.
研究了Bi4Ti3O12掺杂量(≥8%,质量分数)对(Ba,Sr)TiO3(Barium Strontium Titanate,BST)铁电电容器陶瓷介电性能的影响,得到不同Bi4Ti3O12掺杂量与BST陶瓷性能的关系,得到中温烧结(≤1150℃)、高压(≥6。
5)  ceramic capacitors
陶瓷电容器
1.
The research situation and development of medium/high voltage ceramic capacitors were reviewed in this paper.
阐述了中高压陶瓷电容器研究状况及发展。
2.
The properties of phenolic resin coating materials for coating ceramic capacitors made by Namics (Namics Corporation, Japan) and by Sansen (Sansen electrification Co.
对比分析研究了日本纳美仕公司(Namics corporation, Japan)产的陶瓷电容器酚醛树脂包封料与中国江苏镇江三森电气有限公司(简称中国三森公司)产的陶瓷电容器酚醛树脂包封料的性能,利用SEM和XRD研究了这两种包封料的无机填料的形貌及其颗粒大小和物相组成,找到了日本纳美仕公司产的酚醛树脂包封料和中国三森公司产的酚醛树脂包封料性能不同的根本所在。
3.
The influence of the composition of the epoxy-phenolic resin for coating ceramic capacitors on its properties has been investigated by means of single factor various method, and the law governing the influence has been obtained.
采用单因素变量法研究了组成对陶瓷电容器用环氧-酚醛树脂包封料性能的影响,得到了综合性能好的包封料,这种包封料干燥时间为8 h(低于20℃条件下),耐溶剂性时间为70 h(丙酮中36~38℃)。
6)  multilayer chip ceramic capacitor(MLCC)
片式叠层陶瓷电容器
补充资料:陶瓷电容器
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性质:以陶瓷材料为介质的电容器的总称。其品种繁多,外形尺寸相差甚大。按使用电压可分为高压,中压和低压陶瓷电容器。按温度系数,介电常数不同可分为负温度系数、正温度系数、零温度系数、高介电常数、低介电常数等。此外,还有I型、II型、III型的分类方法。一般陶瓷电容器和其他电容器相比,具有使用温度较高,比容量大,耐潮湿性好,介质损耗较小,电容温度系数可在大范围内选择等优点。广泛用于电子电路中,用量十分可观。

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