品牌形象+服务:我们提供高标准的高压陶瓷电容器。
Brand image + service: we offer a high standard of high voltage ceramic capacitor.
介电陶瓷,制造该介电陶瓷的方法,以及单片陶瓷电容器。
Dielectric ceramic, method for manufacturing the dielectric ceramic, and monolithic ceramic capacitor.
片式多层陶瓷电容器是新型片式元器件门类的主要品种之一。
Multilayer ceramic capacitors (MLCC) is one of the main products of the new surface mounted components (SMC).
存储器,贴片陶瓷电容器,贴片陶瓷电感,贴片钽电容器,磁珠。
Memory IC, Chip Ceramic Capacitors, Inductor, Chip Tantalum Capacitors, Ferrite Bead.
由于我们的基础,我们一直在专业学习和研究不同类型的陶瓷电容器。
Since our foundation, we have been specializing in the study and research of different types of ceramic capacitors.
用于汽车、小型移动通信设备和高压电源的高可靠性积层陶瓷电容器。
Multilayer ceramic capacitors such as high reliability types for automobiles, small types for mobile communications devices and high voltage types for power suppliers.
此外,在多数情况下,可以使用小型陶瓷电容器且不再需要外部组件。
Further, in most of these cases small ceramic capacitors can be used and there no further need for external components.
本发明是关于一种通过喷墨涂布同时涂布内电极和外电极的多层陶瓷电容器。
The present invention relates to a multi-layer ceramic capacitor printed simultaneously with internal electrode and external electrode by employing an inkjet printing.
所以具有陶瓷电容器可靠性和稳定性高、产品的生产成本低、且符合环保要求。
The ceramic capacitor has high reliability and stability, low production cost and accords with the environmental protection requirement.
激光扫描声学显微镜是一种新型的无损检测多层陶瓷电容器内部缺陷的测量技术。
The scanning laser acoustic microscope is a new type of nondestructive testing technique for detecting the internal defects of multilayer ceramic capacitors.
并对多层陶瓷电容器的优化设计方法进行探讨,用具体电路说明了优化设计过程。
With a specific circuit as an example, optimal design of the circuit using MLCC were discussed.
研制结果表明国内烧结良好的陶瓷介质完全可以制成镍电极陶瓷电容器,投入工业生产。
The result of the development shows that properly sintered ceramic dielectric is good enough to be employed for…
小型、低压、大容量化,片式高压系列化和低成本化是当前多层陶瓷电容器的主要技术发展趋势;
Recent development trends of multilayer ceramic capacitors are miniaturisation, lower voltage, larger capacitance, lower production cost and formation of HV MLCC series.
本文对高压陶瓷电容器在较高频率充放电作用下的老化破坏机理做了较为深入的研究,并提出一定的改进措施。
In this paper, the aging failure mechanism of HV ceramic capacitor under high frequency discharge and recharge is studied and a series improving methods are put forward.
采用了超声波无损探伤检测和破坏性试验相结合的试验方法,得到了一种鉴别陶瓷电容器可靠性的快速判别依据。
A quick method to assess the reliability of ceramic capacitors were also got through the combination of supersonic wave aided nondestructive test and destructive test.
重点介绍了片式多层陶瓷电容器(MLCC)的技术现状,综述了多层陶瓷电容器(MLCC)的小型化、高容量、贱金属化及环保化的发展趋势。
The development tendency of MLCC regarding its miniature, high capacitance, base metal electrode, environmental protection were introduced, and especially the technology status of MLCC.
KEMET公司是世界上著名的固体钽电容、多层陶瓷电容和铝电容器制造商。
KEMET Corporation is a worldwide famous manufacturer of solid tantalum capacitors, multilayer ceramic capacitor and solid aluminum capacitor.
通孔盘状及平面阵列陶瓷多层电容器焊料所含的铅。
Lead in solders for the soldering to machined through hole discoidal and planar array ceramic multilayer capacitors.
所研制的微波陶瓷芯片电容器系列可广泛用于各种微波电路中。
Series of microwave ceramic chip capacitors developed in NSR can be used in various microwave circuits.
在会议和展览,公司将着重突出了其最新的业界领先的多层陶瓷片式电容器(MLCC)及表面贴装和线粘合薄膜产品。
At the conference and exhibition, the company will be highlighting its latest industry-leading multilayer ceramic chip capacitors (MLCCs) and surface-mount and wire-bondable thin film products.
多层陶瓷片式电容器(MLCC)满足X7R ?
放电容器包含布置在第一和第二端部(41,42)之间的陶瓷壁(30)。
The discharge vessel comprises a ceramic wall (30) arranged between a first and a second end portion (41, 42).
陶瓷燃烧器包含围绕放电空间(24)的放电容器(22),所述放电空间(24)具有包含一种或者多种卤化物的可电离填充物。
The ceramic burner comprises a discharge vessel (22) enclosing a discharge space (24) that is provided with an ionizable filling comprising one or more halides.
本发明提供了金属卤化物灯1,其具有陶瓷放电容器3和两个电极4、5。
The invention provides a metal halide lamp 1 with a ceramic discharge vessel 3 and two electrodes 4, 5.
本发明提供了金属卤化物灯1,其具有陶瓷放电容器3和两个电极4、5。
The invention provides a metal halide lamp 1 with a ceramic discharge vessel 3 and two electrodes 4, 5.
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