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Experimental analysis of high temperature capacitance variance of MLCC

 

WANG Feng, ZHAO He-ming

 

(College of Mechatronic Engineering, North University of China, Taiyuan 030051, China)

 

Abstract: High temperature capacitance variance of multi-layer ceramic capacitor (MLCC) is researched. Combined with the characteristics of MLCC, the application of MLCC in fuze is proposed, and the temperature stability of MLCC is also discussed. The experimental results indicate that the capacitance of low frequency MLCC is largely affected by temperature.

 

 

Key words:  temperature characteristics research; high temperature failure; high temperature experiment; multi-layer ceramic capacitor (MLCC)

 

CLD number: TM534+.1 Document code: A

 

Article ID: 1674-8042(2014)01-0029-03  doi: 10.3969/j.issn.1674-8042.2014.01.006

 

References

 

[1] ZHANG Chang-reng. The discussion on some questions in MLCC. Electronic Components and Materials,1999, 4: 1-8.
[2] DONG Ming-he, ZHOU Dong-xiang, GONG Shu-ping. Review on development of multi-layer chip devices, Journal of Materials, 2000, (10): 33-35.
[3] JIN Tong-shou. Resistance and capacitance components and tandem technology. Nanjing: South-east University Publishing House, 2000: 5.
[4] WANG Shao-hong, ZHOU He-ping, LUO Ling-hong, et al. Research and development of multilayer chip inductors and materials. Materials for Mechanical Engineering, 2002, (12): 1-5.
[5] SUN Qing. Reliability engineering of electronic components. Beijing: Electronic Industry Publishing House, 2002: 8.
[6] XIANG Yong, XIE Dao-hua. The application of new-type components in electronic information domain. Electronic Components and Materials, 2001, (6): 16-18.

 

MLCC 高温容值变化的实验分析

 

王锋, 赵河明

 

(中北大学 机电工程学院, 山西  太原  030051)

 

摘要:研究了多层片式瓷介电容器 (MLCC) 受高温时的容值变化。 结合 MLCC 的特点, 提出了其在引信中的使用方法, 同时, 讨论了温度稳定性对电子产品设计的影响。 实验结果表明, 低频MLCC的容值受温度影响较大。

 

关键词:温度特性研究; 高温失效; 高温实验; 多层片式瓷介电容器(MLCC)

 

引用格式:WANG Feng, ZHAO He-ming. Experimental analysis of high temperature capacitance variance of MLCC. Journal of Measurement Science and Instrumentation, 2014, 5(1): 29-31. [doi: 10.3969/j.issn.1674-8042.2014.01.006]

 

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