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1)  ZnO varistor
ZnO压敏电阻
1.
ZnO varistors of large current high ( and high voltage.;
大通流高电压高α值ZnO压敏电阻
2.
Superposition sintering to control Bi_2O_3 vaporization in ZnO varistors
叠烧对ZnO压敏电阻中Bi_2O_3挥发的控制
3.
This paper presents a theoretical investigation on the coprecipitation coating doping by ammonia for preparing ZnO varistor ceramic powders.
ZnO压敏电阻粉体共沉淀反应中的既能与NH3也能与OH-络合的金属离子(A类二价金属离子)进行了理论分析和模拟计算,得到了沉淀反应中沉淀系数、络合反应系数及pH值和氨水添加量之间的关系。
2)  ZnO varistors
ZnO压敏电阻
1.
The voltage stabilization of high voltage gradient ZnO varistors;
高电位梯度ZnO压敏电阻的高压稳压性能研究
2.
ZnO varistors were prepared using microwave and conventional sintering processes.
采用微波和传统烧结工艺制备了ZnO压敏电阻,比较了微波和传统烧结ZnO压敏电阻的相组成、表面微观结构和电性能,探讨了烧结温度和保温时间对微波烧结样品的致密化和电性能的影响。
3.
With discussion on tunnelling effect of ZnO varistors, a new model is proposed, which can depict barriers stagger near the grains of ZnO varistors.
根据氧化锌压敏电阻的微观结构,提出了势垒交错导致共振隧穿的模型,并运用传递矩阵法合理地解释了ZnO压敏电阻的隧道效应,所得的隧穿电流符合实际 ZnO压敏电阻在击穿区的温度特性。
3)  low-voltage ZnO varistor
低压ZnO压敏电阻
1.
The important additions of low-voltage ZnO varistor and the factors of Electrical Properties(breakdown voltage gradient, nonlinear coefficient and current leakage) are summarized.
概述了低压ZnO压敏电阻的重要添加剂的作用,阐述了其电性能“三参数”(压敏电压梯度、非线性系数和漏电流)的影响因素。
4)  ZnO varistors
ZnO压敏电阻器
1.
Improving of the performance of ZnO varistors by aqueous phase additives.;
液相掺杂法可提高ZnO压敏电阻器的性能
2.
In order to improve the electrical properties of ZnO varistors,the powder of ZnO varistor was fabricated by blending and grinding of ZnO,Sb2O3 and composite nanometer additives prepared by sol-gel method.
将其与ZnO,Sb2O3混合,球磨后按传统工艺制备了ZnO压敏电阻器。
3.
In order to improve the performance of ZnO varistors,the powders of ZnO varistors were fabricated by blending and grinding of ZnO,SiO2 and composite nanometer additives prepared by Sol-Gel method.
为了提高ZnO压敏电阻器的性能,采用Sol-Gel法制备复合纳米添加剂。
5)  ZnO varistor
Zno压敏电阻器
1.
Capacitance dispersion in ZnO varistors;
ZnO压敏电阻器中的电容弥散
2.
Study on the influence factor of the humidity resistance of ZnO varistor;
ZnO压敏电阻器耐潮湿性能影响因素的研究
3.
The composited nanometer additives of ZnO varistor were prepared by the Sol-Gel method through lots of experiments on the basis of analyzing the theory of the Sol-Gel method in this dissertation.
本论文在详细的分析溶胶—凝胶法原理的基础上,通过大量的实验,研究制定了制备ZnO压敏电阻器用复合纳米添加剂的合理的溶胶—凝胶工艺,并详细的描述并分析讨论了此过程中所出现的各种实验现象。
6)  ZnO thin film varistors
ZnO薄膜压敏电阻
1.
Preparation of ZnO thin film varistors with sol-gel method;
sol-gel法制备ZnO薄膜压敏电阻
补充资料:分压电阻
与某一电路串联的导体的电阻。在总电压不变的情况下,在某一电路上串联一个分压电阻,将能起分压的作用,一部分电压将降在分压电阻上,使该部分电路两端的电压减小。分压电阻的阻值越大,分压作用越明显。在电流计线圈上串联一个高阻值的分压电阻,就能把电流计改装成伏特表,量度较大的电压。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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