1) Terminal contact resistance
终端接触电阻
2) terminal resistor
终端电阻
1.
The indirectly-heated terminating type MEMS microwave power sensor s structure and process were presented,and based on these,the match design among the coplanar waveguide,the terminal resistors and the thermopile were done.
在提出间接加热终端式MEMS微波功率传感器的结构和工艺的基础上,对其基本单元:共面波导(CPW)、终端电阻和热电堆之间进行了匹配性设计,用软件HFSS进行了模拟,模拟结果包括共面波导与接触垫间的阻抗匹配的分析以及热电偶的数目和热电堆的接近对CPW性能影响的分析。
2.
The thermal simulations were done and compared,according to the thermopile s three different positions:under(structure A),above(structure B)and outside(structure C)the terminal resistors.
在提出间接加热终端式MEMS微波功率传感器结构和工艺的基础上,用Coventorware软件和ANSYS软件对其温度分布进行了模拟,根据热电堆的放置位置不同,分别对热电堆处于终端电阻的下方(结构A)、上方(结构B)和外侧(结构C)三种结构进行了模拟和比较,最后采用了热电堆处于终端电阻下方的结构,热电堆的热端可以测得的温度范围为417。
3) contact resistance
接触电阻
1.
Stable distribution analysis to statistical evaluation of contact resistance in aluminum alloy spot welding;
基于稳定分布的铝合金点焊接触电阻
2.
On the contact resistance between graphite/polypropylene composite plate and carbon paper;
石墨/聚丙烯复合板与碳纸间的接触电阻
3.
Study of prediction method for contact resistance based on experiment constitutive relation;
基于实验本构关系的接触电阻预测方法研究
4) interfacial contact resistance
接触电阻
1.
The electrochemical methods were investigated in a simulated PEMFC environment and the volt-ampere technique was applied to measure interfacial contact resistance between the sample and carbon paper.
以304不锈钢为研究对象,采用电化学方法测定其在模拟PEMFC环境下的极化曲线和对应于PEMFC工作电位下的恒电流极化曲线,用伏安法测量304不锈钢表面氧化膜/钝化膜与碳纸之间的接触电阻。
2.
The 304 stainless steel treated by electroplating Cr and plasma-assisted nitriding processes was investigated by electrochemical methods in the simulated PEMFC environments, and interfacial contact resistance between the samp.
测定了经过镀铬后再离子氮化的304不锈钢在模拟PEMFC环境下的电化学性能,测量了氮化层与碳纸之间的接触电阻。
3.
The interfacial contact resistance between the sample and carbon paper are measured with volt-ampere technique.
以304不锈钢做为研究对象,测定了其在模拟PEMFC环境下的极化曲线,极化时间分别为4 h和10 h的交流阻抗谱,用伏安法测量了304不锈钢表面氧化膜/钝化膜与碳纸之间的接触电阻。
5) contacting resistance
接触电阻
1.
In order to reduce contacting resistance of bridge shaped contact and lower down temperature rise,improvement design was carried out for DW450-1100 universal circuit breaker bridge shaped structure.
为减小桥形触头的接触电阻,降低温升,对DW450-1600万能式断路器的桥形触头结构进行了改进设计。
2.
In order to determining the fire risk of plug and receptacle in different connecting resistance,the plugs rated 10 A and 16 A are used to study the temperature rising in the different contacting resistance and current.
为了确定插头插座在不同接触电阻情况下的火灾危险性,选用了常用的额定电流分别为10A和16A的两种插头插座,研究在不同的接触电阻条件下以及在相同的接触电阻下通过不同电流时插头插座的升温情况。
3.
In order to reduce the contacting resistance of contacts,to reduce temperature rise of contacts,improved design was made to the structure of contact.
为减小触头的接触电阻,降低触头的温升,对触头的结构进行了改进设计。
6) final resistor
终端电阻器
补充资料:铂电阻温度表(见电阻温度表)
铂电阻温度表(见电阻温度表)
表。bod旧nZu wendubiao铂电阻温度表见电阻温
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条