一高质量电阻器在信号道路和使用瑞士与黄金接触适合低接触电阻和长期的耐久性一起使精密衰减器内只。
Only one high-quality resistor in the signal path and using the Swiss made precision attenuator with gold contacts for low contact resistance and longtime durability.
讨论了氧化溶液组成和操作条件对氧化膜耐蚀性和接触电阻的影响。
Influences of solution component concentrations and working conditions on corrosion resistance and contact resistance of the film obtained are discussed.
对薄层电阻、接触、光掩模对准、线条宽度、器件参数与掺杂的相关性等内容进行了初步试验和分析。
The initial experiments on and analysis of sheet resistance, contact, photomask alignment, line width, and correlations between device parameters and dopants have been made.
叙述了不焊接化成工艺极板质量的不一致性,其产生的主要原因就化成工艺来说是极板与导电母条的接触电阻的不一致。
It has been shown that the quality plates formed by tackless formation is strongly linked to the con- tact resistance between the plates and conducting bus bar.
为了减小器件的接触电阻和电流的非均匀性,使用了独特形状的集电极,总的电流密度也因此提高。
A special shape of collector is designed in order to reduce contact resistance and non-uniformity of the current; as a result the total current density in the device is increased.
预测继电器触点接触电阻的研究对于预测其接触可靠性,乃至预测其整体可靠性均具有非常重要的意义。
The prediction study on the contact resistance of relays is very significant to that on the contact reliability of relays, even to the whole reliability.
利用数字显示时间继电器、交流接触器、断路器以及电阻性负载设计了一个简易的触头材料实验电路。
The simple experimental circuit contact material is designed using time relays with digital display, contactors, switchgear and resistive load.
本文采用两种实验方法对比测量可知通常的导线连接其接触点的电阻,并由此进行分析,阐述在双电桥测量低电阻实验中四端扭接法的必要性。
Henceforth, the article analyzes the necessity of the mode of the 4-terminal connection in the experiment of low resistance measurement using the double bridge.
采用该方法可以区分触头表面污染状态,并根据接触电阻的变化规律及其变化值的大小评价触头接触可靠性。
Based on the new method the distinguish could be made between "clean" contact and "unclean" contact, and we should predicate the contact reliability of relay according to the value of contact...
采用该方法可以区分触头表面污染状态,并根据接触电阻的变化规律及其变化值的大小评价触头接触可靠性。
Based on the new method the distinguish could be made between "clean" contact and "unclean" contact, and we should predicate the contact reliability of relay according to the value of contact...
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