field emission cathode中文是什么意思
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用"field emission cathode"造句"field emission cathode"怎么读"field emission cathode" in a sentence
中文翻译手机版
- 场致发射阴极
- "field"中文翻译 n. 1.原野,旷野;(海、空、冰雪等的)茫茫一片。 2 ...
- "emission"中文翻译 n. 1.(光、热、气体等的)发出,发射,射出,放射;传 ...
- "cathode"中文翻译 n. 【电学】阴极,负极。
- "thin film field-emission cathode" 中文翻译 : 薄膜场致发射阴极; 薄膜致发射阳极
- "cathode emission" 中文翻译 : 阴极发射; 阴极放射
- "emission cathode" 中文翻译 : 发射阴极
- "emission, field" 中文翻译 : 电场放射
- "field emission" 中文翻译 : 场致发射; 场致放射; 电场发射; 电场放射; 自动电子放射
- "field-emission" 中文翻译 : 场致发射
- "cathode emission area" 中文翻译 : 阴极发射区
- "cathode emission current density" 中文翻译 : 阴极发射电流密度
- "cathode emission efficiency" 中文翻译 : 阴极发射效率
- "cold cathode emission" 中文翻译 : 冷阴极发射
- "initial cathode emission" 中文翻译 : 阴极起始发射
- "secondary emission cathode" 中文翻译 : 二次发射阴极
- "specific cathode emission" 中文翻译 : 阴极发射率
- "self-sustained emission cold cathode" 中文翻译 : 自持发射冷阴极
- "cold field emission" 中文翻译 : 冷发射, 场致发射
- "counter field emission" 中文翻译 : 计数管场致发射
- "electric field emission" 中文翻译 : 电场发射; 电尝射
- "electric-field emission" 中文翻译 : 电尝射
- "fed field emission display" 中文翻译 : 场射显示器
- "field effect emission" 中文翻译 : 场效应发射
- "field electron emission" 中文翻译 : 场致电子发射
- "field electron emission microscopy" 中文翻译 : 场电子发射显微术
例句与用法
- Research and development of field emission cathode materials
场致发射阴极材料的研究与进展 - Now all those disadvantages are to be solved by using field emission cathode
而采用场发射阴极就可以克服这些缺点。 - New technologies and materials made field emission cathode possible and applicable . in 1976 , spindt cathode was firstly prepared by c . spindt
随着纳米技术的发展和集成微刻技术的发展,场发射微型x射线源的研制成为可能。 - In addition , the structure of field emission triode and double - gated field emission cathodes are also simulated by another software ( ebs )
其次,采用本实验室的新型软件ebs对三极管和双门聚焦结构的尖锥场发射阴极的发射情况进行了模拟。 - The aim of this paper is to discuss the effects of structure parameters on field emission performance , in order to fabricate excellent field emission cathodes
本文的工作旨在研究探索尖锥场发射阴极中各结构参数对阴极发射性能的影响,以制作出性能优良的场发射阵列阴极。 - Using field emission cathode , x ray source can be made with several advantages : smaller volume and brighter , high frequency response , in - time turning on , etc . considering of the merits and potential markets , researching and fabricating miniature x - ray source is meaningful
由于突起数目大且尖端顶端电场强度高,因此产生很大的场发射电流密度。采用场发射阴极的x射线光源具有体积小,辐射强度高,频率响应快,可以随时开启,无需预热的优点。 - Simulating the electronic devices by computers , can forecast the real performance of devices before experiments . by discussing the effects of changing the size and material , we can reduce the blindness and times of experiments , and save the experiment outlay . computer simulation of field emission cathodes is an important research topic
利用计算机来模拟电子器件的性能,可以在实验前预测器件的性能,探讨器件结构尺寸、材料等因素对器件特性的影响,减少实验的盲目性,从而可以减少实验次数、节约实验经费,因此关于场发射阴极的计算机模拟也是一个十分重要的研究课题。 - In this paper , first , the author drew some important conclusions by analyzing several technical factors and experimental conditions which would have great influence on the quality of diamond thin films during mpcvd process , including gas proportion , the power of microwave , the plasma ' s location , the nucleation technique , etc . . finally , the author has successfully deposited nanocrystalline diamond thin films with 300nm crystal particles on the slick surface of silicon by using ch4 / h2 gases in the mpcvd system , and the nanocrystalline diamond thin films was proved to have good field emission performance . all these researches will make the foundation for the field emission cathode of diamond films
本论文中,作者分析了mpcvd方法中气源成分比、微波功率、等离子体球的位置、成核技术等各种工艺条件对金刚石薄膜质量的影响,并总结得到了一些有意义的结论;同时,在自行研制的mpcvd沉积系统上,于4 - 7kpa 、 1000左右的热力学条件下,采用ch4 / h2气源气氛在光滑的硅衬底上制备出了晶粒尺寸在300纳米以下的纳米晶金刚石薄膜,测试得到了较好的薄膜场致电子发射性能,为金刚石薄膜场致发射冷阴极的研究工作打下了实验基础。 - With both crt ' s and lcd ' s virtue , fed has a bright future in all kinds of pdf . in this thesis , a new type of field emission cathode was described , that is using simple technique to deposit commercial nano - diamond powder on ti substrates , bonding diamond and ti , and form ohmic - contact by proper high temperature to form cathodes
本文介绍了一种器件结构和制备工艺简单,易于实现大屏幕显示,且适于批量生产的新型场发射阴极,即在金属钛衬底上均匀涂覆纳米金刚石涂层,然后在高温下退火处理实现两者的牢固键合,并形成欧姆接触。
相关词汇
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