microfabrication 中文意思是什麼

microfabrication 解釋
微型品製造
  1. Research on real - time fsm modeling for microfabrication nc system

    微製造數控系統的實時有限狀態機建模研究
  2. Due to its supper - resolution imaging ability and its unique three - dimensional microfabrication ability. it has been widely used in life science, 3d - optical data storage, and lithographic microfabrication. the imaging principles of confocal microscopy have been discussed extensively by many authors, but all of those theories did n ' t account for the nonlinear effect of two - photon excitation

    近十多年來,其理論研究和應用研究都取得很大進展,特別是雙光子共焦顯微鏡,由於具有極高的空間解析度和特有的三維處理能力,因而在生物醫學研究、三維高密度存儲以及三維微細加工等領域具有變革性的應用潛力,取得了許多突破性進展,已成為光學及其交叉學科中最誘人、最活躍的研究領域之一。
  3. At this time, the approximate mechanical model of devices has been put forward, which frequency is 70 mhz, then we analyzed the euler ? bernoulli equation, find that the frequency is determined by the resonator ’ s density thickness and length ; the free - free - beam 、 coupled beam 、 support beam 、 transducer have been designed ; the model was simulated and modal analyzed on the coventorware and were consistent with the designed parameter. the silicon surface microfabrication process was developed and emphatically introduced several key surface microfabrication technologies, and was simulated by coventorware

    本文通過分析歐拉-貝努立方程,得出濾波器的共振頻率主要由諧振梁的密度、厚度和長度決定,考慮切變形和轉動慣量的情況下,完成微機械諧振梁、支撐梁、驅動電容的設計;在coventorware軟體上進行模擬,分析結果與理論設計比較好地吻合;對微機械濾波器的加工工藝進行設計,給出器件的完整的工藝流程,重點介紹微機械表面加工工藝,並在coventorware上進行模擬。
  4. Other techniques involve huge lumps of machinery, but josephson junctions can be made using the sort of microfabrication technology employed for normal silicon chips

    其他技術都需要一堆巨大的機械裝置,而約瑟夫森結則可以通過運用利用普通硅晶元的微型裝配技術得到。
  5. Latest progress in plasma microfabrication technology

    等離子體微細加工技術的新進展
  6. They have also combined advances in nanotechnology and microfabrication to make implantable microchips that can deliver drugs precisely and on schedule

    他們也結合奈米科技與顯微合成技術,製造了植入式微晶片,使其能定時定量投藥。
  7. Plasma etching has been widely used in the etching process of si devices. now the study is focused on the microfabrication of compound semiconductor

    等離子體干法刻蝕在硅器件的微細加工中已經得到廣泛應用,目前研究的焦點集中在化合物半導體。
  8. With the rapid progress in microfabrication technology in recent years, it is of practical significance to design and consider subwavelength optical elements

    近年來,微加工技術和納米光刻技術的快速發展,使得設計亞波長光學元件具有實際意義。
  9. The new efs is based on microfabrication technology, which makes it to possess the advantages of small dimensions, lightness, low power consumption and convenience for assembling

    此種傳感器利用了新型的電場感應模式,採用微加工技術製造,使其具備體積小、重量輕、功耗低、便於與其它器件集成等特點,而且製作工藝簡單,成本較低。
  10. The first review introduces the development of the miniaturized total analysis system ( u - tas ) and the microfluidic analytical systems, including microfabrication techniques and detection technologies of microfluidic chips

    第一部分先介紹了微全分析系統的概況以及微流控晶元近年的研究狀況,包括晶元的微細加工新技術和檢測系統研究進展。
  11. As an important step of microelectronic process, etching technology has gained much attention. it will play an important role in microfabrication such as new - made microeletronics mechanism ( mems ) and photoelectrics integration system

    刻蝕工藝不僅作為微電子工藝中的關鍵技術一直受到人們的關注,而且在新興的微機電系統,光電集成系統等微細加工中也將得到重要應用。
  12. Some successes have been achieved through microfabrication techniques, but the pursuit of a microscopically ordered pbg in the visible range was still a challenging endeavor. colloidal self - assembly has been utilized as a process to form 3d periodic structures because of its simplicity

    電磁流變技術的發展為廉價、簡便地形成三維有序結構以制備光子晶體提供了一條新的途徑,而這種方法的關鍵在於制備粒徑適當的電磁響應性微粒。
  13. Interferometirc lithographic technology incorporates laser, interference optics, diffraction optics and optical lithography and it is a frontier research subject in microfabrication technology and microelectronic field sponserd by national natural science foundation of china. the research for this technology in theory, simulation and experiments has important scientific meanings and broad application prospect for promoting lithographic limit, developing nanometer electronic and photoelectron devices, novel large screen panel display and novel lithographic equipment of our country

    干涉光刻技術集激光、干涉和衍射光學及光學光刻於一體,是國家自然科學基金資助的微細加工技術和微電子領域的前沿研究課題,對其進行理論、模擬和實驗研究,對推進光學光刻極限,發展我國納米微電子和光電子器件、新型大屏幕平板顯示器和新型光刻機具有重要的科學意義和廣闊的應用前景。
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