玻璃基板

  • 网络glass substrate;Front Glass Substrate;ITO Glass
玻璃基板玻璃基板
  1. 彩色PDP用玻璃基板

    Ampicillin was used as substrate . Glass Substrate for Color PDP

  2. TFT-LCD用玻璃基板的性能及检测

    Performance and Test of Glass Substrate for TFT-LCD

  3. 该玻璃基板还可应用于光盘、光盘母盘、液晶显示器、光掩膜、IC等基板。

    The glass panels can be also applied to optical disks , liquid crystal displays , photomasks , IC substrate , etc. .

  4. 用高纯铂板作靶材,在玻璃基板上采用磁控溅射方法,制备成Pt薄膜热敏电阻,并在两端制作纯金电极。

    Pt thin film was sputtered on glass substrates . Au electrodes were made on both terminals of the resistor .

  5. TFT-LCD用玻璃基板发展现状及趋势

    The present status and development trend of glass for TFT-LCD application

  6. 在有限元软件Ansys环境下,建立了三维液晶显示玻璃基板激光切割热应力场的有限元分析模型。

    The three-dimensional finite element analytic model of thermal stress field in laser cutting of LCD substrate is established by using the Ansys software .

  7. TFT-LCD用玻璃基板市场分析

    Analysis for the market of TFT-LCD substrates

  8. 液晶显示(TFT方式)超薄玻璃基板的激光切割

    Laser cutting for TFT-LCD thin glass substrates

  9. TiO2薄膜与玻璃基板横断截面的TEM及TEM-EDX分析

    TEM and TEM-EDX analyses of cross-section of TiO2 thin film and glass substrate

  10. 介绍了TFT-LCD用玻璃基板的市场前景及生产技术。

    The market prospect and production technique of glass substrate for use of TFT-LCD were described .

  11. 分析了ITO及CF玻璃基板表面污染的主要类型为有机物污渍和灰尘颗粒,污染主要来源于产品制作、包装、转运过程。

    The varieties of stain caused by greasy filth and the particle , on the ITO & CF substrate surface were analyzed .

  12. 为求解数学模型,本文设计了一种基于模糊逻辑理论的遗传算法,并利用MATLAB实现了遗传算法的编程和玻璃基板搬运机器人的实例仿真。

    For solving the mathematic model , this paper designs an improved genetic algorithm based on fuzzy logic theory , and achieve the programming of improved genetic algorithm and simulation with MATLAB .

  13. 采用喷雾热解法在玻璃基板上制备了SnO2∶F+Sb薄膜,对薄膜的结构及性能进行了研究。

    Fabricated SnO_2 ∶ F + Sb thin films on glass substrate by spray pyrolysis .

  14. 分析了场发射显示器(FED)中玻璃基板在大气压力下的形变和应力与玻璃基板厚度的关系,得到基板形变和应力随着其厚度的减少而急剧增大。

    Distortion and stress of the glass substrates are introduced into a field emission display ( FED ) panel by atmosphere pressure . The distortion and stress increase rapidly with thinner substrates .

  15. 利用普通的玻璃基板光栅构成复合腔对CO2激光器进行选频,在高增益情况下获得42瓦高功率定向定位输出。

    Branches of a CW CO2 laser were selected by a tunable complex-cavity composed of an ordinary glass-substrated grating . High power output up to 42W with definite direction and location for the branches were obtained with high gain .

  16. 本文通过对当前液晶显示行业中关键基础材料TFT-LCD超薄玻璃基板的激光切割方法的介绍,阐述了一种新颖的针对玻璃等易脆材料的激光热应力切割技术。

    This paper introduces a method of laser cutting brittle materials . specifically TFT-LCD display glass substrates . under the action of thermal tensile stresses .

  17. 实验上采用HfO2和SiO2两种薄膜材料,用电子束蒸发的方法在石英玻璃基板上制备合成光子晶体。

    Synthesized photonic crystal is fabricated on quartz glass substrate with two coating materials HfO_2 and SiO_2 by electron beam vaporization .

  18. 详细介绍了TFT-LCD显示器对玻璃基板本身的性能要求,并初步探讨了对这些性能的检测方法。

    The requirements on performance of glass substrate for TFT-LCD were introduced in detail and the characterization procedures for test of the performance were also discussed in this article .

  19. 根据泄漏波导原理对K9玻璃基板上的冰晶石薄膜进行折射率测量,达到的精度为1×10~(-4),与真实波导的情况相似。

    Based on the principle of leaky waveguide , we made measurement of the refractive index of a cryolite film deposited on a K9 glass substrate . The accuracy is about 1 x 10-4 , which is similar to that for a real waveguide .

  20. 本文首先对MEMS的一些典型加工工艺以及目前存在的一些MOEMS器件进行了介绍。然后利用传统薄膜工艺和MEMS工艺的结合,设计了两种基于K9玻璃基板的微光学调制器。

    In chapter 2 , the typical micromachining technology for MOEMS device is studied and two kinds of micro optical modulators are designed by MEMS technology , especially thin film technology .

  21. 采用干法刻蚀,在玻璃基板上形成了Pt电极,然后在铂电极上甩了一层PDMS胶,与上盖片进行了键合。

    Form the Pt electrode in glass substrate using dry etching . And then dump a layer of PDMS glue on the top of platinum electrode , and bond with the PDMS cover . 3 .

  22. 本文采用自制的磁控弧光射频等离子体增强化学气相沉积设备在生物玻璃基板上制备类金刚石碳(DLC)膜。

    Diamond-like carbon ( DLC ) films were deposited on the biological substrates by the self-made radio-frequency magnetron plasma enhanced chemical vapor deposition ( RF magnetron PECVD ) device in this paper .

  23. 探讨了用HCD法在玻璃基板上制备的Ti43.27%Ni形状记忆合金薄膜和经不同热处理后的组织结构。

    The morphology and structure of the SMA thin film of Ti 43.27 % Ni formed by HCD sputter deposition on glass substrates were studied .

  24. 单玻璃基板与各向异性聚合物膜的IPS-LCD的应用

    IPS-LCD Using a Glass Substrate and an Anisotropic Polymer Film

  25. 本文提出了一种新的TN型液晶器件扩大视角的方法,即对玻璃基板上的取向层沿一特定的曲线摩擦,以这样的基板构造液晶屏。

    A novel method to extend the viewing angle of TN-LCD was proposed , as constructing the LCD cells with substrates which are of curvature rubbing pattern , we named this novel LCD cells as CR-TN.

  26. 它在玻璃基板上覆盖两层透明并且均匀的导电层,用作X面板和Y面板,当有物体触摸屏幕时,两层导电膜接触,其输出电压信号与触摸点到边缘的距离成正比。

    Glass substrate is covered with two layers of transparent and uniform conductive films , which are used as X-Plate and Y-Plate respectively . The two layers will contact when something touches the screen . The output voltage is proportional to the distance between touch point and the edge .

  27. LCoS芯片融合了液晶技术和集成电路技术的独特优点,采用特殊的工艺手段,在硅基板和玻璃基板之间注入液晶封装而成。

    Combining the unique advantages of liquid crystal technology and integrated circuit technology , adopting the special technology , LCoS chip is made by injecting liquid crystal between silicon substrate and glass substrate .

  28. 采用溶胶凝胶法镀膜技术在玻璃基板上用高折射率TiO2和低折射率SiO2材料交替镀1/4波长膜层,形成高反射膜系,制备了汽车亲水性后视镜。

    Wavelength films are deposited alternatively on glass substrate by sol-gel processing with high and low refractive index material , TiO 2 and SiO 2 . Because of its high reflection this kind of film system is used to prepare hydrophilic rearview mirror .

  29. 结果表明:当喷涂距离为5cm和10cm时,玻璃基板表面形成电阻较高、反射率较低的较疏松薄膜。

    It is found that when the spraying distance was 5 cm and 10 cm , only a loose titanium nitride film with high electrical resistance and low reflectance was obtained .

  30. 利用相差显微镜、三维形貌测量仪对聚甲基丙烯酸甲酯超支化聚(酯酰胺)(PMMAHBP)共混物薄膜在玻璃基板作用下的相分离行为进行了研究。

    Using phase contrast microscope , the evolution of the phase separation was investigated for poly ( methyl methacrylate )( PMMA ) / hyperbranched poly ( ester amide )( HBP ) blend thin films on glass substrates .