But high effective, speedy and exact inspection of ITO patterns is still technical problem.
透明导电薄膜(ITO)是液晶显示器(LCD)的重要组成部分,ITO电极图案是自动光学检测(AOI)系统一个所需着重检测的对象,对其的检测好坏直接关系到LCD生产产品的质量和成品率,在LCD的生产流程中有着非常重要的地位。
Software Design of Automatic Inspection System for ITO Electrode Pattern;
ITO电极图案自动检测系统的软件设计
STUDY OF ORGANIC SOLAR CELLS
有机太阳电池ITO电极质量衡量方法
The Research of Electrochemiluminescence Behavior of Luminol on ITO Electrode;
ITO玻璃电极上鲁米诺电化学发光机理的研究
The Electric Chemical Behavior and Degradation of Methyl-mercuric Chloride at ITO Electrode
氯化甲基汞在ITO电极上的电化学行为及其降解
Electrochemical Behavior of ITO Films during Anodic and Cathodic Polarization in Sodium Hydroxide Solutions
ITO在NaOH溶液中阳极与阴极极化过程的电化学行为
A Study of the Influence of Intensifies on the ECL of Polymerized Luminol on ITO;
增敏剂对ITO电极上电聚合鲁米诺电化学发光的影响研究
Self-assembly Film Based on the ITO Electrode Modified with Nanofibers and Its Electrocatalysis;
基于纤维修饰ITO电极上自组装膜及其电催化性质的研究
Study on preparation of silver nano-particle self-assembled multilayer film modified ITO electrode and its electrochemical behavior
纳米银自组装多层膜修饰铟锡氧化物(ITO)电极的制备及电化学研究
Preparation of ITO Nano Powder by Arc Evaporating and Development of Ultra High Density ITO Target
电弧气化法制备纳米ITO粉末及高密度ITO靶的研制
Study of Transparent & Conductive Indium Tin Oxide (ITO) and ITO Composite Films;
透明导电ITO及其复合薄膜的研究
The Conductivity Mechanism of ITO Film Analyzed by Ultraviolet and Infrared Spectra
ITO薄膜导电机理紫外-红外光谱分析
Studies on Deep Ultraviolet Transparent Conductive Ga_2O_2/ITO/Ga_2O_3 Films
Ga_2O_3/ITO/Ga_2O_3深紫外透明导电膜的研究
Preparation of conductive and transparent ITO film by sol-gel technique
基于溶胶-凝胶法的ITO透光导电膜制备
Fabrication and Characteristics Test of ITO/CuPc/Alq_3/Al Organic Light-emitting Diodes
ITO/CuPc/Alq_3/Al有机发光二极管的制备与特性测试
filling of contours
充实轮廓(电脑图案处理)
ITO Thin Films and Their Fine Patterning by Sol-Gel Process;
溶胶—凝胶法制备ITO薄膜及其微细图形的研究
Preparation and Effect of Passing Electrical Current on Properties of ITO Films
ITO薄膜的制备及通电电流对薄膜特性的影响
The effect of RTA process on optical and electrical characters of E-beam evaporated ITO films
快速热退火对电子束蒸镀的ITO膜光电特性影响
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