LCOS IC Metal Pits Defect Mechanism and Improvement; Stochastic Variability Analysis of Bending Angle in Sheet Metal Laser Forming Process LCOSIC中金属点缺陷的形成机理及改善方法研究金属激光弯曲成形角度的随机变异性分析
LCoS panel itself could not emit light, so it needs to rely on external light source. 硅晶微显示屏幕本身并不能发光,故需要依赖外来光源。
This result will make a difference for the research of LCOS, and provide scientific basis for production. 该结果对硅基液晶显示研究具有一定的意义,为实际生产提供理论依据。
On the design basis of two orthogonal direction output, polarization interference filter, this paper focus on the color separation and combination module used for the LCOS projection display. 在介绍任意形状双通道偏振正交输出双折射晶体的偏振干涉滤光片基础上,讨论了LCOS液晶投影仪分色与合色系统基本结构,设计了分合色为一体的新型光引擎。
The Application of LCOS Projection Display Based on the LED Lighting Design 基于LCOS投影显示的LED照明设计与应用
According to the characters of LCOS display and the various input video signal, the functions of the interface circuit are summarized. 根据LCOS显示以及各种输入视频信号的特点,总结了LCOS接口电路的功能特点。
Design and Implementation of High Resolution Color Head Mounted Display Circuit System Based on LCoS 高分辨率彩色LCoS头盔显示器电路系统的设计与实现
LCOS is a rising micro display technology which is the only one without monopolization. LCOS技术作为一种新兴的微显示技术,是目前世界上唯一没有垄断性专利的技术。
As the reflective electrode of LCoS, aluminum film must have higher reflectivity and conductivity. 铝膜作为LCoS的反射电极,要求有较高的反射率和电导率。
A scrolling color LCoS ( liquid crystal on silicon) display must exhibit both fast speed and high contrast. 卷帘式彩色LCoS(硅上液晶)显示必须展现其快速和高对比度两项特性。
The Core of the LCoS& Design Analysis for Display SOC 硅基液晶显示器(LCoS)核心&显示系统芯片的设计分析
Application of DVI to LCoS System DVI在LCoS显示系统中的应用
Color correction and its realization of our LCOS digital image print head are also given in this chapter. 在此基础上完整地阐述了LCOS数码彩色扩印机的颜色校正模型。
Furthermore, the applications prospect and the development trend of LCOS projector are discussed and forecasted as well. 主要分析了LCOS投影显示的关键技术,并对LCOS投影在市场中的应用前景和发展趋势做了进一步的预测。
We report a full color projection display based on a single LCOS panel using LED light sources. 介绍一种以LED作为光源的单片LCOS全彩色投影机。
The design theory, analysis and realization of micro LCOS Projector are studied in detail in this paper. 本文对LCOS投影显示光学系统设计理论、分析方法和系统实现进行了系统的研究。
In the end of this paper, adaptive feedback controlling method is introduced. The principle is analyzed and the feedback algorithm is put forward. The pixel corresponding between LCoS and CMOS and image smoothing was also implemented. 论文的最后重点介绍了自适应反馈控制的方法,对其原理进行了说明,提出了反馈控制的算法,进行了LCoS与CMOS之间的的像素对应、图像平滑等处理,给出了实验结果。
In this paper, based on the LCoS's application in the HMD system, we discuss the structure and the application effect of a polarization beam splitting prism with multi-incidence direction. 本文基于LCoS显示技术在HMD系统上的应用介绍了多入射方向的偏振分光棱镜的结构及其应用效果。
The paper presented programme design of reference voltage source module embedded in LCOS chip and analysed the role of reference voltage. The overall diagram of programme design and low-power of some circuits are given. 本文提出了嵌入LCOS芯片的参考电压源模块的方案设计,分析了参考电压的作用,给出了方案设计的总体框图和部分电路低功耗的实现方法。
Here is introduced a design of liquid crystal on silicon ( LCOS) driver for the digital photofinishing system. 针对基于硅基液晶(LCOS)的数码冲印系统,设计了一种LCOS的驱动电路。
The first is the application of LCoS in the visual-light optical target simulator. 其一是LCoS技术在可见光光学目标模拟器中的应用。
During the accomplishment of optical engine design of LCoS and DMD, its theory and key technologies were mastered. 同时完成了LCoS及DMD的光学引擎方案设计,掌握了光学引擎设计的理论基础及关键技术问题的解决方法。
Liquid Crystal on Silicon ( LCOS) is marriage of flat-panel display and silicon chip technology, so the benefit from both sides; especially in high-resolution and phase modulation have potential advantages. LCOS(硅基液晶)将平板显示技术与硅芯片技术嫁接起来,由此同时从两种技术中获得益处;特别是在实现高分辨率和相位调制上有潜在的优势。
This paper tests liquid crystal cell, LCoS chip and projector which are made by our program. 本论文针对课题组完成的液晶盒、LCoS芯片及投影仪进行测试。
In the end, the realization of color management system in video processing system is studied. Meanwhile, the topics on color conversion and color gamut expansion, the design of LCOS display system and relevant hardware and software are also explored. 最后,对视频处理系统中的色彩管理系统的实现进行了研究,包括相关的色域转换和色彩扩展等内容,研究设计了LCOS显示系统,包括硬件设计和相关的软件设计。
So this dissertation focuses on the design principle and the simulation analysis of the illumination system for LCOS micro-projection system. 本文以基于LCOS微显示芯片的微投影显示照明系统为重点,对照明系统的设计理念和模型的光学追迹结果进行了研究和分析。
Whether DLP or LCOS, projection principle is based on the pixel-array chip. 无论DLP还是LCOS,投影原理以像素阵列芯片为基础。
This thesis includes the following parts: ( 1) An overview of current technologies for the enhancement of dynamic range of solid-state imaging sensors. A new method based on LCoS spatial light modulator is developed and the experimental system is designed. 论文的主要工作有:(1)总结分析了现有扩展固体图像传感器动态范围扩展的基础上,提出了基于空间光调制器(LCoS)扩展固体图像传感器动态范围的方法,并设计完成了实验系统。
The distribution of liquid crystal director determines the modulation effect of LCOS on beam. 液晶指向矢的分布情况决定了LCOS对光束的调制效果。
Projection television, particularly LCOS projection television will be one of the future direction of development. 投影电视尤其是LCOS投影电视将会是未来的发展方向之一。