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    • 1. 发明授权
    • Projection apparatus
    • 投影仪
    • US08649101B2
    • 2014-02-11
    • US12859574
    • 2010-08-19
    • Yi-Hao KangYi-Hsueh ChenChing-Yi Chen
    • Yi-Hao KangYi-Hsueh ChenChing-Yi Chen
    • G02B3/00G02B9/00
    • G02B13/18G02B13/16
    • A projection apparatus includes an illumination system providing an illumination light beam, a light valve disposed in a transmission path of the illumination light beam and converting the illumination light beam into an image light beam, a projection lens disposed in a transmission path of the image light beam, a first field lens, and a second field lens. The first field lens and the second field lens are disposed between the light valve and the projection lens and in the transmission paths of the illumination light beam and the image light beam. The first field lens is a positive meniscus lens with a first concave surface facing the projection lens. The second field lens is a positive meniscus lens with a second concave surface adjacent to the first field lens. The projection apparatus is capable of reducing a ghost image.
    • 投影装置包括提供照明光束的照明系统,设置在照明光束的传输路径中并将照明光束转换为图像光束的光阀,设置在图像光的传输路径中的投影透镜 光束,第一场透镜和第二场透镜。 第一场透镜和第二场透镜设置在光阀和投影透镜之间以及照明光束和图像光束的传输路径中。 第一场透镜是具有朝向投影透镜的第一凹面的正弯月透镜。 第二场透镜是具有与第一场透镜相邻的第二凹面的正弯月透镜。 投影装置能够减少重影。
    • 5. 发明申请
    • ABBE PRISM LENS WITH IMPROVED FOCUS AND REDUCED FLAIR
    • ABBE PRISM镜片具有改进的焦点和减少的FLAIR
    • US20100290134A1
    • 2010-11-18
    • US12467838
    • 2009-05-18
    • Rong Yaw WUYen-Chieh ChenShih Che ChenChing Yi Chen
    • Rong Yaw WUYen-Chieh ChenShih Che ChenChing Yi Chen
    • G02B3/02G02B5/04
    • G02B5/045G02B3/005G02B3/0068G02B3/04G02B17/045
    • An Abbe prism lens and lens array are disclosed. The lens comprises front lenses disposed on a front surface of the Abbe prism, rear lenses disposed on a rear surface of the Abbe prism, a front bottom reflecting surface, a rear bottom reflecting surface, a left top reflecting surface, and a right top reflecting surface. An aperture cover is positioned over the front surface of the Abbe prism lens and a field cover is positioned over the rear surface of the Abbe prism lens. The aperture cover comprises aperture holes encircling the aspherical front lenses. The field cover comprises field holes encircling the aspherical rear lenses. Light enters the Abbe prism lens and reflects off the front bottom reflecting surface, reflects off the left top reflecting surface and the right top reflecting surface, reflects off the rear bottom reflecting surface, and exits the rear lens of the Abbe prism lens.
    • 公开了一种阿贝棱镜透镜阵列。 透镜包括设置在阿贝棱镜的前表面上的前透镜,设置在阿贝棱镜后表面的后透镜,前底反射面,后底反射面,左上反射面和右上反射面 表面。 孔盖位于阿贝棱镜透镜的前表面上,场盖位于阿贝棱镜透镜后表面上。 孔盖包括围绕非球面前透镜的孔眼。 场盖包括围绕非球面后透镜的场孔。 光进入阿贝棱镜,反射离开前下反射面,反射离开左上反射面和右上反射面,反射出后底反射面,离开阿贝棱镜透镜后透镜。
    • 6. 发明申请
    • SYMETRICAL LENS ARRAY WITH IMPROVED DEPTH OF FIELD, ENHANCED UNIFORMITY, AND BRIGHTNESS
    • SYMETRICAL LENS ARRAY WITH IMPROVED OF DEPTH OF FIELD,ENHANCED UNIFORMITY,AND BRIGHTNESS
    • US20100046081A1
    • 2010-02-25
    • US12195472
    • 2008-08-21
    • Rong-Yaw WuShih Che ChenChing Yi Chen
    • Rong-Yaw WuShih Che ChenChing Yi Chen
    • G02B27/10
    • G02B3/0062G02B3/005G02B3/0068
    • A symmetrical lens array comprising two identical covers, two identical lens sections, and a middle holder. Each lens section comprises a plurality of lenses disposed on the top and bottom of the lens section. The lens array is assembled with the middle holder positioned between the two lens sections. The two covers are positioned one cover on the top of the upper lens section and one cover positioned on the bottom of the lower lens section. Mating elements of the covers, lens sections, and the middle holder mate to allow the components to attach and be held together. Since each lens section is identical and each cover is identical the same lens section tooling is used for all lens sections and the same cover tooling is used for all covers.
    • 对称透镜阵列,包括两个相同的盖,两个相同的透镜部分和中间支架。 每个透镜部分包括设置在透镜部分的顶部和底部的多个透镜。 透镜阵列与位于两个透镜部分之间的中间支架组装在一起。 两个盖子位于上部透镜部分的顶部上的一个盖子和位于下部透镜部分的底部的一个盖子。 盖子,透镜部分和中间支架的配合元件配合以允许部件附接并保持在一起。 由于每个透镜部分是相同的,并且每个盖子是相同的,相同的透镜部分工具用于所有透镜部分,并且相同的盖子工具用于所有盖子。
    • 7. 发明授权
    • Process tool throughput monitoring system and method
    • 过程工具吞吐量监控系统和方法
    • US06907306B2
    • 2005-06-14
    • US10445728
    • 2003-05-27
    • Chiung-Fang HsiehLong-Fan LinChing-Yi ChenChing-Feng YehChi-Yung LiuShu-Shung Lin
    • Chiung-Fang HsiehLong-Fan LinChing-Yi ChenChing-Feng YehChi-Yung LiuShu-Shung Lin
    • G06F19/00
    • G06Q10/06G05B2219/36103G05B2219/45031H01L21/67276
    • A process tool monitoring system is disclosed including a retrieving module, a calculating module, and an output module. The retrieving module retrieves parameter data from a process tool. Where the process tool is a furnace, the parameter data may include furnace temperature data, times of day that wafers were loaded into the furnace, and times of day that wafers were unloaded from the furnace. The retrieving module stores the parameter data in a database, and the calculating module accesses the parameter data within the database, and calculates a present throughput data dependent upon the parameter data, wherein the present throughput data is indicative of a present throughput of the process tool. The output module provides the present throughput data to an operator of the process tool. The process tool monitoring system may be used to monitor multiple process tools, and to compare the throughputs of the multiple process tools.
    • 公开了一种处理工具监控系统,包括检索模块,计算模块和输出模块。 检索模块从进程工具检索参数数据。 当处理工具是炉子时,参数数据可以包括炉温度数据,晶片装载到炉中的时间以及从炉子卸载晶片的时间。 检索模块将参数数据存储在数据库中,并且计算模块访问数据库内的参数数据,并根据参数数据计算当前吞吐量数据,其中当前吞吐量数据表示处理工具的当前吞吐量 。 输出模块向处理工具的操作者提供当前的吞吐量数据。 过程工具监控系统可用于监控多个过程工具,并比较多个过程工具的吞吐量。
    • 8. 发明授权
    • Light-emitting diode packaging structure of low angular correlated color temperature deviation
    • 发光二极管封装结构的低角度相关色温偏差
    • US08552456B1
    • 2013-10-08
    • US13491255
    • 2012-06-07
    • Ching-Cherng SunChing-Yi ChenChih-Yu Chiu
    • Ching-Cherng SunChing-Yi ChenChih-Yu Chiu
    • H01L33/00
    • H01L33/505H01L33/58H01L2924/0002H01L2924/00
    • A light-emitting diode (LED) packaging structure having low angular correlated color temperature deviation includes: a substrate, a LED chip, a phosphor body, and a transparent lens. The LED chip is disposed on the substrate, and the phosphor body includes a hemisphere body and an extension part extended from the bottom of the hemisphere body. The phosphor body is disposed on the substrate and covers the LED chip. Besides, the transparent lens is disposed outside the phosphor body to cover the phosphor body to increase light extraction efficiency. With the implementation of the present invention, the setup of the extension part makes a longer vertical distance between the LED chip and the top of the phosphor body, so that the light in the normal direction of the LED chip can have a longer optical length, thereby to reduce the angular correlated color temperature deviation.
    • 具有低角度相关色温偏差的发光二极管(LED)封装结构包括:基板,LED芯片,荧光体和透明透镜。 LED芯片设置在基板上,荧光体包括半球体和从半球体的底部延伸的延伸部。 荧光体设置在基板上并覆盖LED芯片。 此外,透明透镜设置在荧光体的外侧,以覆盖荧光体以提高光提取效率。 通过本发明的实现,扩展部的设置使得LED芯片和荧光体的顶部之间的垂直距离更长,使得LED芯片的法线方向的光可以具有更长的光学长度, 从而减小角度相关色温偏差。