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    • 4. 发明申请
    • ARRAY OF MICROMIRROR ARRAY LENSES
    • 微阵列阵列阵列
    • WO2005119332A2
    • 2005-12-15
    • PCT/US2005018529
    • 2005-05-27
    • STEREO DISPLAY INCANGSTROM INCKIM TAE HYEONBAEK SANG HYUNE
    • KIM TAE HYEONBAEK SANG HYUNE
    • G02B26/00G02B26/08G02B27/10
    • G02B26/0833
    • An array of micromirror array lenses is invented. The micromirror array lens consists of many micromirrors and actuating components. Each micromirror array lens is variable focal length lens with high speed focal length change. The lens can have arbitrary type and/or size as desired and desired arbitrary optical axis and can correct aberration by controlling each micromirror independently. Independent control of each micromirror is possible by known microelectronics technologies. The actuating components control the positions of micromirrors electrostatically and/or electromagnetically. The optical efficiency of the micromirror array lens is increased by locating a mechanical structure upholding micromirrors and the actuating components under micromirrors. The known microelectronics technologies remove the loss in effective reflective area due to electrode pads and wires.
    • 发明了一种微镜阵列透镜阵列。 微镜阵列透镜由许多微镜和致动部件组成。 每个微镜阵列透镜是具有高速焦距变化的可变焦距透镜。 透镜可以根据需要和期望的任意光轴具有任意类型和/或尺寸,并且可以通过独立地控制每个微镜来校正像差。 通过已知的微电子技术可以实现每个微镜的独立控制。 致动部件静电和/或电磁控制微镜镜头的位置。 微镜阵列透镜的光学效率通过将保持微镜和致动部件的机械结构定位在微镜下来增加。 已知的微电子技术消除了由于电极焊盘和电线导致的有效反射面积的损失。
    • 5. 发明申请
    • VARIABLE FOCAL LENGTH LENS COMPRISING MICROMIRRORS
    • 可变焦距镜头包含微型机
    • WO2006052908A3
    • 2006-10-19
    • PCT/US2005040329
    • 2005-11-08
    • STEREO DISPLAY INCANGSTROM INCKIM TAE HYEONBAEK SANG HYUNE
    • KIM TAE HYEONBAEK SANG HYUNE
    • G02B26/00G02B7/32G02B26/08G02B26/10G02B27/40G02F1/29
    • G02B26/085G02B3/00G02B7/32G02B17/0694G02B26/0833G02B26/0841G02B26/105G02B27/0068G02B27/40
    • A variable focal length lens (121) consists of many micromirrors (122) with degrees of freedom rotation and/or degrees of freedom translation and actuating components. As operating methods for the lens, the actuating components control the positions of micromirrors (122) electrostatically and/or elec­tromagnetically. The optical efficiency of the variable focal length lens is increased by locating a mechanical structure upholding micromirrors and the actuating components under micromirrors. The lens (121) can correct aberration by controlling each micromirror independently. The lens (121) can also be of a desired arbitrary shape and/or size. The micromirrors (122) are arranged in a flat plane or in a curved plane with a predetermined curvature. The electrodes determining the position of the micromirrors can be made of material with high electrical conductivity, preferably metal. The surface material of the micromirror is made of a material with high reflectivity such as aluminum, silver, and gold, which are coated with multi-layer dielectric material or antioxidant.
    • 可变焦距透镜(121)由许多具有自由度旋转和/或自由度平移和致动部件的微镜(122)组成。 作为透镜的操作方法,致动部件静电和/或电磁地控制微镜(122)的位置。 可变焦距透镜的光学效率通过将保持微镜和致动部件的机械结构定位在微镜下来增加。 透镜(121)可以通过独立地控制每个微镜来校正像差。 透镜(121)也可以是期望的任意形状和/或尺寸。 微镜(122)被布置在具有预定曲率的平面或弯曲平面中。 确定微镜的位置的电极可以由具有高导电性的材料制成,优选由金属制成。 微镜的表面材料由具有高反射率的材料制成,例如铝,银和金,其涂覆有多层电介质材料或抗氧化剂。
    • 6. 发明申请
    • 3D TELEVISION BROADCASTING SYSTEM
    • 3D电视广播系统
    • WO2006014469A3
    • 2006-06-15
    • PCT/US2005023921
    • 2005-07-06
    • STEREO DISPLAY INCANGSTROM INCCHO GYOUNG ILKIM TAE HYEONGIM DONG WOOSEO CHEONG SOO
    • CHO GYOUNG ILKIM TAE HYEONGIM DONG WOOSEO CHEONG SOO
    • H04N13/04
    • G02B27/2271G02B3/14H04N13/0059H04N13/0207H04N13/042
    • Television broadcasting systems (Figure 1, element 30) of this invention comprise an imaging system (32), and transmission system (90), and a displaying system (100). The imaging system (32) captures two-dimensional images of an object at different focal plane, and generates an all-in-focused image and depth profile. A data signal carrying the image data is generated and transmitted over a broadcasting system (90) compatible with commercial two-dimensional television broadcasting, cable, and/or alternative systems. The depth profile is transmitted by using vacant space in video/audio signal within the allocated channel bandwidth. The data signal is received by the displaying system (100) and the extracts the all-in-focused image (82) and depth information (84) from the data signal. The object is restored from all-in-focused image and depth profile and displayed on the displaying system (100) as a three-dimensional spatial image (98). Viewers having conventional two-dimensional display device (96) can watch enhanced two-dimensional images.
    • 本发明的电视广播系统(图1,元件30)包括成像系统(32)和传输系统(90)和显示系统(100)。 成像系统(32)捕获不同焦平面处的物体的二维图像,并且生成全焦点图像和深度轮廓。 携带图像数据的数据信号通过与商业二维电视广播,电缆和/或替代系统兼容的广播系统(90)生成和发送。 通过在分配的信道带宽内的视频/音频信号中使用空闲空间来发送深度分布。 数据信号由显示系统(100)接收,并且从数据信号中提取全焦点图像(82)和深度信息(84)。 该对象从全焦点图像和深度分布中恢复,并在显示系统(100)上显示为三维空间图像(98)。 具有常规二维显示设备(96)的观看者可以观看增强的二维图像。
    • 7. 发明申请
    • VARIABLE FOCAL LENGTH LENS COMPRISING MICROMIRRORS
    • 包含微反射镜的可变焦距透镜
    • WO2006052908B1
    • 2006-12-14
    • PCT/US2005040329
    • 2005-11-08
    • STEREO DISPLAY INCANGSTROM INCKIM TAE HYEONBAEK SANG HYUNE
    • KIM TAE HYEONBAEK SANG HYUNE
    • G02B26/00G02B7/32G02B26/08G02B26/10G02B27/40G02F1/29
    • G02B26/085G02B3/00G02B7/32G02B17/0694G02B26/0833G02B26/0841G02B26/105G02B27/0068G02B27/40
    • A variable focal length lens (121) consists of many micromirrors (122) with degrees of freedom rotation and/or degrees of freedom translation and actuating components. As operating methods for the lens, the actuating components control the positions of micromirrors (122) electrostatically and/or elec­tromagnetically. The optical efficiency of the variable focal length lens is increased by locating a mechanical structure upholding micromirrors and the actuating components under micromirrors. The lens (121) can correct aberration by controlling each micromirror independently. The lens (121) can also be of a desired arbitrary shape and/or size. The micromirrors (122) are arranged in a flat plane or in a curved plane with a predetermined curvature. The electrodes determining the position of the micromirrors can be made of material with high electrical conductivity, preferably metal. The surface material of the micromirror is made of a material with high reflectivity such as aluminum, silver, and gold, which are coated with multi-layer dielectric material or antioxidant.
    • 可变焦距透镜(121)由许多具有自由度旋转和/或自由度平移和致动部件的微镜(122)组成。 作为镜头的操作方法,致动部件以静电和/或电磁方式控制微镜(122)的位置。 可变焦距透镜的光学效率通过定位将微反射镜和致动部件固定在微反射镜下的机械结构而增加。 透镜(121)可以通过独立控制每个微镜来校正像差。 透镜(121)也可以具有期望的任意形状和/或尺寸。 微反射镜(122)被布置在平面或具有预定曲率的弯曲平面中。 确定微镜位置的电极可以由具有高导电性的材料制成,优选金属。 微镜的表面材料由具有高反射率的材料制成,例如涂有多层介电材料或抗氧化剂的铝,银和金。
    • 8. 发明申请
    • TWO-DIMENSIONAL IMAGE PROJECTION SYSTEM
    • 二维图像投影系统
    • WO2006020629A4
    • 2012-02-02
    • PCT/US2005028250
    • 2005-08-09
    • STEREO DISPLAY INCANGSTROM INCCHO GYOUNG ILKIM TAE HYEONSEO CHEONG SOO
    • CHO GYOUNG ILKIM TAE HYEONSEO CHEONG SOO
    • G02B26/00G09G3/34
    • G09G3/346G09G2330/08H04N9/3161H04N9/3173H04N9/3194
    • A two-dimensional image projection device using array of micromirror array lenses and a random scanning technique is invented. Using the random scanning technique, the light efficiency is nearly doubled than that of the prior art. The invention makes a brighter and less power consuming display device possible. Because each micromirror array lens of array of micromirror array lenses can scan whole image plane, a fast self diagnosis and correction technique can be introduced in displaying device. The Self diagnosis and correction technique makes display device to maintain image quality even a few tens percent of micromirrors do not work properly. Owing to the scanning characteristics of micromirror array lens, the image projection device can express the same number of pixels image with less number of micromirrors than the prior art. This also enables small sized two-dimensional image projector, which can be incorporated in portable electronic equipments.
    • 发明了使用微镜阵列透镜阵列和随机扫描技术的二维图像投影装置。 使用随机扫描技术,光效率比现有技术几乎增加了一倍。 本发明使得可以使用更亮更少功耗的显示装置。 由于微镜阵列透镜阵列的每个微镜阵列透镜都能扫描整个图像平面,所以可以在显示装置中引入快速的自我诊断和校正技术。 自诊断和校正技术使得显示设备保持图像质量,即使几十%的微镜不能正常工作。 由于微镜阵列透镜的扫描特性,图像投影装置可以以比现有技术少的微镜数量表示相同数量的像素图像。 这也使得能够并入便携式电子设备的小尺寸二维图像投影仪。