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    • 4. 发明授权
    • Imaging device, imaging method, and program
    • 成像装置,成像方法和程序
    • US08582018B2
    • 2013-11-12
    • US13137730
    • 2011-09-08
    • Tsuyoshi FutamiShinichi OhtsuboAtsushi Iwasaki
    • Tsuyoshi FutamiShinichi OhtsuboAtsushi Iwasaki
    • H04N5/232H04N3/00H04N5/238G03B17/00G06K9/40
    • H04N5/23212G02B7/08G02B7/36G03B3/10G03B13/36G03B2205/0061
    • An imaging device includes a detector that repeatedly carries out a series of operation of generating an evaluation value to evaluate the degree of focusing of a position after driving of a lens toward one end part in the drive range of the lens, and detects the evaluation value of a position that is closer to the end part than the position of the evaluation value of the highest degree of focusing and is immediately adjacent or adjacent across a predetermined number of positions to the position of the evaluation value of the highest degree of focusing. The imaging device further includes a drive controller that makes the series of operation be repeatedly carried out toward the other end part in the drive range of the lens, and drives the lens to a position of a degree of focusing not smaller than the detected evaluation value.
    • 一种成像装置,包括检测器,其重复地执行一系列产生评估值的操作,以评估透镜在透镜的驱动范围内的一个端部驱动之后的位置的聚焦程度,并且检测评估值 比最高聚焦度的评估值的位置更靠近端部的位置,并且在预定数量的位置处直接相邻或相邻到最高聚焦度的评估值的位置。 成像装置还包括驱动控制器,其使透镜的驱动范围内的另一端部反复进行一系列的操作,并且将透镜驱动到不小于检测到的评价值的聚焦度的位置 。
    • 5. 发明申请
    • OPTICAL SCANNING PROJECTION MODULE
    • 光学扫描投影模块
    • US20130181109A1
    • 2013-07-18
    • US13733444
    • 2013-01-03
    • INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTE
    • Ming-Chieh CHOUHan-Wei SUYao-Hui LEEYu-Jen WANG
    • H04N3/00
    • H04N3/00H04N9/3129H04N9/317H04N9/3194
    • An optical scanning projection module includes a scanning light component including a plurality of sub light sources and at least one light-splitting element, a main light reflective element, a scanning element and a photosensitive element. Sub light beams of the sub light sources are converged to form a main light beam. One of the sub light beams travels to the light-delivering element to form a partial reflective light beam and a partial penetrating light beam. With a scanning manner, the partial reflective light beam or the partial penetrating light beam is reflected by the scanning element to be an inspection light, and the main light beam is reflected by the scanning element to be a projection light. The photosensitive element outputs a sensing signal according to the inspection light. Thus, the optical scanning projection module controls the operation of the scanning light component according to the sensing signal.
    • 光学扫描投影模块包括包括多个子光源和至少一个光分离元件,主光反射元件,扫描元件和感光元件的扫描光分量。 子光源的子光束会聚以形成主光束。 子光束中的一个传播到光输送元件以形成部分反射光束和部分穿透光束。 通过扫描方式,部分反射光束或部分穿透光束被扫描元件反射为检查光,主光束被扫描元件反射为投影光。 感光元件根据检查光输出感测信号。 因此,光扫描投影模块根据感测信号控制扫描光分量的操作。
    • 7. 发明申请
    • VIBRATION COMPENSATION METHOD FOR IMAGE CAPTURE DEVICE
    • 用于图像捕获装置的振动补偿方法
    • US20090195665A1
    • 2009-08-06
    • US12261724
    • 2008-10-30
    • Ken J. GAUChao-Yu Yang
    • Ken J. GAUChao-Yu Yang
    • H04N3/00
    • H04N5/23248H04N5/23254H04N5/23267H04N5/23277H04N5/372
    • A vibration compensation method for an image capture device comprising calculating the absolute difference values or the squared difference values between each first block of pixels of a base field and a second block of pixels corresponding thereto as well as other neighboring blocks of pixels in a comparison region in a reference field and choosing the interlace process modules of allowing the first block of pixels to interlace with the second block of pixels to form a image block, allowing the first block of pixels to interlace with the other neighboring block of pixels to form an image block and allowing the first block of pixels to interlace with a duplicated first block of pixels to form an image block, to combine an image depending on whether the absolute difference value or the squared difference values is smaller than a preset value or not thereby compensating the vibration factors as an image capture device is capturing an image to obtain a clear image.
    • 一种用于图像捕获装置的振动补偿方法,包括:计算基本场的每个第一像素块和与其对应的第二像素块之间的绝对差值或平方差值以及比较区域中的其它相邻像素块 在参考场中,并且选择允许所述第一像素块与所述第二像素块交错以形成图像块的所述交错处理模块,以允许所述第一像素块与所述另一相邻像素块交织以形成图像 块并且允许第一像素块与复制的第一像素块交织以形成图像块,以根据绝对差值或平方差值是否小于预设值来组合图像,由此补偿 作为图像捕获装置的振动因子正在捕获图像以获得清晰的图像。
    • 9. 发明申请
    • Television set using liquid crystal display apparatus having improved viewing angle
    • 使用具有改善的视角的液晶显示装置的电视机
    • US20080180604A1
    • 2008-07-31
    • US12009928
    • 2008-01-23
    • Kazuhiko OhsawaTetsushi Yoshida
    • Kazuhiko OhsawaTetsushi Yoshida
    • G02F1/1335H04N3/00H04N5/455
    • G02F1/133634G02F1/1396G02F2203/66G02F2413/105
    • A broadcasting receiving apparatus includes a liquid crystal display device including a liquid crystal cell in which a liquid crystal layer that is twist-aligned at 90° and sandwiched between a pair of substrates, first and second polarizing layers arranged to sandwich the cell therebetween so that their absorption axes are set in parallel with directions crossing aligning treatment directions of the substrates at 45°, and viewing angle compensating plates respectively arranged between the polarizing layers and the cell. A total value of retardations in a thickness direction, defined as a value of a product of a phase difference within a plane perpendicular to substrate surfaces of the cell and a layer thickness, of optical layers present between the polarizing layers is set to a value that substantially cancels out a retardation in a liquid crystal layer thickness direction when a saturation voltage is applied to the liquid crystal layer.
    • 一种广播接收装置,包括:液晶显示装置,其具有液晶单元,液晶单元以90°扭曲取向的液晶层夹在一对基板之间,第一和第二偏振层排列成将单元夹在其间,使得 它们的吸收轴被设置成与45°的衬底的对准处理方向交叉的方向和分别设置在偏振层和电池之间的视角补偿板平行。 在偏振层之间存在的光学层的厚度方向上的延迟的总和值被定义为垂直于电池的基板表面的平面内的相位差和层厚度的积的值的值, 当向液晶层施加饱和电压时,基本上消除了液晶层厚度方向的延迟。