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    • 81. 发明授权
    • Digital camera and exposure condition determining method
    • 数码相机和曝光条件确定方法
    • US07702230B2
    • 2010-04-20
    • US11465130
    • 2006-08-17
    • Takayuki Kijima
    • Takayuki Kijima
    • G02B7/28G03B7/099G03B3/00G03B13/00H04N5/232
    • G03B7/095G03B13/32H04N5/23212H04N5/238
    • To provide a digital camera capable of causing a focus sensor to detect a focus while outputting to an image sensor image data for providing appropriate exposure after having adjusted an aperture ratio of an aperture in an image capture optical system such that appropriate exposure is achieved. A digital camera divides light from a subject having passed through an aperture into two beams of light; causes one of the beams to enter the image sensor to thus cause the image sensor to capture a subject image; and causes the other beam to enter the focus sensor to thus cause the focus sensor to detect a focus from the other beam of light. The digital camera adjusts an aperture ratio of the aperture such that the quantity of the other beam reaches the minimum quantity of light at or above which the focus sensor can detect a focus.
    • 为了提供能够使焦点传感器检测焦点的数字照相机,同时在调整了图像拍摄光学系统中的孔径的开口率以便实现适当的曝光之后输出到图像传感器用于提供适当曝光的图像数据。 数码相机将来自经过孔的被摄体的光分成两束光; 导致一个光束进入图像传感器,从而使图像传感器捕获被摄体图像; 并使其他光束进入聚焦传感器,从而使聚焦传感器从另一束光束检测焦点。 数码相机调整孔径的孔径比,使得另一束光束的量达到等于或高于焦点传感器可以检测焦点的最小光量。
    • 82. 发明授权
    • Secondary battery
    • 二次电池
    • US07700228B2
    • 2010-04-20
    • US11495719
    • 2006-07-31
    • Toshio TakeshitaYoichi MiyajimaHiroaki SatoAtsushi TakahashiNaoki Kamaya
    • Toshio TakeshitaYoichi MiyajimaHiroaki SatoAtsushi TakahashiNaoki Kamaya
    • H01M6/12G03B3/00
    • H01M10/0565H01M2/0404H01M2/1061H01M2/204H01M6/42H01M10/058H01M10/46
    • A secondary battery for electronic appliance to be installed in an electronic appliance, thereby feeding an electric power to the electronic appliance is disclosed, which includes a cell stack of plural battery cells in each of which a positive electrode, a negative electrode and an electrolyte are accommodated in a pack, and a positive electrode terminal and a negative electrode terminal from the positive electrode and the negative electrode, respectively are lead out from the same side face of the pack, the battery cells being stacked such that the respective positive electrode terminals and negative electrode terminals are faced in the same direction; a metallic battery can in which one opening from which the cell stack is inserted is formed and which accommodates the cell stack therein such that the side face from which the respective positive electrode terminals and negative electrode terminals are lead out is faced towards the opening side; and a lid made of a synthetic resin in which terminal parts to be connected to the electrodes of the electronic appliance upon being connected to the respective positive electrode terminals and negative electrode terminals and being faced outwardly are provided and which plugs the opening of the battery can.
    • 公开了一种电子设备的二次电池,其安装在电子设备中,从而向电子设备供电,其中包括:正电极,负电极和电解质中的多个电池单体的电池组 并且分别从正极和负极的正极端子和负极端子从组件的同一侧面引出,电池单元被堆叠成使得各个正极端子和 负电极端子面向相同的方向; 形成插入有电池组的一个开口的金属电池罐,并且容纳电池组,使得各个正极端子和负极端子从该侧面朝向开口侧; 以及由合成树脂制成的盖子,其中,连接到各个正极端子和负极端子并且面向外的要连接到电子设备的电极的端子部分被设置并且插入电池壳体的开口 。
    • 83. 发明授权
    • Auto-focus with lens vibration
    • 自动对焦镜头振动
    • US07697831B1
    • 2010-04-13
    • US11676991
    • 2007-02-20
    • Richard TsaiSarah Salemi
    • Richard TsaiSarah Salemi
    • G03B3/00G03B13/00
    • G03B3/00G02B7/38G03B13/36H04N5/23212
    • An improved approach to focusing a camera is provided. In one embodiment, a method of adjusting a focus of a camera includes translating a lens to a first position. The lens is vibrated relative to the first position, and a first image is captured on an image sensor while the lens is vibrated relative to the first position. A first sharpness score associated with the first image is calculated. The method also includes translating the lens to a second position. The lens is vibrated relative to the second position, and a second image is captured on the image sensor while the lens is vibrated relative to the second position. A second sharpness score associated with the second image is calculated. The first and second sharpness scores may be compared, and one of the first or second positions may be selected based on the comparison.
    • 提供了一种改进的聚焦摄像机的方法。 在一个实施例中,调整相机的焦点的方法包括将透镜转换到第一位置。 透镜相对于第一位置振动,并且当透镜相对于第一位置振动时,第一图像被捕获在图像传感器上。 计算与第一图像相关联的第一锐度得分。 该方法还包括将透镜转换到第二位置。 透镜相对于第二位置振动,并且当透镜相对于第二位置振动时,第二图像被捕获在图像传感器上。 计算与第二图像相关联的第二锐度得分。 可以比较第一和第二锐度得分,并且可以基于比较来选择第一或第二位置之一。
    • 84. 发明授权
    • Projector and focus adjustment method
    • 投影机和对焦调整方法
    • US07690797B2
    • 2010-04-06
    • US11447144
    • 2006-06-06
    • Hideaki Higashi
    • Hideaki Higashi
    • G03B21/14G03B3/00
    • G03B21/53H04N9/317H04N9/3185
    • A transportable projector includes a focus adjustment unit for moving a focus lens in a projection lens, an acceleration sensor for detecting acceleration in a direction along an optical axis of the projection lens in the projector, a determination unit for determining whether the projector is in a stationary state or in a moving state in accordance with an output of the acceleration sensor and for respectively determining the direction to which the projector has moved and the distance that the projector has moved in accordance with an output of the acceleration sensor, and a control unit for controlling movement of the focus lens by the focus adjustment unit in accordance with the determined direction and the determined distance of the projector.
    • 可移动投影仪包括用于移动投影透镜中的聚焦透镜的焦点调节单元,用于检测在投影仪中沿着投影透镜的光轴的方向上的加速度的加速度传感器,确定单元,用于确定投影仪是否在 并且根据加速度传感器的输出,分别确定投影机已经移动的方向和投影仪已经移动的距离,以及控制单元 用于根据确定的方向和所确定的投影仪的距离来控制由聚焦调节单元进行的聚焦透镜的移动。
    • 86. 发明申请
    • PROJECTOR AND CONTROL METHOD OF PROJECTOR
    • 投影机投影机和控制方法
    • US20100026972A1
    • 2010-02-04
    • US12497804
    • 2009-07-06
    • Eiji Kaneko
    • Eiji Kaneko
    • G03B3/00
    • G03B3/00
    • A projector which projects projection light representing an image onto a projection surface, includes: a focus adjusting unit which shifts focus of the projection light according to operation by a user; an adjustment image projecting unit which projects an adjustment image containing a portion representing a predetermined pattern by the projection light; an imaging unit which shoots the projection surface to which the adjustment image is projected; a specifying unit which specifies a focusing condition of the focus on the projection surface by analyzing image data that is shot by the imaging unit; and a condition indicating unit which displays the specified focusing condition.
    • 将投影光投射到投影表面上的投影仪,包括:聚焦调整单元,其根据用户的操作移动投影光的焦点; 调整图像投影单元,其通过投影光投射包含表示预定图案的部分的调整图像; 成像单元,其拍摄调节图像投影到其上的投影面; 指定单元,其通过分析由所述成像单元拍摄的图像数据来指定所述焦点的聚焦状态; 以及条件指示单元,其显示指定的聚焦条件。
    • 87. 发明授权
    • Projector
    • 投影机
    • US07635190B2
    • 2009-12-22
    • US11507302
    • 2006-08-21
    • Kunihisa Nakamura
    • Kunihisa Nakamura
    • G03B21/14G03B3/00G03B21/22G02B7/02
    • G03B5/02G03B21/142
    • A projector includes a light source, an optical modulation device to form an optical image, a projection optical device, and a projection position adjusting device to adjust the projection position. The projection position adjusting device includes a fixed member, a moving member a dial knob, a drive mechanism that transmit rotation of the dial knob, and a reference position detecting mechanism. The reference position detecting mechanism includes a spiral rail guiding section having a groove shape provided to a side face of the dial knob adjacent to the fixed member, along the rotational direction of the dial knob, a sliding section that slides in the guiding section with the rotation of the dial knob, and an engaging section provided to the guiding section, and engages with the sliding section upon the projection position of the projection optical device reaching the projection reference position.
    • 投影仪包括光源,用于形成光学图像的光调制装置,投影光学装置和投影位置调整装置,以调整投影位置。 投影位置调整装置包括固定构件,移动构件拨盘旋钮,传递拨盘旋钮的驱动机构和基准位置检测机构。 基准位置检测机构包括螺旋导轨引导部,其沿着拨盘旋钮的旋转方向具有设置在与该固定部件相邻的拨盘旋钮的侧面的槽形状,滑动部,其在引导部中滑动, 拨号旋钮的旋转,以及设置在引导部上的卡合部,在投影光学装置的投影位置到达投影基准位置时,与滑动部接合。