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    • 58. 发明申请
    • STOP POSITION ADJUSTING DEVICE AND STOP POSITION ADJUSTING METHOD FOR ACCESSOR MECHANISM
    • 停止位置调整装置和停止位置调整方法调整机构
    • US20090231753A1
    • 2009-09-17
    • US12399408
    • 2009-03-06
    • Takeshi SuzukiShinichi Iwata
    • Takeshi SuzukiShinichi Iwata
    • G11B15/68
    • G11B15/688
    • A stop position adjusting device for an accessor mechanism in an information recording device using a recording cartridge, includes: the accessor mechanism; a first moving mechanism; a second moving mechanism; and an image taking section. The accessor mechanism inserts the recording cartridge into a cell and takes out the recording cartridge from the cell. The first moving mechanism moves the accessor mechanism in a first direction. The second moving mechanism moves the accessor mechanism in a second direction different from the first direction. The image taking section is provided on the accessor mechanism and detects a position of a mark provided near the cell. An adjustment of a stop position of the accessor mechanism for the cell is executed based on the position detected by the image taking section.
    • 一种使用记录盒的信息记录装置中的存取机构的停止位置调整装置,包括:存取机构; 第一移动机构; 第二移动机构; 和摄像部分。 存取器机构将记录盒插入单元中并从单元中取出记录盒。 第一移动机构沿着第一方向移动存取器机构。 第二移动机构沿与第一方向不同的第二方向移动存取机构。 图像获取部分设置在存取器机构上,并检测设置在单元附近的标记的位置。 基于由图像拍摄部检测的位置来执行对单元的存取机构的停止位置的调整。
    • 59. 发明授权
    • Copper alloy and method of manufacturing the same
    • 铜合金及其制造方法
    • US07485200B2
    • 2009-02-03
    • US11827860
    • 2007-07-12
    • Masahiko IshidaJunichi KumagaiTakeshi Suzuki
    • Masahiko IshidaJunichi KumagaiTakeshi Suzuki
    • C22F1/08
    • C22C9/00C22F1/08
    • This copper alloy contains at least zirconium in an amount of not less than 0.005% by weight and not greater than 0.5% by weight, includes a first grain group including grains having a grain size of not greater than 1.5 μm, a second grain group including grains having a grain size of greater than 1.5 μm and less than 7 μm, the grains having a form which is elongated in one direction, and a third grain group including grains having a grain size of not less than 7 μm, and also the sum of α and β is greater than γ, and α is less than β, where α is a total area ratio of the first grain group, β is a total area ratio of the second grain group, and γ is a total area ratio of the third grain group, based on a unit area, and α+β+γ=1.
    • 该铜合金至少含有不小于0.005重量%且不大于0.5重量%的锆,包括包含晶粒尺寸不大于1.5μm的晶粒的第一晶粒组,第二晶粒组包括 具有大于1.5μm和小于7μm的粒度的晶粒,具有沿一个方向延伸的形状的晶粒和包括具有不小于7μm的晶粒的晶粒的第三晶粒组,以及总和 α和β大于γ,α小于β,其中α是第一颗粒组的总面积比,β是第二颗粒组的总面积比,γ是总面积比 基于单位面积的第三颗粒组,α+β+γ= 1。
    • 60. 发明申请
    • ZOOM LENS SYSTEM, OPTICAL APPARATUS, AND METHOD FOR ZOOMING
    • 变焦镜头系统,光学装置和变焦方法
    • US20090002844A1
    • 2009-01-01
    • US12139461
    • 2008-06-14
    • Tomoki ItoTakeshi SuzukiHiroshi Yamamoto
    • Tomoki ItoTakeshi SuzukiHiroshi Yamamoto
    • G02B15/177
    • G02B15/177G02B27/646
    • Providing a zoom lens system having excellent optical performance, an optical apparatus, and a method for zooming the zoom lens system. The zoom lens system includes, in order from an object, a first lens group G1 having negative refractive power, a second lens group G2 having positive refractive power, and a third lens group G3 having negative refractive power. Upon zooming from a wide-angle end state W to a telephoto end state T, each distance between adjacent lens groups is varied. The first lens group G1 includes, in order from the object, a front group G1a, and a rear group G1b having negative refractive power. Focusing on the object is carried out by moving the rear group G1b along the optical axis.
    • 提供具有优异的光学性能的变焦透镜系统,光学装置和用于变焦变焦透镜系统的变焦方法。 变焦透镜系统从物体起依次包括具有负折光力的第一透镜组G1,具有正折光力的第二透镜组G2和具有负折光力的第三透镜组G3。 在从广角端状态W变焦到望远端状态T时,相邻透镜组之间的每个距离变化。 第一透镜组G1从物体依次包括具有负屈光力的前组G1a和后组G1b。 通过沿着光轴移动后组G1b来实现对象的聚焦。