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    • 94. 发明授权
    • Liquid immersion type microscope objective lens
    • 液浸型显微镜物镜
    • US06700710B2
    • 2004-03-02
    • US10270058
    • 2002-10-15
    • Katsuya Watanabe
    • Katsuya Watanabe
    • G02B2102
    • G02B21/02G02B21/33
    • A liquid immersion type microscope objective lens includes, in sequence from an object side, a first lens group containing meniscus lenses with their concave surfaces toward an object and having positive refractive power, a second lens group having the positive refractive power, and a third lens group having negative refractive power, wherein a distance from an object surface to a first lens surface of said first lens group is larger than a focal length f of a whole objective lens system, and a radius of curvature r1 of the first lens surface in relation to the focal length f satisfies a relation such as 4
    • 一种液浸式显微镜物镜,从物体侧依次包括:第一透镜组,其具有朝向物体的凹面朝向物体并具有正折光力的第一透镜组;具有正折光力的第二透镜组;以及第三透镜 具有负屈光力的组,其中从所述第一透镜组的物体表面到第一透镜表面的距离大于整个物镜系统的焦距f,并且第一透镜表面的曲率半径r1相对于 焦距f满足4 <| R1 / f | <7的关系。
    • 98. 发明授权
    • Optical disk apparatus
    • 光盘装置
    • US08284642B2
    • 2012-10-09
    • US13152579
    • 2011-06-03
    • Katsuya WatanabeShinichi Yamamoto
    • Katsuya WatanabeShinichi Yamamoto
    • G11B7/00
    • G11B7/08511G11B7/13925G11B2007/0013
    • An optical disk apparatus according to the present invention includes: a controller 111, which receives an instruction that a layer-to-layer jump be performed from a current layer to a target layer; a layer-to-layer jump control section 146, which adjusts a spherical aberration correction value to the target layer and then gets the layer-to-layer jump attempted; a decision section 146 for determining whether the layer-to-layer jump has been carried out successfully; and a layer determining section 146 for determining, if the focus position has been set on a non-target storage layer as a result of the layer-to-layer jump, where the non-target storage layer is located in the optical disk. The layer-to-layer jump control section 146 shifts the focus position of the light beam from that non-target storage layer to the target layer by reference to information indicating which of the multiple storage layers the non-target storage layer is.
    • 根据本发明的光盘装置包括:控制器111,其接收从当前层到目标层执行层到跳转的指令; 层间跳转控制部分146,其向目标层调整球面像差校正值,然后获得尝试的层到层跳转; 用于确定层到层跳转是否已成功执行的判定部分146; 以及层确定部分146,用于确定作为层到层跳转的结果的非目标存储层上的焦点位置是否设置在非目标存储层位于光盘中的位置。 通过参考指示非目标存储层的多个存储层中的哪一个的信息,层到层跳转控制部分146将来自该非目标存储层的光束的聚焦位置移动到目标层。
    • 100. 发明授权
    • Microscope optical system, microscope, and virtual slide forming system
    • 显微镜光学系统,显微镜和虚拟幻灯片成型系统
    • US07957057B2
    • 2011-06-07
    • US12536408
    • 2009-08-05
    • Ichiro SaseKatsuya Watanabe
    • Ichiro SaseKatsuya Watanabe
    • G02B21/00
    • G02B21/32G02B21/002
    • An observation field of view of a microscope can be moved without moving or changing an objective lens and without varying position or state of a sample. A microscope optical system has a mirror that changes the direction of the optical path by reflection and is located in the optical path between an objective lens of the microscope and an image to be observed. The mirror is able to be tilted by changing the position of a reflecting surface of the mirror. Accordingly, the observation field of view is moved by tilting the mirror. In other words, the observation field of view can be moved without changing a positional relationship between the objective lens of the microscope and the sample.
    • 可以移动显微镜的观察视场而不移动或改变物镜,而不改变样品的位置或状态。 显微镜光学系统具有通过反射改变光路的方向并且位于显微镜的物镜与要观察的图像之间的光路中的反射镜。 镜子能够通过改变镜子的反射面的位置来倾斜。 因此,通过倾斜反射镜来移动观察视场。 换句话说,可以移动观察视场而不改变显微镜的物镜与样本之间的位置关系。