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    • 23. 发明授权
    • Substrate having channel portion including chambers, and method of transferring liquid by using the substrate
    • 具有包括腔室的通道部分的基板,以及通过使用基板传送液体的方法
    • US08168444B2
    • 2012-05-01
    • US12595077
    • 2008-04-04
    • Nobuhiko OzakiTomohiro Yamamoto
    • Nobuhiko OzakiTomohiro Yamamoto
    • B01L3/00
    • G01N35/10G01N2035/0449G01N2035/1034Y10T436/25Y10T436/2575
    • A substrate having a channel portion in which a liquid transfers, wherein, even if the channel portion has no micro-channel interconnecting chambers, a liquid can transfer stepwise from one region to the next region according to the speed of rotation of the substrate. The substrate can be rotated about a rotation axis as the center, and has the channel portion including the chambers formed therein. The inner wall of each chamber has a first area including an area intersecting with a centrifugal direction from the center; and also has a second area placed at a position farther from the center than the first area, and including a surface intersecting with the centrifugal direction from the center. Further, the first area has a region for holding a droplet of a liquid provided; and also has a region where a contact with the droplet expands when the substrate is rotated, and that communicate with the second area.
    • 具有液体转移的通道部分的基板,其中即使通道部分没有微通道互连室,液体也可以根据基板的旋转速度从一个区域逐步转移到下一个区域。 基板可以围绕作为中心的旋转轴线旋转,并且具有包括形成在其中的室的通道部分。 每个室的内壁具有第一区域,其包括从中心与离心方向相交的区域; 并且还具有放置在比第一区域更远离中心的位置的第二区域,并且包括从中心与离心方向相交的表面。 此外,第一区域具有用于保持设置的液体的液滴的区域; 并且还具有当基板旋转时与液滴的接触膨胀并且与第二区域连通的区域。
    • 25. 发明申请
    • Seal structure
    • 密封结构
    • US20090200756A1
    • 2009-08-13
    • US12319461
    • 2009-01-06
    • Tomohiro Yamamoto
    • Tomohiro Yamamoto
    • F16J15/06
    • B60H1/00571B60H2001/00635
    • A seal structure is disclosed, wherein a casing 10 has an annular protrusion 11 making up a hole-formed portion of a through hole 12. The portion of a joint member 30 around a joint body 31 is wound with a band-shaped seal member 60. A first peripheral end portion 60a and a second peripheral end portion 60b of the seal member 60 are formed progressively upward in the direction from the engine compartment to the passenger compartment. In the process of inserting the joint body 31 and the seal member 60 into the through hole 12 of the casing 10, the first peripheral end portion 60a and the second peripheral end portion 60b of the seal member 60 are butted against each other in the peripheral direction. As a result, a gap is difficult to form between the first peripheral end portion 60a and the second peripheral end portion 60b.
    • 公开了一种密封结构,其中壳体10具有构成通孔12的孔形部分的环形突起11.接头构件30围绕接头本体31的部分缠绕有带状密封构件60 密封构件60的第一周缘部60a和第二周缘部60b沿着从发动机室到乘客室的方向逐渐向上形成。 在将接头体31和密封构件60插入壳体10的通孔12的过程中,密封构件60的第一周缘部60a和第二周边端部60b在周边 方向。 结果,在第一周边端部60a和第二周边端部60b之间难以形成间隙。
    • 29. 发明申请
    • RENDERING DEVICE, RENDERING METHOD, AND RECORDING MEDIUM
    • 渲染设备,渲染方法和记录介质
    • US20140125677A1
    • 2014-05-08
    • US14119288
    • 2012-05-22
    • Tomohiro YamamotoHiroshi IshiguroRyozo Toyoshima
    • Tomohiro YamamotoHiroshi IshiguroRyozo Toyoshima
    • G06T11/20
    • G06T11/203
    • The rendering device defines, based on the width of the line to be rendered on a screen comprising multiple pixels and defined by two points on the screen, an interpolation range for a line segment having its ends at the two points. The rendering device further determines whether a pixel is contained in the interpolation range. Then, the rendering device renders a line formed by the pixels on the line segment and the pixels determined to be contained in the interpolation range. Then, the rendering device can specify the pixels for rendering the line based only on information regarding the line width. Consequently, the amount of information to handle in rendering is reduced and the rendering can be expedited. Furthermore, the amount of information prepared in advance for rendering is reduced and thus the rendering device can be downsized.
    • 渲染设备基于在包括多个像素并且由屏幕上的两个点定义的屏幕上要渲染的线的宽度来定义其两端具有端点的线段的插值范围。 再现装置进一步确定内插范围内是否包含像素。 然后,渲染装置呈现由线段上的像素形成的线和被确定为包含在插值范围内的像素。 然后,渲染设备可以仅基于关于线宽的信息来指定用于渲染线的像素。 因此,渲染中处理的信息量减少,渲染可以加快。 此外,减少了用于渲染的预先准备的信息量,因此可以缩小渲染装置。