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    • 5. 发明授权
    • Cylindrical cosmetic container
    • 圆柱形化妆品容器
    • US08651759B2
    • 2014-02-18
    • US12423179
    • 2009-04-14
    • Kazuo TakahashiTakahiro KusumotoKenichi HiyamaYoshinobu AbeYutaka Mihara
    • Kazuo TakahashiTakahiro KusumotoKenichi HiyamaYoshinobu AbeYutaka Mihara
    • B43K21/08B43K21/00
    • A45D40/00
    • A cylindrical cosmetic container with an inner cap (7) inside a cap (5) fit outside an upper end of a container body (X) uses a first motion resistance at a halfway covering posture to an immediately preceding covering posture and a second motion resistance from the immediately preceding covering posture to a fully cover posture while the container body (X) is covered with the cap (5), in which the inner cap (7) includes a protrusion (7f) to deform towards an outer diameter side while applying the first motion resistance by being pressed into sliding contact with an extending upper end (4c) of the container body (X) and a projection (7d) projecting from an outer circumferential surface for applying the second motion resistance greater than the first motion resistance when a convex rib (4b) moves over the projection (7d).
    • 在容器主体(X)的上端外侧的盖(5)内部具有内盖(7)的圆筒状的化妆品容器,以中间覆盖姿态的第一运动阻力与前一个覆盖姿势和第二运动阻力 当所述容器主体(X)被所述盖(5)覆盖时,所述内盖(7)包括突起(7f),所述突起(7f)在施加时朝向外径侧变形 通过与容器主体(X)的延伸的上端(4c)压入滑动接触的第一运动阻力和从外周面突出的用于施加大于第一运动阻力的第二运动阻力的突起(7d) 凸肋(4b)在突起(7d)上方移动。
    • 6. 发明申请
    • INSPECTION APPARATUS
    • 检查装置
    • US20130271754A1
    • 2013-10-17
    • US13993814
    • 2011-11-09
    • Nobuaki HiroseTakahiro JinguHidetoshi NishiyamaKazuo TakahashiHisashi Hatano
    • Nobuaki HiroseTakahiro JinguHidetoshi NishiyamaKazuo TakahashiHisashi Hatano
    • G01N21/95
    • G01N21/9501G01N21/95623
    • This invention implements reduction in the amount of background-scattered light from a semiconductor wafer surface and highly sensitive inspection, without increasing the number of detectors. A surface inspection apparatus that detects defects on the surface of an object (semiconductor wafer surface) to be inspected, by irradiating the surface of the object with a beam of light such as laser light and detecting the light reflected or scattered from the surface; wherein a widely apertured lens with an optical Fourier transform function is disposed between the object to be inspected and a detector, a filter variable in position as well in aperture diameter is provided on a Fourier transform plane, and background-scattered light from the semiconductor wafer surface is effectively blocked, whereby only a signal from a defect such as a foreign substance is detected.
    • 本发明实现了半导体晶片表面的背景散射光的量的减少和高灵敏度的检查,而不增加检测器的数量。 一种表面检查装置,其通过用诸如激光的光束照射物体的表面来检测从表面反射或散射的光来检测待检查的物体(半导体晶片表面)的表面上的缺陷; 其中具有光学傅里叶变换功能的广泛有孔的透镜设置在待检查对象与检测器之间,在傅里叶变换平面上设置了孔径直径可变的滤光器以及来自半导体晶片的背景散射光 表面被有效地阻挡,从而仅检测到诸如异物的缺陷的信号。
    • 8. 发明申请
    • HEAT-STORAGE DEVICE
    • 储热装置
    • US20120168126A1
    • 2012-07-05
    • US13395366
    • 2010-10-13
    • Yuji TanakaKazuo TakahashiHiromiki Yagi
    • Yuji TanakaKazuo TakahashiHiromiki Yagi
    • F28D15/00
    • F28D20/025F28D2020/0086Y02E60/145
    • Disclosed is a heat-storage device provided with a supply pipe, a discharge pipe, and a heat-storage container that contains a heat-storage material. A heat-storage material layer comprising said heat-storage material is formed in the bottom of the heat-storage container. The supply pipe supplies a heat-carrying oil, which has a lower specific gravity than the heat-storage material, from outside the heat-storage container to the inside of the heat-storage material layer. The discharge pipe discharges the heat-carrying oil, which had been supplied to the inside of the heat-storage material layer, to the outside of the heat-storage container. The heat-storage device is also provided with a plurality of metal plates (members inside the heat-storage material layer) arranged vertically inside the heat-storage material layer. A metal plate is also disposed such that the upper end thereof is at a height greater than or equal to the vicinity of the upper surface level (L) of the heat-storage material layer. The disclosed heat-storage device is better than conventional heat-storage devices at preventing the heat-storage material from escaping the heat-storage container.
    • 本发明公开了一种蓄热装置,其具备供给管,排出管和含有蓄热材料的蓄热容器。 包含所述蓄热材料的储热材料层形成在储热容器的底部。 供给管从储热容器的外部向蓄热材料层的内部供给具有比蓄热材料低的比重的导热油。 排出管将已经供给到储热材料层内部的载热油排出到蓄热容器的外部。 蓄热装置还设置有多个垂直放置在储热材料层内部的金属板(储热材料层内部的构件)。 还设置金属板,使得其上端的高度大于或等于蓄热材料层的上表面水平(L)附近。 所公开的蓄热装置优于常规的蓄热装置,以防止蓄热材料逸出蓄热容器。
    • 10. 发明申请
    • OPTICAL RECORDING MEDIUM DRIVE DEVICE AND RECORDING METHOD
    • 光记录介质驱动装置和记录方法
    • US20120069723A1
    • 2012-03-22
    • US13265684
    • 2009-04-24
    • Makoto SatoMasakazu OgasawaraKazuo TakahashiMasaharu Nakano
    • Makoto SatoMasakazu OgasawaraKazuo TakahashiMasaharu Nakano
    • G11B7/00
    • G11B7/0938G11B7/0908G11B7/1356G11B7/1378G11B7/139G11B7/13925G11B2007/0013
    • An optical recording medium drive device including: a combining prism for combining a recording first laser beam emitted from a first light source with a recording second laser beam emitted from the first light source so as to coaxially guide them; an objective lens for condensing the first and second laser beams from the combining prism toward an optical recording medium; a first photodetecting means for detecting reflected light of the first laser beam from a recording layer; a second photodetecting means for detecting reflected light of the second laser beam from a guide layer; a magnification conversion element disposed on an optical path of the second laser beam between a second light source and the combining prism for diffusing or converging the second laser beam incident upon the objective lens; a first focus error generating means for generating a first focus error signal indicating an error between a condensed spot position of the first laser beam and the recording layer based on an output signal of the first photodetecting means; a second focus error generating means for generating a second focus error signal indicating an error between a condensed spot position of the second laser beam and the guide layer based on an output signal of the second photodetecting means; a first focus control means for controlling the objective lens in an optical axis direction thereof in accordance with the first focus error signal; and a second focus control means for controlling a magnitude of the diffusion or convergence of the second laser beam by the magnification conversion element in accordance with the second focus error signal.
    • 一种光记录介质驱动装置,包括:组合棱镜,用于将从第一光源发射的记录第一激光束与从第一光源发射的记录第二激光束组合以同轴地引导它们; 用于将来自组合棱镜的第一和第二激光束聚光到光学记录介质的物镜; 用于从记录层检测第一激光束的反射光的第一光检测装置; 用于从引导层检测第二激光束的反射光的第二光电检测装置; 放大转换元件,设置在所述第二激光束的光路上,在第二光源与所述组合棱镜之间,用于使入射到所述物镜上的所述第二激光束扩散或会聚; 第一聚焦误差产生装置,用于基于第一光电检测装置的输出信号产生指示第一激光束的聚光点位置与记录层之间的误差的第一聚焦误差信号; 第二聚焦误差产生装置,用于基于第二光电检测装置的输出信号产生指示第二激光束的聚光点位置与引导层之间的误差的第二聚焦误差信号; 第一聚焦控制装置,用于根据第一聚焦误差信号在其光轴方向上控制物镜; 以及第二焦点控制装置,用于根据第二聚焦误差信号来控制放大转换元件的第二激光束的扩散或会聚的大小。