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    • 81. 发明申请
    • Sheet-type secondary battery and manufacturing method therefor
    • 片式二次电池及其制造方法
    • US20080070111A1
    • 2008-03-20
    • US11822286
    • 2007-07-03
    • Kiyoko AbeKazuhiro TakahashiKazunori Ozawa
    • Kiyoko AbeKazuhiro TakahashiKazunori Ozawa
    • H01M2/02B23K20/10
    • H01M10/0413H01M2/0275H01M2/22H01M2/24H01M10/0585H01M10/34
    • Provided is a sheet-type secondary battery capable of preventing damage to sheet-type electrodes when the sheet-type electrodes are connected, and also allowing an arbitrary number of the sheet-type electrodes to be laminated so as to easily realize a high-capacity sheet-type secondary battery and a manufacturing method therefor. In the sheet-type secondary battery, connecting parts between a positive electrode lead (3a) and multiple sheet-type positive electrodes (11) and between a negative electrode lead (3b) and multiple sheet-type negative electrodes (13) are formed by laminating the multiple sheet-type positive electrodes (11) and the multiple sheet-type negative electrodes (13) on the corresponding positive electrode lead (3a) and on the corresponding negative electrode lead (3b), respectively, to thereby establish the connections therebetween, and the connection parts each have a conductive connection protective layer formed in between the laminated multiple sheet-type positive and/or negative electrodes.
    • 提供一种能够防止片状电极连接时对片状电极的损害的片状二次电池,并且还可以层叠任意数量的片状电极,以容易地实现高容量 片式二次电池及其制造方法。 在片状二次电池中,正极引线(3a)和多片式正极(11)之间以及负极引线(3b)和多片式负极(13)之间的连接部分是 通过在对应的正极引线(3a)上和相应的负极引线(3b)上层叠多个片状正极(11)和多个片状负极(13)而形成,由此 建立它们之间的连接,并且连接部分各自具有形成在层叠的多片型正极和/或负极之间的导电连接保护层。
    • 82. 发明申请
    • Objective lens actuator and optical pickup device
    • 物镜致动器和光学拾取装置
    • US20080068975A1
    • 2008-03-20
    • US11898931
    • 2007-09-17
    • Hiromasa SasaokaKazuhiro TakahashiRyozo HosodaShinya Hatano
    • Hiromasa SasaokaKazuhiro TakahashiRyozo HosodaShinya Hatano
    • G11B7/00G11B7/085
    • G11B7/0935G11B7/1374G11B7/22G11B2007/0006
    • A first objective lens and a second objective lens which are formed as separate bodies each other are held side by side by a lens holder. The lens holder includes a first lens receiving surface to receive a lower surface of peripheral portion of the first objective lens, and a second lens receiving surface to receive a lower surface of peripheral portion of the second objective lens. The first lens receiving surface and the second lens receiving surface are formed to be coplanar. By this arrangement an optical axis of the first objective lens and an optical axis of the second objective lens become parallel to each other at the same time when the first objective lens is installed on the first lens receiving surface and when the second objective lens is installed on the second lens receiving surface, a relative tilt is automatically solved. By a simple structure of the lens holder the relative tilt between the first objective lens and the second objective lens can be reduced as above described. Further, because of above described structure of the lens holder if one of the objective lenses is a commercial product, a commercial product can be easily utilized.
    • 形成为分离体的第一物镜和第二物镜由透镜保持器并排地保持。 透镜保持器包括:第一透镜接收表面,用于接收第一物镜的周边部分的下表面;以及第二透镜接收表面,用于接收第二物镜的周边部分的下表面。 第一透镜接收表面和第二透镜接收表面形成为共面的。 通过这种布置,当第一物镜安装在第一透镜接收表面上并且当第二物镜安装时,第一物镜的光轴和第二物镜的光轴在彼此平行的同时 在第二透镜接收表面上,相对倾斜自动解决。 通过透镜架的简单结构,可以如上所述地减小第一物镜和第二物镜之间的相对倾斜度。 此外,由于如果物镜中的一个是商业产品,则透镜保持架的上述结构可以容易地使用商业产品。
    • 83. 发明申请
    • Objective lens actuator and optical pickup device having the same
    • 物镜致动器和具有其的光学拾取装置
    • US20080030880A1
    • 2008-02-07
    • US11882119
    • 2007-07-30
    • Kazuhiro Takahashi
    • Kazuhiro Takahashi
    • G02B7/04
    • G11B7/22G11B7/0932G11B7/0933G11B7/0935
    • An objective lens actuator according to the present invention is provided with a gel holder having a gel holding hole into which suspension wires to hold an objective lens holder are inserted, a gel injection hole connected to the gel holding hole is formed in a round shape on a side surface of the gel holder, an inner diameter of an outer surface side opening of the gel injection hole is made larger than an outer diameter of a needle of a gel dispenser and an inner diameter of an inner surface side opening of the gel injection hole is made smaller than an outer diameter of the needle. By these arrangement the locating of the needle can be performed when the gel material is injected into the gel holding hole by the gel dispenser, it can be prevented that the gel material adheres to around the gel injection hole, and further, it can be prevented that the suspension wires are deformed by an insertion of the needle into the gel holding hole.
    • 根据本发明的物镜致动器设置有具有凝胶保持孔的凝胶保持器,用于保持物镜保持器的悬挂线插入到该凝胶保持孔中,连接到凝胶保持孔的凝胶注入孔形成为圆形, 凝胶保持器的侧表面,凝胶注入孔的外表面侧开口的内径大于凝胶分配器的针的外径,凝胶注射器的内表面侧开口的内径 孔比针的外径小。 通过这些布置,当凝胶材料通过凝胶分配器注入凝胶保持孔时,可以执行针的定位,可以防止凝胶材料粘附到凝胶注入孔周围,并且还可以防止 悬挂线通过将针插入凝胶保持孔而变形。
    • 85. 发明申请
    • Objective lens actuator and optical pickup device having the same
    • 物镜致动器和具有其的光学拾取装置
    • US20070171777A1
    • 2007-07-26
    • US11657578
    • 2007-01-25
    • Kazuhiro Takahashi
    • Kazuhiro Takahashi
    • G11B7/00
    • G11B7/0935
    • An objective lens actuator is provided with an objective lens holder and an anti-collision member disposed at the upper portion of the objective lens holder for preventing a collision between the optical recording medium and the objective lens, and the anti-collision member includes a fixing portion for fixing to the objective lens holder, a gradient portion extending from the fixing portion in the same direction as a rotation direction of the optical recording medium in a slanting manner by a predetermined angle with respect to the optical recording medium, and a contact portion that extends from the gradient portion and has a surface substantially parallel with the recording surface of the optical recording medium, and when the anti-collision member contacts with the optical recording medium, it bends toward the objective lens holder.
    • 物镜致动器设置有物镜保持器和设置在物镜保持器的上部的防碰撞构件,用于防止光记录介质和物镜之间的碰撞,并且防碰撞构件包括固定 用于固定到物镜保持器的部分,从固定部分沿与光学记录介质的旋转方向相同的方向以相对于光学记录介质倾斜预定角度的倾斜部分,以及接触部分 其从梯度部延伸并且具有与光记录介质的记录表面基本平行的表面,并且当防碰撞构件与光记录介质接触时,其朝向物镜保持器弯曲。
    • 89. 发明申请
    • Imaging device
    • 成像设备
    • US20070009164A1
    • 2007-01-11
    • US11482159
    • 2006-07-07
    • Kazuhiro Takahashi
    • Kazuhiro Takahashi
    • G06K9/36G06K9/46H04N5/76
    • H04N19/124H04N19/146H04N19/15H04N19/192H04N19/60
    • An imaging device has an image pickup section, a compression processing section, a correlation data holding section, and first and second calculating sections. The image pickup section generates photographic image data. The compression processing section performs compression processing on photographic image data. The correlation data holding section holds plural correlation data on changes in scale factor and compressed data amount of sample image data. The first calculating section calculates initial scale factors from standard correlation data generated from image data including high-frequency components most among sample image data and target compressed data amount. The second calculating section determines whether recompression processing by use of a different scale factor is necessary from a difference between target compressed data amount and compressed photographic image data amount and calculates the scale factor based on compressed photographic image data and correlation data at recompression processing such that the data compression rate decreases.
    • 成像装置具有摄像部,压缩处理部,相关数据保持部以及第一和第二计算部。 图像拾取部分生成摄影图像数据。 压缩处理部对摄影图像数据进行压缩处理。 相关数据保持部保持关于比例因子的变化和样本图像数据的压缩数据量的多个相关数据。 第一计算部分从包括样本图像数据和目标压缩数据量中最高的高频分量的图像数据生成的标准相关数据中计算初始比例因子。 第二计算部分确定从目标压缩数据量和压缩摄影图像数据量之间的差异是否需要使用不同比例因子的再压缩处理,并且基于压缩处理中的压缩摄影图像数据和相关数据来计算比例因子,使得 数据压缩率降低。