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    • 11. 发明授权
    • Electrical wire fixing member
    • 电线固定件
    • US08336834B2
    • 2012-12-25
    • US13000584
    • 2009-06-19
    • Mitsuhiro MatsumotoHajime KatouTakashi Tsukamoto
    • Mitsuhiro MatsumotoHajime KatouTakashi Tsukamoto
    • F16L3/08
    • F16L3/1222F16L33/03H02G3/30Y10T24/1457
    • Provided is an electrical wire fixing member that can be assembled in a simple manner with the reduced number of parts, and is capable of obtaining a sufficient lap amount, which can further reduce the number of parts. In an electrical wire fixing band 1 that secures an electrical wire 20, the first flange 3 is provided at a tip of the one end 2a of the body 2 in a shape of a ring, with both ends overlapping with each other along the circumference of the body. A second flange 4 is provided at the other end 2b. A protruding piece 5 is provided in a direction where the other end 2b becomes more distant from the one end 2a. A locking piece 6 is provided closer to the one end than the tip of the other end 2b is.
    • 本发明提供一种电线固定构件,其能够以简单的方式组装,并且能够获得足够的搭接量,从而可以进一步减少零件数量。 在固定电线20的电线固定带1中,第一凸缘3设置在主体2的一端2a的尖端处的环形状,两端彼此沿着圆周方向重叠 身体。 第二凸缘4设置在另一端2b处。 在另一端2b变得远离一端2a的方向上设置有突出片5。 锁定片6设置成比另一端2b的前端更靠近一端。
    • 12. 发明申请
    • PHOTOELECTRIC CONVERSION DEVICE AND METHOD FOR PRODUCING SAME
    • 光电转换装置及其制造方法
    • US20120266948A1
    • 2012-10-25
    • US13523323
    • 2012-06-14
    • Kazuya MurataMitsuhiro Matsumoto
    • Kazuya MurataMitsuhiro Matsumoto
    • H01L31/077H01L31/18
    • H01L31/0747H01L31/077Y02E10/50
    • In order to increase photoelectric conversion efficiency in a photoelectric conversion device, there is disclosed a photoelectric converter containing a photoelectric conversion unit in which a p-type layer (40) containing a p-type dopant, an i-type layer (42) that is a microcrystalline silicon layer that is an electricity-generating layer, and an n-type layer (44) containing an n-type dopant are layered, wherein the p-type layer (40) is caused to have a layered structure comprising a first p-type layer (40a) that is a microcrystalline silicon layer, and a second p-type layer (40b) containing at least one of an amorphous silicon carbide p-type layer and an amorphous silicon p-type layer disclosed between the microcrystalline silicon p-type layer (40a) and the i-type layer (42). The second p-type layer (40b) is provided with an oxide layer on the side of the i-type layer (42).
    • 为了提高光电转换元件的光电转换效率,公开了一种光电转换器,其包含光电转换单元,其中包含p型掺杂剂的p型层(40),i型层(42), 是作为发电层的微晶硅层,并且层叠含有n型掺杂剂的n型层(44),其中使p型层(40)具有层状结构,其包括第一 作为微晶硅层的p型层(40a)和包含微晶硅之间公开的非晶质碳化硅p型层和非晶硅p型层中的至少一种的第二p型层(40b) p型层(40a)和i型层(42)。 第二p型层(40b)在i型层(42)侧设置有氧化物层。
    • 16. 发明申请
    • Connector
    • 连接器
    • US20110059659A1
    • 2011-03-10
    • US12991458
    • 2009-08-21
    • Mitsuhiro MatsumotoHajime KatoSuminori ArimaShinji Ichikawa
    • Mitsuhiro MatsumotoHajime KatoSuminori ArimaShinji Ichikawa
    • H01R13/40
    • H01R13/4367H01R13/426H01R13/5205H01R13/521
    • A connector includes: a terminal fitting which includes a wire connecting portion and an electric contact portion disposed coaxially with the wire connecting portion; a connector housing for fitting to a mating connector; a rear holder which is fitted at an end portion of the connector housing; a terminal accommodating chamber which is provided in the connector housing. The terminal accommodating chamber includes a first accommodating portion for accommodating the wire connecting portion, a second accommodating portion which is continuous with the first accommodating portion to accommodate the electric contact portion, and a stepped surface formed between the first and second accommodating portions. The connector also includes a flange portion which projects from an outer peripheral surface of the wire connecting portion so as to contact the stepped surface, and a sleeve member provided between the flange portion and the rear holder.
    • 连接器包括:端子接头,其包括电线连接部分和与电线连接部分同轴设置的电接触部分; 用于配合到配合连接器的连接器壳体; 一个后座,其安装在连接器壳体的端部; 设置在连接器壳体中的端子容纳室。 端子容纳室包括用于容纳电线连接部分的第一容纳部分,与第一容纳部分连续以容纳电接触部分的第二容纳部分,以及形成在第一和第二容纳部分之间的台阶表面。 连接器还包括从电线连接部分的外周表面突出以接触台阶表面的凸缘部分和设置在凸缘部分和后保持器之间的套筒部件。
    • 18. 发明授权
    • Liquid jetting apparatus and method for switchably driving heaters
    • 液体喷射装置和可切换驱动加热器的方法
    • US07681990B2
    • 2010-03-23
    • US11724297
    • 2007-03-15
    • Mitsuhiro Matsumoto
    • Mitsuhiro Matsumoto
    • B41J2/05
    • B41J2/0458B41J2/04528B41J2/04541B41J2/04563
    • A liquid ejecting apparatus includes an element substrate having thereon a plurality of heaters for generating energy for ejecting liquid; a plurality of liquid chambers provided on the element substrate and having ejection outlets for ejecting the liquid, wherein a plurality of the heaters are disposed in each of the liquid chambers, and wherein one part of the heaters and the other part of the heaters are switchably operable; and a switching unit for switching between a mode in which the one part of the heaters is actuated as main heaters, and the other part of the heaters stands by as stand-by heaters, and a mode in which the other part of the heaters is actuated as main heaters, and the one part of heaters stands by as stand-by heaters. A center of gravity of the one part of heaters and a center of gravity of the other part of heaters are aligned with each other in a plane of the element substrate, and surfaces of the heaters are protected by an anti-cavitation film comprising metal.
    • 液体喷射装置包括其上具有多个用于产生用于喷射液体的能量的加热器的元件基板; 多个液体室,设置在元件基板上并具有用于喷射液体的喷射出口,其中多个加热器设置在每个液体室中,并且其中一部分加热器和加热器的另一部分可切换 可操作的 以及切换单元,用于在加热器的一部分被驱动为主加热器的模式之间切换,并且加热器的另一部分作为待机加热器而停止,并且加热器的另一部分为 作为主加热器启动,加热器的一部分作为待机加热器。 加热器的一部分的重心和加热器的另一部分的重心在元件基板的平面上彼此对准,并且加热器的表面由包含金属的防空穴膜保护。
    • 20. 发明申请
    • SOLAR CELL MODULE AND METHOD OF MANUFACTURING THE SAME
    • 太阳能电池模块及其制造方法
    • US20090165840A1
    • 2009-07-02
    • US12270978
    • 2008-11-14
    • Kazuya MURATAMitsuhiro Matsumoto
    • Kazuya MURATAMitsuhiro Matsumoto
    • H01L31/042H01L31/18
    • H01L31/022466H01L31/022483H01L31/046H01L31/0463H01L31/0465Y02E10/50
    • A disclosed solar cell module includes: a translucent substrate; a translucent light-receiving-surface-side conductive layer formed on the substrate; a first semiconductor layer formed on the light-receiving-surface-side conductive layer; a transparent conductive layer formed on the first semiconductor layer; and a second semiconductor layer formed on the transparent conductive layer. The solar cell module has a first separating groove that separates the light-receiving-surface-side conductive layer into parts, and a transparent conductive layer separating groove formed continuously from the first separating groove and that separates the transparent conductive layer and the first semiconductor layer into parts. Those grooves are filled with the material of the second semiconductor layer. The transparent conductive layer separating groove at a side of the first separating groove is larger in width than the first separating groove at a side of the transparent conductive layer separating groove.
    • 公开的太阳能电池模块包括:半透明基板; 形成在基板上的透光性受光面侧导电层; 形成在受光面侧导电层上的第一半导体层; 形成在所述第一半导体层上的透明导电层; 以及形成在所述透明导电层上的第二半导体层。 太阳能电池模块具有将受光面侧导电层分离成部分的第一分离槽和从第一分离槽连续地形成的透明导电层分离槽,将透明导电层和第一半导体层 进入零件。 那些槽被第二半导体层的材料填充。 第一分离槽一侧的透明导电层分离槽的宽度比透明导电层分隔槽一侧的第一分离槽宽。