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    • 75. 发明授权
    • Optical connector
    • 光连接器
    • US06755574B2
    • 2004-06-29
    • US10171748
    • 2002-06-17
    • Kunihiko FujiwaraYukio HayashiYoshikazu NomuraHiroshi YokosukaMasaaki TakayaShinji Nagasawa
    • Kunihiko FujiwaraYukio HayashiYoshikazu NomuraHiroshi YokosukaMasaaki TakayaShinji Nagasawa
    • G02B636
    • G02B6/3825G02B6/3897
    • An optical connector that provides a housing body 21 and a fixed part 22 that are installed so as to hold a backplane 3, and connects an optical connector plug 4b inserted into said housing body 21 via an installation hole in said backplane 3 and another optical connector plug 4a inserted into said housing body 21 from the direction opposite to that of said optical connector plug 4b, wherein flexible claws 25 projecting from both sides of said fixed part 22 engage said housing body 21 via said installation hole 30 in said backplane 3, and thereby said backplane 3 is held between said housing body 21 and said fixed part 22. Simply by adjusting the floating range (amount of floating) of the flexible claws 25 within said installation hole 30 the floating range (amount of floating) of the housing body 21 can be reliably set. Thereby, when the housing body 2 engages the printed board housing, the dimensional error is offset reliably by the floating of the housing body 21, and the engagement is carried out smoothly. A special order part for setting the floating range of the housing body 21 is not necessary, and thus a lower cost is possible and assembly can be carried out easily. In addition, a structure can also be used wherein the flexible claws projecting from the housing body side engage the backplane by passing through the installation hole, and the backplane is held between the bearing walls on the side of the housing body.
    • 一种光学连接器,其提供安装成保持背板3的壳体21和固定部22,并且经由所述背板3中的安装孔连接插入到所述壳体21中的光连接器插头4b和另一光连接器 插头4a从与所述光连接器插头4b的方向相反的方向插入到所述壳体21中,其中从所述固定部分22的两侧突出的柔性爪25通过所述背板3中的安装孔30接合所述壳体21, 从而所述背板3被保持在所述壳体21和所述固定部22之间。通过调节所述安装孔30内的柔性爪25的浮动范围(浮动量),壳体的浮动范围(浮动量) 21可以可靠地设置。 因此,当壳体2接合印刷电路板壳体时,通过壳体21的浮动可靠地抵消尺寸误差,并且平滑地进行接合。 用于设置壳体21的浮动范围的特殊订购部分不是必需的,因此可以降低成本并且可以容易地进行组装。 此外,还可以使用这样的结构,其中从壳体主体侧突出的柔性爪通过安装孔与背板接合,并且背板保持在壳体主体侧的支承壁之间。
    • 76. 发明授权
    • Connecting structure for optical connector
    • 光连接器连接结构
    • US06425692B1
    • 2002-07-30
    • US09529982
    • 2000-04-24
    • Kunihiko FujiwaraYukio HayashiYoshikazu NomuraHiroshi YokosukaMasaaki TakayaShinji Nagasawa
    • Kunihiko FujiwaraYukio HayashiYoshikazu NomuraHiroshi YokosukaMasaaki TakayaShinji Nagasawa
    • G02B636
    • G02B6/3825G02B6/3897
    • An optical connector that provides a housing body 21 and a fixed part 22 that are installed so as to hold a backplane 3, and connects an optical connector plug 4b inserted into said housing body 21 via an installation hole in backplane 3 and another optical connector plug 4a inserted into said housing body 21 from the direction opposite to that of fixed part 22 engage said housing body 21 via said installation hole 30 in said backplane 3, and thereby said backplane 3 is held between said housing body 21 and said fixed part 22. Simply by adjusting the floating range (amount of floating) of the flexible claws 25 within said installation hole 30 the floating range (amount of floating) of the housing body 21 can be reliably set. Thereby, when the housing body 21 engages the printed board housing, the dimensional error is offset reliably by the floating of the housing body 21, and the engagement is carried out smoothly. A special order part for setting the floating range of the housing body 21 is not necessary, and thus a lower cost is possible and assembly can be carried out easily. In addition, a structure can also be used wherein the flexible claws projecting from the housing body side engage the backplane by passing through the installation hole, and the backplane is held between the bearing walls on the side of the housing body.
    • 一种光学连接器,其提供安装成保持背板3的壳体21和固定部22,并且经由背板3中的安装孔和另一光连接器插头连接插入到所述壳体21中的光连接器插头4b 4a从与固定部分22的方向相反的方向插入所述壳体21中,通过所述背板3中的安装孔30与所述壳体21接合,从而所述背板3保持在所述壳体21和所述固定部分22之间。 通过调节安装孔30内的柔性爪25的浮动范围(浮动量),可以可靠地设定壳体21的浮动范围(浮动量)。 由此,当壳体21接合印刷电路板壳体时,通过壳体21的浮动可靠地抵消尺寸误差,并且平滑地进行接合。 用于设置壳体21的浮动范围的特殊订购部分不是必需的,因此可以降低成本并且可以容易地进行组装。 此外,还可以使用这样的结构,其中从壳体主体侧突出的柔性爪通过安装孔与背板接合,并且背板保持在壳体主体侧的支承壁之间。
    • 80. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US5893022A
    • 1999-04-06
    • US104375
    • 1998-06-25
    • Naoto YoshinoMasao OhkuboFumio FurusawaYukio HayashiOsamu Handa
    • Naoto YoshinoMasao OhkuboFumio FurusawaYukio HayashiOsamu Handa
    • G03G15/01G03G15/00G03G15/16
    • G03G15/657G03G15/1605G03G2215/0119G03G2215/0177
    • There is described an image forming apparatus, wherein a visible image retained on an intermediate transfer belt is collectively transferred to recording material by means of a collective transfer device including a transfer roller and a back-up roller. The recording material that has passed through a transfer nipping region is guided by means of a recording material guide member. In such an image forming apparatus, the intermediate transfer belt is set at an angle of 50.degree. or less relative to the reference line passing through the exit of the transfer nipping region between the transfer roller and the back-up roller among normals orthogonal to a line passing through the center shafts of the transfer roller and the back-up roller, in the area downstream from the transfer nipping region, and the recording material guide member is provided downward at an angle of 5.degree. to 20.degree. relative to the reference line L.
    • 描述了一种图像形成装置,其中通过包括转印辊和支撑辊的集体转印装置将保留在中间转印带上的可见图像集体转印到记录材料上。 通过转印夹持区域的记录材料通过记录材料引导构件被引导。 在这种图像形成装置中,中间转印带相对于在与正交于正交于转印辊的法线之间通过转印辊和支撑辊之间的转印夹持区域的出口的参考线设定为50°或更小的角度 线在传送夹持区域下游的区域中通过转印辊和支撑辊的中心轴,并且记录材料引导构件相对于参考线以5°至20°的角度向下设置 L.