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    • 41. 发明授权
    • Motion guide device having direction changing passages that cross each other three-dimensionally and a method of assembling the same
    • 具有三维交叉的方向转换通道的运动引导装置及其组装方法
    • US08251588B2
    • 2012-08-28
    • US11574771
    • 2005-09-06
    • Takuya HorieHiroaki Mochizuki
    • Takuya HorieHiroaki Mochizuki
    • F16C29/06
    • F16C29/0609F16C29/065F16C33/506F16C43/04
    • The present invention provides a motion guide device having inner and outer direction changing passages that mutually cross three-dimensionally, in which a retainer is able to smoothly circulate even when an outer peripheral side of the inner direction changing passage as well as an outer peripheral side of the outer direction changing passage are formed on an end plate.An outer peripheral side (18) of the outer direction changing passage and an outer peripheral side (19) of the inner direction changing passage are so formed on an end plate (5) as to cross each other three-dimensionally. Built in the end plate (5) is an inner/outer direction changing passage component (24) formed to serve as not only an inner peripheral side (25) of the outer direction changing passage but also an outer peripheral side (26) of the inner direction changing passage together with the outer peripheral side (19) of the inner direction changing passage formed on the end plate (5). Built in the end plate (5) in which the inner/outer direction changing passage component (24) is built is a retainer guiding member (29) formed extending over an entire length of the inner direction changing passage and to guide an outer peripheral side of the retainer (10) that passes the inner direction changing passage.
    • 本发明提供一种运动引导装置,其具有三维相互交叉的内侧和外侧方向转换通路,即使在内侧方向变换通路的外周侧以及外周侧也能够使保持器能够平滑地循环 外端方向转换通道形成在端板上。 外侧方向切换通路的外周侧(18)和内侧方向切换通路的外周侧(19)形成在端板(5)上,以便三维地交叉。 内端面(5)内置有内外方变换通路部件(24),不但形成为外侧方向变换通路的内周侧(25),而且还具有外周侧 内侧方向变换通道与形成在端板(5)上的内侧方向变换通道的外周侧(19)一起。 内置有内/外侧方向变换通路部件(24)的端板(5)内置有保持器引导部件(29),该保持器引导部件(29)形成为在内侧方向变更通路的整个长度上延伸并引导外周侧 通过内侧方向切换通道的保持器(10)。
    • 42. 发明授权
    • Motion guide device, relative motion system and displacement absorbing mechanism
    • 运动导向装置,相对运动系统和位移吸收机构
    • US08251587B2
    • 2012-08-28
    • US12092781
    • 2006-11-07
    • Hidekazu MichiokaHiroaki Mochizuki
    • Hidekazu MichiokaHiroaki Mochizuki
    • F16C19/00F16C29/06F16C41/00
    • F16C29/002F16C29/004F16C29/008F16C29/0602F16C29/0647F16F1/40F16F1/54
    • Provided is a motion guide device having a low rigidity in the vertical direction and a low rigidity in the horizontal direction.The motion guide device has: a raceway rail 15 having a bottom surface 30a, side surfaces 30b and an upper surface 30c and being mounted on one of a base 12 and a moving body 11; and a moving block 16 having a center portion 16a facing the upper surface 30c of the raceway rail 15 and side wall portions 16b facing the side surfaces 30b of the raceway rail 15 and being mounted linearly or curvilinearly movable relative to the raceway rail 15. On a side surface of the moving block 16, a displacement absorbing mechanism 17, 38 is provided. The displacement absorbing mechanism 17, 38 has a mounting member 26, 34 mounted on an opposite one of the base 12 and the moving body 11, and a displacement absorbing portion 31, 37 which is fixed to the mounting member 26, 34 and which is shear-deformed when the mounting member 26, 34 is displaced in a direction crossing an upper surface of the moving block 16.
    • 具有垂直方向刚性低,水平方向刚性低的运动引导装置。 运动引导装置具有:具有底面30a,侧面30b和上表面30c并安装在基座12和移动体11中的一个上的轨道轨道15; 以及具有面向轨道轨道15的上表面30c的中心部分16a和与轨道轨道15的侧表面30b相对的侧壁部分16b并且相对于轨道轨道15线性地或曲线地移动的移动块16。 移动块16的侧表面,位移吸收机构17,38。 位移吸收机构17,38具有安装在基座12和移动体11的相对的一个上的安装构件26,34和固定在安装构件26,34上的位移吸收部31,37 当安装构件26,34沿与移动块16的上表面交叉的方向移位时,剪切变形。
    • 44. 发明申请
    • ELECTRO-OPTICAL DEVICE AND ELECTRONIC APPARATUS
    • 电光设备和电子设备
    • US20110249227A1
    • 2011-10-13
    • US13083933
    • 2011-04-11
    • Minoru MoriwakiHiroaki Mochizuki
    • Minoru MoriwakiHiroaki Mochizuki
    • G02F1/1343
    • G02F1/136213G02F1/136227G02F1/136286
    • In at least one embodiment of the disclosure, an electro-optical device comprises a pixel electrode and a transistor corresponding to the pixel electrode. A data line is electrically connected to the transistor. A storage capacitor is provided between the pixel electrode and the transistor. The storage capacitor has a first capacitance electrode and a second capacitance electrode facing each other. A capacitance isolation film is interposed therebetween. An additional capacitor is electrically connected to the data line. The additional capacitor has a first additional capacitance electrode and a second additional capacitance electrode facing each other. An additional capacitance isolation film is interposed therebetween. The first additional capacitance electrode is provided on a same layer as the first capacitance electrode. The second additional capacitance electrode is provided on a layer different from the layers of the first and second capacitance electrodes.
    • 在本公开的至少一个实施例中,电光装置包括像素电极和对应于像素电极的晶体管。 数据线电连接到晶体管。 在像素电极和晶体管之间提供存储电容器。 存储电容器具有彼此面对的第一电容电极和第二电容电极。 插入电容隔离膜。 附加的电容器电连接到数据线。 附加电容器具有彼此面对的第一附加电容电极和第二附加电容电极。 在其间插入附加的电容隔离膜。 第一附加电容电极设置在与第一电容电极相同的层上。 第二附加电容电极设置在与第一和第二电容电极的层不同的层上。
    • 45. 发明申请
    • LOT PROCESSING START DETERMINING METHOD AND CONTROL UNIT
    • 最终加工开始确定方法和控制单元
    • US20100280643A1
    • 2010-11-04
    • US12770016
    • 2010-04-29
    • Hiroaki Mochizuki
    • Hiroaki Mochizuki
    • G06F17/00
    • H01L21/67276
    • A lot processing start determining method includes: storing, in a memory, processing conditions of each lot in a first substrate vessel and a maximum usable number of dummy substrates in a second substrate vessel; counting the used number the dummy substrates in the second substrate vessel; and calculating the number of dummy substrates required to process all substrates of a next lot in the first substrate vessel based on the processing conditions of each lot which are stored in the memory, adding the calculated number of the dummy substrates of the next lot to the counted used number of the dummy substrates, and determining whether the added value exceeds the maximum usable number of the dummy substrates stored in the memory. The method further includes prohibiting start of processing the next lot when the added value is determined to exceed the maximum usable number of the dummy substrate.
    • 大量处理开始确定方法包括:在存储器中存储第一衬底容器中每批的处理条件和第二衬底容器中的最大可用数量的虚设衬底; 对所述第二基板容器中的所述虚设基板进行计数; 以及基于存储在存储器中的每个批次的处理条件来计算处理第一基板容器中的下一个批次的所有基板所需的虚拟基板的数量,将计算出的下一个批次的虚设基板的数量加到 计数所使用的虚拟基板的数量,并且确定附加值是否超过存储在存储器中的虚拟基板的最大可用数量。 所述方法还包括当所述相加值被确定为超过所述虚设基板的最大可用数量时,禁止开始处理下一批次。
    • 46. 发明申请
    • MOTION GUIDE DEVICE, RELATIVE MOTION SYSTEM AND DISPLACEMENT ABSORBING MECHANISM
    • 运动指导装置,相对运动系统和位移吸收机构
    • US20090154850A1
    • 2009-06-18
    • US12092781
    • 2006-11-07
    • Hidekazu MichiokaHiroaki Mochizuki
    • Hidekazu MichiokaHiroaki Mochizuki
    • F16C29/04
    • F16C29/002F16C29/004F16C29/008F16C29/0602F16C29/0647F16F1/40F16F1/54
    • Provided is a motion guide device having a low rigidity in the vertical direction and a low rigidity in the horizontal direction.The motion guide device has: a raceway rail 15 having a bottom surface 30a, side surfaces 30b and an upper surface 30c and being mounted on one of a base 12 and a moving body 11; and a moving block 16 having a center portion 16a facing the upper surface 30c of the raceway rail 15 and side wall portions 16b facing the side surfaces 30b of the raceway rail 15 and being mounted linearly or curvilinearly movable relative to the raceway rail 15. On a side surface of the moving block 16, a displacement absorbing mechanism 17, 38 is provided. The displacement absorbing mechanism 17, 38 has a mounting member 26, 34 mounted on an opposite one of the base 12 and the moving body 11, and a displacement absorbing portion 31, 37 which is fixed to the mounting member 26, 34 and which is shear-deformed when the mounting member 26, 34 is displaced in a direction crossing an upper surface of the moving block 16.
    • 具有垂直方向刚性低,水平方向刚性低的运动引导装置。 运动引导装置具有:具有底面30a,侧面30b和上表面30c并安装在基座12和移动体11中的一个上的轨道轨道15; 以及具有面向轨道轨道15的上表面30c的中心部分16a和与轨道轨道15的侧表面30b相对的侧壁部分16b并且相对于轨道轨道15线性地或曲线地移动的移动块16。 移动块16的侧表面,位移吸收机构17,38。 位移吸收机构17,38具有安装在基座12和移动体11的相对的一个上的安装构件26,34和固定在安装构件26,34上的位移吸收部31,37 当安装构件26,34沿与移动块16的上表面交叉的方向移位时,剪切变形。
    • 47. 发明申请
    • MOTION GUIDE DEVICE
    • 运动指南装置
    • US20090154849A1
    • 2009-06-18
    • US12092326
    • 2006-10-31
    • Hiroaki MochizukiTomozumi MurataTakashi Sakuyama
    • Hiroaki MochizukiTomozumi MurataTakashi Sakuyama
    • F16C29/06
    • F16C29/0695F16C29/0609F16C29/0647
    • Provided is a motion guide device having a scooping portion that is not damaged even when a moving member is moved at high speed.When seen in an axial direction of a track shaft 1, a direction change path 10 is inclined relative to a contact angle line L1 (line connecting a center C of a ball 3 and a bottom P1 of a ball rolling groove 1a) . The direction change path 10 including a scooping portion 17 has a cross section of Gothic arch groove shape formed of two arcs R1 in such a manner that the ball 3 is in contact with the direction change path 10 at two points. The direction change path 10 is twisted in such a manner that a locus 18 of the top of the Gothic arch groove shape approaches the contact angle line L1 at the scooping portion 17.
    • 具有即使移动部件高速移动也没有损坏的铲斗部的运动引导装置。 当沿轨道轴1的轴向观察时,方向改变路径10相对于接触角线L1(连接球3的中心C和滚珠槽1a的底部P1的线)倾斜。 包括舀取部分17的方向改变路径10具有由两个弧R1形成的哥特式拱形槽的横截面,使得球3在两点处与方向改变路径10接触。 方向改变路径10以哥特式拱形槽顶部的轨迹18接近舀取部分17处的接触角线L1的方式扭转。
    • 49. 发明申请
    • Electrooptic device and electronic device including the same
    • 电光装置和包括其的电子装置
    • US20070281223A1
    • 2007-12-06
    • US11810087
    • 2007-06-04
    • Hiroaki Mochizuki
    • Hiroaki Mochizuki
    • G03F1/00
    • G02F1/133512G02F1/136286G02F2001/133311G02F2001/13629
    • An electrooptic device includes: a pair of first and second substrates that sandwich an electrooptic material; a plurality of pixel electrodes disposed in a pixel region on the first substrate; a first light shielding layer disposed on the second substrate, the first light shielding layer defining the periphery of the pixel region; a sealing material that bonds the first substrate and the second substrate together in a sealing region around the periphery of a first light shielding region having the first light shielding layer; a dustproof substrate disposed on the surface of the second substrate opposite to the electrooptic material; a second light shielding layer disposed on the dustproof substrate so as to enclose the pixel region; and a third light shielding layer disposed on the dustproof substrate so as to at least partly overlap with the first and second light shielding layers.
    • 电光装置包括:一对夹着电光材料的第一和第二基板; 设置在所述第一基板上的像素区域中的多个像素电极; 设置在所述第二基板上的第一遮光层,所述第一遮光层限定所述像素区域的周边; 密封材料,其将第一基板和第二基板在围绕具有第一遮光层的第一遮光区域的周边的密封区域中接合在一起; 设置在与电光材料相对的第二基板的表面上的防尘基板; 第二遮光层,设置在所述防尘基板上,以封闭所述像素区域; 以及第三遮光层,设置在所述防尘基板上,以便与所述第一和第二遮光层至少部分重叠。
    • 50. 发明申请
    • Electro optical device and electronic apparatus equipped with the same
    • 电光装置及配备有其的电子装置
    • US20070247582A1
    • 2007-10-25
    • US11789097
    • 2007-04-23
    • Hiroaki Mochizuki
    • Hiroaki Mochizuki
    • G02F1/1345
    • G02F1/1345G02F1/1339G02F2001/133388G02F2001/13456G02F2001/13629G09G3/3688G09G2310/0297
    • An electro optical device includes a first substrate, a plurality of pixel electrodes arranged at a predetermined pixel pitch on the first substrate, signal lines and electron devices disposed on the lower side than the pixel electrodes through an interlayer insulation film in a pixel area in which the plurality of pixel electrodes are arranged and electrically connected to the pixel electrodes, a second substrate oppositely disposed to the first substrate, a sealing material for bonding the first substrate and the second substrate together in a seal area along a periphery of the pixel area, and a plurality of dummy wirings arranged at an arrangement pitch equivalent to the predetermined pixel pitch along the periphery of the pixel area in at least a part of the seal area on the first substrate and formed by the same film as at least one of conducting films constituting the signal lines and the electron devices.
    • 电光装置包括第一基板,在第一基板上以预定像素间距布置的多个像素电极,通过像素区域中的层间绝缘膜设置在比像素电极下侧的信号线和电子器件,其中 所述多个像素电极被布置并电连接到所述像素电极,与所述第一基板相对设置的第二基板,用于沿着所述像素区域的周边在所述密封区域中将所述第一基板和所述第二基板接合在一起的密封材料, 以及多个虚拟布线,其在所述第一基板上的所述密封区域的至少一部分中沿着所述像素区域的周边以等于所述预定像素间距的排列间距布置,并且由与所述第一基板中的至少一个导电膜相同的膜形成 构成信号线和电子器件。