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    • 5. 发明授权
    • Disposable diaper
    • 一次性尿布
    • US07938814B2
    • 2011-05-10
    • US12145404
    • 2008-06-24
    • Takao KoyamaHidekazu ItoHiroshi InadaTakahiro Arimura
    • Takao KoyamaHidekazu ItoHiroshi InadaTakahiro Arimura
    • A61F13/15
    • A61F13/505A61F13/15203A61F13/532A61F2013/53054
    • A disposable diaper comprising a liquid permeable topsheet 2, a liquid impermeable backsheet 3, and a liquid retentive absorbent member 4 and having a substantially oblong shape, the absorbent member 4 in the crotch portion having a middle absorbent portion 42 which occupies the middle 3/7 of the width of the absorbent member 4 and side absorbent portions 43 which each occupy the outermost 1/7 of the width of the absorbent member 4, wherein each side absorbent portion 43 has a larger unit absorption capacity than the middle absorbent portion 42, hydrophobic sheets 3 and 21 are disposed on the lateral outer edge of each side absorbent portion 43 to cover from the upper to lower surfaces of the edge, and an elastic member 71 is disposed in the part having each side absorbent portion 43 in the longitudinal direction of the side absorbent portion 43.
    • 一种一次性尿布,其包括液体可透过的顶片2,不透液性底片3和液体保持性吸收体4,并且具有大致长方形的形状,裆部中的吸收体4具有中间吸收部42, 吸收体4的宽度的7个和吸收体4的宽度的最外侧的1/7的侧吸收部43,其中每个侧吸收部43具有比中间吸收部42更大的单位吸收能力, 疏水性片材3和21设置在每个侧面吸收部分43的侧向外边缘上,以从边缘的上部到下部表面覆盖,并且弹性部件71设置在具有纵向方向上的每个侧面吸收部分43的部分中 侧吸收部43。
    • 6. 发明申请
    • IMPRINTING METHOD AND IMPRINTING APPARATUS
    • 印刷方法和印刷装置
    • US20110057354A1
    • 2011-03-10
    • US12876040
    • 2010-09-03
    • Akio AokiHiroshi Inada
    • Akio AokiHiroshi Inada
    • B29C59/02
    • G03F7/0002B82Y10/00B82Y40/00
    • In an imprinting method for transferring a pattern of a mold to a resin coated on a substrate by using an imprinting apparatus including a mold holding unit and a resin coating unit, the resin is coated in n shot areas arranged in a direction parallel to a direction in which the holding unit and the coating unit are arranged where n is an integer equal to or greater than 2, and the pattern is transferred to the shot areas on a one-by-one basis. A distance D between the coating unit and the mold and a width W of each shot area as seen in the direction parallel to the direction in which the holding unit and the coating unit are arranged are selected so as to satisfy a condition D>(3/2−1/n)W, and the coating and the transferring are performed repeatedly on the substrate.
    • 在通过使用包括模具保持单元和树脂涂布单元的压印装置将模具图案转印到涂布在基板上的树脂上的印刷方法中,树脂被涂覆在平行于方向的方向上布置的n个拍摄区域中 其中,所述保持单元和所述涂覆单元被布置在其中n是等于或大于2的整数,并且所述图案被逐个地传送到所述注射区域。 选择涂布单元和模具之间的距离D以及在与保持单元和涂布单元的排列方向平行的方向上看到的每个照射区域的宽度W,以满足条件D>(3 / 2-1 / n)W,并且在基板上重复地进行涂布和转印。
    • 7. 发明申请
    • ARTICLE CONVEYING DEVICE
    • 文章传输设备
    • US20100032265A1
    • 2010-02-11
    • US12519285
    • 2007-12-13
    • Kouichi HatanoHiroshi InadaKatsuo TakahashiHidenori Shirai
    • Kouichi HatanoHiroshi InadaKatsuo TakahashiHidenori Shirai
    • B65G25/04
    • B65G25/04B65G25/08
    • An article conveying device 10 in which a floor surface 21 of each of a plurality of fixed floors 20 is arranged so as to form a descending slope towards a downstream side in a conveying direction with respect to each other, each of a plurality of moving floors 30 is adjacently arranged on a side in the conveying direction with respect to each fixed floor 20, and a raising/lowering operation of simultaneously positioning the respective floor surface 31 of each moving floor 30 at a high position and a low position with respect to the floor surface 21 of the adjacent fixed floor 20 is repeated to arrange the floor surface 31 of each moving floor 30 positioned at the high position so as to form a descending slope towards the downstream side in the conveying direction with respect to each other.
    • 一种物品输送装置10,其中,多个固定地板20中的每一个的地板表面21被布置成在彼此相对于输送方向的下游侧形成下降斜面,多个移动地板 30相对于每个固定地板20相对于输送方向的一侧相邻地设置,并且将每个移动地板30的相应地板表面31同时定位在相对于第二固定地板20的高位置和低位置的升降操作 重复相邻的固定地板20的地板表面21,以布置位于高位置的每个移动地板30的地板表面31,以形成相对于彼此在输送方向上的下游侧的下降斜面。
    • 8. 发明申请
    • Deposition Method for Semiconductor Laser Bars Using a Clamping Jig
    • 使用夹紧夹具的半导体激光棒的沉积方法
    • US20080121183A1
    • 2008-05-29
    • US11940415
    • 2007-11-15
    • Nobuyuki MitsuiHiroshi Inada
    • Nobuyuki MitsuiHiroshi Inada
    • C23C16/458
    • C23C14/505
    • A clamping jig for mounting semiconductor laser bars includes: multiple supporting bars for holding laser bars therebetween; a pair of supporting plates each of which has a mounting face for mounting the supporting bars in a row; a pressing member for pressing the supporting bars for holding the laser bar; pressing cover members for covering both ends of each supporting bar to prevent supporting bars from falling from the supporting plate; and a supporting frame for detachably supporting the supporting plates and pressing cover members. Each supporting bar is formed with a longitudinal length greater than the laser bar, within a predetermined length so as to be mounted within the supporting frame. Both of the pair of supporting plates may be mounted so as to face one another, or just one may be mounted with the pressing cover members being mounted on the supporting frame instead of the other supporting plate.
    • 用于安装半导体激光棒的夹紧夹具包括:用于在其间保持激光棒的多个支撑杆; 一对支撑板,每个支撑板具有用于将支撑杆安装成一排的安装面; 用于按压用于保持激光棒的支撑杆的按压构件; 按压用于覆盖每个支撑杆的两端的盖构件,以防止支撑杆从支撑板掉落; 以及用于可拆卸地支撑支撑板和按压盖构件的支撑框架。 每个支撑杆形成为具有大于激光棒的纵向长度,并且在预定长度内被安装在支撑框架内。 一对支撑板可以彼此相对地安装,或者只有一个可以安装有按压盖构件而不是另一个支撑板安装在支撑框架上。
    • 9. 发明申请
    • Photodiode
    • 光电二极管
    • US20070001254A1
    • 2007-01-04
    • US11480008
    • 2006-06-30
    • Hiroshi Inada
    • Hiroshi Inada
    • H01L31/06
    • H01L31/02165H01L31/03046H01L31/1035H01L31/167Y02E10/544
    • A forward light monitoring photodiode having a high reflection film with low dark current for detecting forward light emitted from a laser diode and power of the laser diode in spite of the change of temperatures or yearly degradation. The high reflection film is made by depositing an SiON layer upon an InP window layer or an InP substrate by a plasma CVD method. Al2O3/Si reciprocal layers or Al2O3/TiO2 reciprocal layers are produced upon the SiON layer. The high reflection film reflects 80%-90% of a 45 degree inclination incidence beam and allows 20%-10% of the incidence beam to pass the film and arrive at the InP window or substrate.
    • 一种具有低暗电流的高反射膜的前向光监测光电二极管,用于检测从激光二极管发射的正向光和激光二极管的功率,尽管温度变化或年降解。 通过等离子体CVD法在InP窗口层或InP衬底上沉积SiON层来制造高反射膜。 Al 2 O 3 / Si往复层或Al 2 O 3 / TiO 2 2 / >在SiON层上产生相互叠层。 高反射膜反射了45度的入射光束的80%-90%,并允许20%-10%的入射光束通过膜并到达InP窗口或衬底。