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    • 11. 发明授权
    • Ice delivery mechanism in storage bin-type ice dispenser
    • 储物箱式冰机中的送冰机构
    • US5029737A
    • 1991-07-09
    • US551833
    • 1990-07-12
    • Jiro Yamamoto
    • Jiro Yamamoto
    • F25C5/00
    • F25C5/007
    • In a storage bin-type ice dispenser, an ice delivery mechanism includes a tubular delivery chute coupled with a dispensing opening of a storage bin and extending downward and outward from a front wall of the bin. A vertical discharge duct is detachably mounted to a lower portion of the front wall of the bin and is located just below a lower opening end of the delivery chute to receive ice cubes discharged therefrom. A balance shutter is tiltably mounted on an upper end of the discharge duct in a detachable manner and extends downward into the interior of the discharge duct for engagement with an internal wall surface of the duct when maintained in a closed position. A weight element is detachably assembled with an outwardly extended portion of the balance shutter to maintain the balance shutter in the closed position by its weight. The balance shutter is opened by gravity acting on the weight element when the ice cubes from the delivery chute are received thereon.
    • 在存储箱式冰分配器中,冰传送机构包括与存储箱的分配开口相连并从箱的前壁向下并向外延伸的管状传送槽。 垂直排放管可拆卸地安装到箱的前壁的下部,并且位于排放槽的下开口端的正下方,以接收从其排出的冰块。 平衡挡板以可拆卸的方式可倾斜地安装在排放管道的上端,并且当保持在关闭位置时向下延伸到排放管道的内部以与管道的内壁表面接合。 配重元件与平衡挡板的向外延伸的部分可拆卸地组装,以通过其重量将平衡挡板保持在关闭位置。 当来自输送槽的冰块接收在其上时,通过重力作用在重量元件上打开平衡挡板。
    • 13. 发明授权
    • Method of manufacturing liquid ejection apparatus and liquid ejection apparatus
    • 液体喷射装置和液体喷射装置的制造方法
    • US08998376B2
    • 2015-04-07
    • US14220287
    • 2014-03-20
    • Hideki HayashiKeita SugiuraYuki TakagiJiro Yamamoto
    • Hideki HayashiKeita SugiuraYuki TakagiJiro Yamamoto
    • B41J2/165
    • B41J2/16532B41J2/16523B41J2/16585B41J2002/16594Y10T29/49401
    • A liquid ejection apparatus includes: a head having ejection-opening groups and ejection-passage groups; caps for covering the respective ejection-openings groups; and suction passages connecting between the interiors of the respective caps and a sucking device. A method of manufacturing the liquid ejection apparatus includes: a step of classifying, as a first group, an ejection-opening group corresponding to an ejection-passage group having a resistance value not less than a first value and classifying, as a second group, another ejection-opening group corresponding to an ejection-passage group having a resistance value less than the first value; and a step of assigning at least one suction passage having a resistance value less than a second value to the ejection-opening group as the first group and assigning another at least one suction passage having a resistance value not less than the second value to the ejection-opening group as the second group.
    • 液体喷射装置包括:具有喷射开口组和喷射通道组的头部; 用于覆盖各个喷射开口组的盖; 以及连接在各个盖的内部和吸入装置之间的抽吸通道。 一种制造液体喷射装置的方法包括:将具有不小于第一值的电阻值对应的喷射通道组作为第一组分类为第二组的步骤, 对应于具有小于第一值的电阻值的喷射通道组的另一个喷射开口组; 以及将具有小于第二值的电阻值的至少一个吸入通道分配给作为第一组的喷射开口组的步骤,并将另外至少一个具有不小于第二值的电阻值的吸入通道分配给喷射 开放组作为第二组。
    • 16. 发明授权
    • Image pickup apparatus and electronic device
    • 摄像设备和电子设备
    • US08488317B2
    • 2013-07-16
    • US13114735
    • 2011-05-24
    • Jiro Yamamoto
    • Jiro Yamamoto
    • H05K7/20H04N5/228
    • G03B17/02H04N5/2251H04N5/2252
    • An image pickup apparatus that does not give a user, who grips an apparatus body with his/her hand when he/she uses the imaging apparatus or the electronic device, a sense of discomfort due to a heat, and that can efficiently diffuse heat generated from a heat source inside the apparatus body to suppress a local temperature rise inside the apparatus body. An image pickup apparatus comprises an outer cover that forms an exterior of a device body, the device body having a grip at one end thereof and having a heat source therein. A first thermal conductive path from a first circuit unit to a first heat storage member via a first heat conductive member and a second thermal conductive path from a second circuit unit to a second heat storage member via the second heat conductive member are separated from each other.
    • 当使用成像设备或电子设备时,不会给用户握住他/她的手的身体的图像拾取装置,由于热而引起的不适感,并且可以有效地扩散产生的热量 从装置本体内的热源抑制装置本体内的局部温度升高。 图像拾取装置包括形成装置主体的外部的外盖,所述装置主体的一端具有手柄并且在其中具有热源。 从第一电路单元经由第一导热构件到第一蓄热构件的第一导热路径以及经由第二导热构件从第二电路单元到第二储热构件的第二导热路径彼此分离 。
    • 17. 发明授权
    • Calibration standard member, method for manufacturing the member and scanning electronic microscope using the member
    • 校准标准件,制造构件的方法和使用该构件的扫描电子显微镜
    • US08373113B2
    • 2013-02-12
    • US13127912
    • 2009-10-22
    • Yoshinori NakayamaTakashi TaseJiro Yamamoto
    • Yoshinori NakayamaTakashi TaseJiro Yamamoto
    • H01J37/28
    • H01J37/28B82Y35/00G01B3/004G01B3/30G01B15/00H01J37/263H01J37/265H01J2237/2826
    • This invention provides a standard member allowing magnification calibration for use in an electron microscope to be performed with high precision. A (110) or (100) oriented silicon substrate including a magnification calibration pattern comprised of a constant pitch periodic pattern and a (110) or (100) oriented silicon substrate not including the constant pitch periodic pattern are bonded together by means of bonding without using an adhesive agent, while aligning the plane directions of the surfaces of the two substrates in the same orientation. Then, the thus bonded substrates are cleaved or diced so that their (111) surfaces or (110) surfaces become cross-section surfaces. Further, by selectively etching one side of the constant pitch periodic pattern, a standard member with no level difference and no damage to superlattice patterns and having a constant pitch concavity and convexity periodic pattern in a cross-section surface vertical to the substrate surface is created.
    • 本发明提供了允许以高精度执行在电子显微镜中使用的放大校准的标准构件。 包括由恒定间距周期性图案和不包括恒定间距周期图案的(110)或(100)定向硅衬底组成的放大校准图案的(110)或(100)定向硅衬底通过粘合而结合而没有 使用粘合剂,同时以相同的取向对准两个基板的表面的平面方向。 然后,如此粘合的基材被切割或切割,使得它们的(111)表面或(110)表面变成横截面。 此外,通过选择性地蚀刻恒定间距周期性图案的一侧,产生在与基板表面垂直的横截面中没有电平差并且不损坏超晶格图案并具有恒定的间距凹凸周期图案的标准构件 。
    • 18. 发明授权
    • Blower and air conditioner outdoor unit with the blower
    • 鼓风机和空调室外机带鼓风机
    • US08002519B2
    • 2011-08-23
    • US11922586
    • 2006-07-24
    • Jiro YamamotoMasahiro ShigemoriKouji Somahara
    • Jiro YamamotoMasahiro ShigemoriKouji Somahara
    • F04D29/38F04D29/66
    • F24F1/38F04D29/384F04D29/667F24F1/40Y10S416/50
    • A blower is provided with an axial flow impeller 7, a fan motor 8 positioned in a suction side of the axial flow impeller 7, and a motor stay 9 supporting the fan motor 8. The motor stay 9 is substantially formed to have a linear shape and attached in parallel to a rotating surface of the axial flow impeller 7. An impeller blade front edge 17 of the axial flow impeller 7 is positioned in a region X which is closer to the motor stay 9 than a region Y in which an air flow turbulence in a wake flow of the motor stay 9 is expanded, and in which region X a range of the air flow turbulence is reduced. Accordingly, it is possible to inhibit the air flow turbulence in the wake flow of the motor stay 9 from affecting the aerodynamic characteristics and noise characteristics (for example, an increase of an NZ noise) of the axial flow impeller 7.
    • 鼓风机设置有轴流式叶轮7,位于轴流式叶轮7的吸入侧的风扇马达8和支撑风扇马达8的马达支架9.马达支架9基本形成为具有直线形状 并且平行于轴流式叶轮7的旋转表面安装。轴流式叶轮7的叶轮叶片前缘17位于比空气流动的区域Y更靠近马达支架9的区域X中 电动机支座9的尾流中的湍流膨胀,并且在该区域X中,气流湍流的范围减小。 因此,可以抑制马达支架9的尾流中的空气流动湍流,从而影响轴流式叶轮7的空气动力学特性和噪声特性(例如NZ噪声的增加)。
    • 20. 发明申请
    • SEMICONDUCTOR DEVICE
    • 半导体器件
    • US20090090925A1
    • 2009-04-09
    • US12245077
    • 2008-10-03
    • Shinichi SaitoMasahiro AokiHiroyuki UchiyamaHideo ArimotoNoriyuki SakumaJiro Yamamoto
    • Shinichi SaitoMasahiro AokiHiroyuki UchiyamaHideo ArimotoNoriyuki SakumaJiro Yamamoto
    • H01L33/00
    • H01S5/12B82Y20/00H01S5/0424H01S5/0425H01S5/1237H01S5/125H01S5/18341H01S5/3004H01S5/3427H01S2301/176H01S2302/00
    • There are a silicon laser device having a IV-group semiconductor such as silicon or germanium equivalent to the silicon as a basic constituent element on a substrate made of the silicon, and the like by a method capable of easily forming the silicon laser device by using a general silicon process, and a manufacturing method thereof. The silicon laser device is an ultrathin silicon laser that includes a first electrode unit injecting electrons, a second electrode unit injecting holes, a light emitting unit electrically connected to the first electrode unit and the second electrode unit, wherein the light emitting unit is made of single-crystal silicon and has a first surface (top surface) and a second surface (bottom surface) opposed to the first surface, a waveguide made of a first dielectric, which is disposed in the vicinity of the light emitting unit, by setting surface directions of the first and second surfaces as a surface (100) and thinning a thickness of the light emitting unit in a direction perpendicular to the first and second surfaces, and a mirror formed by alternately adjoining the first dielectric and a second dielectric.
    • 存在具有诸如硅等离子体的硅组合半导体的硅激光器装置,其等同于由硅制成的衬底上作为基本构成元件的硅等,通过使用能够容易地形成硅激光器件的方法, 通用硅工艺及其制造方法。 硅激光器件是一种超薄硅激光器,其包括注入电子的第一电极单元,注入空穴的第二电极单元,与第一电极单元和第二电极单元电连接的发光单元,其中发光单元由 单晶硅,并且具有与第一表面相对的第一表面(顶表面)和第二表面(底表面),通过设置在发光单元附近的由第一电介质制成的波导 第一表面和第二表面的方向作为表面(100),并且在垂直于第一和第二表面的方向上减薄发光单元的厚度,以及通过交替地邻接第一电介质和第二电介质而形成的反射镜。