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    • 3. 发明申请
    • NON-SLIP FINISHED GLOVE AND METHOD FOR MANUFACTURING THE SAME
    • 非滑动整理手套及其制造方法
    • US20140041096A1
    • 2014-02-13
    • US13988608
    • 2011-11-22
    • Nobuaki Takahashi
    • Nobuaki Takahashi
    • A41D19/00
    • A41D19/0082A41D19/01558A41D2500/10A41D2500/54
    • A non-slip finished glove includes: a glove main body made of fibers for covering a wearer's hand; a plurality of protrusions made of resin or rubber, the protrusions being fixed at least to a palm region of an outer face of the glove main body; and an air permeable coating layer that is laminated at least on a region other than the protrusions in the palm region of the outer face of the glove main body, in which the protrusions protrude from an outer face of the coating layer. The plurality of protrusions allows grip of an object and, since the coating layer is provided in regions other than the protrusions not to expose fibers of the glove main body, a sufficient gripping force can be exerted to firmly grip the object.
    • 防滑成品手套包括:由用于覆盖佩戴者的手的纤维制成的手套主体; 多个由树脂或橡胶制成的突起,突起至少固定在手套主体的外表面的手掌区域上; 以及至少层叠在所述手套主体的外表面的手掌区域中的突起以外的区域上的透气性涂层,其中所述突起从所述涂层的外表面突出。 多个突起允许物体的抓握,并且由于涂层设置在除了不暴露手套主体的纤维的突起之外的区域中,因此可以施加足够的夹紧力以牢固地夹持物体。
    • 6. 发明授权
    • Organic electronic element and its manufacturing method
    • 有机电子元件及其制造方法
    • US08455283B2
    • 2013-06-04
    • US13254886
    • 2010-03-03
    • Nobuaki TakahashiHiroaki Yamagishi
    • Nobuaki TakahashiHiroaki Yamagishi
    • H01L21/00
    • H01L51/5256H01L51/0059H01L51/0084H01L51/0085H01L51/0087H01L51/0088H01L51/0097Y02E10/549Y02P70/521
    • The present invention provides an organic electronic element manufacturing method which provides a low manufacturing cost and excellent performance stability, and specifically an organic electronic element manufacturing method which provides a low manufacturing cost, and minimizes emission unevenness, lowering of emission efficiency and shortening of lifetime due to deterioration of gas barrier property of sealing. The organic electronic element manufacturing method is featured in that it comprises the steps of forming an organic electronic structure composed of a first electrode, at least one organic layer and a second electrode on a flexible substrate, and applying a flexible sealing substrate to the organic electronic structure, followed by heating treatment, wherein a heating temperature, at which the heating treatment is carried out, is less than Tg (glass transition temperature) of the substrate and not less than Tg of the sealing substrate.
    • 本发明提供了一种提供低制造成本和优异的性能稳定性的有机电子元件制造方法,特别是提供低制造成本的有机电子元件制造方法,并且最小化发射不均匀性,降低发光效率和缩短寿命 密封的气体阻隔性劣化。 有机电子元件制造方法的特征在于,其包括以下步骤:在柔性基板上形成由第一电极,至少一个有机层和第二电极组成的有机电子结构,以及将柔性密封基板施加到有机电子 结构,然后进行加热处理的加热处理,其中进行加热处理的加热温度小于基板的Tg(玻璃化转变温度),并且不小于密封基板的Tg。
    • 9. 发明申请
    • DISPLAY DEVICE WITH LOCATION DETECTION FUNCTION AND INPUT LOCATION DETECTION SYSTEM
    • 具有位置检测功能和输入位置检测系统的显示设备
    • US20120229384A1
    • 2012-09-13
    • US13513165
    • 2010-11-12
    • Noriyuki NakaneNobuaki Takahashi
    • Noriyuki NakaneNobuaki Takahashi
    • G06F3/033
    • G06F3/0386G06F3/03545G06F3/0412G06F3/0416
    • An input position detection system (1) according to the present invention includes a laser pointer (50) that emits infrared light, and a liquid crystal display device (10) that detects a position of an input from the input pointer (50) by detecting the infrared light. The liquid crystal display device (10) includes optical sensor elements (30), a received light intensity calculation circuit (31), a coordinate extracting circuit (32), a combining and calculating circuit (33), an input signal calculation circuit (35), and the like. The combining and calculating circuit (33) calculates the intensities of received light at respective coordinate positions on the basis of the information obtained by the coordinate extracting circuit (32) and the received light intensity calculation circuit (31). The input signal calculation circuit (35) calculates a distance of the laser pointer (50) from an image display surface, and detects the three-dimensional position of the laser pointer on the basis of the received light intensity information. The input position detection system thus handles three-dimensional pointing with a higher degree of accuracy.
    • 根据本发明的输入位置检测系统(1)包括发射红外光的激光指示器(50)和液晶显示装置(10),其通过检测来自输入指针(50)的输入位置来检测 红外灯。 液晶显示装置(10)包括光学传感器元件(30),接收光强度计算电路(31),坐标提取电路(32),组合计算电路(33),输入信号计算电路 )等。 组合计算电路(33)根据坐标提取电路(32)和接收光强度计算电路(31)得到的信息,算出各坐标位置的接收光强度。 输入信号计算电路(35)计算激光指示器(50)与图像显示面的距离,并且根据所接收的光强度信息检测激光指示器的三维位置。 因此,输入位置检测系统以更高的准确度处理三维指向。
    • 10. 发明申请
    • SEMICONDUCTOR DEVICE
    • 半导体器件
    • US20120211872A1
    • 2012-08-23
    • US13461230
    • 2012-05-01
    • Masaya KAWANOKoji SOEJIMANobuaki TAKAHASHI
    • Masaya KAWANOKoji SOEJIMANobuaki TAKAHASHI
    • H01L23/522
    • H01L21/76898H01L23/481H01L2224/13H01L2224/13025H01L2224/14181
    • A falling off of a through electrode is inhibited without decreasing a reliability of a semiconductor device including a through electrode. A semiconductor device 100 includes: a silicon substrate 101; a through electrode 129 extending through the silicon substrate 101; and a first insulating ring 130 provided in a circumference of a side surface of the through electrode 129 and extending through the semiconductor substrate 101. In addition, the semiconductor device 100 also includes a protruding portion 146, being provided at least in the vicinity of a back surface of a device-forming surface of the semiconductor substrate 101 so as to contact with the through electrode 129, and protruding in a direction along the surface of the semiconductor substrate 101 toward an interior of the through electrode 129.
    • 在不降低包括通孔的半导体器件的可靠性的情况下,抑制穿通电极的脱落。 半导体器件100包括:硅衬底101; 穿过硅衬底101的通孔电极129; 以及设置在贯通电极129的侧面的周围并延伸穿过半导体基板101的第一绝缘环130.此外,半导体器件100还包括突出部分146,其设置在至少在 半导体衬底101的器件形成表面的背表面与通孔129接触,并沿着半导体衬底101的表面朝向通孔129的内部突出。