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    • 56. 发明授权
    • Method of producing an electrical resistant fluid-permeable heat
generating member
    • 电阻液体渗透发热元件的制造方法
    • US4040823A
    • 1977-08-09
    • US675528
    • 1976-04-09
    • Takeshi Yamaguchi
    • Takeshi Yamaguchi
    • B22F3/11C04B35/565C22C1/05F24H1/10H05B3/14B22F1/00
    • B22F3/1121C04B35/565C22C1/051F24H1/101H05B3/148B22F2998/00H05B2203/021
    • A fluid-permeable electrically energized heat generating member of a desired shape, such as a rectangular brick, is formed by (1) mixing (a) about 87 to 94% by weight of a first material which contains about 80 to 95% by weight of SiC and about 5 to 20% by weight of a mixture of carbonyl iron, nickel-chromium alloy, cobalt and carbon; (b) about 5 to 10% by weight of a second material which contains about 75 to 95% by weight of an organic binder material, such as a linseed oil and about 5 to 25% by weight of a foaming material, such as methylene diphenyl isocyanate; and (c) about 0.2 to 3% by weight of a third material selected from the group consisting of polystyrene preformed powder, sawdust, wood flour, starch, corn flour and mixtures thereof; (2) placing the resultant mixture in a select mold and subjecting the mold to curing conditions sufficient to provide self-sustaining members composed of the foregoing mixture; (3) removing the self-sustaining members from the molds and subjecting them to a heat at a temperature in the range of about 250.degree. to 350.degree. F. for a period of time sufficient to render the bodies electrically conductive; (4) sintering the electrically conductive bodies as by passing a controlled electrical current through each member until a temperature in the range of about 1000.degree. to 1600.degree. F. is achieved within the member; and (5) metallizing terminal sides of each member, as by applying an aluminum layer thereon for contact with a suitable electrical circuit.
    • 通过(1)混合(a)约87至94重量%的含有约80至95重量%的第一材料,形成所需形状的流体可渗透的电能发热元件,例如矩形砖 的SiC和约5-20重量%的羰基铁,镍 - 铬合金,钴和碳的混合物; (b)约5至10重量%的第二材料,其包含约75至95重量%的有机粘合剂材料,例如亚麻籽油和约5至25重量%的起泡材料,例如亚甲基 二苯基异氰酸酯; 和(c)约0.2至3重量%的选自聚苯乙烯预制粉末,锯屑,木粉,淀粉,玉米粉及其混合物的第三材料; (2)将所得混合物置于精选模具中,使模具处于足以提供由上述混合物构成的自持构件的固化条件; (3)将自支撑构件从模具中取出并在约250°至350°F范围内的温度下进行加热,持续一段时间足以使机体导电; (4)通过使受控的电流通过每个部件烧结导电体,直到在该部件内实现约1000°至1600°F范围内的温度; 以及(5)通过在其上施加与合适的电路接触的铝层来金属化每个构件的端子侧。
    • 60. 发明授权
    • Display device with touch sensor, and drive method for the device
    • 具有触摸传感器的显示设备,以及该设备的驱动方法
    • US08274481B2
    • 2012-09-25
    • US11665999
    • 2005-10-21
    • Tomohiko NishimuraSaburoh MiyamotoToshihisa NakanoHiroshi HamadaTakeshi Yamaguchi
    • Tomohiko NishimuraSaburoh MiyamotoToshihisa NakanoHiroshi HamadaTakeshi Yamaguchi
    • G06F3/041
    • G06F3/044
    • A touch-sensored display device 20 according to the present invention includes: a counter substrate 6 disposed on a viewer side of an active matrix substrate 8 via a display medium layer 4, the counter substrate 6 having a counter electrode 5 which opposes pixel electrodes; a display panel driving circuit 14 for supplying to the counter electrode 5 a common voltage which undergoes periodic inversion in polarity; a transparent conductive film 7 for position detection placed so as to oppose the counter electrode 5 via the counter substrate 6; a strobe signal generation circuit 32 for generating a strobe signal which is in synchronization with a polarity inversion period of the common voltage, and a noise-cut current signal generation circuit 30 for generating a noise-cut current signal which is obtained by eliminating based on the strobe signal a predetermined portion from a current flowing from a terminal connected to the transparent conductive film 7 for position detection.
    • 根据本发明的感触显示装置20包括:经由显示介质层4设置在有源矩阵基板8的观察者侧的对置基板6,对置基板6具有与像素电极相对的对置电极5; 显示面板驱动电路14,用于向对向电极5提供在极性上经历周期性反转的公共电压; 用于位置检测的透明导电膜7,经由对置基板6与相对电极5相对放置; 用于产生与公共电压的极性反转周期同步的选通信号的选通信号发生电路32,以及用于产生噪声截止电流信号的噪声截止电流信号产生电路30,该噪声切断电流信号通过基于 选通脉冲从从连接到用于位置检测的透明导电膜7的端子流出的电流中发出预定的部分。