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    • 1. 发明申请
    • WIRELESS POWER SUPPLY DEVICE AND WIRELESS POWER SUPPLY METHOD
    • 无线电源设备和无线供电方法
    • US20130306124A1
    • 2013-11-21
    • US13983113
    • 2012-01-24
    • Masakazu YajimaOsamu Enoki
    • Masakazu YajimaOsamu Enoki
    • H01L35/32
    • H01L35/32H01L35/16H01L35/34
    • To provide a wireless power supply device and a wireless power supply method capable of supplying electric power by a wireless system, using a means other than radio waves. This wireless power supply device of the present invention is provided with (A) a thermoelectric generation device which performs thermoelectric generation in response to the change in atmospheric temperature, and (B) a temperature control device which periodically changes the atmospheric temperature of the thermoelectric generation device. Further, this wireless power supply method uses a wireless power supply device provided with a thermoelectric generation device and a temperature control device, wherein the atmospheric temperature of the thermoelectric generation device is periodically changed by the temperature control device, and the thermoelectric generation device performs thermoelectric generation in response to the change in the atmospheric temperature, and the obtained power is brought to the exterior.
    • 提供一种能够通过无线电系统提供电力的无线电源装置和无线电力供给方法,其使用除了无线电波之外的装置。 本发明的无线供电装置具备:(A)响应于大气温度的变化而进行热电生成的热电发电装置,(B)周期性地变化热电发电的大气温度的温度控制装置 设备。 此外,该无线供电方法使用具有热电生成装置和温度控制装置的无线供电装置,其中,所述热电发电装置的大气温度由所述温度控制装置周期性地变化,所述热电发电装置进行热电 响应于大气温度的变化,并且获得的功率被带到外部。
    • 8. 发明申请
    • CAPACITIVE TOUCH MEMBER, MANUFACTURING METHOD THEREFOR, AND CAPACITIVE TOUCH DETECTION APPARATUS
    • 电容式触控器,其制造方法及电容触摸检测装置
    • US20120032916A1
    • 2012-02-09
    • US13260477
    • 2010-03-25
    • Osamu Enoki
    • Osamu Enoki
    • G06F3/044H05K3/00
    • G06F3/044H03K17/962H03K2017/9602H03K2017/9604H03K2217/960755Y10T29/49124
    • [Object] To provide a capacitive touch member having a flexible shape or a stereoscopic shape and includes a light transmissive detection electrode, a manufacturing method therefor, and a capacitive touch detection apparatus including the capacitive touch member.[Solving Means] Produced is a capacitive touch member (10) including a film-like or plate-like support (1) that is formed of an insulating material and has a flexible shape or a stereoscopic shape, a detection electrode (2) that is arranged on at least a part of one surface of the support (1) and formed of a light transmissive conductive layer containing a carbon nano linear structure such as a carbon nanotube, and a lead-out wire (3) that is led out from the detection electrode (2). A capacitive touch detection apparatus is constituted of the touch member (10) and a capacitance detection circuit (60) that is electrically connected to the detection electrode (2) via the lead-out wire (3) and detects a change in capacitance due to approach or contact of a human body with respect to a touch surface (4). The detection electrode (2) may be coated with a protective film, and a surface of the protective film may be used as a touch surface.
    • 本发明提供一种具有柔性形状或立体形状的电容式触摸部件,并且包括透光检测电极及其制造方法以及包括该电容式触摸部件的电容式触摸检测装置。 [解决方案]产生包括由绝缘材料形成且具有柔性形状或立体形状的膜状或板状支撑体(1)的电容性触摸部件(10),检测电极(2),其 布置在支撑体(1)的一个表面的至少一部分上,并且由包含诸如碳纳米管的碳纳米线性结构的透光导电层和从所述导电线(3)引出的引出线 检测电极(2)。 电容式触摸检测装置由触摸构件(10)和经由引出线(3)与检测电极(2)电连接的电容检测电路(60)构成,并检测由于 接触或接触人体相对于触摸表面(4)。 检测电极(2)可以涂覆有保护膜,并且保护膜的表面可以用作触摸表面。