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    • 45. 发明申请
    • SLIDING ELECTRIC COMPONENT
    • 滑动电气部件
    • US20160189886A1
    • 2016-06-30
    • US14908681
    • 2013-08-02
    • TOKYO COSMOS ELECTRIC CO., LTD.
    • Noritaka TERASAWA
    • H01H1/027H01H15/06H01H1/36
    • H01H1/027H01H1/06H01H1/36H01H1/44H01H15/04H01H15/06
    • Provided is a sliding electric component that extends the service life of a slider, inhibits the occurrence of abnormal sounds during sliding, smooths the sliding of the slider, and inhibits the occurrence of abrasion powder from carbon paste. The sliding electric component comprises a first power collection part (12), a second power collection part (13), and a slider (15) for sliding on the first power collection part (12) and the second power collection part (13), wherein the a plurality of areas (12a, 13a) composed of carbon paste are formed in the sliding direction of the slider (15) in continuous fashion on the second power collection part (13) on which the slider (15) slides.
    • 提供了延长滑块的使用寿命的滑动电气部件,抑制滑动期间的异常声音的发生,滑动滑块的滑动,抑制碳糊剂的磨损粉末的产生。 滑动电气部件包括第一集电部(12),第二集电部(13)和用于在第一集电部(12)和第二电力收集部(13)上滑动的滑块(15) 其特征在于,在所述滑块(15)滑动的第二集电部(13)上,以滑块(15)的滑动方向连续地形成由碳膏构成的多个区域(12a,13a)。
    • 49. 发明申请
    • Nanoelectromechanical transistors and switch systems
    • 纳米机电晶体管和开关系统
    • US20050104085A1
    • 2005-05-19
    • US10886648
    • 2004-07-07
    • Joseph PinkertonJohn HarlanJeffrey Mullen
    • Joseph PinkertonJohn HarlanJeffrey Mullen
    • G11C13/02G11C23/00H01H1/00H01H1/027H01L31/072H01L21/336
    • G11C23/00B81B3/0021B81B2201/014B82Y10/00B82Y30/00G11C13/025G11C2213/16H01H1/0094H01H1/027Y10S977/732
    • Nanoelectromechanical switch systems (NEMSS) that are structured around the mechanical manipulation of nanotubes are provided. Such NEMSS can realize the functionality of, for example, automatic switches, adjustable diodes, amplifiers, inverters, variable resistors, pulse position modulators (PPMs), and transistors. In one embodiment, a nanotube is anchored at one end to a base member. The nanotube is also coupled to a voltage source. This voltage source creates an electric charge at the tip of the free-moving-end of the nanotube that is representative of the polarity and intensity of the voltage source. The free-moving end of this nanotube can be electrically controlled by applying an electric charge to a nearby charge member layer that is either of the same (repelling) or opposite (attracting) polarity of the nanotube. A contact layer is then placed in the proximity of the free-moving end of the nanotube such that when a particular electric charge is placed on the nanotube, the nanotube electrically couples the contact layer.
    • 提供了围绕纳米管的机械操作构建的纳米机电开关系统(NEMSS)。 这样的NEMSS可以实现例如自动开关,可调二极管,放大器,反相器,可变电阻器,脉冲位置调制器(PPM)和晶体管的功能。 在一个实施方案中,纳米管在一端锚定到基底构件。 纳米管还耦合到电压源。 该电压源在纳米管的自由移动端的尖端处产生代表电压源的极性和强度的电荷。 该纳米管的自由移动端可以通过将电荷施加到与纳米管相同(排斥)或相反(吸引))极性的附近的电荷元件层来进行电控制。 然后将接触层放置在纳米管的自由移动端附近,使得当在纳米管上放置特定的电荷时,纳米管电耦合接触层。