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    • 41. 发明授权
    • Electrcally plastic device and its control method
    • 电塑化装置及其控制方法
    • US5153681A
    • 1992-10-06
    • US836556
    • 1992-02-18
    • Yoshio KishimotoMamoru SogaSusumu Maruno
    • Yoshio KishimotoMamoru SogaSusumu Maruno
    • H01L29/78H01L51/00H01L51/30H01L51/40
    • H01L51/0541H01L51/002H01L51/0512H01L51/0516H01L51/0035H01L51/0036
    • This invention provides an electrically plastic device in which an electron conjugated polymeric semiconductor layer containing a mobile dopant is formed across a pair of electrodes and at least one gate electrode is provided between said pair of electrodes with an insulating layer or a high-resistance layer interposed along said electron conjugated polymeric semiconductor layer, so that the dopant distribution in said electron conjugate polymeric semiconductor layer is controlled through said gate electrode, thereby controlling the electrical conductivity of said electron conjugated polymeric semiconductor layer. The device utilizes the substantially large variation in the electrical conductivity of an electrically conductive polymer depending on its dopant concentration, thus allowing a high-gain neurochip to be constructed. The control method of the electrically plastic device in accordance with this invention is carried out in such a way that a positive or negative pulse voltage is applied to the gate electrode to control the dopant distribution in the electron conjugated polymeric semiconductor layer, thereby varying the conductivity thereof, which is used as a learning or reset operation so as to make said gate electrode at ground potential so that the pair of electrodes (source and drain) are driven into conduction.
    • 本发明提供一种电塑设备,其中包含一个移动掺杂剂的电子共轭聚合半导体层跨越一对电极,并且至少一个栅电极设置在所述一对电极之间,其中绝缘层或插入了高电阻层 沿着所述电子共轭聚合物半导体层,使得通过所述栅电极控制所述电子共轭聚合物半导体层中的掺杂剂分布,由此控制所述电子共轭聚合物半导体层的导电性。 该器件根据其掺杂剂浓度利用导电聚合物的导电性的基本上大的变化,从而允许构建高增益神经芯片。 根据本发明的电塑设备的控制方法是以正/负脉冲电压施加到栅极以控制电子共轭聚合物半导体层中的掺杂剂分布,从而改变电导率 其被用作学习或复位操作,以使所述栅电极处于接地电位,使得所述一对电极(源极和漏极)被驱动为导通。
    • 43. 发明授权
    • Flexible heating wire
    • 柔性加热线
    • US4575620A
    • 1986-03-11
    • US609216
    • 1984-05-11
    • Kazunori IshiiYoshio KishimotoShuji Yamamoto
    • Kazunori IshiiYoshio KishimotoShuji Yamamoto
    • H05B3/14H05B3/56H05B3/02H05B3/54
    • H05B3/146H05B3/56
    • A flexible heating wire includes a first conductive body, a second conductive body, a thermally fusible electrically insulative body which are arranged such that the first and second conductive bodies will be brought into electric contact with each other when the thermally fusible electrically insulative body is thermally fused, a third conductive body, and a heating body having a positive temperature coefficient and held in electric contact with at least one of the first and second conductive bodies and the third conductive body. The flexible heating wire is capable of self-controlling the temperature of the heated heating body. The flexible heating wire can detect the danger of localized overheating, abnormal overheating, or the generation of an arc which is caused when the heating wire is subjected to external oppression, bending, or twisting, or when the heating wire is heated by an external source, or when a conductive material has been mixed in the PTC heating body. Through such detection, the flexible heating wire is prevented from being overheated beyond a certain temperature setting. The flexible heating wire will not be heated up to a high temperature after use over a prolonged period of time. Therefore, the flexible heating wire has a sufficient degree of safety.
    • 柔性加热线包括第一导电体,第二导​​电体,热熔电绝缘体,其布置成使得当热熔电绝缘体热时,第一和第二导电体将彼此电接触 熔融的第三导电体和具有正温度系数并与第一和第二导电体和第三导电体中的至少一个保持电接触的加热体。 柔性加热丝能够自我控制加热加热体的温度。 柔性加热线可以检测到当发热丝受到外部压迫,弯曲或扭曲时或当加热丝被外部源加热时引起的局部过热,异常过热或产生电弧的危险 ,或当PTC加热体中已经混合导电材料时。 通过这种检测,可以防止柔性加热丝超过一定的温度设定而过热。 柔性加热丝在长时间使用后不会被加热到高温。 因此,柔性加热丝具有足够的安全性。
    • 49. 发明授权
    • Flexible heating wire
    • 柔性加热线
    • US4742212A
    • 1988-05-03
    • US797155
    • 1985-11-12
    • Kazunori IshiiYoshio KishimotoShuji Yamamoto
    • Kazunori IshiiYoshio KishimotoShuji Yamamoto
    • H05B3/14H05B3/56H05B3/34
    • H05B3/146H05B3/56
    • A flexible heating wire includes a first conductive body, and a second conductive body, a thermally fusible electrically insulative body arranged such that the first and second conductive bodies will be brought into electric contact with each other when the thermally fusible electrically insulative body is thermally fused. Further provided is a third conductive body and a heating body having a positive temperature coefficient and held in electric contact with at least one of the first and second conductive bodies and the third conductive body. The flexible heating wire is capable of self-controlling the temperature of the heated heating body. The flexible heating wire can detect the danger of localized overheating, abnormal overheating, or the generation of an arc which is caused when the heating wire is subjected to external oppression, bending, or twisting, or when the heating wire is heated by an external source, or when a conductive material has been mixed in the PTC heating body. Through such detection, the flexible heating wire is prevented from being overheated beyond a certain temperature setting. The flexible heating wire will not be heated up to a high temperature after use over a prolonged period of time.