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    • 5. 发明授权
    • Electric resistance element, which can be electromechanically regulated
    • 电阻元件,可以机电调节
    • US06788187B2
    • 2004-09-07
    • US10432133
    • 2003-06-05
    • Carl-Friedrich MeyerHans-Joachim Scheibe
    • Carl-Friedrich MeyerHans-Joachim Scheibe
    • H01C1030
    • H01C10/308H01C10/305
    • The invention relates to an electric resistance element, which can be electromechanically regulated. A layer of a predeterminable width and thickness, consisting of an electrically conductive material with a constant specific electric resistance, is located on a substrate. At least one electric contact connection is also provided and an electric contact element can be displaced mechanically along the surface of said layer. The aim of the invention is to provide an appropriate resistance element that can be produced cost-effectively, with reproducible electric characteristics and a high resistance to wear, without a requirement for additional lubrication. To achieve this, according to the invention, a wear-resistant layer of uniform thickness is configured on the electrically condutive layer situated on the substrate. Said layer consists exclusively of a carbon similar to diamond and has a higher specific electric resistance than that of the layer. The layer of carbon similar to diamond thus lies in contact with the mechanically displaceable contact element.
    • 本发明涉及一种可以机电调节的电阻元件。 由具有恒定比电阻的导电材料组成的可预定宽度和厚度的层位于基板上。 还提供至少一个电接触连接,并且电接触元件可以沿着所述层的表面机械移位。 本发明的目的是提供一种合适的电阻元件,其可以经济高效地制造,具有可再现的电特性和高耐磨性,而不需要额外的润滑。 为了实现这一点,根据本发明,在位于基板上的电性调节层上配置均匀厚度的耐磨层。 所述层仅由类似于金刚石的碳组成,并且具有比该层更高的比电阻。 因此,与金刚石相似的碳层与机械可移动的接触元件接触。
    • 7. 发明申请
    • ELECTRIC RESISTANCE ELEMENT, WHICH CAN BE ELECTROMECHANICALLY REGULATED
    • 电阻元件,可电气调节
    • US20040041686A1
    • 2004-03-04
    • US10432133
    • 2003-06-05
    • Carl-Friedrich MeyerHans-Joachim Scheibe
    • H01C010/30
    • H01C10/308H01C10/305
    • The invention relates to an electromechanically controllable electric resistance element. On that occasion, a layer made of an electrically conductive material having a constant specific electric resistance is located on a substrate with a width and thickness which can be predetermined. In addition, at least one electric contacting terminal is present, and an electric contact element can be moved mechanically along the surface of this layer. With the invention, an appropriate resistance element is to be provided which may be economically manufactured with reproducible electric properties, and which has a high resistance to wear wherein this shall also be achieved without any additional lubrication. According to the invention, with this a wear resisting layer having a constant thickness and a specific electric resistance being higher than that of the layer and being exclusively formed from carbon similar to diamond will be formed upon the electrically conductive layer on the substrate. The layer of carbon similar to diamond is then in a contiguous contact with the mechanically movable contact element.
    • 本发明涉及一种机电可控电阻元件。 在这种情况下,由具有恒定比电阻的导电材料制成的层位于可以预定的宽度和厚度的基板上。 此外,存在至少一个电接触端子,并且电接触元件可以沿着该层的表面机械移动。 通过本发明,可以提供一种适当的电阻元件,其可以经济地制造具有可再现的电性能,并且其具有高耐磨性,其中也可以在没有任何附加润滑的情况下实现。 根据本发明,由此,在基板上的导电层上形成具有恒定厚度和比电阻高于层的耐磨层,并且仅由类似于金刚石的碳形成。 与金刚石类似的碳层然后与机械可移动的接触元件连续接触。
    • 8. 发明授权
    • Electrical resistance element with a semiconductor overlay
    • 具有半导体覆盖层的电阻元件
    • US3673539A
    • 1972-06-27
    • US3673539D
    • 1970-05-11
    • BUNKER RAMO
    • HEALY ROBERT MMARSHALL ROBERT
    • H01C10/00H01C10/30H01C17/08H01C17/28H01C9/02
    • H01C17/288H01C10/00H01C10/308H01C17/08
    • A thin film overlay of a semi-conductive material, such as germanium, silicon, indium antimonide, titanium oxide or ferric oxide, covers the resistor track of a film resistance element. A resistance element incorporating this improvement, as compared with one having a noble metal overlay, has a much lower temperature coefficient of resistance. A germanium overlay may be provided by evacuating the space about the resistive element to a pressure of about 2 X 10 5 torr, supplying the germanium material in granular particles ranging in fineness between 180320 mesh by vibration and gravity in a steady and even flow thereof to the evacuated space at a point with respect to which the resistor track is exposed, and then evaporating the germanium at the point by electrical resistance heating to vaporization temperature at about 1,850* C. When used in a potentiometer with a movable contact, a resistance element so made exhibits superior wear stability, and good contact resistance variation characteristics.
    • 诸如锗,硅,锑化锑,氧化钛或氧化铁之类的半导体材料的薄膜覆盖物覆盖了薄膜电阻元件的电阻轨迹。 与具有贵金属覆盖层的电阻元件相比,具有这种改进的电阻元件具有低得多的电阻温​​度系数。 可以通过将围绕电阻元件的空间抽出约2×10 -5乇的压力来提供锗覆盖层,通过振动和重力将颗粒颗粒在180-320目之间的细度范围内稳定地供给到锗 - 在电阻轨迹暴露的点处均匀地流到抽空空间,然后通过电阻加热将锗蒸发至蒸发温度约为1850℃。