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    • 1. 发明申请
    • Resilient material variable resistor
    • US20070132543A1
    • 2007-06-14
    • US11701579
    • 2007-02-01
    • Allan SchrumMichael Rogers
    • Allan SchrumMichael Rogers
    • H01C10/06
    • H01C10/12H01C10/06H01C10/305H01C10/38Y10T29/49082Y10T29/49085Y10T29/49101Y10T29/49117
    • A variable resistance device comprises a resistive member having a resistive resilient material. A first conductor is configured to be electrically coupled with the resistive member at a first contact location over a first contact area. A second conductor is configured to be electrically coupled with the resistance member at a second contact location over a second contact area. The first contact location and second contact location are spaced from one another by a distance. The resistance between the first conductor at the first contact location and the second conductor at the second contact location is equal to the sum of a straight resistance component and a parallel path resistance component. At least one of the first location, the second location, the first contact area, and the second contact area is changed to produce a change in resistance between the first conductor and the second conductor. The straight resistance component increases or decreases as the distance between the first contact location and the second contact location increases or decrease, respectively. The parallel path resistance component has preset desired characteristics based on selected first and second contact locations and selected first and second contact areas. The first and second contact locations and first and second contact areas can be selected such that the change in the resistance between the first and second contact locations is at least substantially equal to the change in the straight resistance component or the change in the parallel path resistance component.
    • 2. 发明申请
    • Resilient material potentiometer
    • 弹性材料电位器
    • US20070194877A1
    • 2007-08-23
    • US11701890
    • 2007-02-01
    • Allan SchrumMichael Rogers
    • Allan SchrumMichael Rogers
    • H01C10/10
    • H01C10/12H01C10/06H01C10/305H01C10/38Y10T29/49082Y10T29/49085Y10T29/49101Y10T29/49117
    • A variable resistance device comprises a resistive member having a resistive resilient material. A first conductor is configured to be electrically coupled with the resistive member at a first contact location over a first contact area. A second conductor is configured to be electrically coupled with the resistance member at a second contact location over a second contact area. The first contact location and second contact location are spaced from one another by a distance. The resistance between the first conductor at the first contact location and the second conductor at the second contact location is equal to the sum of a straight resistance component and a parallel path resistance component. At least one of the first location, the second location, the first contact area, and the second contact area is changed to produce a change in resistance between the first conductor and the second conductor. The straight resistance component increases or decreases as the distance between the first contact location and the second contact location increases or decrease, respectively. The parallel path resistance component has preset desired characteristics based on selected first and second contact locations and selected first and second contact areas. The first and second contact locations and first and second contact areas can be selected such that the change in the resistance between the first and second contact locations is at least substantially equal to the change in the straight resistance component or the change in the parallel path resistance component.
    • 可变电阻装置包括具有电阻弹性材料的电阻构件。 第一导体被配置为在第一接触区域上的第一接触位置处与电阻构件电耦合。 第二导体被配置为在第二接触区域上的第二接触位置处与电阻构件电耦合。 第一接触位置和第二接触位置彼此间隔一定距离。 在第一接触位置处的第一导体与第二接触位置处的第二导体之间的电阻等于直电阻分量和平行路径电阻分量的和。 改变第一位置,第二位置,第一接触区域和第二接触区域中的至少一个,以产生第一导体和第二导体之间的电阻变化。 直电阻分量随着第一接触位置和第二接触位置之间的距离分别增加或减小而增加或减小。 平行路径电阻分量基于所选择的第一和第二接触位置以及所选择的第一和第二接触区域来预设期望的特性。 可以选择第一和第二接触位置以及第一和第二接触区域,使得第一和第二接触位置之间的电阻的变化至少基本上等于直线电阻分量的变化或平行路径电阻的变化 零件。
    • 3. 发明申请
    • Resilient material variable resistor
    • US20070132544A1
    • 2007-06-14
    • US11701618
    • 2007-02-01
    • Allan SchrumMichael Rogers
    • Allan SchrumMichael Rogers
    • H01C10/06
    • H01C10/12H01C10/06H01C10/305H01C10/38Y10T29/49082Y10T29/49085Y10T29/49101Y10T29/49117
    • A variable resistance device comprises a resistive member having a resistive resilient material. A first conductor is configured to be electrically coupled with the resistive member at a first contact location over a first contact area. A second conductor is configured to be electrically coupled with the resistance member at a second contact location over a second contact area. The first contact location and second contact location are spaced from one another by a distance. The resistance between the first conductor at the first contact location and the second conductor at the second contact location is equal to the sum of a straight resistance component and a parallel path resistance component. At least one of the first location, the second location, the first contact area, and the second contact area is changed to produce a change in resistance between the first conductor and the second conductor. The straight resistance component increases or decreases as the distance between the first contact location and the second contact location increases or decrease, respectively. The parallel path resistance component has preset desired characteristics based on selected first and second contact locations and selected first and second contact areas. The first and second contact locations and first and second contact areas can be selected such that the change in the resistance between the first and second contact locations is at least substantially equal to the change in the straight resistance component or the change in the parallel path resistance component.
    • 4. 发明申请
    • RESILIENT MATERIAL POTENTIOMETER
    • 活性材料电位计
    • US20060261923A1
    • 2006-11-23
    • US11494828
    • 2006-07-28
    • Allan SchrumMichael Rogers
    • Allan SchrumMichael Rogers
    • H01C10/10
    • H01C10/12H01C10/06H01C10/305H01C10/38Y10T29/49082Y10T29/49085Y10T29/49101Y10T29/49117
    • A variable resistance device comprises a resistive member having a resistive resilient material. A first conductor is configured to be electrically coupled with the resistive member at a first contact location over a first contact area. A second conductor is configured to be electrically coupled with the resistance member at a second contact location over a second contact area. The first contact location and second contact location are spaced from one another by a distance. The resistance between the first conductor at the first contact location and the second conductor at the second contact location is equal to the sum of a straight resistance component and a parallel path resistance component. At least one of the first location, the second location, the first contact area, and the second contact area is changed to produce a change in resistance between the first conductor and the second conductor. The straight resistance component increases or decreases as the distance between the first contact location and the second contact location increases or decrease, respectively. The parallel path resistance component has preset desired characteristics based on selected first and second contact locations and selected first and second contact areas. The first and second contact locations and first and second contact areas can be selected such that the change in the resistance between the first and second contact locations is at least substantially equal to the change in the straight resistance component or the change in the parallel path resistance component.
    • 可变电阻装置包括具有电阻弹性材料的电阻构件。 第一导体被配置为在第一接触区域上的第一接触位置处与电阻构件电耦合。 第二导体被配置为在第二接触区域上的第二接触位置处与电阻构件电耦合。 第一接触位置和第二接触位置彼此间隔一定距离。 在第一接触位置处的第一导体与第二接触位置处的第二导体之间的电阻等于直电阻分量和平行路径电阻分量的和。 改变第一位置,第二位置,第一接触区域和第二接触区域中的至少一个,以产生第一导体和第二导体之间的电阻变化。 直电阻分量随着第一接触位置和第二接触位置之间的距离分别增加或减小而增加或减小。 平行路径电阻分量基于所选择的第一和第二接触位置以及所选择的第一和第二接触区域来预设期望的特性。 可以选择第一和第二接触位置以及第一和第二接触区域,使得第一和第二接触位置之间的电阻的变化至少基本上等于直线电阻分量的变化或平行路径电阻的变化 零件。
    • 5. 发明申请
    • Resilient material potentiometer
    • US20070188294A1
    • 2007-08-16
    • US11701578
    • 2007-02-01
    • Allan SchrumMichael Rogers
    • Allan SchrumMichael Rogers
    • H01C10/10
    • H01C10/12H01C10/06H01C10/305H01C10/38Y10T29/49082Y10T29/49085Y10T29/49101Y10T29/49117
    • A variable resistance device comprises a resistive member having a resistive resilient material. A first conductor is configured to be electrically coupled with the resistive member at a first contact location over a first contact area. A second conductor is configured to be electrically coupled with the resistance member at a second contact location over a second contact area. The first contact location and second contact location are spaced from one another by a distance. The resistance between the first conductor at the first contact location and the second conductor at the second contact location is equal to the sum of a straight resistance component and a parallel path resistance component. At least one of the first location, the second location, the first contact area, and the second contact area is changed to produce a change in resistance between the first conductor and the second conductor. The straight resistance component increases or decreases as the distance between the first contact location and the second contact location increases or decrease, respectively. The parallel path resistance component has preset desired characteristics based on selected first and second contact locations and selected first and second contact areas. The first and second contact locations and first and second contact areas can be selected such that the change in the resistance between the first and second contact locations is at least substantially equal to the change in the straight resistance component or the change in the parallel path resistance component.
    • 6. 发明申请
    • Resilient material variable resistor
    • 弹性材料可变电阻
    • US20070139156A1
    • 2007-06-21
    • US11701643
    • 2007-02-01
    • Allan SchrumMichael Rogers
    • Allan SchrumMichael Rogers
    • H01C10/10
    • H01C10/12H01C10/06H01C10/305H01C10/38Y10T29/49082Y10T29/49085Y10T29/49101Y10T29/49117
    • A variable resistance device comprises a resistive member having a resistive resilient material. A first conductor is configured to be electrically coupled with the resistive member at a first contact location over a first contact area. A second conductor is configured to be electrically coupled with the resistance member at a second contact location over a second contact area. The first contact location and second contact location are spaced from one another by a distance. The resistance between the first conductor at the first contact location and the second conductor at the second contact location is equal to the sum of a straight resistance component and a parallel path resistance component. At least one of the first location, the second location, the first contact area, and the second contact area is changed to produce a change in resistance between the first conductor and the second conductor. The straight resistance component increases or decreases as the distance between the first contact location and the second contact location increases or decrease, respectively. The parallel path resistance component has preset desired characteristics based on selected first and second contact locations and selected first and second contact areas. The first and second contact locations and first and second contact areas can be selected such that the change in the resistance between the first and second contact locations is at least substantially equal to the change in the straight resistance component or the change in the parallel path resistance component.
    • 可变电阻装置包括具有电阻弹性材料的电阻构件。 第一导体被配置为在第一接触区域上的第一接触位置处与电阻构件电耦合。 第二导体被配置为在第二接触区域上的第二接触位置处与电阻构件电耦合。 第一接触位置和第二接触位置彼此间隔一定距离。 在第一接触位置处的第一导体与第二接触位置处的第二导体之间的电阻等于直电阻分量和平行路径电阻分量的和。 改变第一位置,第二位置,第一接触区域和第二接触区域中的至少一个,以产生第一导体和第二导体之间的电阻变化。 直电阻分量随着第一接触位置和第二接触位置之间的距离分别增加或减小而增加或减小。 平行路径电阻分量基于所选择的第一和第二接触位置以及所选择的第一和第二接触区域来预设期望的特性。 可以选择第一和第二接触位置以及第一和第二接触区域,使得第一和第二接触位置之间的电阻的变化至少基本上等于直线电阻分量的变化或平行路径电阻的变化 零件。
    • 7. 发明申请
    • Linear resilient material variable resistor
    • 线性弹性材料可变电阻器
    • US20070063811A1
    • 2007-03-22
    • US11544114
    • 2006-10-06
    • Allan SchrumMichael Rogers
    • Allan SchrumMichael Rogers
    • H01C10/10
    • H01C10/12H01C10/06H01C10/305H01C10/38Y10T29/49082Y10T29/49085Y10T29/49101Y10T29/49117
    • A variable resistance device comprises a resistive member having a resistive resilient material. A first conductor is configured to be electrically coupled with the resistive member at a first contact location over a first contact area. A second conductor is configured to be electrically coupled with the resistance member at a second contact location over a second contact area. The first contact location and second contact location are spaced from one another by a distance. The resistance between the first conductor at the first contact location and the second conductor at the second contact location is equal to the sum of a straight resistance component and a parallel path resistance component. At least one of the first location, the second location, the first contact area, and the second contact area is changed to produce a change in resistance between the first conductor and the second conductor. The straight resistance component increases or decreases as the distance between the first contact location and the second contact location increases or decrease, respectively. The parallel path resistance component has preset desired characteristics based on selected first and second contact locations and selected first and second contact areas. The first and second contact locations and first and second contact areas can be selected such that the change in the resistance between the first and second contact locations is at least substantially equal to the change in the straight resistance component or the change in the parallel path resistance component.
    • 可变电阻装置包括具有电阻弹性材料的电阻构件。 第一导体被配置为在第一接触区域上的第一接触位置处与电阻构件电耦合。 第二导体被配置为在第二接触区域上的第二接触位置处与电阻构件电耦合。 第一接触位置和第二接触位置彼此间隔一定距离。 在第一接触位置处的第一导体与第二接触位置处的第二导体之间的电阻等于直电阻分量和平行路径电阻分量的和。 改变第一位置,第二位置,第一接触区域和第二接触区域中的至少一个,以产生第一导体和第二导体之间的电阻变化。 直电阻分量随着第一接触位置和第二接触位置之间的距离分别增加或减小而增加或减小。 平行路径电阻分量基于所选择的第一和第二接触位置以及所选择的第一和第二接触区域来预设期望的特性。 可以选择第一和第二接触位置以及第一和第二接触区域,使得第一和第二接触位置之间的电阻的变化至少基本上等于直线电阻分量的变化或平行路径电阻的变化 零件。
    • 8. 发明申请
    • Resilient material variable resistor
    • US20070063810A1
    • 2007-03-22
    • US11546652
    • 2006-10-11
    • Allan SchrumMichael Rogers
    • Allan SchrumMichael Rogers
    • H01C10/10
    • H01C10/12H01C10/06H01C10/305H01C10/38Y10T29/49082Y10T29/49085Y10T29/49101Y10T29/49117
    • A variable resistance device comprises a resistive member having a resistive resilient material. A first conductor is configured to be electrically coupled with the resistive member at a first contact location over a first contact area. A second conductor is configured to be electrically coupled with the resistance member at a second contact location over a second contact area. The first contact location and second contact location are spaced from one another by a distance. The resistance between the first conductor at the first contact location and the second conductor at the second contact location is equal to the sum of a straight resistance component and a parallel path resistance component. At least one of the first location, the second location, the first contact area, and the second contact area is changed to produce a change in resistance between the first conductor and the second conductor. The straight resistance component increases or decreases as the distance between the first contact location and the second contact location increases or decrease, respectively. The parallel path resistance component has preset desired characteristics based on selected first and second contact locations and selected first and second contact areas. The first and second contact locations and first and second contact areas can be selected such that the change in the resistance between the first and second contact locations is at least substantially equal to the change in the straight resistance component or the change in the parallel path resistance component.