会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 7. 发明授权
    • Resilient material variable resistor
    • 弹性材料可变电阻
    • US07629871B2
    • 2009-12-08
    • US11701643
    • 2007-02-01
    • Allan E. SchrumMichael D. Rogers
    • Allan E. SchrumMichael D. Rogers
    • H01C10/00
    • 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. 发明授权
    • Variable resistance devices and methods
    • 可变电阻器件和方法
    • US07190251B2
    • 2007-03-13
    • US10188513
    • 2002-07-03
    • Allan E. SchrumMichael D. Rogers
    • Allan E. SchrumMichael D. Rogers
    • H01C10/06
    • H01C10/12H01C10/06H01C10/305H01C10/38Y10T29/49082Y10T29/49085Y10T29/49101Y10T29/49117
    • A method of providing a variable resistance from a resistive member including a resistive resilient material comprises electrically coupling a first conductor with the resistive member at a first contact location over a first contact area; and electrically coupling a second conductor with the resistive member at a movable second contact location over a second contact area. The second contact location is movable relative to the resistive member to change the second contact location between the second conductor and the resistive member, the first contact location and the movable second contact location being spaced from one another by a distance. The method further comprises changing at least one of the first location, the second location, the first contact area, and the second contact area to produce a change in resistance in the resistive member, measured between the first conductor at the first contact location and the second conductor at the second contact location, as the resistive member deforms along the second conductor.
    • 从包括电阻弹性材料的电阻构件提供可变电阻的方法包括在第一接触区域上的第一接触位置电耦合第一导体与电阻构件; 以及在第二接触区域上的可移动的第二接触位置处将第二导体与所述电阻构件电耦合。 第二接触位置可相对于电阻构件移动以改变第二导体和电阻构件之间的第二接触位置,第一接触位置和可动第二接触位置彼此间隔一定距离。 该方法还包括改变第一位置,第二位置,第一接触区域和第二接触区域中的至少一个,以在第一接触位置处的第一导体与第一接触位置之间测量的电阻构件中的电阻变化, 第二导体在第二接触位置处,因为电阻构件沿着第二导体变形。
    • 9. 发明授权
    • Signal controller
    • 信号控制器
    • US06856260B2
    • 2005-02-15
    • US10469805
    • 2002-03-04
    • Malcolm John HulettLee Brain
    • Malcolm John HulettLee Brain
    • H01C10/38H03G1/00H03M1/22
    • H03G1/0035H01C10/38
    • A compact low profile fader has an elongate support and a manually settable slider mounted for linearly slidable relative to the elongate support. A drive transmission operably interconnecting the slider and a digital encoder so that movement of the slider produces a digital output signal from the digital encoder. The digital encoder has a rotatable encoder disk and is mounted so that its longitudinal direction of extent is in alignment with that of the elongate support. The drive transmission includes a drive pulley and a loop of cord which is wound around the pulley. The pulley drives the rotatable encoder and has a helical groove in its peripheral surface. The cord is engaged in the helical groove and with the slider so that movement of the latter causes the pulley, and thereby the rotatable encoder disk, to be rotated.
    • 紧凑型低调衰减器具有细长支撑件和可手动设置的滑块,其可相对于细长支撑件线性滑动安装。 驱动传动装置可操作地将滑块和数字编码器相互连接,使得滑块的移动产生数字编码器的数字输出信号。 数字编码器具有可旋转的编码器盘,并且安装成使得其纵向方向与细长支撑件的长度方向一致。 驱动传动装置包括驱动滑轮和围绕滑轮缠绕的绳索环。 滑轮驱动可旋转编码器,并在其外围表面具有螺旋槽。 绳索被接合在螺旋槽中并且与滑块接合,使得绳索的运动引起滑轮,从而旋转编码器盘。
    • 10. 发明授权
    • Displacement detecting element
    • 位移检测元件
    • US06696694B2
    • 2004-02-24
    • US10363897
    • 2003-05-27
    • Otto PastyrGernot EchnerWolfgang Schlegel
    • Otto PastyrGernot EchnerWolfgang Schlegel
    • G21K104
    • G21K1/046A61N5/1042G01B7/003H01C10/38
    • The invention relates to a displacement-detecting element (1) comprising a measuring resistance (2), voltage source (3) and a displacement-dependent voltage pick off (4). The measuring resistance (2) is embodied in the form of a strip. The length of the resistor (6) corresponds to at least the maximal length of displacement (7) of the component to be detected. The invention also relates to a multileaf collimator (23) having such a displacement-detecting element (1). The aim of the invention is to produce a displacement-detecting element (a) for detecting the position of the leaves (22) in a multileaf collimator (23) in a precise and faultless manner. The displacement detecting element (1) is designed for detecting the displacement (7′) of the leaves (22) in a multileaf collimator (23) in the following manner: the measuring resistance (2) or the voltage pick off point (4) are connected in a rigid manner to the leaves (22) in order to detect the displacement and another functioning element (4 or 2) is arranged in a fixed manner. At least one of these functioning elements (2, 4) is disposed in an area (33, 33′, 33″) of the leaves (22), which is not exposed to main radiation (34).
    • 本发明涉及一种位移检测元件(1),其包括测量电阻(2),电压源(3)和位移相关的电压拾取器(4)。 测量电阻(2)以条带的形式实现。 电阻器(6)的长度至少等于待检测部件的最大位移长度(7)。 本发明还涉及具有这种位移检测元件(1)的多叶准直器(23)。 本发明的目的是产生用于以精确且无缺陷的方式检测多叶准直器(23)中的叶片(22)的位置的位移检测元件(a)。 位移检测元件(1)被设计用于以下列方式检测多叶准直器(23)中的叶片(22)的位移(7'):测量电阻(2)或电压拾取点(4) 以坚固的方式连接到叶片(22)以便检测位移,并且以固定的方式布置另一功能元件(4或2)。 这些功能元件(2,4)中的至少一个设置在不暴露于主辐射(34)的叶片(22)的区域(33,33',33“)中。