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    • 23. 发明授权
    • Non-contact hysteresis measurements of insulating films
    • 绝缘膜的非接触磁滞测量
    • US06734696B2
    • 2004-05-11
    • US10286358
    • 2002-11-01
    • Gregory S. HornerThomas G. Miller
    • Gregory S. HornerThomas G. Miller
    • G01R3102
    • G01N27/60G01N27/61
    • Non-contact methods for determining a property of an insulating film are provided. One method includes measuring an amount of hysteresis in the insulating film without contacting the insulating film. The method also includes determining the amount of hysteresis in the insulating film. Computer-implemented methods for data analysis are also provided. One computer-implemented method includes determining a single numeric value representing an amount of hysteresis in an insulating film from electrical characteristics of the insulating film. The electrical characteristics are measured without contacting the insulating film. In addition, systems that include a measurement system and a computer-usable carrier medium are provided. The measurement system is configured to measure an amount of hysteresis in an insulating film without contacting the insulating film. The carrier medium includes program instructions, which are executable on a computer system for determining the amount of hysteresis in the insulating film using measurements from the measurement system.
    • 提供了用于确定绝缘膜的性质的非接触方法。 一种方法包括测量绝缘膜中的滞后量而不接触绝缘膜。 该方法还包括确定绝缘膜中的滞后量。 还提供了计算机实现的数据分析方法。 一种计算机实现的方法包括从绝缘膜的电特性确定表示绝缘膜中的滞后量的单个数值。 在不接触绝缘膜的情况下测量电特性。 此外,还提供了包括测量系统和计算机可用的载体介质的系统。 测量系统被配置为测量绝缘膜中的滞后量而不接触绝缘膜。 载体介质包括可在计算机系统上执行的程序指令,用于使用来自测量系统的测量来确定绝缘膜中的滞后量。
    • 24. 发明授权
    • Method and apparatus for detecting and discriminating between particles
and rays
    • 用于检测和区分颗粒和射线的方法和装置
    • US5155366A
    • 1992-10-13
    • US753368
    • 1991-08-30
    • Thomas G. Miller
    • Thomas G. Miller
    • G01T1/20
    • G01T1/20
    • Apparatus and method for detecting a particular type of particle in an energy range of interest are provided. The apparatus includes two photomultipliers (24, 26) which are spaced apart in facing relation to one another. A scintillator (22) is positioned between the photomultipliers (24, 26). The scintillator (22) comprises an array of optical fibers, preferably light pipes (40), arranged substantially contiguously side-by-side. Each of the light pipes (40) has a first end proximate the first photomultiplier (24) and an opposing second end proximate the second photomultiplier (26). Each light pipe (40) has one of its ends being non-transmissive of light. The light pipes are arranged so that contiguous ones of the light pipes (40) do not have their same ends being non-transmissive of light. Each of the light pipes (40) in the array have a cross sectional dimension thereof chosen in relation to a distance that the particular type of particle in the energy range of interest can travel. A signal processor unit (28) uses signals from the photomultipliers (24, 26) to determine when a particular type of particle in the energy range of interest is detected. The signal processor unit (28) discriminates between different types of particles and rays by determining the number of light pipes (40) affected within a predetermined time interval by an incoming particle or ray.
    • 提供了在感兴趣的能量范围内检测特定类型的颗粒的装置和方法。 该装置包括彼此面对的间隔开的两个光电倍增管(24,26)。 闪烁体(22)位于光电倍增管(24,26)之间。 闪烁体(22)包括光纤阵列,优选地是并排布置的光导管(40)。 每个光管(40)具有靠近第一光电倍增管(24)的第一端和靠近第二光电倍增管(26)的相对的第二端。 每个光管(40)的一端不透光。 光管被布置成使得相邻的光管(40)不具有不透光的相同的端部。 阵列中的每个光管(40)具有相对于感兴趣的能量范围内的特定类型的颗粒可以行进的距离而选择的横截面尺寸。 信号处理器单元(28)使用来自光电倍增器(24,26)的信号来确定何时检测到感兴趣的能量范围内的特定类型的粒子。 信号处理器单元(28)通过确定通过进入的粒子或射线在预定时间间隔内影响的光管(40)的数量来区分不同类型的粒子和射线。
    • 25. 发明授权
    • Directional and limiting gate
    • 定向和限制门
    • US4145994A
    • 1979-03-27
    • US802080
    • 1977-05-31
    • Thomas G. Miller
    • Thomas G. Miller
    • A01K1/00A01K29/00
    • A01K1/0017
    • A directional and size limiting gate for controlling the flow of animals between adjacent pens. Vertically disposed frame members are spaced apart in the form of an equilateral triangle. Latch and hinge arrangements along each vertical door edge permits a door to open from, or pivot from, any one of the frame members. The door has tabs horizontally extending beyond the vertical edges of the door. Each side of the door has a control rod guided by apertures in the tabs, with the control arm having hinge pins thereon. The hinge pins secure the tabs of the door to hinge sockets at spaced locations along the vertically disposed frame members. Some horizontally disposed frame members have sockets for receiving bars, said sockets being variably positionable along the horizontal frame members for controlling the size of animal passing therebetween and/or for holding one edge of the door in a selected position.
    • 用于控制相邻笔之间动物流动的方向和尺寸限制门。 垂直布置的框架构件以等边三角形的形式间隔开。 沿着每个垂直门边缘的闩锁和铰链装置允许门从任何一个框架构件打开或枢转。 门具有水平延伸超过门的垂直边缘的舌片。 门的每一侧具有由突片中的孔引导的控制杆,控制臂在其上具有铰链销。 铰链销将沿着垂直设置的框架构件的间隔开的位置将门的突片固定到铰链插座。 一些水平布置的框架构件具有用于接收杆的插座,所述插座可沿着水平框架构件可变地定位,用于控制动物在其间通过的尺寸和/或用于将门的一个边缘保持在选定位置。
    • 26. 发明授权
    • Animal size sorting and control gate
    • 动物大小排序和控制门
    • US4019464A
    • 1977-04-26
    • US693635
    • 1976-06-07
    • Thomas G. Miller
    • Thomas G. Miller
    • A01K1/00A01K29/00
    • A01K1/0023
    • An animal size sorting and control gate for efficient operation in a number of operative modes permitting passage in a single direction, passage in both directions or passage in either direction. A pair of width limiters, each having a pair of horizontally disposed arms and a vertical rail extending between the arms, are pivotable with respect to horizontally disposed frame members. A plate underlying an upper horizontal frame member has a plurality of apertures arranged in circular arcs about either side of the frame members for alignment with an aperture in one of the arms of the width limiter to selectively fix the operating position of the width limiters by placing a pin through the aligned apertures. A space between the vertical rails of the width limiters determines the maximum size of animals which may pass therethrough. A pair of doors are hingedly connected to a pair of vertical frame members such that the doors span most of the area in the vertical direction between the arms of the width limiters, and in the horizontal direction between the vertical frame members and the vertical rail of the width limiters when the width limiters are pivoted into a generally co-planar relationship with the doors. Door stops along horizontal edges of the doors are positioned to cooperate against stop means on the arms of the width limiters.
    • 一种用于在多个操作模式中有效操作的动物尺寸分选和控制门,允许沿单个方向通过,沿两个方向通过或沿任一方向通过。 一对宽度限制器,每个具有一对水平布置的臂和在臂之间延伸的竖直轨道,可相对于水平布置的框架构件枢转。 上水平框架构件下面的板具有围绕框架构件的任一侧布置成圆弧的多个孔,用于与宽度限制器的一个臂中的孔对准,以通过放置宽度限制器的操作位置来选择性地固定 一个针穿过对齐的孔。 宽度限制器的垂直轨道之间的空间确定可能通过其中的动物的最大尺寸。 一对门铰接地连接到一对垂直框架构件,使得门跨过宽度限制器的臂之间的垂直方向上的大部分区域,并且在垂直框架构件和垂直框架的垂直轨道之间的水平方向上 当宽度限制器枢转到与门的大致共面关系时,宽度限制器。 沿着门的水平边缘的门挡块被定位成与宽度限制器的臂上的止动装置配合。