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    • 51. 发明申请
    • Method and apparatus for regulating a current through an inductive load
    • 用于调节通过感性负载的电流的方法和装置
    • US20050206356A1
    • 2005-09-22
    • US11073432
    • 2005-03-04
    • Wolfgang Horn
    • Wolfgang Horn
    • G05F1/40H02M3/137H02M3/156
    • H02M3/156
    • The invention relates to a method and an apparatus for regulating a current through an inductive load, which can be connected to a power supply, to a prescribed nominal current value, where the method comprises the following method steps: a) turning on and off the power supply in pulsed fashion, with the power supply being turned on when the current (I) flowing through the load (L) reaches a first limit value (I_1), which is below the nominal current value (I_nominal) by a hysteresis value (H), and with the power supply being turned off when the current (I) reaches a second limit value (I_2), which is above the nominal current value (I_nominal) by the hysteresis value (H), b) determining a period duration between two successive turn-on or turn-off times, c) comprising determined the period duration with a given period duration (Tnominal), and d) changing the hysteresis value (H) on the basis of the comparison between the determined period duration and the prescribed period duration (Tnominal).
    • 本发明涉及一种用于将通过电感负载(可连接到电源)的电流调节到规定的标称电流值的方法和装置,其中该方法包括以下方法步骤:a)打开和关闭 当流过负载(L)的电流(I)达到低于额定电流值(I_nominal)的第一极限值(I_1))时,电源被接通,电源以脉冲方式被接通(滞后值) 并且当电流(I)达到超过标称电流值(I_nominal)的滞后值(H)的第二限制值(I_2)时,电源被断开,b)确定周期持续时间 在两个连续开启或关闭时间之间,c)包括确定具有给定周期持续时间(Tnominal)的周期持续时间,以及d)基于所确定的周期持续时间和 规定期限(Tn ominal)。
    • 52. 发明授权
    • Comparator
    • 比较器
    • US06747486B2
    • 2004-06-08
    • US10244810
    • 2002-09-16
    • Wolfgang Horn
    • Wolfgang Horn
    • H03K522
    • G01R19/16504
    • A comparator includes an adjustable offset and particularly dimensioned and configured components. The particular configuration and dimensioning of the comparator ensure that the offset voltage can be set precisely and permanently to a value, which can vary within a large range. The setting of an offset voltage does not lead to the degradation of other properties of the comparator, in particular to a slower reaction to changes in the input voltages.
    • 比较器包括可调偏移和特别尺寸和构造的部件。 比较器的特定配置和尺寸确保了偏移电压可以精确而永久地设置为一个可以在很大范围内变化的值。 偏移电压的设置不会导致比较器的其他属性的劣化,特别是对输入电压变化的反应较慢。
    • 53. 发明授权
    • Machining center
    • 加工中心
    • US06228006B1
    • 2001-05-08
    • US09380359
    • 1999-11-10
    • Wolfgang HornDietrich Geiger
    • Wolfgang HornDietrich Geiger
    • B23Q3157
    • B23Q3/15733B23Q3/15722Y10T483/1793Y10T483/18Y10T483/1882
    • The invention relates to a machining center, wherein at least one work spindle with a preferably horizontal spindle position can be displaced preferably in the direction of X, Y and Z and each work spindle is allocated at least one substantially circular tool store which can rotate around a central axis and which is provided with storage locations so that the working spindle(s) can deposit one or several tools. The invention is characterized in that a) the tool store (2) comprises one or several tool disk(s) (3) which are arranged parallel to each other and grouped together in a drum store, wherein b) the tool disk(s) can be individually or jointly rotated around a central axis (4) which is perpendicular to the spindle axis and c) the tools (5) can be inserted with their tips (6) forward into tool holders (7) in the tool store (2) which are arranged in a tangential to radical direction.
    • 本发明涉及一种加工中心,其中具有优选水平主轴位置的至少一个工作主轴可以优选地沿X,Y和Z的方向移位,并且每个工作主轴被分配至少一个基本上圆形的工具存储器,其可以围绕 中心轴线,并且设置有存储位置,使得工作主轴可以沉积一个或多个工具。 本发明的特征在于:a)工具存储器(2)包括一个或多个工具盘(3),这些工具盘(3)彼此平行布置并且分组在一起在鼓存储器中,其中b) 可以围绕垂直于主轴轴线的中心轴线(4)单独地或联合地旋转,并且c)工具(5)可以将其尖端(6)向前插入到工具存储器(2)中的工具夹具(7)中 ),其被布置成与激进方向相切。
    • 57. 发明申请
    • Component arrangement and method for determining the temperature in a semiconductor component
    • 用于确定半导体部件中的温度的部件布置和方法
    • US20070200193A1
    • 2007-08-30
    • US11655749
    • 2007-01-19
    • Wolfgang Horn
    • Wolfgang Horn
    • H01L31/058
    • H02H6/00G01K7/015G01K7/425G01K2003/145H01L2924/0002H02H5/044H01L2924/00
    • The invention relates to a component arrangement comprising a semiconductor component having a semiconductor body (100), and comprising a temperature measuring arrangement for determining a temperature at a specific position (20) in the semiconductor body, which comprises the following features: a temperature sensor (10) integrated in the semiconductor body (100), said temperature sensor being designed to generate a first temperature signal (V10) dependent on a temperature in the semiconductor body (100), a control device comprising a control amplifier (40), which has a first and a second input (41, 42) and an output (43), and comprising a low-pass filter (50) having an input (51) and an output (52), the input (51) of the low-pass filter (50) being coupled to the output (43) of the control amplifier (40), the first input of the control amplifier (40) being coupled to the temperature sensor (10) and the second input (42) of the control amplifier (40) being coupled to the output (52) of the low-pass filter (50), an output, which is coupled to the output of the control amplifier (40) and at which a second temperature signal (V40) is available. The invention additionally relates to a method for determining the temperature in a semiconductor component.
    • 本发明涉及包括具有半导体主体(100)的半导体部件的部件布置,并且包括用于确定半导体主体中的特定位置(20)处的温度的温度测量装置,其包括以下特征:温度传感器 (10),所述温度传感器被设计为产生取决于半导体本体(100)中的温度的第一温度信号(V 10),控制装置包括控制放大器(40),所述控制放大器 其具有第一和第二输入(41,42)和输出(43),并且包括具有输入(51)和输出(52)的低通滤波器(50),所述输入端 低通滤波器(50)耦合到控制放大器(40)的输出(43),控制放大器(40)的第一输入端耦合到温度传感器(10)和第二输入端 控制放大器(4 0)耦合到低通滤波器(50)的输出(52),输出耦合到控制放大器(40)的输出端,第二温度信号(V 40)在该输出端可用。 本发明还涉及一种用于确定半导体部件中的温度的方法。
    • 59. 发明授权
    • Method and apparatus for regulating a current through an inductive load
    • 用于调节通过感性负载的电流的方法和装置
    • US07158361B2
    • 2007-01-02
    • US11073432
    • 2005-03-04
    • Wolfgang Horn
    • Wolfgang Horn
    • H01H47/32F02P3/05
    • H02M3/156
    • The invention relates to a method and an apparatus for regulating a current through an inductive load, which can be connected to a power supply, to a prescribed nominal current value, where the method comprises the following method steps: a) turning on and off the power supply in pulsed fashion, with the power supply being turned on when the current (I) flowing through the load (L) reaches a first limit value (I—1), which is below the nominal current value (I_nominal) by a hysteresis value (H), and with the power supply being turned off when the current (I) reaches a second limit value (I—2), which is above the nominal current value (I_nominal) by the hysteresis value (H), b) determining a period duration between two successive turn-on or turn-off times, c) comprising determined the period duration with a given period duration (Tnominal), and d) changing the hysteresis value (H) on the basis of the comparison between the determined period duration and the prescribed period duration (Tnominal).
    • 本发明涉及一种用于将通过电感负载(可连接到电源)的电流调节到规定的标称电流值的方法和装置,其中该方法包括以下方法步骤:a)打开和关闭 当流过负载(L)的电流(I)达到低于标称电流的第一极限值(I SUB-1)时,电源被接通。 值(I_nominal)乘以滞后值(H),并且当电流(I)达到第二限制值(I 2 - 2)时,电源被关断,其高于额定电流 值(I_nominal)乘以滞后值(H),b)确定两个连续开启或关闭时间之间的周期持续时间,c)包括确定具有给定周期持续时间(Tnominal)的周期持续时间,以及d)改变 基于所确定的周期持续时间和压力之间的比较的滞后值(H) 规定期限(Tnominal)。
    • 60. 发明申请
    • Circuit arrangement and method for load diagnosis of a semiconductor switch
    • 半导体开关负载诊断的电路布置和方法
    • US20050083086A1
    • 2005-04-21
    • US10909017
    • 2004-07-30
    • Wolfgang Horn
    • Wolfgang Horn
    • H03K17/082H03K17/18H03B1/00
    • H03K17/18H03K17/0822
    • The present invention relates to a circuit arrangement and a method for load diagnosis of a switch having a first and a second load connecting terminal. A first and a second current source arrangement are provided, which can in each case be connected to one of the load connecting terminals of the switch and which supply, depending on potential conditions at the said load connecting terminals, currents in a first and second current direction or oppositely to the said first and second current direction to the load connecting terminals. Furthermore, an evaluation circuit is provided, which evaluates the currents flowing to the first and second load connecting terminals and provides a load state signal depending on the said currents.
    • 本发明涉及具有第一和第二负载连接端子的开关的负载诊断的电路装置和方法。 提供了第一和第二电流源装置,其可以在每种情况下连接到开关的负载连接端子之一,并且根据所述负载连接端子处的潜在条件来供应第一和第二电流中的电流 方向或与所述第一和第二电流方向相反地连接到负载连接端子。 此外,提供评估电路,其评估流到第一和第二负载连接端子的电流,并根据所述电流提供负载状态信号。