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    • 3. 发明申请
    • POSITION SENSOR
    • 位置传感器
    • US20120038350A1
    • 2012-02-16
    • US13146371
    • 2010-01-28
    • Günther BenderWerner WallrafenStefan Kohler
    • Günther BenderWerner WallrafenStefan Kohler
    • G01B7/30
    • G01D5/20G01D11/245H02K29/08
    • A position sensor, preferably an angle sensor for detecting the rotational angle of a shaft. The position sensor has a lead frame on which the electronic components of the position sensor are arranged and to which they are electrically connected A plastic encapsulation enclosing at least the electronic components, thereby forming a sensor module with the lead frame, and a plurality of electrical connections of the sensor module which are formed by the lead frame and a carrier module accommodating the sensor module. The carrier module has electrical connections connected to the electrical connections of the sensor module in an electrically conducting manner. The carrier module has at least two domes between which the sensor module is arranged. The respective free ends of the domes are deformed in such manner that the sensor module is clamped fixed in its position.
    • 位置传感器,优选地用于检测轴的旋转角度的角度传感器。 位置传感器具有引线框架,位置传感器的电子部件布置在该引线框架上,并且它们被电连接到至少封装有电子部件的塑料封装,从而形成具有引线框架的传感器模块,以及多个电气 由引线框架形成的传感器模块的连接和容纳传感器模块的载体模块。 载体模块具有以导电方式连接到传感器模块的电连接的电连接。 载体模块具有至少两个圆顶,传感器模块之间布置有至少两个圆顶。 穹顶的各个自由端以使得传感器模块被夹紧固定在其位置的方式变形。
    • 4. 发明授权
    • Position sensor
    • 位置传感器
    • US09322673B2
    • 2016-04-26
    • US13146371
    • 2010-01-28
    • Günther BenderWerner WallrafenStefan Kohler
    • Günther BenderWerner WallrafenStefan Kohler
    • G01D5/20H02K29/08G01D11/24
    • G01D5/20G01D11/245H02K29/08
    • A position sensor, preferably an angle sensor for detecting the rotational angle of a shaft. The position sensor has a lead frame on which the electronic components of the position sensor are arranged and to which they are electrically connected A plastic encapsulation enclosing at least the electronic components, thereby forming a sensor module with the lead frame, and a plurality of electrical connections of the sensor module which are formed by the lead frame and a carrier module accommodating the sensor module. The carrier module has electrical connections connected to the electrical connections of the sensor module in an electrically conducting manner. The carrier module has at least two domes between which the sensor module is arranged. The respective free ends of the domes are deformed in such manner that the sensor module is clamped fixed in its position.
    • 位置传感器,优选地用于检测轴的旋转角度的角度传感器。 位置传感器具有引线框架,位置传感器的电子部件布置在该引线框架上,并且它们被电连接到至少封装有电子部件的塑料封装,从而形成具有引线框架的传感器模块,以及多个电气 由引线框架形成的传感器模块的连接和容纳传感器模块的载体模块。 载体模块具有以导电方式连接到传感器模块的电连接的电连接。 载体模块具有至少两个圆顶,传感器模块之间布置有至少两个圆顶。 穹顶的各个自由端以使得传感器模块被夹紧固定在其位置的方式变形。
    • 5. 发明申请
    • Electrical Device with Screen
    • 带屏幕的电气设备
    • US20110069468A2
    • 2011-03-24
    • US12301532
    • 2009-12-07
    • Stefan KohlerPeter Wiese
    • Stefan KohlerPeter Wiese
    • H05K9/00
    • H01L23/60G01L19/0084G01L19/069H01L23/642H01L2924/0002H05K9/0049H01L2924/00
    • An electronic device (10) has a screen (12) protecting against radiofrequency electromagnetic fields, wherein the screen is formed by an at least partially conductive cap (12). In order to avoid the formation of a defined conductive connection between the cap (12) and a reference potential, conductive two-dimensional regions (30) of the cap (12) are arranged in electrically insulated fashion at a short distance parallel to at least one two-dimensional region (42) of a conductor (22) of a reference potential. The two-dimensional regions act as a capacitor and a capacitive coupling (12) to the reference potential is produced which eliminates or attenuates radiofrequency electromagnetic interference fields, which enter the electronic device or are emitted from it.
    • 电子设备(10)具有防止射频电磁场的屏幕(12),其中屏幕由至少部分导电的盖(12)形成。 为了避免在盖(12)和参考电位之间形成限定的导电连接,盖(12)的导电二维区域(30)以电绝缘方式布置在平行于至少的短距离 参考电位的导体(22)的一个二维区域(42)。 二维区域用作电容器,并且产生到参考电位的电容耦合(12),其消除或衰减进入电子设备或从其发射的射频电磁干扰场。
    • 9. 发明授权
    • Method and device for detecting accidental arcs
    • 检测意外弧的方法和装置
    • US06873161B1
    • 2005-03-29
    • US10276770
    • 2000-05-20
    • Peter MecklerPeter SteffenStefan KohlerHo Wilson
    • Peter MecklerPeter SteffenStefan KohlerHo Wilson
    • G01R31/12H01H9/50G01R31/08
    • G01R31/1272
    • The invention relates to a method for detecting accidental arcs (arc tracking) on a cable (1), especially on a cable of an aircraft electrical system. According to said method, an alternating current signal (I(t)) that has been detected is sampled time-discretely and a trigonometric function (I(k)) imitating the alternating current characteristic is determined by interpolation of a number of sampling values (y(k)). The current alternating frequency (ω) is then derived from this trigonometric function. The result of a comparison of the current alternating current frequency (ω) and a set or reference frequency (ω′) is used to determine the presence of an accidental arc (ISA,IGA) and a warning signal (Sarc) is optionally generated. A device which functions according to this method is advantageously integrated into a circuit-breaker (7) for the aircraft electrical system, so that the latter is equipped to detect and deactivate accidental arcs that occur on the electrical system cable (1).
    • 本发明涉及一种用于检测电缆(1)上的意外电弧(电弧跟踪)的方法,特别是在飞机电气系统的电缆上。 根据所述方法,已经检测到的交流信号(I(t))被时间离散地采样,并且模拟交流特性的三角函数(I(k))由多个采样值的内插确定 y(k))。 然后从该三角函数导出当前交替频率(ω)。 使用当前交流频率(ω)和设定或参考频率(ω)进行比较的结果来确定是否存在意外电弧(ISA,IGA),并且可选地产生警告信号(Sarc)。 根据该方法起作用的装置有利地集成到用于飞机电气系统的断路器(7)中,使得后者被配备为检测和停用在电力系统电缆(1)上发生的意外电弧。