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    • 23. 发明申请
    • Active noise reduction in the proximity of a passenger seat
    • 乘客座位附近主动降噪
    • US20050238179A1
    • 2005-10-27
    • US11112791
    • 2005-04-21
    • Wolfgang Erdmann
    • Wolfgang Erdmann
    • A61F11/06G10K11/16G10K11/178H03B29/00
    • G10K11/178G10K2210/1281G10K2210/3221
    • The present application describes a device for active noise reduction in the range of a passenger seat of an airplane or a land-based or water-based vehicle, respectively, the elements of which are either integrated into the passenger seat, or are installed in the immediate vicinity thereof. In the immediate vicinity of the head region of a passenger seat, at least one measurement microphone is disposed, the measurement signal of which is lead to a signal processing device. An output signal in counter-phase and amplified with respect to the measurement signal is generated there, serving for driving a reproduction device disposed in the vicinity of the head region of the passenger seat. At least one monitoring microphone is provided in the vicinity of the head region of the passenger seat, the output signal of which is lead to a further input of the signal processing device.
    • 本申请描述了一种用于分别在飞机或陆基或水上车辆的乘客座椅的范围内主动降低噪音的装置,其元件被集成到乘客座椅中,或者被安装在 紧邻。 在乘客座椅的头部区域附近,设置至少一个测量麦克风,其测量信号通向信号处理装置。 在那里生成相对于测量信号反相并放大的输出信号,用于驱动设置在乘客座椅的头部区域附近的再现装置。 在乘客座椅的头部区域附近提供至少一个监视麦克风,其输出信号导致信号处理装置的另一输入。
    • 24. 发明授权
    • Device for dewatering a hydraulic fluid
    • 液压油脱水装置
    • US08216458B2
    • 2012-07-10
    • US13071032
    • 2011-03-24
    • Ingo ScheelRalf PohlmannWolfgang Erdmann
    • Ingo ScheelRalf PohlmannWolfgang Erdmann
    • B01D35/18
    • F15B21/041
    • The present invention provides a method and a device for dewatering a hydraulic fluid of a hydraulic system, in particular in the aerospace sector, comprising a container which has a sorbent, a feed which supplies the hydraulic fluid from the hydraulic system to the container for the hydraulic fluid to be passed through the sorbent such that it can be dewatered in a dewatering mode of the device, and a return which returns the dewatered hydraulic fluid from the container to the hydraulic system in the dewatering mode of the device. The hydraulic fluid can be dewatered continuously and very efficiently by the method and the device according to the invention.
    • 本发明提供了一种用于特别是在航空航天领域中对液压系统的液压流体进行脱水的方法和装置,该方法和装置包括一个容器,该容器具有一个吸附剂,一个将液压流体从液压系统供给到用于 液压流体通过吸附剂,使得其可以在该装置的脱水模式中脱水,以及在装置的脱水模式中将脱水的液压流体从容器返回到液压系统的返回装置。 可以通过根据本发明的方法和装置连续且非常有效地脱水。
    • 26. 发明申请
    • Testing apparatus and method for detecting a contact deficiency of an electrically conductive connection
    • 用于检测导电连接的接触不足的测试装置和方法
    • US20090167331A1
    • 2009-07-02
    • US12308159
    • 2006-06-02
    • Wolfgang ErdmannEckehard Zündorf
    • Wolfgang ErdmannEckehard Zündorf
    • G01R31/302G01R31/04
    • G01R31/045
    • A testing apparatus and a method for detecting a contact deficiency of an electrically conductive connection. The testing apparatus comprises a measuring chamber, in which several system elements of the connection that are connected in an electrically conductive fashion are positioned, a heat radiator that is supplied with energy and the transferred thermal radiation of which is emitted into the measuring chamber and directed toward the region of the system elements that, after having been heated, generate a thermal field of the insulated and the metallic system components of these connected system elements, a thermal (image) acquisition unit for optically capturing the generated thermal field and for realizing a signal conversion into a thermal image of the connected system elements, and a thermal (image) reproduction unit for the visual reproduction of the converted thermal image.
    • 一种用于检测导电连接的接触不足的测试装置和方法。 测试装置包括测量室,其中以导电方式连接的多个连接的系统元件被定位,提供能量的散热器,并且其传递的热辐射被发射到测量室中并被引导 朝向系统元件的区域,其在加热之后产生这些连接的系统元件的绝缘体和金属系统部件的热场,热(图像)获取单元,用于光学捕获产生的热场并实现 信号转换成连接的系统元件的热图像,以及用于视觉再现转换的热图像的热(图像)再现单元。
    • 27. 发明申请
    • Sulfur Evaporator
    • 硫蒸发器
    • US20090007482A1
    • 2009-01-08
    • US12166841
    • 2008-07-02
    • Peter SewzykWolfgang Erdmann
    • Peter SewzykWolfgang Erdmann
    • A01M13/00B01D1/02
    • A01M1/2077
    • A fumigation apparatus (1) includes a sulfur evaporator (3) including a heat source (28) and a container (9). The heat source (28) includes an electrically operated heating coil (15). The container (9) includes a wall (11) and an inner space (13). The inner space (13) is designed and arranged to store sulfur (14) to be evaporated therein. The container (9) substantially is made of ceramic material. The heat source (28) and the container (9) are designed as one common structural unit. The heating coil (15) at least partly is arranged in the wall (11) of the container (9) such that it is embedded in the ceramic material.
    • 熏蒸装置(1)包括包括热源(28)和容器(9)的硫蒸发器(3)。 热源(28)包括电动加热线圈(15)。 容器(9)包括壁(11)和内部空间(13)。 内部空间(13)设计和布置成存储要在其中蒸发的硫(14)。 容器(9)基本上由陶瓷材料制成。 热源(28)和容器(9)被设计为一个共同的结构单元。 加热线圈(15)至少部分地布置在容器(9)的壁(11)中,使得其嵌入陶瓷材料中。