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    • 52. 发明申请
    • Device and Method for Detecting Trace Gases
    • 用于检测微量气体的装置和方法
    • US20110071037A1
    • 2011-03-24
    • US12994420
    • 2009-05-13
    • Gerhard MüllerAndreas Helwig
    • Gerhard MüllerAndreas Helwig
    • C40B30/00C12M1/34C40B60/12C12Q1/04
    • G01N33/0026G01N1/2214
    • The invention relates to a gas detection system (1) for detecting gases, vapors and biological pathogens, having at least one receptor (4) arranged on a line (5) connecting the ambient air (7) to an air storage unit, wherein the gas detection system (1) is designed as a “breathing” system containing clean CO2-carrying and moisture-saturated air in the air storage unit (2), wherein the operating temperature of the gas detection system (1) is the room temperature. Additionally, a method is proposed for detecting gases, vapors and biological pathogens using the inventive gas detection system. This avoids the shortcomings of the known solutions of the prior art, and an improved and more cost-effective solution for detecting trace gases is made available.
    • 本发明涉及一种用于检测气体,蒸汽和生物病原体的气体检测系统(1),其具有布置在将周围空气(7)连接到空气存储单元的管线(5)上的至少一个接收器(4),其中 气体检测系统(1)被设计为在空气存储单元(2)中含有清洁的含CO 2和湿气的空气的“呼吸”系统,其中气体检测系统(1)的工作温度为室温。 另外,提出了使用本发明的气体检测系统来检测气体,蒸气和生物病原体的方法。 这避免了现有技术的已知解决方案的缺点,并且提供了用于检测痕量气体的改进且更具成本效益的解决方案。
    • 54. 发明申请
    • Method and Apparatus for Compensating for Gain Changes in an Amplifier Circuit
    • 用于补偿放大器电路中增益变化的方法和装置
    • US20110050346A1
    • 2011-03-03
    • US12934954
    • 2009-03-14
    • Joerg SchrothRolf ReberRainer RittmeyerHardy Sledzik
    • Joerg SchrothRolf ReberRainer RittmeyerHardy Sledzik
    • H03G3/20
    • H03F1/30H03F3/189
    • In a method and apparatus for compensating for gain changes in an amplifier circuit comprising radio-frequency modules and attenuation elements, a radio-frequency module is driven with a first temperature-dependent monitoring voltage UHF(T), and an attenuation element with a second temperature-dependent monitoring voltage UVG(T). The first temperature-dependent monitoring voltage UHF(T) is produced by applying a temperature dependency to an individual monitoring voltage Uopt, which is predetermined for a predetermined temperature for a radio-frequency module, in order to set the optimum operating point of the radio-frequency module. The second temperature-dependent monitoring voltage UVG(T) is produced by applying a temperature dependency to a predetermined monitoring voltage UVG—T for the attenuation element. The monitoring voltage UVG—T is determined in an iteration method, such that the output power of the amplifier circuit reaches a predeterminable level at a constant input power. Memory devices are provided for storing values for producing monitoring voltages for the radio-frequency modules and attenuation elements.
    • 在用于补偿包括射频模块和衰减元件的放大器电路中的增益变化的方法和装置中,射频模块以第一温度依赖监视电压UHF(T)驱动,并且具有第二温度的衰减元件 温度依赖监测电压UVG(T)。 通过对针对射频模块的预定温度预定的单独的监视电压U opt进行温度依赖性来产生第一温度依赖监视电压UHF(T),以便设置无线电的最佳工作点 频率模块 通过将温度依赖性应用于衰减元件的预定监视电压UVG-T来产生第二温度依赖监视电压UVG(T)。 以迭代方法确定监视电压UVG-T,使得放大器电路的输出功率在恒定输入功率下达到可预定电平。 提供存储器件用于存储用于产生用于射频模块和衰减元件的监视电压的值。
    • 55. 发明授权
    • Movable building
    • 活动建筑
    • US07774987B2
    • 2010-08-17
    • US11356220
    • 2006-02-17
    • Heinz Pfeiffer
    • Heinz Pfeiffer
    • E04B1/34E04G11/04E04H15/20
    • E04H15/20E04H15/008E04H2015/202
    • A mobile building module comprises rigid load-bearing surface elements and one or more inflatable flexible surface elements connected therewith. In the transport condition, several of the load-bearing rigid surface elements are disposed to form a parallelepiped container having a floor and surrounding rigid walls for accommodating the inflatable flexible surface elements, with the height of the container being lower than the height of the building. A building, which is assembled of several partial modules, which are constructed according to the above-mentioned principles, is also an object of the invention.
    • 移动建筑模块包括刚性承载表面元件和与其连接的一个或多个可膨胀的柔性表面元件。 在运输条件下,若干承重刚性表面元件被设置成形成平行六面体容器,该平行六面体容器具有地板和周围的刚性壁,用于容纳可膨胀的柔性表面元件,容器的高度低于建筑物的高度 。 根据上述原理构造的由几个部分模块组装的建筑物也是本发明的目的。
    • 56. 发明申请
    • MOTORIZED SPINDLE DRIVE WITH OVERLOAD PROTECTION
    • 带过载保护的电动主轴驱动
    • US20100203974A1
    • 2010-08-12
    • US12679973
    • 2008-09-12
    • Peter Jänker
    • Peter Jänker
    • F16D7/02
    • F16H25/2021B64C13/28F16H2025/2071F16H2025/2078Y02T50/54Y10T74/18528
    • The invention relates to a motorized spindle drive for an actuator, particularly for an aerodynamically effective surface of an aircraft, having a spindle and a motor that comprises a mechanical transmission element engaging the spindle in order to drive said spindle and causing a relative movement in the axial direction between the spindle and the motor and that is connected to an element that is fixed in place relative to the motion of the spindle, said element absorbing the torque of the motor. According to the invention, the bearing absorbing the torque of the motor comprises a detachable coupling that detaches upon a predetermined torque being exceeded and releases the motor in the sense of a free movement in the axial direction of the spindle relative to the fixed element.
    • 本发明涉及一种用于致动器的电动主轴驱动器,特别是用于飞行器的空气动力学有效表面的电动主轴驱动器,其具有主轴和马达,该主轴和马达包括与主轴接合的机械传动元件,以便驱动所述主轴并引起相对运动 主轴和电动机之间的轴向方向,并且连接到相对于主轴的运动固定就位的元件,所述元件吸收电动机的转矩。 根据本发明,吸收电动机扭矩的轴承包括一个可分离的联轴器,该联接器在超过预定扭矩时分离,并且在主轴的轴向相对于固定元件的自由运动的意义上释放电动机。
    • 57. 发明申请
    • Adaptive Calculation of Pulse Compression Filter Coefficients for a Radar Signal
    • 雷达信号脉冲压缩滤波系数的自适应计算
    • US20100194626A1
    • 2010-08-05
    • US12675939
    • 2008-09-01
    • Franz-Xaver Hofele
    • Franz-Xaver Hofele
    • G01S13/00
    • G01S13/288G01S2007/2883
    • In a method for adaptive calculation of pulse compression filter coefficients for a received signal in a radar installation, which received signal is evaluated with the aid of a complex pulse compression mismatch filter, a pulse compression filter coefficient set h(t) is calculated for an ideal theoretical received signal s(t) for a pulse compression mismatch filter, such that a pulse compression output signal results with a desired main lobe to side lobe ratio. A transformed set of pulse compression filter coefficients Hopt(f) for the complex pulse compression mismatch filter Hopt(f) is calculated for a distorted received signal using the following rule: H opt  ( f ) = S  ( f ) · H  ( f ) · S v *  ( f )  S v  ( f )  2 where S(f): the Fourier-transform of an undistorted received signal s(t), Sv(f): the Fourier-transform of a distorted received signal sv(t), sv*(f): the complex conjugate of Sv(f), H(f): the Fourier-transform of the pulse compression mismatch filter h(t).
    • 在雷达装置的接收信号的脉冲压缩滤波器系数的自适应计算方法中,借助于复数脉冲压缩不匹配滤波器对接收到的信号进行评估,计算脉冲压缩滤波器系数集合h(t) 用于脉冲压缩失配滤波器的理想理想接收信号s(t),使得脉冲压缩输出信号具有期望的主瓣到旁瓣比。 使用以下规则,针对失真的接收信号计算复数脉冲压缩失配滤波器Hopt(f)的经变换的脉冲压缩滤波器系数Hopt(f):H opt(f)= S(f)·H (f)·S v *(f)νS(f)her 2其中S(f):未失真接收信号s(t)的傅里叶变换,Sv(f):傅里叶变换 失真的接收信号sv(t),sv *(f):Sv(f),H(f)的复共轭:脉冲压缩失配滤波器h(t)的傅立叶变换。
    • 58. 发明授权
    • System and method for converting an aircraft from a flight condition lying outside a permissible flight condition range to a flight condition lying within the permissible flight condition range
    • 将飞机从位于允许的飞行状况范围之外的飞行状态转换为位于允许飞行状态范围内的飞行状态的系统和方法
    • US07676303B2
    • 2010-03-09
    • US11485313
    • 2006-07-13
    • Martin Hanel
    • Martin Hanel
    • G01C23/00
    • G05D1/0061G05D1/0816
    • A system and method for converting an aircraft from a flight condition lying outside a permissible flight condition range to a flight condition lying within the permissible flight condition range, that can be assigned to a sensor system and a control device of the aircraft. The system includes a control override module for taking over or returning the control authority over the aircraft based on a control take-over signal and for feeding control set points if the control takeover signal is set; a maneuver selection module; a threshold value generator for calculating the flight range limit on the basis of measured variables of the sensor system; a decision module; a command generator that is functionally connected on the one hand to the decision module and the maneuver selection module and on the other hand to the control override module and, when the control takeover signal is set, calculates the control set points based on the maneuver information and transmits them to the control override module.
    • 一种用于将飞机从位于允许的飞行条件范围之外的飞行状态转换成可以分配给飞行器的传感器系统和控制装置的允许飞行状态范围内的飞行状态的系统和方法。 该系统包括控制超控模块,用于基于控制接收信号接管或返回飞行器上的控制权限,并且如果设置了控制接管信号则馈送控制设定点; 机动选择模块; 阈值发生器,用于基于传感器系统的测量变量计算飞行范围极限; 决策模块; 一个命令发生器,其一方面功能上连接到决策模块和机动选择模块,另一方面连接到控制超控模块,并且当设置控制接管信号时,基于操纵信息来计算控制设定点 并将其发送到控制超控模块。
    • 60. 发明授权
    • Variable volume container unit hoisting device for lowering and raising a telescopable expansion element
    • 用于降低和升高可伸缩膨胀元件的可变容积的容器单元提升装置
    • US07658037B2
    • 2010-02-09
    • US10834136
    • 2004-04-29
    • Hubert BucherAndreas Serden
    • Hubert BucherAndreas Serden
    • E04B1/344
    • E04B1/3444E04B1/3431
    • A container is constructed to have a variable volume, wherein a basic container has a bottom panel and a roof panel, one or more hinged side panels are rotateable about a horizontal axis, and one or more expansion elements are telescopeable out of the basic container and having a bottom panel, a side open toward a front the basic container and a front panel opposite the open side. The one expansion element(s) is/are open toward the top and, in a telescoped state, the roof panel is formed by a raised side panel of the basic container. One or more hoisting devices is associated with each expansion element and with which the expansion element is lowerable. Thereby, after the one or more expansion elements are telescoped out, the bottom panels of the expansion element(s) and of the basic container are at the same height and also so that the expansion element(s) is insertable back into the basic container after being lowered. The hoisting device(s) is/are configured to act on the hinged side panel to lower and raise the at least one expansion element.
    • 容器被构造成具有可变容积,其中基本容器具有底板和顶板,一个或多个铰接侧板可绕水平轴线旋转,并且一个或多个膨胀元件可从基本容器中伸出,并且 具有底板,朝向基本容器的前方开口的一侧和与开口侧相对的前面板。 一个膨胀元件朝向顶部开放,并且在伸缩状态下,顶板由基本容器的升高的侧板形成。 一个或多个起重装置与每个膨胀元件相关联并且膨胀元件可与该膨胀元件相对。 因此,在一个或多个膨胀元件伸缩之后,膨胀元件和基本容器的底板处于相同的高度,并且还使得膨胀元件可插入基本容器 下降后。 提升装置构造成作用在铰链侧板上以降低和升高至少一个膨胀元件。