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    • 3. 发明申请
    • DUAL RADIUS ISOLATOR
    • 双RADIUS隔离器
    • US20140048990A1
    • 2014-02-20
    • US13588589
    • 2012-08-17
    • Jeffrey N. Weisbeck
    • Jeffrey N. Weisbeck
    • F16F1/373F16F3/10F16F1/36
    • F16F1/025
    • A vibration isolator includes a base plate having a first attachment feature that enables attachment of the isolator to a first surface, the isolator further including a second attachment feature permitting attachment to a second surface. A spring section disposed between the base plate and the second attachment feature has a first radiused section and a second radiused section, each of the first and second radiused sections being formed in opposing directions on a continuous spring portion intermediate to the base plate and second attachment feature and in which the spring section provides noise attenuation and isolation between the first and second surfaces.
    • 隔振器包括具有第一附接特征的基板,该第一附接特征使得能够将隔离器附接到第一表面,隔离器还包括允许附接到第二表面的第二附接特征。 设置在基板和第二附接特征之间的弹簧部分具有第一圆弧部分和第二半圆形部分,第一和第二半圆形部分中的每一个在相对方向上形成在基板上的连续弹簧部分上,第二附接部分 特征,其中弹簧部分在第一和第二表面之间提供噪声衰减和隔离。
    • 5. 发明授权
    • Combined oil level or condition sensor and sight oil level gage
    • 组合油位或状态传感器和观察油位计
    • US08365594B2
    • 2013-02-05
    • US12891268
    • 2010-09-27
    • Eugene P. SabiniOakley HenyanKenneth Napolitano
    • Eugene P. SabiniOakley HenyanKenneth Napolitano
    • G01F23/26
    • G01F23/02
    • The invention provides an oil level or condition sensor featuring a housing and a baffle or plate arrangement arranged in the housing, where the baffle or plate arrangement forms a capacitor when the housing is filled with oil, the baffle or plate arrangement being responsive to a signal, for providing an oil level or condition sensor signal containing information about the level or condition of the oil in the housing. The baffle or plate arrangement may include one or more plates or a single or multiple star shaped baffles. The one or more plates or multiple star shaped baffles are spaced apart to form the capacitor. The level or condition of the oil within the baffle or plate arrangement changes the inductance. The single or multiple star shaped baffles each have a small hole in the center which provides a visual indication of the oil level. The housing has a transparent window. The inductance change can be measured and used to send alarms or warnings.
    • 本发明提供了一种油位或状态传感器,其特征在于,壳体和布置在壳体中的挡板或板装置,其中挡板或板装置在壳体充满油时形成电容器,挡板或板装置响应于信号 ,用于提供含有关于壳体中油的水平或状态的信息的油位或状况传感器信号。 挡板或板装置可以包括一个或多个板或单个或多个星形挡板。 一个或多个板或多个星形挡板间隔开以形成电容器。 挡板或板装置内的油位或状态改变电感。 单个或多个星形挡板每个在中心具有一个小孔,提供油位的视觉指示。 房屋有一个透明的窗户。 可以测量电感变化并用于发送报警或警告。
    • 8. 发明授权
    • Multi-polarized connector
    • 多极化连接器
    • US08360800B1
    • 2013-01-29
    • US13281128
    • 2011-10-25
    • Michael Santos Finona
    • Michael Santos Finona
    • H01R13/64
    • H01R13/6456
    • A pair of electrical connectors (10, 12) can be mated by inserting a pair of guide pins (50a, 50b) lying on side axes (22, 24) of a first connector, into a pair of guide sleeve passages (70a, 70b) that lie on side axes of a second connector. The first and second connectors each can be adjusted to laterally shift front parts of the guide pins and front parts of the guide sleeves, so the distance A′ between the two pins and the distance B′ between the two sleeves is slightly reduced or slightly increased to prevent one of the connectors from mating with a third connector.
    • 通过将位于第一连接器的侧轴(22,24)上的一对引导销(50a,50b)插入一对导向套筒通道(70a,70b)中,可以配合一对电连接器(10,12) ),其位于第二连接器的侧轴上。 可以调节第一和第二连接器以横向移动导向销的前部和引导套的前部,因此两个销之间的距离A'和两个套筒之间的距离B'略微减小或稍微增加 以防止一个连接器与第三连接器配合。
    • 9. 发明申请
    • System and Method for Allocating Jamming Energy Based on Three-Dimensional Geolocation of Emitters
    • 基于发射机三维地理位置分配干扰能量的系统与方法
    • US20120309288A1
    • 2012-12-06
    • US13149277
    • 2011-05-31
    • Ning Hsing Lu
    • Ning Hsing Lu
    • H04K3/00
    • H04K3/45H04K2203/34
    • According to an embodiment of the present invention jamming energy is allocated to a plurality of emitters based on a three-dimensional (3-D) emitter geolocation technique that determines the geolocation of radio frequency (RF) emitters based on energy or received signal strength (RSS) and/or time differences of arrival (TDOAs) of transmitted signals. The three-dimensional (3-D) emitter geolocations are used to rank emitters of interest according to distance and available radio frequency (RF) jamming energy is allocated to the emitters in rank order. The techniques may be employed with small unmanned air vehicles (UAV), and obtains efficient use of jamming energy when applied to radio frequency (RF) emitters of interest.
    • 根据本发明的实施例,基于三维(3-D)发射器地理定位技术将干扰能量分配给多个发射器,所述三维(3-D)发射器地理位置技术基于能量或接收信号强度来确定射频(RF)发射器的地理位置 RSS)和/或发送信号的到达时间差(TDOA)。 三维(3-D)发射器地理位置用于根据距离对感兴趣的发射器进行排序,并且可用的射频(RF)干扰能量按照等级分配给发射器。 这些技术可以用于小型无人驾驶飞行器(UAV),并且当应用于感兴趣的射频(RF)发射器时,可以有效利用干扰能量。
    • 10. 发明申请
    • System and Method for Geolocation of Multiple Unknown Radio Frequency Signal Sources
    • 用于多个未知射频信号源的地理位置的系统和方法
    • US20120293371A1
    • 2012-11-22
    • US13111379
    • 2011-05-19
    • Ning Hsing Lu
    • Ning Hsing Lu
    • G01S1/24
    • G01S1/04G01S5/02G01S5/0263G01S5/06G01S5/14
    • According to an embodiment of the present invention, geolocations of multiple unknown radio frequency (RF) signal sources are determined using three-dimensional (3-D) geolocation techniques. The three-dimensional (3-D) geolocation techniques obtain reliable geolocation estimates of radio frequency (RF) emitters based on energy or received signal strength (RSS) of emitter transmitted signals and based on their time differences of arrival (TDOAs) at various sensor locations. The energy based geolocations and the time difference of arrival (TDOA) geolocations are combined to determine an overall set of geolocations for multiple unknown radio frequency (RF) signal sources. The geolocation information is used to track and monitor the locations of the multiple emitters.
    • 根据本发明的实施例,使用三维(3-D)地理定位技术确定多个未知射频(RF)信号源的地理位置。 三维(3-D)地理定位技术基于发射机发射信号的能量或接收信号强度(RSS),并根据其在各种传感器的到达时间差(TDOA)获得射频(RF)发射器的可靠地理位置估计 位置。 将基于能量的地理位置和到达时间差(TDOA)地理位置组合以确定多个未知射频(RF)信号源的地理位置的整体集合。 地理位置信息用于跟踪和监视多个发射器的位置。