会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 73. 发明公开
    • Apparatus comprising an oscillation blade fan and method for cleaning the oscillation blade fan
    • 具有用于抽吸叶片风扇的清洁一个振动叶片风扇和方法的装置
    • EP2960521A1
    • 2015-12-30
    • EP14306013.5
    • 2014-06-27
    • Alcatel Lucent
    • Jeffers, NicholasDonnelly, BrianStafford, Jason
    • F04D27/00F04D33/00
    • F04D33/00F04D27/00
    • An apparatus comprising an oscillation blade Fan and a method for cleaning the oscillation blade fan are disclosed. The apparatus comprises a power source coupled to an oscillation blade fan. The oscillation blade fan comprises a driver and a planar body, or blade attached to the driver. In a first driving condition, the power source applies a first alternating electric excitation to the driver at a first excitation frequency. The driver, in turn, drives the planar body in response to the first alternating electric excitation causing the planar body to oscillate at a first oscillation frequency. In a second driving condition, the power source applies a second alternating electric excitation to the driver at a second excitation frequency. The driver, in turn, drives the planar body in response to the second alternating electric excitation causing the planar body to oscillate at a second oscillation frequency. The second oscillation frequency is higher than the first oscillation frequency to cause particles such as dust and dirt to be ejected from the planar body.
    • 包括振荡叶片风扇的和的装置,用于清洁叶片振荡风扇的方法是游离缺失光盘。 该装置包括在振荡叶片风扇耦合到电源。 振荡叶片风扇包括连接到所述驱动器的驱动器和面状体,或叶片。 在第一个驱动条件,电源以第一激励频率施加第一交变电激励给驾驶员。 的驱动器,又驱动面状体响应于所述第一交变电激励导致平面主体以第一振荡频率振荡。 在第二驱动条件,电源以第二激发频率施加第二交流电激励给驾驶员。 的驱动器,又驱动面状体响应于所述第二交流电激励导致平面体以第二振荡频率振荡。 所述第二振荡频率比第一振荡频率,以使颗粒更高:如灰尘和污垢从面状体被喷射。
    • 74. 发明公开
    • PUMP
    • EP2920470A1
    • 2015-09-23
    • EP13799343.2
    • 2013-11-13
    • The Technology Partnership PLC
    • BUCKLAND, Justin RorkeJANSE VAN RENSBURG, Richard WilhelmWILBER, Alex William
    • F04D33/00
    • F04D33/00
    • A fluid pump comprising a flow channel containing an fluid inlet and a fluid outlet and bounded by two side walls,a substantially planar flap positioned inside the flow channel, and an actuator capable of transmitting an oscillating force or torque to the flap,where the side walls extend from the inlet to the outlet and are substantially planar and parallel to the flap and extend beyond the downstream end of the flap towards the outlet by a distance such that
      l
      d
      ≥ l
      f
      /2 , where
      l
      f
      is the length of the flap, where the side wall separation,
      h , length,
      l
      w , and width,
      w
      w , satisfy the relationships:
      l
      w
      >
      h and
      w
      w
      > h , whereby in use, the actuator drives oscillatory motion of the flap in a direction substantially perpendicular to the side walls with motion of the flap having larger amplitude near the outlet than near the inlet.
    • 一种流体泵,其包括:包含流体入口和流体出口且由两个侧壁界定的流动通道;定位在流动通道内的大致平面的翼片;以及致动器,其能够将振荡力或转矩传递至翼片, 壁从入口延伸到出口并且基本上是平面的并且平行于翼片并且延伸超过翼片的下游端朝向出口的距离使得ld≥1f/ 2,其中lf是翼片的长度,其中lf是 侧壁间隔h,长度lw和宽度ww满足关系:lw> h和ww> h,由此在使用中,致动器在大致垂直于侧壁的方向上驱动挡板的振荡运动,其中 皮瓣在靠近出口处具有大于靠近入口处的振幅的运动。
    • 76. 发明公开
    • Method for Controlling a Mechanical Vibrating Element
    • Verfahren zur Steuerung eines mechanischen vibrierenden Elements
    • EP2743512A1
    • 2014-06-18
    • EP12197053.7
    • 2012-12-13
    • Goodrich Lighting Systems GmbH
    • Steffen Roebke
    • F04D33/00
    • H05K7/20209F04B49/065F04D33/00
    • The method for controlling a mechanical vibrating element driven by a driving means, comprises the step of operating the driving means at an operation frequency for stimulating the vibrating element to oscillate at this frequency. Furthermore, the method includes the steps of adjusting the operation frequency of the driving means for stimulating the vibration element at different frequencies, and of determining a respective energy consumption of the driving means depending on the frequency at which the vibrating element oscillates. Finally, the resonance frequency of the oscillation of the vibrating element is identified as the frequency at which the energy consumption of the driving means is lowest. Thereafter, the driving means for stimulating the vibrating element can be operated at the resonance frequency.
    • 用于控制由驱动装置驱动的机械振动元件的方法包括以用于刺激振动元件以该频率振荡的操作频率操作驱动装置的步骤。 此外,该方法包括以下步骤:调节用于刺激不同频率的振动元件的驱动装置的操作频率,以及根据振动元件振荡的频率来确定驱动装置的相应能量消耗。 最后,振动元件的振荡的共振频率被识别为驱动装置的能量消耗最低的频率。 此后,可以以共振频率操作用于刺激振动元件的驱动装置。
    • 77. 发明公开
    • Cooled electrical assembly
    • Gekühlteelektrische Baugruppe
    • EP2722975A1
    • 2014-04-23
    • EP12188606.3
    • 2012-10-16
    • ABB Research Ltd.
    • Huesgen, Till
    • H02K7/20F04D33/00H01G2/08H01L23/467
    • H05K7/20136F04D33/00H01G2/08H01G4/38H01G9/0003H01L23/467H01L2924/0002H05K7/20172H01L2924/00
    • Cooled electrical assembly comprising a plurality of cooled components and a first cooling fan (2) adapted to provide a cooling flow for cooling the cooled components, the first cooling fan (2) comprising a blade holder (4) and a fan blade (6), the fan blade (6) having a fixed end (8) stationary mounted to the blade holder (4) and a free end (10) adapted to swing for generating the cooling flow. The plurality of cooled components comprises four substantially cylindrical components (12) each having a centre axis, the four substantially cylindrical components (12) being spaced apart and located such that the centre axis of each said substantially cylindrical component (12) passes through a respective vertex of a quadrilateral (14), the free end (10) of the fan blade (6) being located between the four substantially cylindrical components (12) and inside the quadrilateral (14).
    • 包括多个冷却部件的冷却电气组件和适于提供用于冷却冷却部件的冷却流的第一冷却风扇(2),所述第一冷却风扇(2)包括刀片保持器(4)和风扇叶片(6) ,具有固定端(8)的风扇叶片(6)固定地安装到叶片保持器(4)上,以及自由端(10),其适于摆动以产生冷却流。 多个冷却部件包括四个基本上圆柱形的部件(12),每个部件具有中心轴线,四个基本上圆柱形的部件(12)间隔开并且定位成使得每个所述基本圆柱形部件(12)的中心轴线穿过相应的 四边形(14)的顶点,风扇叶片(6)的自由端(10)位于四个基本上圆柱形的部件(12)之间并且位于四边形(14)内。
    • 80. 发明授权
    • A FAN
    • EP2232077B1
    • 2011-04-20
    • EP08788450.8
    • 2008-08-26
    • Dyson Technology Limited
    • GAMMACK, Peter, DavidNICOLAS, FredericSIMMONDS, Kevin, John
    • F04D25/08F04D33/00
    • F04F5/46F04D25/06F04D25/08F04D29/681F04F5/16
    • A fan assembly for creating an air current is described. There is provided a bladeless fan assembly (100) comprising a nozzle (1) mounted on a base (16) housing means for creating an air flow through the nozzle (1). The nozzle (1) comprises an interior passage (10) for receiving the air flow from the base (16) and a mouth (12) through which the air flow is emitted. The nozzle (1) extends substantially orthogonally about an axis to define an opening (2) through which air from outside the fan assembly (100) is drawn by the air flow emitted from the mouth (12) and the nozzle (1) and the base (16) each have a depth m the direction of the axis, such that the depth of the base (16) is no more than twice the depth of the nozzle (1). The fan provides an arrangement producing an air current and a flow of cooling air created without requiring a bladed fan i.e. air flow is created by a bladeless fan. Alternatively, the fan assembly (100) has a height extending from the end of the base (16) remote from the nozzle (1) to the end of the nozzle (1) remote from the base (16) and a width perpendicular to the height both the height and the width being perpendicular to the axis so that the width of the base (16) is no more than 75 % the width of the nozzle (1). These arrangements create a fan assembly with a compact structure.