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    • 71. 发明申请
    • MULTIBEAM RADAR SENSOR WITH A FIXING DEVICE FOR A FOCUSING BODY
    • 有支撑的多雷达传感器的聚焦机构
    • WO01014906A1
    • 2001-03-01
    • PCT/DE2000/002374
    • 2000-07-21
    • H01Q15/08G01S7/03G01S13/32H01Q19/06H01Q1/12H01Q13/24
    • H01Q19/062G01S7/03
    • The invention relates to a multibeam radar sensor for microwaves. In said radar sensor, focusing bodies (1) are arranged between a lens and the transmitter/receiver elements (6) in such a way that they pre-focus the beam path of one of the respective transmitter/receiver elements (6) with regard to the dielectric lens (8). The focusing bodies (1) are held by a dielectric plate (2), into which the fixing device (4) is inserted. The fixing device (4) is designed with regard to its construction material and geometrical dimensions, in such a way that the individual focusing bodies (1) are coupled together with the least amount of contact possible. In order to achieve this aim, the fixing device (4) is designed with cut-out sections (5) in the areas between the focusing bodies (1). Boreholes (3) and adjustment holes (10) are provided for simplified assembly and alignment.
    • 根据本发明,提供了一种用于微波的多波束雷达传感器,其中透镜和发送/接收之间的元件(6)聚焦机构(1)被布置成使得在每种情况下,辐射的一个发射/(6)相对于所述电介质透镜接收元件 (8)预聚焦。 聚焦体(1)由电介质板(2)被保持,被插入保持器(4)。 保持件(4)相对于它的材料和它的几何尺寸被形成为使得(1)发生聚焦机构之间的最小可能的耦合。 (5)为了实现这一目的的聚焦机构(1)之间的区域中的保持器(4)是由凹口形成的。 为便于安装和调整的是孔(3)和调节开口(10)。
    • 72. 发明申请
    • MICROWAVE APPLICATOR
    • WO99056642A1
    • 1999-11-11
    • PCT/GB1999/001398
    • 1999-05-05
    • A61B17/42A61B18/00A61B18/18A61N5/04H01P5/02H01Q13/24H01Q19/09A61B17/36
    • A61B18/18A61B18/1815A61B2018/1861H01Q13/24H01Q19/09
    • A microwave applicator for applying electromagnetic radiation at microwave frequency comprises a coaxial input (5) for a microwave signal input, a waveguide (2) for receiving and propagating the microwave signal input, dielectric material (3) positioned within the waveguide (2) and extending beyond the waveguide to form an antenna (4) for radiating microwave energy, characterised in that the coaxial input (5) has direct in-line transition to the dielectric-filled waveguide. Preferably, this direct in-line transition is achieved by the central conductor (6) of the coaxial input extending axially centrally into the waveguide (2) so as to excite microwaves in the waveguide. A lateral conductor (8) extends radially from the central conductor (6) to assist the launch of the microwaves into the waveguide. Preferably, the applicator includes a temperature sensor (10) which is directly connected to the coaxial input (5).
    • 用于以微波频率施加电磁辐射的微波施加器包括用于微波信号输入的同轴输入(5),用于接收和传播微波信号输入的波导(2),位于波导(2)内的介电材料(3)和 延伸超过波导以形成用于辐射微波能量的天线(4),其特征在于,所述同轴输入(5)具有直接过渡到介电填充波导的直线。 优选地,该直接在线转换由同轴输入的中心导体(6)实现,其轴向中心延伸到波导(2)中,以便激发波导中的微波。 横向导体(8)从中心导体(6)径向延伸,以帮助将微波发射到波导中。 优选地,施加器包括直接连接到同轴输入(5)的温度传感器(10)。