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    • 1. 发明申请
    • Thermally optimized microwave channel multiplexing device and signals repetition device comprising at least one such multiplexing device
    • 热优化的微波信道复用设备和包括至少一个这样的复用设备的信号重复设备
    • US20110058809A1
    • 2011-03-10
    • US12870827
    • 2010-08-29
    • Joël LagorsseJean-Claude Lacombe
    • Joël LagorsseJean-Claude Lacombe
    • H04J14/00
    • H01P1/30H01P1/2138
    • A microwave channel multiplexing device comprises several elementary filters connected in parallel with a common output port by way of a transverse waveguide, each filter comprising a lower end fixed to a support common to all the filters and an upper end away from the support, an external peripheral wall, at least one internal cavity defining an internal channel, a signal input connected to the internal cavity and a signal output connected to the transverse waveguide. The multiplexing device furthermore comprises a conducto-radiative device coupled mechanically and thermally to at least two filters, the conducto-radiative device comprising at least one thermally conducting plate, and linked to the external peripheral walls of each of said at least two filters, the plate being fixed at the level of the upper end of the filters. The invention applies to the field of satellite telecommunications and more particularly to signals repetition devices aboard satellites.
    • 微波信道复用装置包括通过横向波导与公共输出端口并联连接的几个基本滤波器,每个滤波器包括固定到所有滤波器共同的支撑件的下端和远离支架的上端,外部 外围壁,限定内部通道的至少一个内部空腔,连接到内部空腔的信号输入和连接到横向波导的信号输出。 所述多路复用装置还包括机械和热耦合到至少两个滤波器的导电辐射装置,所述导电辐射装置包括至少一个导热板,并且连接到所述至少两个滤波器中的每一个的外周壁, 板被固定在过滤器的上端的水平面上。 本发明适用于卫星通信领域,更具体地涉及卫星上信号重复装置。
    • 2. 发明授权
    • Thermally optimized microwave channel multiplexing device and signals repetition device comprising at least one such multiplexing device
    • 热优化的微波信道复用设备和包括至少一个这样的复用设备的信号重复设备
    • US08340594B2
    • 2012-12-25
    • US12870827
    • 2010-08-29
    • Joël LagorsseJean-Claude Lacombe
    • Joël LagorsseJean-Claude Lacombe
    • H04B1/46
    • H01P1/30H01P1/2138
    • A microwave channel multiplexing device comprises several elementary filters connected in parallel with a common output port by way of a transverse waveguide, each filter comprising a lower end fixed to a support common to all the filters and an upper end away from the support, an external peripheral wall, at least one internal cavity defining an internal channel, a signal input connected to the internal cavity and a signal output connected to the transverse waveguide. The multiplexing device furthermore comprises a conducto-radiative device coupled mechanically and thermally to at least two filters, the conducto-radiative device comprising at least one thermally conducting plate, and linked to the external peripheral walls of each of said at least two filters, the plate being fixed at the level of the upper end of the filters. The invention applies to the field of satellite telecommunications and more particularly to signals repetition devices aboard satellites.
    • 微波信道复用装置包括通过横向波导与公共输出端口并联连接的几个基本滤波器,每个滤波器包括固定到所有滤波器共同的支撑件的下端和远离支架的上端,外部 外围壁,限定内部通道的至少一个内部空腔,连接到内部空腔的信号输入和连接到横向波导的信号输出。 所述多路复用装置还包括机械和热耦合到至少两个滤波器的导电辐射装置,所述导电辐射装置包括至少一个导热板,并且连接到所述至少两个滤波器中的每一个的外周壁, 板被固定在过滤器的上端的水平面上。 本发明适用于卫星通信领域,更具体地涉及卫星上信号重复装置。
    • 3. 发明申请
    • WINDOW PANEL AND METHOD OF MANUFACTURING SUCH A WINDOW, AIRCRAFT COMPRISING A WINDOW PANEL
    • 窗户面板和制造这样一个窗户的方法,包括窗户的飞机
    • US20090230246A1
    • 2009-09-17
    • US12400359
    • 2009-03-09
    • Alain DepeigeJean-Claude Lacombe
    • Alain DepeigeJean-Claude Lacombe
    • B64C1/14B28B1/14
    • B64C1/1492
    • This invention relates to the design of aircraft (100) having a fuselage (104, 106, 110) of composite type and more particularly to that of aircraft fuselage panels (110) bearing cabin windows (206, 306).The invention thus concerns a fuselage panel (110) bearing a window (206) comprising a composite structure cast in one piece (200, 212), the said structure comprising a main portion (200) and at least one opening (204) to accommodate a window (206), the said structure having, on a zone (213, 214, 216)) surrounding the said opening (204), a thickness more or less constant and greater than the thickness of the main portion (200) of the said structure.The invention also concerns an aircraft (100) comprising a composite fuselage (104, 106, 110), the latter comprising such a panel or a similar panel made of metal material (110).
    • 本发明涉及具有复合类型的机身(104,106,110)的飞机(100)的设计,更具体地涉及承载舱窗(206,306)的飞机机身面板(110)的设计。 因此,本发明涉及一种机身板(110),其具有包括铸造成一体(200,212)的复合结构的窗口(206),所述结构包括主要部分(200)和至少一个开口(204),以容纳 窗口(206),所述结构在围绕所述开口(204)的区域(213,214,216)上具有或多或少恒定并且大于所述主体部分(200)的厚度的厚度 说结构。 本发明还涉及一种包括复合机身(104,106,110)的飞行器(100),后者包括由金属材料(110)制成的面板或类似面板。
    • 6. 发明授权
    • Orientable antenna with conservation of polarization axes
    • 具有偏振轴保护的定向天线
    • US5796370A
    • 1998-08-18
    • US683779
    • 1996-07-16
    • Veronique CourtonneDominique MorinJean-Claude LacombeJean-Pierre CarbonellDidier Rene
    • Veronique CourtonneDominique MorinJean-Claude LacombeJean-Pierre CarbonellDidier Rene
    • H01Q3/16H01Q19/19H01Q13/00
    • H01Q3/16H01Q19/191H01Q19/192
    • An antenna is orientable, directional and capable of use as a transmit and/or receive antenna. It includes at least one reflector, at least one source of electromagnetic radiation including means for exciting the source with two orthogonal linear polarizations and a mechanical system for positioning and holding the source and the reflector. The orientation of the antenna is made up of depointing and rotation about a preferred direction of propagation of the radiation and the mechanical system enables such rotation while keeping the source fixed, so conserving the orientation of the orthogonal linear polarization. A preferred embodiment of the antenna includes a parabolic main reflector and a hyperbolic auxiliary reflector in a Cassegrain geometry, and the mechanical system enables rotation of both reflectors about the preferred direction of radiation and holds the source fixed to conserve the orthogonal linear polarization axes of the beam. Applications include radar, direct broadcast satellites and telecommunications employing frequency re-use by polarization diversity, especially advantageous in space and airborne applications.
    • 天线是可定向的,定向的并且能够用作发射和/或接收天线。 它包括至少一个反射器,至少一个电磁辐射源,包括用两个正交线性偏振激发光源的装置和用于定位和保持光源和反射器的机械系统。 天线的方向由围绕放射线的优选传播方向的去耦和旋转组成,并且机械系统能够在保持源固定的同时进行这种旋转,从而节省正交线偏振的取向。 天线的优选实施例包括抛物线主反射器和卡塞格林几何中的双曲面辅助反射器,并且机械系统能够绕两个辐射的优选方向旋转两个反射器,并且保持源固定以节省正交线偏振轴 光束。 应用包括雷达,直播广播卫星和通过极化分集频率重用的电信,在空间和机载应用中特别有利。
    • 8. 发明授权
    • Method for making a structural part of a composite material having a calibrated thickness and structural part thus obtained
    • 制造具有由此获得的校准厚度和结构部分的复合材料的结构部分的方法
    • US08801885B2
    • 2014-08-12
    • US12595313
    • 2008-04-09
    • Mathieu NormandJean-Claude Lacombe
    • Mathieu NormandJean-Claude Lacombe
    • B29C65/00B29C70/54
    • B29C70/545B29C70/30Y10T156/108Y10T428/2495
    • The disclosed embodiments offer a solution for controlling the thickness of a finished structural composite part when precise tolerances must be complied with for the quality of the assembly and in order to ease the assembly operations of this part. In order to implement the method according to the disclosed embodiments, an additional layer of plies made out of a non-structural composite material, called calibrating plies, is applied onto the structural plies of the structural part, at least in an area where the thickness must be maintained within close tolerances and, after the composite material has been cured, the calibrating plies are machined in order to obtain the thickness required for the finished part. The thickness of the calibrating plies applied is determined according to the possible thicknesses of structural plies, taking into account the manufacturing spreads so that the machining operation for the calibrating plies does not affect the structural plies.
    • 所公开的实施例提供了一种用于控制成品结构复合材料部件的厚度的解决方案,因为对于组件的质量必须遵守精确的公差,并且为了简化该部件的组装操作。 为了实现根据所公开的实施例的方法,将由称为校准层的非结构复合材料制成的层的附加层施加到结构部件的结构层上,至少在厚度 必须保持在非常公差范围内,并且在复合材料固化之后,校准层被加工以获得成品部件所需的厚度。 考虑到制造涂层,根据结构层的可能厚度确定校准层的厚度,使得校准层的加工操作不影响结构层。