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    • 31. 发明申请
    • FLUID SAMPLE TRANSPORT DEVICE WITH REDUCED DEAD VOLUME FOR PROCESSING, CONTROLLING AND/OR DETECTING A FLUID SAMPLE
    • 具有减少死亡体积的流体样品运输装置用于处理,控制和/或检测流体样品
    • US20090130766A1
    • 2009-05-21
    • US12298951
    • 2007-04-23
    • Johannes Wilhelmus Weekamp
    • Johannes Wilhelmus Weekamp
    • G01N33/48B01L3/00G01N1/00
    • B01L3/50273B01L3/502707B01L3/502738B01L7/52B01L2200/143B01L2300/0627B01L2300/0645B01L2300/0816B01L2300/1822B01L2300/1827B01L2400/0478B01L2400/0481B01L2400/0655Y10T436/25Y10T436/2575
    • The present invention relates to a fluid sample transport device (1) with reduced dead volume for processing, controlling and/or detecting a fluid sample (3), comprising: a substrate (2), wherein the upper surface of said substrate (2) comprises at least one processing, controlling and/or detecting element (19); at least one flexible membrane (4), wherein the flexible membrane (5) is arranged on the upper surface of said substrate (2); at least one plunger (5) and/or actuating element (9) for actuating an up and/or down movement of the flexible membrane (4) to cause a fluid flow and/or to stop a fluid flow; at least one cover plate (6) arranged on the upper outer surface or lower outer surface of the flexible membrane (4), wherein the cover plate (6) comprises at least one through going hole (10) and/or cut-out (10) for receiving a plunger (5) and/or actuating element (9), so that movement of said plunger (5) and/or actuating element (9) causes a pump and/or valve action of the adjacent arranged flexible membrane area to cause a fluid flow between the upper surface of said substrate (2) and the lower surface of said flexible membrane (4); and wherein at least one channel (7) to direct the fluid sample (3) flow on the substrate (2) is temporally formed by the flexible membrane.
    • 本发明涉及一种流体样品输送装置(1),其具有减少的死体积用于处理,控制和/或检测流体样品(3),包括:基底(2),其中所述基底(2)的上表面, 包括至少一个处理,控制和/或检测元件(19); 至少一个柔性膜(4),其中所述柔性膜(5)布置在所述基底(2)的上表面上; 至少一个柱塞(5)和/或致动元件(9),用于致动柔性膜(4)的向上和/或向下运动以引起流体流动和/或停止流体流动; 至少一个盖板(6),布置在柔性膜(4)的上外表面或下外表面上,其中盖板(6)包括至少一个通孔(10)和/或切口 10),用于接收柱塞(5)和/或致动元件(9),使得所述柱塞(5)和/或致动元件(9)的运动导致相邻布置的柔性膜区域的泵和/或阀动作 在所述基板(2)的上表面和所述柔性膜(4)的下表面之间引起流体流动; 并且其中引导流体样品(3)的至少一个通道(7)在衬底(2)上流动,由柔性膜在时间上形成。
    • 33. 发明申请
    • LED LIGHTING ASSEMBLY WITH MOUNTING ELEMENT FOR OPTICS
    • LED照明组件与光学安装元件
    • US20130100685A1
    • 2013-04-25
    • US13809598
    • 2011-07-12
    • Johannes Wilhelmus WeekampRob BosmaNorbertus Antonius Maria Sweegers
    • Johannes Wilhelmus WeekampRob BosmaNorbertus Antonius Maria Sweegers
    • F21V17/16
    • F21V17/16F21S41/143F21S41/39F21S43/14F21S43/37F21V17/005F21Y2115/10Y10T29/49895
    • A lighting assembly, a mounting element and a manufacturing method are described. The lighting assembly includes an LED assembly 20 comprising an LED lighting element 14 provided on a carrier part 12. In order to mount an optical element 50 for forming an emission beam from light emitted from the LED lighting elements 14 a mounting element 30 is provided. The optical element 50 is mounted on the LED assembly 20 by this mounting element 30, which includes mount structure 32, clamps 44 for fixing the optical element 50, a positioning element 34 for positioning on the LED assembly 30 and an alignment part 40. The alignment part 40 comprises a flexible portion 36 and a first fixing part 46. The mount structure 32 comprises a second fixing part 48 movable relative to the first fixing part 46, which is arranged next to the first fixing part 46. The positioning element 34 is positioned on the LED assembly 20. A predetermined alignment may be achieved by fixing the first fixing part 46 to the second fixing part 48.
    • 描述照明组件,安装元件和制造方法。 照明组件包括LED组件20,其包括设置在载体部分12上的LED照明元件14.为了安装用于从LED照明元件14发射的光形成发射光束的光学元件50,提供安装元件30。 光学元件50通过该安装元件30安装在LED组件20上,安装元件30包括安装结构32,用于固定光学元件50的夹具44,用于定位在LED组件30上的定位元件34和对准部分40。 对准部分40包括柔性部分36和第一固定部分46.安装结构32包括可相对于邻近第一固定部分46设置的第一固定部分46可移动的第二固定部分48.定位元件34是 定位在LED组件20上。可以通过将第一固定部分46固定到第二固定部分48来实现预定的对准。
    • 38. 发明授权
    • Large area LED array and method for its manufacture
    • 大面积LED阵列及其制造方法
    • US07918702B2
    • 2011-04-05
    • US12298062
    • 2007-04-11
    • Johannes Wilhelmus Weekamp
    • Johannes Wilhelmus Weekamp
    • H01J9/00
    • F21K9/90F21S4/28F21Y2115/10H01L33/62H01L2224/48091H01L2224/48465H01L2924/00011H01L2924/01047H01L2924/00014H01L2924/00H01L2924/01033
    • A method for manufacturing a large area LED array, comprising providing two stacks (21) of electrodes (26), each electrode arranged in a meander pattern (4) on a substrate (3), at least two U-turns (7) on one side of the meander each being connected to a LED mounting surface (8) to form a row (9) of mounting surfaces, arranging the stacks so that rows and columns of mounting surfaces intersect each other at a plurality of intersection points (24), and mounting LEDs (22) at these intersection points. The substrate material is then removed, and the stacks are stretched in two directions thereby separating said intersection points (24) from each other. According to the invention, the LEDs can be mounted to the LED mounting surfaces when these are still located close to each other, preferably adjacent to each other enabling a simple and cost efficient mounting process. Further, the size of the substrates on which the conducting layer is formed can be limited. This further increases the cost effectiveness of the process.
    • 一种用于制造大面积LED阵列的方法,包括提供电极(26)的两个堆叠(21),每个电极以基板(3)上的曲折图案(4)布置,至少两个U形匝(7) 每个弯管的一侧连接到LED安装表面(8)以形成安装表面的一排(9),布置堆叠,使得安装表面的行和列在多个交点(24)处彼此相交, 并且在这些交点处安装LED(22)。 然后去除衬底材料,并且将堆叠沿两个方向拉伸,从而将所述交点(24)彼此分离。 根据本发明,LED可以安装在LED安装表面上,当它们仍然彼此靠近时,优选彼此相邻,从而能够实现简单且成本有效的安装过程。 此外,可以限制形成导电层的基板的尺寸。 这进一步提高了流程的成本效益。