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    • 3. 发明申请
    • INTERCHANGEABLE TROLLING SYSTEM
    • 可交换的交易系统
    • WO2006028899A3
    • 2007-07-05
    • PCT/US2005031120
    • 2005-08-31
    • JENKINS RICHARD T
    • JENKINS RICHARD T
    • A01K85/18
    • A01K91/04A01K85/16
    • A fishing lure (30, 93, 170) for removal in part or in whole while a hook, fishing line, and leader assembly may remain intact. The lure (30, 93, 170) includes a first member (32, 78, 140) that is split into two or more parts (36, 38, 80, 82, 142, 144, 172) with recessed areas (44) that form an opening (42) to receive the fishing line or leader when the first member (32, 78, 140) is assembled. The first member (32, 78, 140) may be assembled laterally around the line or leader, without threading the line or leader through the opening (42) in the first member, eliminating the need to have a free end of line or to tie line to the lure. A second member (62, 178) may include a skirt collar (62) and skirt (60) or another type of lure part, or may be a sleeve. The second member (62, 178) may have a bore (68) that allows axial passage of a hook, a slit (70) that allows lateral passage of the line, or a combination thereof.
    • 钓鱼诱饵(30,93,170)部分或全部移除,而钓鱼线,钓鱼线和领导组件可能保持不变。 诱饵(30,93,170)包括被分成具有凹入区域(44)的两个或多个部分(36,38,80,82,142,144,172)的第一构件(32,78,140),其中 形成当组装第一构件(32,78,140)时接收钓鱼线或领带的开口(42)。 第一构件(32,78,140)可以围绕线或头部横向组装,而不将线或头穿过第一构件中的开口(42),从而消除了需要具有自由端或绑扎 诱惑。 第二构件(62,178)可以包括裙部轴环(62)和裙部(60)或另一种类型的诱饵部件,或者可以是套筒。 第二构件(62,178)可以具有允许钩的轴向通过的孔(68),允许线的横向通过的狭缝(70)或其组合。
    • 7. 发明申请
    • OPTICAL MULTIPLEXER AND DEMULTIPLEXER
    • 光学多路复用器和解复用器
    • WO2003036353A2
    • 2003-05-01
    • PCT/GB2002/004560
    • 2002-10-08
    • QINETIQ LIMITEDJENKINS, Richard, Michael
    • JENKINS, Richard, Michael
    • G02B6/293
    • G02B6/12007G02B6/2813
    • An optical multiplexer and demultiplexer (mux-demux) (100) comprises a multimode waveguide (126) which communicates with first (122) and second (124) coupling waveguides. Multiplexed optical radiation comprising individual wavelength channels of appropriate wavelength introduced into the input waveguide is demultiplexed by means of modal dispersion and inter-modal interference within the multimode waveguide. The mux-demux consists of merely of waveguides and is therefore simple to fabricate and integrate with other components in integrated optical systems, and is capable of resolving channels having a small (∼1nm) wavelength spacing. The mux-demux may be used without modification as a demultiplexer and remains of simple construction when scaled up to operate with many channels.
    • 光复用器和解复用器(多路复用器)(100)包括与第一(122)和第二(124)耦合波导连通的多模波导(126)。 通过在多模波导内的模式色散和模式间干扰,将包括引入到输入波导中的适当波长的各个波长通道的多路复用光辐射解复用。 复用多路复用器仅由波导组成,因此易于制造并与集成光学系统中的其他部件集成,并且能够分辨具有小(1nm)的波长间隔的通道。 多路复用多路复用器可以在不经修改的情况下被用作解复用器,并且当按比例扩大到许多信道时可以保持简单的结构。
    • 9. 发明申请
    • WAVEGUIDE STAR COUPLER USING MULTIMODE INTERFERENCE
    • 波形星形耦合器使用多模式干扰
    • WO1993025923A1
    • 1993-12-23
    • PCT/GB1993001005
    • 1993-05-17
    • THE SECRETARY OF STATE FOR DEFENCE IN HER ...JENKINS, Richard, Michael
    • THE SECRETARY OF STATE FOR DEFENCE IN HER ...
    • G02B06/12
    • G02B6/2817G02B6/2813
    • A radiation coupling device (10) incorporates a rectangular multimode beamsplitter waveguide (20) connected at one end to a set of input waveguides (18). The input waveguides (18) have inserted within them respective fibre optic waveguides (22). The input waveguides (18) are connected at periodic positions across the beamsplitter waveguide's transverse cross section. The beamsplitter waveguide (20) is also connected at its other end to retroreflecting mirror (24). Radiation propagating in fundamental mode in any one of the input waveguides (18) passes along the beamsplitter waveguide (20) and is retroreflected at the mirror (24). On return, it becomes divided between the input waveguides (18) by virtue of modal dispersion (multimode interference) in the beamsplitter waveguide (20). The device (10) therefore acts as a star coupler.
    • 辐射耦合装置(10)包括在一端连接到一组输入波导(18)的矩形多模分束器波导(20)。 输入波导(18)在其内插入相应的光纤波导(22)。 输入波导(18)在分束器波导的横截面上的周期性位置连接。 分束器波导(20)的另一端也连接到回射反射镜(24)。 在任何一个输入波导(18)中以基本模式传播的辐射沿分束器波导(20)通过并在反射镜(24)处回射。 在返回时,它通过分束器波导(20)中的模式色散(多模干扰)在输入波导(18)之间分割。 因此,装置(10)用作星形耦合器。