11.
    发明专利
    未知

    公开(公告)号:DE10329988B3

    公开(公告)日:2005-01-13

    申请号:DE10329988

    申请日:2003-06-27

    Abstract: The invention relates to an optoelectronic transmission and/or reception arrangement. The arrangement includes a transmission and/or reception module containing an optoelectronic transmission and/or reception component, and a plug interface for the coupling of an optical fiber thereto. An optical waveguide section is arranged in the plug interface, and at one of its ends is optically coupled to the transmission and/or reception component. At its other end, the optical waveguide section is configured to be coupled to an optical fiber. The arrangement may further include a lens for optical coupling of the light between the optical waveguide section and the transmission and/or reception component. The lens and the optical waveguide section, in one example, are formed as a prefabricated subassembly, in which the lens is fixedly arranged at a defined distance from one end face of the optical waveguide section.

    14.
    发明专利
    未知

    公开(公告)号:DE10196455D2

    公开(公告)日:2004-04-29

    申请号:DE10196455

    申请日:2001-05-23

    Abstract: The module for optical signal transmission has a transmitting or receiving component mounted on a carrier. At least one optical waveguide, whose two ends represent an optical input and an optical output of the module, is associated with the transmitting or receiving component. A wavelength-selective element is arranged or formed in the optical waveguide and injects into the optical waveguide or outputs from it light, which is emitted from or received by the transmitting or receiving element, for a specific optical data channel. The light is injected into or output from the optical waveguide essentially at right angles to the optical axis of the optical waveguide.

    15.
    发明专利
    未知

    公开(公告)号:DE10196464D2

    公开(公告)日:2004-04-15

    申请号:DE10196464

    申请日:2001-05-23

    Abstract: The invention relates to an electro-optical module for transmitting and/or receiving optical signals on at least two optical data channels which are carried in an optical waveguide. The optical waveguide in the module forms at least two optical waveguide sections, with each section having at least one inclined end surface. The inclined end surfaces of the optical waveguide sections are positioned axially one behind the other. Light is injected into or light is output from the optical waveguide for a specific optical data channel by light for the optical data channel being passed to an inclined end surface, or emerging from it, at an angle to the optical axis of the optical waveguide.

    18.
    发明专利
    未知

    公开(公告)号:DE59804465D1

    公开(公告)日:2002-07-18

    申请号:DE59804465

    申请日:1998-11-26

    Abstract: The transmission device comprises a transmission unit (1) having a plurality of useful lasers (3b to 3m), which are arranged in a row (2) and emit useful radiation vertically with respect to the covering area (1b) of the transmission unit. In order to regulate the useful radiation power, a monitor receiver (20a) is arranged on a mounting plane (26a) which is laterally adjacent to the transmission unit (1) and lies above the covering area (1b). The monitor receiver projects above an assigned monitoring laser (3a) like a cantilever support in such a way that its radiation-sensitive area (23a) is opposite the optically active zone (4a) of the monitoring laser (3a).

    19.
    发明专利
    未知

    公开(公告)号:DE10196455B4

    公开(公告)日:2006-11-16

    申请号:DE10196455

    申请日:2001-05-23

    Abstract: The module for optical signal transmission has a transmitting or receiving component mounted on a carrier. At least one optical waveguide, whose two ends represent an optical input and an optical output of the module, is associated with the transmitting or receiving component. A wavelength-selective element is arranged or formed in the optical waveguide and injects into the optical waveguide or outputs from it light, which is emitted from or received by the transmitting or receiving element, for a specific optical data channel. The light is injected into or output from the optical waveguide essentially at right angles to the optical axis of the optical waveguide.

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