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公开(公告)号:DE19959781C2
公开(公告)日:2003-02-20
申请号:DE19959781
申请日:1999-12-07
Applicant: INFINEON TECHNOLOGIES AG
Inventor: KROPP JOERG-REINHARDT
IPC: G02B6/42 , H01L31/0203 , H01L31/0232 , G02B6/44
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公开(公告)号:DE59806880D1
公开(公告)日:2003-02-13
申请号:DE59806880
申请日:1998-09-24
Applicant: INFINEON TECHNOLOGIES AG
Inventor: MEYER-GUELDNER FRANK , KREIER MICHAEL , KROPP JOERG-REINHARDT
IPC: G02B6/42
Abstract: The arrangement has at least two electrooptic transducers (1, 2) with in each case one optically active zone (1a, 2a). Optical connections (12, 14) which are assigned to the transducers are adjacent at a spacing (a). Optical coupling paths (8, 9) run via a coupling device (6) between the connections (12, 14) and the respectively assigned optically active zones (1a, 2a) In order in the case of a very tight spacing (a) to permit a favorable crosstalk response and a cost effective design, the coupling paths (8, 9) run in such a way that the spacing (A) between two optically active zones (1a, 2a) is greater than the spacing (a).
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公开(公告)号:DE19939708C2
公开(公告)日:2002-04-11
申请号:DE19939708
申请日:1999-08-18
Applicant: INFINEON TECHNOLOGIES AG
Inventor: HEINRICH HANS-HELMUT , KROPP JOERG-REINHARDT
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公开(公告)号:DE10016446A1
公开(公告)日:2001-10-04
申请号:DE10016446
申请日:2000-03-29
Applicant: INFINEON TECHNOLOGIES AG
Inventor: KROPP JOERG-REINHARDT
IPC: H01L27/144 , H04B10/04
Abstract: The aim of the invention is to enable a biased light-sensitive diode to be used for rapid data transmissions with a low supply voltage (U). To this end, the invention provides that an electrical circuit (6) is introduced into the electrical path between the voltage source of the supply voltage and the diode, said circuit supplying the diode with a working voltage > U. .
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公开(公告)号:DE10003966A1
公开(公告)日:2001-08-23
申请号:DE10003966
申请日:2000-01-25
Applicant: INFINEON TECHNOLOGIES AG
Inventor: KROPP JOERG-REINHARDT , KUHL DETLEF , DROEGEMUELLER KARSTEN , PLICKERT VOLKER , LEININGER LARS , BLANK JUERGEN , STANGE HERWIG , JEITER GEORG
IPC: G02B6/42
Abstract: The aim of the invention is to ensure so-called laser safety, also in the case of the largest possible coupled optical power, during the direct optical coupling of a light-emitting component (1) to an optical waveguide (20). To this end, the light is coupled via a fiber end (10) which is configured as a multimode step index optical waveguide and whose numeric aperture is larger than the half-width value of the angular distribution of the radiation (2) emitted from the radiation source. In order to distribute the radiation (2'), which is fed into the actual optical waveguide, over the largest possible angular range with regard to the luminous power, the coupling of the light beam into the fiber end is effected in such a manner that the coupled light beams (2') are inclined in relation to the geometric axis of the optical core (11) of the fiber end (10) with a defined angle (f).
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公开(公告)号:DE10196035B4
公开(公告)日:2005-09-08
申请号:DE10196035
申请日:2001-02-15
Applicant: INFINEON TECHNOLOGIES AG
Inventor: KROPP JOERG-REINHARDT
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公开(公告)号:DE10214223B4
公开(公告)日:2004-05-06
申请号:DE10214223
申请日:2002-03-22
Applicant: INFINEON TECHNOLOGIES AG
Inventor: KROPP JOERG-REINHARDT , MUELLER GUSTAV
Abstract: A plug-in connecting element is used in optoelectrical devices or subassemblies that have optical components and electrical components, and also in a plug-in connector having two plug-in connecting elements of this type. The plug-in connecting element has in a basic body, at least one electrical interface and at least one optical interface, which can be jointly connected in a pluggable manner to a matching plug-in connecting element. The plug-in connecting element is distinguished by the fact that electrical and optical paths are combined by the integration of an electrical interface and an optical interface in one plug-in connecting element.
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公开(公告)号:DE59807403D1
公开(公告)日:2003-04-10
申请号:DE59807403
申请日:1998-08-21
Applicant: INFINEON TECHNOLOGIES AG
Inventor: KROPP JOERG-REINHARDT
IPC: G02B6/42
Abstract: The invention relates to a method for producing an electrooptical plug connector element for an electrooptical plug of an electrooptical connector. In order to economically implement the inventive method, an assembly module (2) is used for the production of the plug connector element (1). Said module is provided with alignment pins (5, 6) which are arranged on the front face (7) facing the plug in such a way that they match the alignment holes (21, 22) of the plug (20). A component support (8) with an electrooptical component (9) having optical transformer elements (9a) arranged on one optical fiber end (28 to 31) of the plug is mounted on the front face (7) of the assembly module (2). After joining the plug (20) and the assembly module (2) and electrically activating the transformer elements (9a), the component support (8) is aligned in a position enabling maximum optical coupling. The component support (8) is fixed in that position and once the plug (20) has been taken out, a plastic coating (38) is applied.
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公开(公告)号:DE10127541A1
公开(公告)日:2002-12-19
申请号:DE10127541
申请日:2001-05-31
Applicant: INFINEON TECHNOLOGIES AG
Inventor: KROPP JOERG-REINHARDT
Abstract: An optical transmitter and a method for generating a digital optical signal sequence are provided. The optical transmitter has light transmitters which are independently drivable and generate an optical signal for each of the bits of a digital electrical signal sequence that is to be converted into a digital optical signal sequence. The optical signals are combined and superposed into an optical signal path. A control device is provided for distributing the bits between the light transmitters.
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公开(公告)号:DE10054373A1
公开(公告)日:2002-05-16
申请号:DE10054373
申请日:2000-10-30
Applicant: INFINEON TECHNOLOGIES AG , FRAUNHOFER GES FORSCHUNG
Inventor: KROPP JOERG-REINHARDT , KRABE DETLEF
Abstract: A method for manufacturing extensive planar waveguide structures, in which a planar substrate with planar structures is provided. The channel-shaped structures (11) are formed sequentially in the substrate (1) with a embossing tool (3), in which the substrate (1) and the embossing tool (3) are moved relative to one another. A cylindrical tool (3) with structured surface is used as the embossing tool, and in particular a embossing roller is used which rolls over the substrate (1).
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