Abstract:
A device for converting light into an electric signal comprises an optical transmission element for transmitting light as well as a photoelectric sensor element (20) for converting light into an electric signal. The optical transmission element has a curved section (BA). The optical transmission element (10) is designed in such a way that light transmitted in the optical transmission element (10) is extracted from the optical transmission element (10) in the curved section (BA). The photoelectric sensor element is disposed in such a way that the light extracted from the optical transmission element (10) is injected into the photoelectric sensor element (20). The photoelectric sensor element is designed such that the electric signal is generated when light is injected into the photoelectric sensor element (20).
Abstract:
The invention relates to a splicing device for optical fibres, comprising a programmable splicing device (FS) that can be controlled by at least one programme parameter, for connecting optical fibres (FIB1, FIB2) to a speech recognition unit (SR). Spoken text is detected by the speech recognition unit (SR) and a speech command is determined from the detected spoken text. The programme parameter(s) of the splicing device is set (FS) and/or the splicing device (FS) is controlled in accordance with the determined speech command.
Abstract:
The invention relates to an optical waveguide splicer (LWL-SPG) for linking optical fibers (F1, F2) in a material fit by glow discharge (GE, GEG). A glow discharge guide (LBF11/12, LBF2, LBF3) is arranged above the electrodes (E1, E2) to stabilize conditions during the fusion process.
Abstract:
The invention relates to an optical waveguide splicer (LWL-SPG) for linking optical fibers (F1, F2) in a material fit by glow discharge (GE, GEG). A glow discharge guide (LBF11/12, LBF2, LBF3) is arranged above the electrodes (E1, E2) to stabilize conditions during the fusion process.