Abstract:
The invention relates to a display screen comprising: a housing forming an enclosure; a display surface on the front face of the housing; a printed circuit board arranged inside the housing; and at least one light-emitting diode that forms a back-lighting source for the display surface and is arranged on a face of the printed circuit board. The display screen is characterised in that the printed circuit board is a single-face printed circuit board, the display screen comprises a thermoconductive plate arranged against the face of the printed circuit board opposite the one carrying the at least one light-emitting diode, and the display screen also comprises a second double-face printed circuit board that has a smaller surface than the single-face printed circuit board, is connected to said single-face printed circuit board by at least one electrical connection, and carries at least one element for controlling the back-lighting of the display surface.
Abstract:
Disclosed is an organic EL illumination device-which is provided with: an organic EL element (13) on a glass substrate (10); and a plurality of anode terminal electrodes (11) and cathode terminal electrodes (12) for evenly supplying current to the aforementioned organic EL element (13) on the aforementioned glass substrate (10)-wherein the organic EL illumination device is provided with a wiring board (1) to which a circuit having anode wiring (1a) corresponding to the position of each of the aforementioned anode terminal electrodes (11), and a circuit having cathode wiring (1b) corresponding to the position of each of the aforementioned cathode terminal electrodes (12) are formed.
Abstract:
The invention relates to a document having a book cover (102, 104) and a personalization page (106), wherein a display device (116) is disposed on the personalization page, and having an electronic circuit (138) for actuating the display device, wherein the electronic circuit is integrated in the book cover, and having a flexible circuit board (120) extending between the display device and the electronic circuit.
Abstract:
The invention relates to an electronic device to be installed on a structural member of an automobile. The electronic device includes at least two electronic components (1, 2) electrically connected together by a flexible connector (3). The latter includes a plurality of conducting blades (4), and the ends (7, 8) of the blades are maintained in contact against the respective connection pads (16, 17) of each of the electronic components (1, 2). The electronic device is provided with means for controlling the compression state of the flexible connector (3).
Abstract:
A plurality of input terminals (4, 4a, 17) provided on a surface of a common electrode substrate (3) which surface is opposed to a TFT substrate (2) are provided so as to be opposed to a plurality of output terminals (6) provided on an external circuit substrate (5). The plurality of input terminals (4, 4a, 17) are overlapped with the plurality of output terminals (6) when the plurality of input terminals (4, 4a, 17) and the plurality of output terminals (6) are viewed in one plane, but the plurality of input terminals (4, 4a, 17) are formed so as not to overlap the TFT substrate (2). The plurality of input terminals (4, 4a, 17) and a drive circuit are electrically connected via a conductor provided between the TFT substrate (2) and the common electrode substrate (3). The plurality of input terminals (4, 4a, 17) and the plurality of output terminals (6) are electrically connected via a connector (9) having a conductive region (7) and an insulating region (8) each formed into a striped pattern on surfaces for connection with the plurality of input terminals (4, 4a, 17) and the plurality of output terminals (6). This makes it possible to attain a display device that makes it possible to suppress an increase in production cost per unit and to have a high productivity.
Abstract:
The present invention provides an innovative means for efficient and secure component assembly and for ensuring secure electrical connections in a small diagnostics device where available space for fasteners is limited. In one embodiment, principles of leverage are employed to produce a force at a location where space is available. The force is transferred to a different location of the assembly where it is used to maintain secure connections between components.
Abstract:
A Transparent conductor including a conductive layer coated on a substrate is described. More specifically, the conductive layer comprises a network of nanowires which may be embedded in a matrix. The conductive layer is optically transparent and flexible. It can be coated or laminated onto a variety of substrates, including flexible and rigid substrates.