Abstract:
Disclosed is a flexible-circuit flat cable with cluster section, including at least one cluster section, at least one slip section, a first connection section, and a second connection section. The first connection section is set at a first end of the cluster section. The slip section has a first end connected to a second end of the cluster section and a second end at which the second connection section is set. The four sections are all provided with a plurality of signal transmission lines corresponding to and connecting each other. The first connection section and the second connection section are selectively provided with a connector or a plugging end. Further, the cluster section includes a cluster structure composed of a plurality of clustered flat cable components that are formed by slitting in a direction parallel to extension direction of a flexible circuit board to impose free and independent flexibility for bending to each clustered flat cable component.
Abstract:
A plurality of protruding substrate portions (12) is extended from positions placed at an interval from each other along a peripheral edge of a wiring substrate (10). Each of the protruding substrate portions (12) is provided with wiring terminals (15), (16) electrically connected to each of a plurality of electrode terminals provided to an electrical instrument substrate. A cut-out part (18) is formed in a peripheral edge (13a) between the protruding substrate portions (12) in the wiring substrate (10).
Abstract:
Disclosed is a flexible-circuit flat cable with cluster section, including at least one cluster section, at least one slip section, a first connection section, and a second connection section. The first connection section is set at a first end of the cluster section. The slip section has a first end connected to a second end of the cluster section and a second end at which the second connection section is set. The four sections are all provided with a plurality of signal transmission lines corresponding to and connecting each other. The first connection section and the second connection section are selectively provided with a connector or a plugging end. Further, the cluster section includes a cluster structure composed of a plurality of clustered flat cable components that are formed by slitting in a direction parallel to extension direction of a flexible circuit board to impose free and independent flexibility for bending to each clustered flat cable component.
Abstract:
The touch panel of the present invention has a thermally color-changing portion in the vicinity of a connecting portion which is to be bonded by heat. It can be easily checked whether the heat press has been performed at a predetermined temperature when the wiring board is connected to the top and bottom substrates, based on the degree of coloring of the thermally color-changing portion. This allows the touch panel to be manufactured simply and to ensure reliable electrical contact and separation.
Abstract:
An optical apparatus including an electrical component which is movable in a plane, and a flexible printed wiring board in the shape of a strip, the widthwise direction thereof being parallel to the plane, which connects the electrical component to a stationary board, wherein the flexible printed wiring board includes a folded extension portion which firstly extends in a direction substantially orthogonal to the plane and is subsequently folded back at a folded portion to extend in a direction opposite thereto; and at least one slit which is provided to pass through the folded portion and to split at least a part of the folded extension portion into at least two split portions thereof in the widthwise direction of the flexible printed wiring board.
Abstract:
The present invention generally relates to an improved structure for an LED lamp and a method for forming the improved structure, more particularly to an improved LED lamp structure having a special figure so as to replace a traditional incandescent light bulb. The improved structure for the LED lamp is disclosed and comprises: a flexible PCB, which is shaped to form a three-dimensional structure and has at least one tier of LEDs mounted thereon, the LED being electrically connected to the printed circuits of the flexible PCB; and a rectifier, which is disposed on the end of the three-dimensional member and electrically connected to the three-dimensional member. The method for forming the improved structure of the LED lamp is disclosed and comprises the steps of: (1) providing a flexible PCB, which can be formed a three-dimensional structure and has a least one tier of LEDs thereon; (2) fabricating the flexible PCB to form the three-dimensional structure; and (3) electrically connecting a rectifier to the three-dimensional structure.
Abstract:
A wiring board used for various electronic apparatuses, an input device such as an optically transparent touch panel using the wiring board, and a method of manufacturing the input device. A plurality of electrodes provided at the side of one end of one principal surface of wiring board, wiring patterns coupled to electrodes, and a connector disposed region provided at the side of the other end of wiring board are provided. In this connector disposed region, connectors are disposed. In substantially the central portion of the connector disposed region, a concave portion is provided and in the vicinity of connectors, a bending portion is disposed. Furthermore, a cut portion is disposed between or in the vicinity of the plurality of connectors. The wiring board may thereby be manufactured with all conductive portions on one side and then, by bending. some connectors maybe be positioned on the other side.
Abstract:
The touch panel of the present invention has a thermally color-changing portion in the vicinity of a connecting portion which is to be bonded by heat. It can be easily checked whether the heat press has been performed at a predetermined temperature when the wiring board is connected to the top and bottom substrates, based on the degree of coloring of the thermally color-changing portion. This allows the touch panel to be manufactured simply and to ensure reliable electrical contact and separation.
Abstract:
An optical apparatus including an electrical component which is movable in a plane, and a flexible printed wiring board in the shape of a strip, the widthwise direction thereof being parallel to the plane, which connects the electrical component to a stationary board, wherein the flexible printed wiring board includes a folded extension portion which firstly extends in a direction substantially orthogonal to the plane and is subsequently folded back at a folded portion to extend in a direction opposite thereto; and at least one slit which is provided to pass through the folded portion and to split at least a part of the folded extension portion into at least two split portions thereof in the widthwise direction of the flexible printed wiring board.
Abstract:
An electrooptic device is provided that comprises an electrooptic panel having an image display region for displaying an image and an interface substrate connected to the electrooptic panel via a connection part. The interface substrate has a folding part folded at the connection part toward a lower-surface side of the electrooptic panel and projections extending from the folding part positioned at the lower-surface side of the electrooptic panel. The projections are folded toward a top-surface side of the electrooptic panel so that electronic parts of the projections are opposed to driver ICs that are mounted on an overhanging part of the electrooptic panel.