Abstract:
A camera module for automobiles is disclosed. The camera module includes a lens unit, a housing, in front of which the lens unit is disposed, and a plurality of printed circuit boards disposed in the housing so as to be opposite the lens unit, wherein the housing is provided at the inner wall thereof with a plurality of steps, the steps being provided between the respective printed circuit boards so as to be spaced apart from each other for setting the distance between the respective printed circuit boards.
Abstract:
A flexible flat cable connecting structure and a flexible flat cable connecting method are provided so that a connector can be connected by pitch conversion without complicating the structure of the connector and metal molds for forming mold parts become unnecessary. A flexible flat cable connecting structure for connecting a flexible flat cable (13) in which a plurality of rectangular conductors (11) are provided in parallel and a plurality of connector terminals arranged at an array pitch different from that of the rectangular conductors comprises an intermediate cable arranging member (17) one end of which is coupled to the connector terminals and in which a plurality of branch conductors (19) are provided in parallel which are set to have mutually different longitudinal dimensions according to the array pitch. The intermediate cable arranging member (17) is laid on the flexible flat cable (13) so that the intermediate cable arranging member (17) and the flexible flat cable (13) are in the same plane and form an angle. The other ends (21) of the branch conductors (19) of the intermediate cable arranging member (17) are connected to the respective rectangular conductors (11).
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:
To provide a circuit board that is capable of establishing electrical connection, that is thinner, and that has a higher maintainability. A circuit board 100 includes a substrate 101 including a hole portion 110 that penetrates the substrate 101 in a plate thickness direction, and a connector region including a first conductor layer 202 that closes one side of the hole portion 110, liquid metal 210 disposed in a recess 201 formed by the hole portion 110 and the first conductor layer 202, and a sealing layer 212 that is the liquid metal 210 cured on a liquid surface side. The liquid metal 210 may be in contact with a second conductor layer 204 formed in the recess 201.
Abstract:
A printed wiring board is provided which comprises: a first substrate (31) on which a plurality of pads (15, 17) to be connected to a connector is arranged to form a front array and a rear array in two rows; a second substrate (32) that is laminated on the first substrate (31) and formed with first wirings (9) connected to first pads (15) of the front array and second wirings (11) connected through vias to second pads (17) of the rear array; engageable parts (28, 29) that are to be engaged with engagement parts of the connector; and one or more reinforcement layers (R1, R2) that are provided at the frontward side in the connecting direction (I) than the engageable parts (28, 29) of the first substrate (31) and/or the second substrate (32). The wirings (9, 11) each have a part formed to have a constant width along the inserting direction to the connector and an expanded-width part expanded to have a wider width than the constant width in the inserting direction of the connector. The expanded-width parts are provided at locations corresponding to respective pads (15, 17). The expanded-width parts include first expanded-width parts having approximately the same shape as that of the first pads (15) and second expanded-width parts having approximately the same shape as that of the second pads (17).
Abstract:
A dynamically flexible article or device, such as an armband, includes a flexible electronic component, such as a flexible electronic display, and a flexible support structure coupled to the flexible electronic component, wherein the flexible support and the flexible electronic component are flexible along two dimensions to thereby be able to conform to a complex curved surface. The flexible support includes bending limiting structure that constrains bending of the flexible electronic component to prevent undesirable bending.
Abstract:
Disclosed is a display device for realizing a transparent image. The display device includes a display panel, a source printed circuit board (PCB) on which a signal line is mounted, a control PCB on which a timing controller is mounted, and a circuit film connected to the display panel at one side of the circuit film and connected to the source PCB at the other side. The source PCB and the control PCB are disposed to overlap each other, and the source PCB and the control PCB are disposed not to overlap the display panel.
Abstract:
A printed wiring board is provided which comprises: a first substrate (31) on which a plurality of pads (15, 17) to be connected to a connector is arranged to form a front array and a rear array in two rows; a second substrate (32) that is laminated on the first substrate (31) and formed with first wirings (9) connected to first pads (15) of the front array and second wirings (11) connected through vias to second pads (17) of the rear array; engageable parts (28, 29) that are to be engaged with engagement parts of the connector; and one or more reinforcement layers (R1, R2) that are provided at the frontward side in the connecting direction (I) than the engageable parts (28, 29) of the first substrate (31) and/or the second substrate (32). The wirings (9, 11) each have a part formed to have a constant width along the inserting direction to the connector and an expanded-width part expanded to have a wider width than the constant width in the inserting direction of the connector. The expanded-width parts are provided at locations corresponding to respective pads (15, 17). The expanded-width parts include first expanded-width parts having approximately the same shape as that of the first pads (15) and second expanded-width parts having approximately the same shape as that of the second pads (17).
Abstract:
The present invention relates to a LED Module (10) comprising a first carrier (1) with at least one LED Chip (3) arranged thereon and a second carrier (2) on which electric components (4) for being connected to the at least one LED Chip (3) are arranged, wherein the first carrier (1) is an insulated metal substrate comprising a metal base material and a dielectric layer on which the at least one LED Chip (3) is arranged, and wherein the second carrier (2) is a sheet-shaped circuit board arranged to at least partially cover a top surface of the first carrier (1) and which is electrically connected to the first carrier (1).