Abstract:
A straight middle LED module having a certain length and positioned at a middle portion; side LED modules which are provided at both sides of the middle LED module at a regular interval along a longitudinal direction; a middle connection portion at which the side LED modules and the middle LED module are connected and integrally formed in order for the side LED modules to be bent; and a horizontal connection portion to which a lower side of the middle LED module is connected at a regular interval along a horizontal direction, and the middle connection portion has grooves alternately formed at both sides and has a width narrower than the width of the side LED module.
Abstract:
A flat wiring member and a manufacturing method thereof are provided which are capable of suppressing an increase in thickness of the flat wiring member even if a circuit element is connected to the flat wiring member and simplifying a manufacturing process of the flat wiring member. A flat wiring member includes a plurality of conductors disposed on a plane to be spaced from one another and one or more circuit elements connected to one or more of the plurality of conductors. Each of the conductors connected to the circuit elements includes electrically separated branch portions. Each of the circuit elements includes a body portion disposed on the plane not to overlap the conductors and a pair of terminals extending from the body portion and electrically connected to the branch portions.
Abstract:
Techniques for mounting a sensor are disclosed. In some implementations, a molded interconnect device carries a sensor for transducing a position of a rotor of the implantable blood pump. The molded interconnect device includes one or more integrated electronic circuit traces configured to electrically connect the Hall sensor with a printed circuit board of the implantable blood pump, and the molded interconnect device is configured to be mounted to the printed circuit board.
Abstract:
A flexible printed circuit board (FPCB) includes a main portion and a number of interfaces connected to the main portion. The main portion incorporates a low-voltage differential signal (LVDS) cable and at least one function cable. The main portion includes a first connecting strip, a second connecting strip, and a third connecting strip, which are all connected together at one end. The interfaces includes a first interface connected to the first connecting strip, a second interface connected to the second connecting strip, and a third interface connected to the third connecting strip. The first interface incorporates a LVDS interface and a function module interface. The second interface is a LVDS interface. The third interface is a function module interface.
Abstract:
A liquid crystal display device includes: a liquid crystal display panel where a semiconductor chip driving pixel circuits is mounted on a main surface of a first substrate which is exposed by recession of a second substrate, wire terminals connect to the semiconductor chip; a backlight illuminating a back surface of the liquid crystal display panel with illumination light; a mold frame housing the liquid crystal display panel and the backlight; and a reflection sheet disposed on a back surface of the mold frame. The liquid crystal display device includes an FPC having one end portion connected to wire terminals on the main surface of the first substrate, and another end portion on which LEDs are mounted, the mold frame includes a housing portion for a light guide plate which has a light-exiting surface including a display region of the liquid crystal display panel and housing portions for the LEDs. When the FPC is folded around to the back surface side of the backlight and the LEDs mounted on the other end portion of the FPC are housed in the housing portions for the LEDs of the mold frame, an end surface of the other end portion of the FPC is disposed to face, in the same plane, an end surface of the reflection sheet.
Abstract:
Disclosed is a double-side-conducting flexible-circuit flat cable with cluster section, which includes a flexible circuit substrate, a first electrical conduction path, a second electrical conduction path, a plurality of first and second conductive contact zones. The flexible circuit substrate has a first surface and a second surface and includes, in an extension direction, a first connection section, a cluster section, and at least one second connection section. The cluster section is composed of a plurality of clustered flat cable components formed by slitting in the extension direction. The first and second electrical conduction paths are respectively formed on the first and second surfaces of the flexible circuit substrate and each extends along one of the clustered flat cable components of the cluster section. The plurality of first and second conductive contact zones are respectively arranged on the first and second surfaces of the flexible circuit substrate at the first connection section. Each of the first and second conductive contact zones extends along one of the electrical conduction paths of the cluster section toward the second connection section.
Abstract:
A liquid crystal display device includes: a liquid crystal display panel where a semiconductor chip driving pixel circuits is mounted on a main surface of a first substrate which is exposed by recession of a second substrate, wire terminals connect to the semiconductor chip; a backlight illuminating a back surface of the liquid crystal display panel with illumination light; a mold frame housing the liquid crystal display panel and the backlight; and a reflection sheet disposed on a back surface of the mold frame. The liquid crystal display device includes an FPC having one end portion connected to wire terminals on the main surface of the first substrate, and another end portion on which LEDs are mounted, the mold frame includes a housing portion for a light guide plate which has a light-exiting surface including a display region of the liquid crystal display panel and housing portions for the LEDs. When the FPC is folded around to the back surface side of the backlight and the LEDs mounted on the other end portion of the FPC are housed in the housing portions for the LEDs of the mold frame, an end surface of the other end portion of the FPC is disposed to face, in the same plane, an end surface of the reflection sheet.
Abstract:
An electro-optical device includes an electro-optical panel which displays an image on a display surface; a supporting member which supports the electro-optical device; and a flexible wiring substrate which is connected to the electro-optical device. The wiring substrate is bent such that at least a portion of a surface of the wiring substrate is opposite to a side surface of the supporting member, in regions other than a side of the wiring substrate connected to the electro-optical panel.
Abstract:
A touch panel includes an upper substrate, a lower substrate, and a wiring board. The upper substrate includes an upper conductive layer, a pair of upper electrodes, and upper electrode terminals. The lower substrate includes a lower conductive layer, a pair of lower electrodes extending orthogonal to the upper electrodes, and lower electrode terminals. The wiring board includes a substrate portion, L-shaped upper and cover sheets. The substrate portion has upper and lower wiring patterns on its top and bottom surfaces, respectively. The upper wiring patterns are connected to each of the upper electrode terminals, and the lower wiring patterns are connected to each of the lower electrode terminals. At least part of the top surface of the upper wiring patterns is covered with the upper cover sheet, and at least part of the bottom surface of the lower wiring patterns is covered with the lower cover sheet.
Abstract:
A wiring board to be inserted between collector foils of each unit cell in a stacked battery includes a comb-shaped insulating substrate and a wiring layer. The insulating substrate has a plurality of teeth and a rod, and the wiring layer is formed on the insulating substrate and includes a plurality of lead wires individually extending from a distal end of each of the plurality of teeth to an end of the rod to deliver a current of a potential across a conductive member being in contact with the distal ends of the teeth to the end of the rod.