Abstract:
Conductor wires 2a and 2b are sandwiched between two elastomer sheets 1a and 1b whose adhesive layers face each other, and both adhere. When the elastomer sheets 1a and 1b are their natural lengths without being subjected to any tension, the conducting wires 2a and 2b are wound around into spiral shapes and contract. When tension is applied to the elastomer sheets 1a and 1b, the number of spiral turns of the conductor wires 2a and 2b decreases according to its extension and the conductor wires 2a and 2b extend. The conductor wires 2a and 2b are electrically connected to and fixed to a circuit element at both ends of the elastomer sheets 1a and 1b. As a result, it is possible to mass-produce, at low costs, highly stretchable wirings in which a change in resistance values due to extension thereof is small.
Abstract:
The present invention relates to a high speed transmission cable that includes a first conductor set, a dielectric film at least partially concentrically disposed around the first conductor set and a pinched portion forming an insulating envelope around the first conductor set. The dielectric film includes a base layer having a plurality of first protrusions formed on a first major surface of the base layer, wherein the dielectric film is disposed such that the base layer is partially concentric with the conductor set and wherein a portion of the first protrusions is disposed between the first conductor set and the base layer in a region where the base layer is concentric with the first conductor set.
Abstract:
A flat cable wiring structure includes an operation mechanism that detects a physical operation made on an operating surface and outputs a detection signal, a control board, disposed facing the operating surface of the operation mechanism, that outputs a driving signal for imparting vibration to the operation mechanism on the basis of the detection signal, and a flat cable that electrically connects the operation mechanism and the control board. The flat cable includes a routing portion that extends from the operation mechanism to the control board along a movement direction of the operation mechanism. The routing portion includes a bending portion that bends at a bending angle allowing the routing portion to be routed along the control board.
Abstract:
A hot stamping wiring includes a hot stamping film that has insulation properties and can be attached to an insulating part by a hot stamping method, an electronic device having a hot stamping and a hot stamping method are provided. The hot stamping wiring includes a plurality of band-shaped conductors that are formed in a band shape of a material having electrical conductivity, attachable to a surface of the hot stamping film in a lengthwise direction of the hot stamping film, and are spaced apart at intervals, and a connector wafer, which includes a plurality of connecting pins corresponding to the plurality of band-shaped conductors, is disposed at the hot stamping film, and is attached to the insulating part by ultrasonic welding, wherein the connector wafer comprises a plurality of junction projections for ultrasonic welding.
Abstract:
A multiple relay arrangement having a plurality of relay sockets which are arranged next to each other and a plurality of relays. The relay sockets contain additional plug connections with which the relays are controlled by the system cabling. The system cabling contains a distribution section having cable sections and plug connectors and allows the plurality of relays to be controlled.
Abstract:
The liquid discharge apparatus is provided with a first flexible flat cable and a head unit, the head unit includes a discharge section which discharges a liquid due to driving signals being applied, a discharge surface which is provided with a discharge opening for discharging the liquid, and a first connection section which is connected to the first flexible flat cable, the first flexible flat cable includes a first surface, a second surface which is on the reverse side of the first surface, a driving signal line which transfers the driving signals, and a driving signal output terminal which is provided in the first surface and which outputs the driving signals to the head unit, and the first flexible flat cable is connected to the first connection section so that the second surface faces toward the same side as the discharge surface.
Abstract:
An electrical cable has a plurality of generally rectangular cross-section conductors superposed in a stack, the stack surrounded by a polymer jacket. The stack may be provided with a lubrication layer provided between at least two of the conductors. Conductors of the stack may have a thickness that is greater proximate the middle of the stack than at the top and bottom of the stack and/or a width that is less at the top and the bottom than at the middle. Further stacks may also be provided parallel and coplanar with the first stack, also surrounded by the polymer jacket.
Abstract:
A flexible device for electrically connecting an electric component and a printed circuit board together includes a main extension direction, and the flexible electric-connection device includes a first contact region formed at one end of the flexible electric-connection device in the main extension direction, as well as a second contact region formed at the other end of the flexible electric-connection device in the main extension direction. The flexible electric-connection device includes a stiffener, or the flexible electric connection device is combined with a supporting element. The electric component is provided so as to be in direct electric contact with the flexible electric-connection device via the first contact region.
Abstract:
An electrical cable arrangement comprises a first electrical cable and a second electrical cable. The first electrical cable comprises first and second conductor sets and a first carrier film. The cable comprises a first pinched portion between the first and second conductor sets. The second electrical cable comprises a third conductor set and a second carrier film. The first and second carrier films include cover portions at least partially covering each of the first and second conductor sets and the third conductor set, respectively, and parallel portions extending from both sides of each of the first and second conductor sets and the third conductor set, respectively. The first electrical cable and the second electrical cable extend in substantially the same direction and are arranged in a nested configuration such that the insulated conductors of the third conductor set are disposed within the first pinched portion of the first electrical cable.
Abstract:
The present invention relates to a high speed transmission cable (100A) that includes a first conductor set (110), a dielectric film (120A) at least partially concentrically disposed around the first conductor set (110) and a pinched portion (150A) forming an insulating envelope (140A) around the first conductor set (110). The dielectric film (120A) includes a base layer (122) having a plurality of first protrusions (124) formed on a first major surface of the base layer (122), wherein the dielectric film (120A) is disposed such that the base layer (122) is partially concentric with the conductor set (110) and wherein a portion of the first protrusions (124) is disposed between the first conductor set (110) and the base layer (122) in a region where the base layer (122) is concentric with the first conductor set (110).