Abstract:
A cable connection structure is provided with an electronic component including electrodes on an electrode-forming surface, a cable including electric wires connected to the electrodes respectively, and a buried member which is composed of a cured resin and embedded with the electric wires. At least three electric wires are separating wires including separating regions being separated from each other in the normal direction as being distant from the electrode-forming surface. At least three electrodes are arranged side by side on a virtual circle. At least three separating wires are connected to the at least three electrodes. The separating regions of the at least three separating wires are provided to be located eccentric radially outwardly in the virtual circle as being distant from the electrode surface in the normal direction of the electrode-forming surface. An angle between the separating region and the normal direction of the electrode-forming surface is 10 degrees or more and 45 degrees or less.
Abstract:
A differential signal transmission cable includes a pair of conductors arranged to be distant from each other and parallel to each other, an insulator covering the pair of conductors, the insulator having a transversal cross section including a width in a minor axis direction and a width in a major axis direction greater than the width in the minor axis direction, and an outer periphery shape having curved lines, and a shield conductor wound around the insulator, the shield conductor including a seam or an overlapping region along a longitudinal direction of the insulator.
Abstract:
A connector includes a connector housing, a sliding member supported on the connector housing, and a pull member coupled to the sliding member. A protrusion is formed on the pull member so as to protrude in a thickness direction thereof and extend in a lateral direction orthogonal to a longitudinal direction along the direction of removal. The sliding member includes a pair of arm portions guided by the connector housing and a coupling portion coupling the pair of arm portions and facing a side surface of the protrusion that is a surface on the operating portion side. The side surface of the protrusion butts against the coupling portion when the operating portion of the pull member is pulled in the direction of removal such that a moving force in the direction of removal is applied to the coupling portion from the protrusion so as to move the sliding member.
Abstract:
In a differential signal transmission cable, a surface of a skin layer is partially provided with shield conductors disposed at respective equidistant portions spaced apart in a direction orthogonal to a direction in which two signal conductors are arranged, the equidistant portions each being distant by the same distance from axial centers of the signal conductors. On the surface of the skin layer, the shield conductors are not provided in areas located in the direction in which the signal conductors are arranged, and spaces are created in these areas.
Abstract:
A cable connecting apparatus includes ground conductors, a first plate member, a second plate member, a separation torsion spring, and engagement members. The ground conductors each include a body that is to be mounted on an outer conductor of a cable, and an arm that is disposed on the body and to be connected to a ground contact of a cable connector. The first plate member and the second plate member clamp the ground conductors in a state in which the ground conductors are arranged side by side. The separation torsion spring and the engagement members are disposed between the first plate member and the second plate member and maintain a constant distance between the plate members.
Abstract:
In a communication cable having a multi-core cable with a plurality of core cables in which a pair of signal lines are covered with an insulator, in which the insulator is covered with a shield tape, and in which the shield tape is covered with a wrapping tape, and having a connector formed on an end portion of the multi-core cable, the communication cable further has a case which is inserted/removed to/from a slot formed on a communication device to which the communication cable is connected, a substrate which is housed in the case and to which an end portion of the multi-core cable is connected, and a resin portion which molds a connection portion between the end portion of the multi-core cable and the substrate.
Abstract:
A connector for being fitted to an other member so as to be prevented from disengaging by a locking piece on the other member includes a connector housing including a recessed portion engaged with the locking piece, and a sliding member that slidably moves relative to the connector housing. The connector housing is formed by coupling a first housing member and a second housing member, a tip portion of the locking piece coming into sliding contact with a side surface having the recessed portion when removing the connector housing from the other member. At least a portion of a seam between the first and second housing members on the side surface is inclined relative to a direction of attaching/detaching to/from the other member, the portion being firstly crossed by the tip portion of the locking piece when removing the connector housing from the other member.
Abstract:
A termination structure for high-speed transmission line includes a high-speed transmission line including a signal line configured to transmit a signal, an insulation which covers the signal line and an external conductor disposed at an outer periphery of the insulation, and a termination terminal disposed at a terminal of the high-speed transmission line. The termination terminal includes a holder disposed sandwiching the external conductor exposed at the terminal of the high-speed transmission line from both sides. The holder includes a holding part to hold the high-speed transmission line and is electrically connected to the external conductor. The holding part is formed so as to have a shape along an outer shape of the external conductor.
Abstract:
A cable connecting apparatus includes ground conductors, a first plate member, a second plate member, a separation torsion spring, and engagement members. The ground conductors each include a body that is to be mounted on an outer conductor of a cable, and an arm that is disposed on the body and to be connected to a ground contact of a cable connector. The first plate member and the second plate member clamp the ground conductors in a state in which the ground conductors are arranged side by side. The separation torsion spring and the engagement members are disposed between the first plate member and the second plate member and maintain a constant distance between the plate members.
Abstract:
A termination structure for high-speed transmission line includes a high-speed transmission line including a signal line configured to transmit a signal, an insulation which covers the signal line and an external conductor disposed at an outer periphery of the insulation, and a termination terminal disposed at a terminal of the high-speed transmission line. The termination terminal includes a holder disposed sandwiching the external conductor exposed at the terminal of the high-speed transmission line from both sides. The holder includes a holding part to hold the high-speed transmission line and is electrically connected to the external conductor. The holding part is formed so as to have a shape along an outer shape of the external conductor.