Abstract:
A differential signal connector includes a plurality of pairs of signal contacts, a plurality of ground contacts, and an insulating housing holding the signal contacts and the ground contacts. On a first connection side for connection to a connection partner, the ground contacts are arranged on both sides of each pair of signal contacts so that a contact array of a fixed pitch is formed. On a second connection side for connection to board, the ground contacts are arranged spaced apart from each other in a first row, while the pairs of signal contacts, which are adjacently arranged on both sides of the ground contact on the first connection side, are arranged so as to be allocated in a second row and a third row located on both sides of the first row so that the pairs of signal contacts are arranged zigzag on the second connection side.
Abstract:
Provided is an optical connector whose miniaturization is easier than conventional. An optical connector (100) comprises a housing (103) holding an optical member (101), a slider (105) slidably held by the housing (103), a shutter (107) provided to the slider (105) in an openable and closable manner and adapted to be opened and closed to expose and isolate the optical member (101) to and from the outside, and slider-side coil springs (109) pushing the slider (105) in a direction away from the housing (103). The slider-side coil springs (109) are disposed in a width direction of the shutter (107). The optical connector (100) is configured such that the shutter (107) is closed when the slider (105) is moved by an elastic force of the slider-side coil springs (109) in the direction (direction A1) away from the housing (103) and that the shutter (107) is opened when the slider (105) is moved against the elastic force of the slider-side coil springs (109) in a direction approaching the housing (103).
Abstract:
Provided is an optical connector whose miniaturization is easier than conventional. An optical connector (100) comprises a housing (103) holding an optical member (101), a slider (105) slidably held by the housing (103), a shutter (107) provided to the slider (105) in an openable and closable manner and adapted to be opened and closed to expose and isolate the optical member (101) to and from the outside, and slider-side coil springs (109) pushing the slider (105) in a direction away from the housing (103). The slider-side coil springs (109) are disposed in a width direction of the shutter (107). The optical connector (100) is configured such that the shutter (107) is closed when the slider (105) is moved by an elastic force of the slider-side coil springs (109) in the direction (direction A1) away from the housing (103) and that the shutter (107) is opened when the slider (105) is moved against the elastic force of the slider-side coil springs (109) in a direction approaching the housing (103).
Abstract:
A power feeding side connector (electrical connector) has a locking lever adapted to lock together the power feeding side connector and a power receiving side connector at the time of engagement therebetween, a microswitch adapted to detect halfway fitting of the locking lever to interrupt electrical conduction, and a release lever adapted to release locking by the locking lever after charging. In the halfway fitting state, an intermediate portion of the locking lever is brought into contact with a spring piece of the microswitch to push it so that normally-closed contacts of the microswitch are opened to interrupt electrical conduction.
Abstract:
A power feeding side connector (electrical connector) has a locking lever adapted to lock together the power feeding side connector and a power receiving side connector at the time of engagement therebetween, a microswitch adapted to detect halfway fitting of the locking lever to interrupt electrical conduction, and a release lever adapted to release locking by the locking lever after charging. In the halfway fitting state, an intermediate portion of the locking lever is brought into contact with a spring piece of the microswitch to push it so that normally-closed contacts of the microswitch are opened to interrupt electrical conduction.
Abstract:
A connector which makes it easy to view light from a light source. A light guide 7 guides light from LEDs 21 forward of the housing 5 in a fitting direction. The light guide 7 is configured to be mounted on the housing 5 that hold contacts 3, in a manner covering the same.
Abstract:
An adapter system has a standard adapter configured to couple two first type connectors with each other, and an interface converter configured to be attached to the standard adapter. Each of the first type connectors has a first connection end. The first connection end is formed with two engaged portions. The standard adapter has two first openings on opposite sides thereof in a first direction and two engaging portions within each of the first openings. The first opening has a first interface for the first connection end. The two engaged portions of the first type connector oppose with each other in a second direction perpendicular to the first direction. The two engaged portions of the first type connector is engaged with the engaging portions of the first opening, so that the standard adapter retains the first connection end when the first type connector is inserted in the first opening. An interface converter is configured to be attached inside the first opening so as to convert the first opening to a second opening having a second interface for a second connection end of a second type connector. The second connection end is different in shape from the first connection end. The interface converter has two receptacles which are receivable the engaging portions of the standard adapter, respectively, when the interface converter is attached to the standard adapter.
Abstract:
In a connector for connecting two connection objects, a connection member is coupled to a housing which holds contacts to be connected to one of the connection objects. The connection member includes a plurality of terminals to be connected to the other connection object. The connection member further includes a plurality of first conductor patterns arranged in parallel to one another and a plurality of second conductor patterns intersecting the first conductor patterns and arranged in parallel to one another. The first and the second conductor patterns are successively layered at positions different from one another. The first conductor patterns have one ends connected to the contacts and the other ends connected to one ends of the second conductor patterns. The second conductor patterns have the other ends connected to the terminals.
Abstract:
A connector adapted for connection to cables has a retaining member that aligns and retains the cables. The retaining member has a body portion and a bar-shaped member. The body portion has a plurality of fixing portions for fixedly retaining the bar-shaped member. The cables are firmly sandwiched between the body portion and the bar-shaped member.
Abstract:
A connector adapted for connection to cables has a retaining member that aligns and retains the cables. The retaining member has a body portion and a bar-shaped member. The body portion has a plurality of fixing portions for fixedly retaining the bar-shaped member. The cables are firmly sandwiched between the body portion and the bar-shaped member.