Abstract:
This lever-type connector comprises a first part forming a base and a second part mobile in relation to the base, the first and second parts inwardly receiving first and second contact assemblies facing one another, male and female respectfully, each provided at one end with conductors to be connected, and a cam mechanism able to move the mobile part between contact disconnection and connection positions. The cam mechanism includes a lever shaped so as to be circumscribed inside the main cross-section of the connector.
Abstract:
This connector for connecting electrical conductors comprising a contact end fitting at their end to be connected, comprises two conjugate parts (31, 32), respectively male and female, each comprising a body (33) made of insulating material provided with housings (36) into which respectively male and female contacts (41) capable of receiving the contact end fittings of the conductors come to be mounted. At least one of the male and female parts comprises, internally, zones (46) forming partitions placed between said housings and produced from a material capable of withstanding electrical discharges.
Abstract:
A removable fixing device includes a first elongated mating member, a second elongated mating member designed to be inserted in the first elongated mating member, and an elastic member adapted to lock the two elongated mating members axially relative to each other and retractable radially on insertion of the second elongated mating member into the first elongated mating member. One elongated mating member includes an actuator mobile axially relative to the elongated mating member between a first position in which the elastic member locks the two elongated mating members axially and a second position in which the actuator unlocks the elongated mating members by radial retraction of the elastic member.
Abstract:
The invention relates to an electrical connector (2) including a connector body (20), which includes at least one accommodation (21), and at least two electrical connecting organs (22, 22′), which each include at least one internal section (220, 220′) extending inside said at least one accommodation (21). This electrical connector (2) is characterized in that it includes electrical insulating means (23), which have a tracking resistance index, CTI, higher than 600, which are located at least inside said at least one accommodation (21), which surround at least the internal section (220, 220′) of the at least two electrical connecting organs (22, 22′), and which extend at least over the internal section (220, 220′) of the at least two electrical connecting organs (22, 22′).
Abstract:
The invention relates to an electrical connector (2) including a connector body (20), which includes at least one accommodation (21), and at least two electrical connecting organs (22, 22′), which each include at least one internal section (220, 220′) extending inside said at least one accommodation (21). This electrical connector (2) is characterized in that it includes electrical insulating means (23), which have a tracking resistance index, CTI, higher than 600, which are located at least inside said at least one accommodation (21), which surround at least the internal section (220, 220′) of the at least two electrical connecting organs (22, 22′), and which extend at least over the internal section (220, 220′) of the at least two electrical connecting organs (22, 22′).
Abstract:
This lever-type connector comprises a first part forming a base and a second part mobile in relation to the base, the first and second parts inwardly receiving first and second contact assemblies facing one another, male and female respectfully, each provided at one end with conductors to be connected, and a cam mechanism able to move the mobile part between contact disconnection and connection positions. The cam mechanism includes a lever shaped so as to be circumscribed inside the main cross-section of the connector.
Abstract:
The connection system for at least one pair of paired connectors includes a plate (2) including an opening for each pair of connectors, to which is attached a first connector of said pair and a bolt (4) that can be moved laterally in relation to the plate and to the first connector, said bolt (4) being moveable to a first position that enables insertion of the second connector of said pair until contact is made between the connectors and to a second stable coupling and locking position of the connectors.
Abstract:
The electrical connector (2) includes a connector body (20), which includes at least one accommodation (21), at least two electrical connecting organs (22, 22′), which each include at least one internal section (220, 220′) extending inside the at least one accommodation (21), and electrical insulating means (23), which have a tracking resistance index, CTI, higher than 600, which are located at least inside the at least one accommodation (21), which surround at least the internal section (220, 220′) of the at least two electrical connecting organs (22, 22′), and which extend in the internal section (220, 220′) of the at least two electrical connecting organs (22, 22′).
Abstract:
The electrical connector (2) includes a connector body (20), which includes at least one accommodation (21), at least two electrical connecting organs (22, 22′), which each include at least one internal section (220, 220′) extending inside the at least one accommodation (21), and electrical insulating means (23), which have a tracking resistance index, CTI, higher than 600, which are located at least inside the at least one accommodation (21), which surround at least the internal section (220, 220′) of the at least two electrical connecting organs (22, 22′), and which extend in the internal section (220, 220′) of the at least two electrical connecting organs (22, 22′).
Abstract:
The device for holding at least one electrically conductive pipe on an electrical conductive structure with an electrical connection between such a structure and at least one such pipe includes a holding half-flange, a fastening half-flange to be fastened to the structure, to be assembled with the holding half-flange, and an electrical connection device for electrically connecting the structure and the pipe or pipes. The electrical connection device includes at least one pad, made of an electrically conductive flexible material, lining the fastening half-flange, and configured to electrically cooperate with one of the pipes. The device also includes at least one pusher, made of an electrically conductive material, configured to electrically cooperate with the structure as well as with the pad or with one of the pads of the fastening half-flange, movable in displacement between an extended position outside the fastening half-flange and a retracted position inside this fastening half-flange.