Abstract:
A female electric terminal (1) comprising an inner contact element (2) having a portion (6) for connection to an electric cable and designed to cooperate with a male terminal (3 a , 3 b ); and an outer auxiliary elastic structure (4); the inner contact element (2) comprising first (9) and second (7, 8) contact blade means asymmetrical in relation to the plane ( alpha ) of the male terminal (3 a , 3 b ) so as to define offset contact areas on respective faces of the male terminal; and the auxiliary elastic structure (4) comprising first (33) and second (31, 32) elastic blade means cooperating respectively with the first (9) and second (7, 8) contact blade means, so as to form, with the same, respective elastic systems interacting with the opposite faces of the male terminal (3 a , 3 b ) and having the same flexural rigidity.
Abstract:
In a connector, more particularly a modular connector, having contact springs for contact elements formed as pins or strips on a plug, said contact springs extending in the zone of the socket for the plug in the connector housing, for the purpose of simple construction and reliable contact-making, the contact springs (7) are disposed on a support member (6), the latter is insertably fixed with the contact springs (7) between a top part (4) forming a plug socket and a bottom part (5), and the top part (4) and the bottom part (5) are supported and fixed, e.g. by catch-type engagement, in interconnected housing halves (1, 2).
Abstract:
For an electrical connector with a socket contact, formed by means of a sleeve body with attachment means for the connecting leads, for the displaceable reception of a contact pin, where a segmented cage, which can rest pressingly against the pin contact, is housed in the sleeve body so as to be fixed axially in position, the segmented cage (8) is formed by means of a cylindrically rolled flat sheet metal blank (9), whose longitudinal outer strips (10) are connected together by means of a number of ribs (11), which extend side by side separated from each other, the chamfered contact tabs (13), which are opposite one another at the longitudinal outer strips (10), project into the free spaces (12) between the ribs (11), whereby a first segment (13') of said contact tab curves in the direction of the central longitudinal axis of the segmented cage (8) and whereby a second segment (13"), formed by means of the free ends, is bent back and is shorter than half the length of the segmented cage (8), in order to ensure a reliable and effective contact.
Abstract:
The invention relates to a connector (1) with secondary latching comprising a handle (2) for filling slots (3a, 3b) into each of which a tongue (4a, 4b) with a latch (5a, 5b) is inserted. The handle (2) engages a plug part (21) in a first position (I) in which the slots are not filled by two arms on the handle, and is mounted so as to be movable transversely to the plug axis into a position (II) in which the arms can be pressed into the slots (3a, 3b) and locked in a second position (II). Furthermore, the invention relates to a connector with a lateral cable outlet comprising a plug part (1) having an attachment (2) and an adjacent casing which is flat transversely to the direction of insertion. The cable outlet (40) has a two-part clamping device (50a, 50b) which firmly clamps the cable (46) at the outlet of the casing, and an upper hollow substantially semicylindrical groove (50a) with retaining ribs (47) is formed in an attachment (48) integral with a lid (45) of the casing and having two vertical side walls (51a, 51b). A second hollow semicylindrical clamp (49) is secured to the casing by retaining ribs (47) so as to be latchable at the insides of the side walls.
Abstract:
The surface-mounted miniature coaxial switch connector comprises a hollow body (1) from which at least two contact tongues (2, 3) project. A plunger (5) made of electrically insulating material is mounted so as to be axially movable inside the hollow body (1) and bears at one end an electrical end contact element (6). The plunger (5) is moved by return means into a first position in which the end contact element (6) projects at one end of the hollow body (1) and electrical contact is established between the two contact tongues (2, 3). The plunger (5) can move against the action of the return means into a second position in which the electrical end contact element (6) is moved away from this end of the hollow body (1) and is in electrical contact with one (2) of the two contact tongues (2, 3), and the two tongues (2, 3) are electrically insulated from each other.
Abstract:
An electric connector (1) presenting an insulating casing (2) with a number of axial cavities (3); a number of electric terminals (4) housed in the cavities (3); primary retaining means (18) for retaining the terminals (4) inside the cavities (3); secondary retaining means (25) in turn presenting a first movable element (26) connectable in a closed position to the casing (2); and a second element (33) interposed between the first element (26) and the casing (2) and movable between a disabling position preventing connection of the connector (1) to a complementary connector (1'), and an enabling position permitting such connection; the first element (26) presenting a pair of cam tabs (31) cooperating with the second element (33) so as to move it into the enabling position when the first element (26) is in the closed position.
Abstract:
The electrical contact element is a single piece made of folded sheet metal. The front plug-in part consists of a frame with a base (22), two cut-out sides (24a, 24b) each forming a spring blade (32, 36) in a cantilevered configuration toward the front, a front flap (34) for maintaining the respective spring blade in a prestressed state, an upper part (26), a rear part for connection to a lead, including foldable lugs (16) for crimping onto the insulating covering of a lead. The blade (36) in the region of the upper part is formed from a rear extension thereof folded inwards and frontwards at 180 DEG C. The base (22) and the sides (24a, 24b) are single-walled.
Abstract:
Low cross-talk network connector comprising a base plate (11) of an insulating material including several inlets (A, ... H) and outlets (1, ... 8) electrically interconnected by means of electrical conductors arranged at intervals therealong. The base plate is removably mounted in a housing (20) including means for electrically connecting the base plate outlets with the external outlet conductor wires, the inlets (A, ..., H) of the base plate being connected to the means for electrically connecting the internal inlet conductor wires. The base plate (11) comprises two substantially perpendicular planes, the inlets (A, ..., H) being located in a first plane and the outlets (1, ..., 8) being located in a second plane, each inlet being connected to the corresponding outlet by a lead (10) with a first portion extending in the first plane and a second portion extending in the second plane.
Abstract:
A connector assembly for interconnecting optical and/or electrical conductors comprises a first connector part (1) for one or more first conductors and a second connector part (7) for one or more second conductors, wherein the second connector part is adapted to be inserted into a housing (21) of the first connector part with an insertion end to establish a connection between the respective conductors. A coupling auxiliary piece (13) is adapted to be attached to a support plate (14) or the like, which coupling auxiliary piece comprises means for receiving and supporting each connector part independent of the other connector part, wherein the second connector part in its position received in the coupling auxiliary part is inserted into the first connector part if the first connector part is received in the coupling auxiliary piece.
Abstract:
A connector assembly for interconnecting optical conductors comprises two connector parts (1, 2). Each connector part is provided with an alignment piece (3) with one or more alignment channels (4) for first and second conductors (11, 12), respectively. Each conductor includes a contact pad in the upper surface of the corresponding alignment piece. The first alignment piece (31) is provided with a reference slot (15) with straight first reference faces (16, 17) and the second alignment piece (10) is provided with a reference key (18) with straight second reference faces (19, 20) abutting the first reference face in the coupled position of the connector parts. The reference faces are located at an accurately determined location with respect to the alignment channels. In at least one connector part a portion of the upper surface of the alignment piece and the contact pads (11a) of the conductors lying in said upper surface are covered by a plastic foil layer (13) providing a defined interface with a predetermined refractive index between the contact pads of the respective conductors in the coupled position of the connector parts.