Abstract:
A double-sided connector for connection to an electrical cable, comprising two connector parts with the backs facing one another. The connector parts are provided with connector contacts which are accessible at the front, a positioning means for receiving and positioning the ends of the cable cores and connecting means for connecting the connector contacts of at least one of the connector parts to the conductors of the cable cores. The connector parts are provided at the back with pin contacts and socket contacts, respectively, which extend perpendicularly to said backs and can be mutually inserted and which are each connected to the corresponding connector contacts of the associated connector part.
Abstract:
A connector (1) device is formed by coupling a connector body (24) to a housing (22) the housing (22) has divided storage spaces (22a, 22b) which are divided in a height of the housing (22) the divided storage spaces (22a, 22b) includes one first divided storage space of receiving and holding one memory card (2) each therein and one second divided storage space for receiving and holding one hard disk drive package (4) each therein.
Abstract:
Disclosed is a backplane connector (20) with shorting contacts for providing re-routing of signals when a circuit pack (11) is withdrawn from its shelf. Shorting contacts (36, 37) are mounted on a block (31 ) which is attached to the inside of an insulating shroud surrounding the contact pins (21, 22). The shorting contacts make electrical contact between pins when a circuit pack is removed, but are otherwise electrically isolated from the pins.
Abstract:
Electrical contact pin for mounting in a through hole in a printed circuit board, which contact pin has a pointed part and a longitudinal contact part which interacts with the hole when mounted therein, and the cross-section of which in general has an H-shape formed through four fins which project parallel to the longitudinal axis of the pin and are connected over the longitudinal distance of the contact part by a central cross rib and define two longitudinal recesses situated on either side of the cross rib. Each longitudinal recess has an essentially V-shaped floor. The contact part is made slightly curved at its short sides, each of which comprises two fins merging into each other over the entire longitudinal distance. The fins are also curved inwards more strongly by their fin ends starting from the pointed part over an appreciable part of the said longitudinal distance, the curvature of the fin ends gradually first increasing starting from the pointed part, and then decreasing. Process for making such a contact pin, in which the longitudinal recesses of the contact part with the V-shaped floors are formed at both sides of the cross rib by means of two corresponding knife-shaped dies. The contact part is enclosed by two opposite semi-cylindrical pressure elements over the longitudinal distance and is curved at the short sides by pressure. The above-mentioned appreciable part can be curved more greatly here, due to the fact that the two cylindrical pressure elements in the appreciable part have a semi-cylindrical piece with a smaller diameter and a semi-conical piece merging into a remaining semi-cylindrical piece with greater diameter.
Abstract:
A connecting element which comprises a base plate (1), having contact teeth (2) formed from the base plate (1) by through cuts (5). Each of the through cuts (5) adjoins two further through cuts (6) to prevent tearing of the base plate (1). A punch (10) is provided for both cutting the base plate (1) and folding the contact teeth (2).
Abstract:
To latch a circuit component, such as a connector, to a substrate (9) prior to the soldering, a latching member (1) is provided which can be fitted by hand or by machine. The latching member is constructed as an integral wire-type entity and comprises a base part (2) from which at least two resilient legs (3, 4) extend in the same direction. These legs (3, 4) attempt to assume a deflected position with respect to each other as a result of their resiliency. At their free end the legs (3, 4) are flared outward to extend in opposite directions at an acute-angle to the longitudinal axis of the legs (3, 4) to provide shoulders (5, 6) for acting onto the substrate (9) in the assembled state. Further, an apparatus for inserting the latching member (1) in a mounting aperture (8) in the housing (7) of a circuit component is provided.
Abstract:
Coaxial connector provided with a body (20) of electroconductive material which extends in the casing (1) of the connector between the connection ends (18, 19) and is electrically separated therefrom. The body (20) functions as a capacitive coupling medium between the connection ends (18, 19) and thus influences the electrical connection impedance of the connector. Because a body of magnetic material (21) is accommodated at the same time, an inductive coupling can be provided and frequency-dependent impedance matching is possible.