Socket contact having spring device
11303055 ยท 2022-04-12
Assignee
Inventors
Cpc classification
H01R43/16
ELECTRICITY
H01R13/03
ELECTRICITY
H01R13/113
ELECTRICITY
International classification
H01R13/03
ELECTRICITY
Abstract
A socket contact includes a receptacle receiving a plug contact, a base body surrounding the receptacle at least in sections, a contact element disposed in the receptacle and contacting the plug contact, and a spring device creating a contact normal force at the contact element. The spring device is formed as a part of the base body that surrounds the contact element. The spring device is arranged at a first part and the contact element is arranged at a second part separate from the first part.
Claims
1. A socket contact, comprising: a receptacle receiving a plug contact; a base body surrounding the receptacle at least in sections; a contact element disposed in the receptacle and contacting the plug contact; and a spring device creating a contact normal force at the contact element, the spring device is formed as a part of the base body that surrounds the contact element, the spring device is arranged at a first part and the contact element is arranged at a second part separate from the first part, the spring device has a pair of interconnected limbs that lie one behind the other in a direction of the contact normal force.
2. The socket contact of claim 1, wherein the base body is made of a different material than the contact element.
3. The socket contact of claim 2, wherein the base body is made of a material having good mechanical properties.
4. The socket contact of claim 3, wherein the base body is made of a spring steel.
5. The socket contact of claim 3, wherein the contact element is made of a material having good electrical conducting properties.
6. The socket contact of claim 5, wherein the contact element is made of a copper material.
7. The socket contact of claim 1, wherein the spring device is part of a side wall of the base body.
8. The socket contact of claim 1, wherein the spring device is arranged at an outer side of the base body.
9. The socket contact of claim 1, wherein the spring device has a plurality of spring sections connected in parallel and/or in series.
10. The socket contact of claim 1, wherein the contact element is one of a pair of contact elements with a variable spacing.
11. The socket contact of claim 10, wherein the receptacle is between the pair of contact elements and the contact elements are interconnected by the spring device.
12. The socket contact of claim 1, wherein the contact element is rigidly connected to the base body.
13. The socket contact of claim 1, wherein the contact normal force is directed into the receptacle.
14. The socket contact of claim 1, wherein the spring device has a planar limb that lies in a plane parallel to the direction of the contact normal force.
15. The socket contact of claim 1, wherein the spring device connects an upper side and an underside of the base body and the contact normal force extends perpendicular to the upper side and to the underside.
16. The socket contact of claim 15, wherein the upper side and the underside are movable toward and away from each other along the direction of the contact normal force by deflection of the spring device.
17. A socket contact, comprising: a receptacle receiving a plug contact; a base body surrounding the receptacle at least in sections; a contact element disposed in the receptacle and contacting the plug contact; and a spring device creating a contact normal force at the contact element, the spring device is formed as a part of the base body that surrounds the contact element, the spring device is arranged at a first part and the contact element is arranged at a second part separate from the first part, the spring device has a pair of interconnected limbs that lie against each other in a neutral state and are elastically deflected in relation to each other in a deflected state.
18. The socket contact of claim 17, wherein the pair of interconnected limbs are separate from each other by a gap in the deflected state.
19. The socket contact of claim 18, wherein the gap ends in a round hole.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will now be described by way of example with reference to the accompanying Figures, of which:
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DETAILED DESCRIPTION OF THE EMBODIMENT(S)
(11) Exemplary embodiments of the present disclosure will be described hereinafter in detail with reference to the attached drawings, wherein like reference numerals refer to like elements. The present disclosure may, however, be embodied in many different forms and should not be construed as being limited to the embodiments set forth herein; rather, these embodiments are provided so that the present disclosure will convey the concept of the disclosure to those skilled in the art.
(12) In the following detailed description, for purposes of explanation, numerous specific details are set forth in order to provide a thorough understanding of the disclosed embodiments. It will be apparent, however, that one or more embodiments may be practiced without these specific details. In other instances, well-known structures and devices are schematically shown in order to simplify the drawing. The embodiments are each independent of one another and can be freely combined with one another, depending on necessity in the specific application.
(13) A socket contact 1 according to an embodiment is shown in
(14) As shown in
(15) As shown in
(16) The base body 3 is arranged at a first part 11 of the socket contact 1, as shown in
(17) The material for the contact elements 5 can be copper or a copper-containing substance which has good electrical conducting properties, but which is comparatively easy to deform mechanically. Low transition resistance and/or low internal resistance materials are desirable, for example, such that the contact element 5 can take over the electrical functions of the socket contact 1.
(18) The base body 3 can consist of a mechanically stable material, for example a spring steel, and can take on the mechanical functions of the socket contact 1; high hardness or high tensile strength are desirable, for example. The base body 3 does not necessarily have to have good electrical conductivity, since a flow of current takes place by way of the second part 12 with the contact elements 5.
(19) Manufacture of the socket contact 1 in two separate parts 11, 12 is easier. Furthermore, production of contact 5 is disconnected from creation of the spring force and the two parts 11, 12 can be optimized independently of each other.
(20) In an embodiment, all parts of the socket contact 1 are made from a metal sheet 74 shown in
(21) The spring device 6, as shown in
(22) The spring device 6 comprises a plurality of limbs 61, 62, 63, whereby in each case a pair of limbs 61, 62, 63 lie next to each other in a neutral state N shown in
(23) In the deflected state, in each case two limbs 61, 62, 63 are separated by a gap 70, for example, as shown in
(24) In
(25) A socket contact 1 according to another embodiment is shown in
(26) In the embodiment shown in
(27) A connecting section 15 is shown schematically in
(28) In
(29) A spring device 6 according to another embodiment is shown in
(30) A socket contact 1 according to another embodiment is shown in
(31)