Connector
10985489 ยท 2021-04-20
Assignee
Inventors
Cpc classification
H01R13/426
ELECTRICITY
H01R4/4809
ELECTRICITY
International classification
H01R13/62
ELECTRICITY
Abstract
A connector comprises a terminal member, an elastic member, and a housing having a cavity receiving the terminal member and the elastic member. The terminal member has a contacting face and a back face opposite to the contacting face. The contacting face has a serration region with a serration formed thereon and adapted to contact an electrical wire. The elastic member is adapted to press a pressed region of the back face opposite to the serration region.
Claims
1. A connector comprising: a terminal member having a contacting face and a back face opposite to the contacting face, the contacting face having a serration region with a serration formed thereon, the serration region adapted to pierce an insulation film of an electrical wire; an elastic member adapted to press a pressed region of the back face of the terminal member opposite to the serration region for applying a pressure on the electrical wire and making an electrical connection between the serration region and the electrical wire; and a housing having a cavity receiving the terminal member and the elastic member.
2. The connector of claim 1, wherein the terminal member has a press-fit portion press-fit into the cavity of the housing.
3. The connector of claim 2, wherein the terminal member has a connecting portion forming an electrical connection with a terminal of a mating connector.
4. The connector of claim 1, wherein the electrical wire is a coil winding positioned along a lower face of the housing defining the cavity.
5. The connector of claim 4, wherein a distal end portion of the coil winding is wound around a columnar portion of the housing.
6. The connector of claim 1, wherein the elastic member has an abutting portion with an abutting face adapted to abut against an inner wall face forming the cavity.
7. The connector of claim 6, wherein the abutting portion receives a counterforce from the housing.
8. The connector of claim 7, wherein the elastic member has a pressing portion folded back from the abutting portion and adapted to elastically press the pressed region.
9. The connector of claim 8, wherein a distal free end portion of the pressing portion extends from a fixed end of the pressing portion at which the pressing portion is folded back from the abutting portion.
10. The connector of claim 9, wherein, in a state in which the elastic member is disposed in the cavity and presses the terminal member, the distal free end portion abuts against a back face of the abutting portion, the back face of the abutting portion is opposite to the abutting face.
11. The connector of claim 10, wherein the elastic member has a pair of pressing portions each folded back from the abutting portion and each adapted to elastically press the pressed region.
12. The connector of claim 10, wherein the pressing portion is folded back from an end of the abutting portion in a direction of extension of the abutting portion.
13. The connector of claim 10, wherein the pressing portion is folded back from a side face of the abutting portion.
14. A connector comprising: a terminal member having a contacting face and a back face opposite to the contacting face, the contacting face having a serration region with a serration formed thereon and adapted to contact an electrical wire; an elastic member adapted to press a pressed region of the back face of the terminal member opposite to the serration region for applying a pressure on the electrical wire; and a housing having a cavity receiving the terminal member and the elastic member, wherein the elastic member forms an electrical connection between the terminal member and the electrical wire and applies a greater pressing force to the terminal member as the electrical wire increases in diameter.
15. A connector comprising: a housing defining a cavity; an electrical wire arranged on a first interior face of the cavity; a terminal member arranged within the cavity and having a contacting face abutting the electrical wire and a back face opposite the contacting face; and an elastic member arranged within the cavity on a side of the terminal member opposite the electrical wire, the elastic member adapted to press on a region of the back face of the terminal member opposite to the contacting face in a direction of the first interior face of the cavity for applying a pressure on the electrical wire.
16. The connector of claim 15, wherein the elastic member comprises: an abutting portion abutting on a first side against a second interior face of the cavity, opposite the first interior face; and a pressing portion folded back from the abutting portion and adapted to elastically press on the region of the back face of the terminal member opposite to the contacting face, wherein a distal free end portion of the pressing portion extends from a fixed end of the pressing portion at which the pressing portion is folded back from the abutting portion.
17. The connector of claim 16, wherein, in a state in which the elastic member is disposed in the cavity and presses the terminal member, the distal free end portion abuts against a second side of the abutting portion, opposite the first side.
18. The connector of claim 16, wherein an end portion of the electrical wire is fixedly connected to an exterior of the housing.
19. The connector of claim 16, wherein the contacting face and back face of the terminal member are arranged proximate a first end of the terminal, wherein a second end of the terminal opposite the first end comprises a connecting portion configured to form an electrical connection with a corresponding terminal of a mating connector.
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)
(14) Exemplary embodiments of the present disclosure will be described hereinafter in detail with reference to the attached drawings, wherein the like reference numerals refer to the like elements. The present disclosure may, however, be embodied in many different forms and should not be construed as being limited to the embodiment set forth herein; rather, these embodiments are provided so that the present disclosure will be thorough and complete, and will fully convey the concept of the disclosure to those skilled in the art.
(15) A connector 1 according to an embodiment is shown in
(16) The housing 10 is formed of an insulative material and, as shown in
(17) The connector 1, as shown in
(18) As shown in
(19) The terminal member 20 is made of a metal having good conductivity and, as shown in
(20) The elastic member 30 is made of a metal having high elasticity and, as shown in
(21) A process of assembly of the connector 1 is shown in
(22)
(23) As shown in
(24) Thereupon, as shown in
(25) The elastic deformation of the pressing portion 32, as shown in
(26) When the elastic member 30 is inserted into the second chamber 122, a distal free end portion 321 of the pressing portion 32 extending from a fixed end of the pressing portion 32 folded back from the abutting portion 31, shown in
(27) The press-fit portion 24 of the terminal member 20, shown in
(28) A relationship between the diameter w of the coil winding 40 and the quantity of displacement d of the pressing portion 32 of the elastic member 30 is shown in
(29) In the connector 1, as shown in
(30) Other embodiments of the elastic member 30 are shown in
(31) By contrast, in the elastic member 30 shown in
(32) In the elastic member 30 shown in
(33) In the elastic member 30 shown in
(34) In other embodiments, in place of the elastic member 30 having the shape shown in
(35) The connector 1 connected to the coil winding 40 of a motor has been described, however, the present invention is not limited to a connector connected to a coil winding of a motor. The connector 1 is applicable to various fields where an electrical connection is formed by pressing a serration on a terminal against an electrical wire.