ELECTRICAL CONNECTOR
20230163533 ยท 2023-05-25
Assignee
Inventors
Cpc classification
H01R13/6583
ELECTRICITY
H01R24/60
ELECTRICITY
International classification
Abstract
Provided is an electrical connector, including an inner housing, two first components, multiple terminals respectively disposed in the first components, two second components, two metallic sheets, and an outer housing accommodating the inner housing, the terminals, the first components, the second components, and the metallic sheets. The inner housing has a insertion space, an inner wall surface facing towards the insertion space, an outer wall surface facing away from the insertion space, and multiple first openings connecting the inner wall surface and the outer wall surface. The terminals are assembled to the outer wall surface along with the first components. Connecting ends of the terminals extend from the outer wall surface through the first openings to the insertion space. The second components assembled to the inner housing shield the connecting ends and the first openings. The metallic sheets are assembled to the inner housing and stacked on the second components.
Claims
1. An electrical connector, comprising: an inner housing having an insertion space, an inner wall surface, an outer wall surface, and a plurality of first openings, wherein the inner wall surface faces toward the insertion space, the outer wall surface faces away from the insertion space, and each of the first openings connects the inner wall surface and the outer wall surface; two first components; a plurality of terminals respectively disposed in the two first components and assembled to the outer wall surface of the inner housing along with the two first components, wherein a plurality of connecting ends of the terminals extend from the outer wall surface through the first openings to the insertion space, and another electrical connector is suitable to be inserted into the insertion space along an insertion axis and connected with the connecting ends; two second components respectively assembled to the inner housing and adapted to shield the connecting ends and the first openings; two metallic sheets respectively assembled to the inner housing and respectively stacked on the two second components; and an outer housing accommodating the inner housing, the terminals, the two first components, the two second components, and the two metallic sheets.
2. The electrical connector according to claim 1, wherein the two first components, the two second components, the two metallic sheets, and the terminals are disposed symmetrically with respect to the inner housing.
3. The electrical connector according to claim 1, wherein a gap exists between the first component and the inner housing along the insertion axis, and the second component fills the gap.
4. The electrical connector according to claim 1, wherein the second components are structurally connected subsequently between the first components and the inner housing.
5. The electrical connector according to claim 1, wherein the first components have a positioning protrusion, the inner housing has a first positioning groove, and the positioning protrusion is fitted into the first positioning groove.
6. The electrical connector according to claim 1, wherein the metallic sheets have a plurality of positioning bends respectively fitted into a second positioning groove of the inner housing and a third positioning groove of the first components.
7. The electrical connector according to claim 1, wherein the metallic sheets further have a plurality of bent contact fingers, the inner housing further has a plurality of second openings connecting the inner wall surface and the outer wall surface, and the bent contact fingers pass through the second openings and protrude from the inner wall surface.
8. The electrical connector according to claim 1, further comprising a grounding sheet disposed in the inner housing and partially extending into the insertion space.
9. The electrical connector according to claim 1, wherein the inner housing comprises two inner housing parts forming a closed annular structure and the insertion space, each of the inner housing parts has part of the outer wall surface, part of the inner wall surface, and part of the first openings.
10. The electrical connector according to claim 9, further comprising a grounding sheet assembled and clamped between the two inner housing parts.
11. An electrical connector, comprising: an inner housing having an insertion space, an inner wall surface, an outer wall surface, and a plurality of first openings, wherein the inner wall surface faces toward the insertion space, the outer wall surface faces away from the insertion space, and each of the first openings connects the inner wall surface and the outer wall surface; two terminal modules, wherein each terminal module comprises a first component and one set of terminals; each terminal module disposed on the outer wall surface of the inner housing, wherein a plurality of connecting ends of the terminals extend from the outer wall surface through the first openings to the insertion space, and another electrical connector is suitable to be inserted into the insertion space along an insertion axis and connected with the connecting ends; and an outer housing accommodating the inner housing, the terminals, and the two first components.
12. The electrical connector according to claim 11, further comprising two metallic sheets and two second components, wherein the two second components are respectively assembled to the inner housing and adapted to shield the connecting ends and the first openings and the two metallic sheets are respectively assembled to the inner housing and respectively stacked on the two second components, and the two metallic sheets are accommodated in the outer housing.
13. The electrical connector according to claim 12, wherein the two first components, the two second components, the two metallic sheets, and the terminals are disposed symmetrically with respect to the inner housing.
14. The electrical connector according to claim 12, wherein a gap exists between the first component and the inner housing along the insertion axis, and the second component fills the gap.
15. The electrical connector according to claim 12, wherein the second components are structurally connected subsequently between the first components and the inner housing.
16. The electrical connector according to claim 11, wherein the first components have a positioning protrusion, the inner housing has a first positioning groove, and the positioning protrusion is fitted into the first positioning groove.
17. The electrical connector according to claim 12, wherein the metallic sheets have a plurality of positioning bends respectively fitted into a second positioning groove of the inner housing and a third positioning groove of the first components.
18. The electrical connector according to claim 12, wherein the metallic sheets further have a plurality of bent contact fingers, the inner housing further has a plurality of second openings connecting the inner wall surface and the outer wall surface, and the bent contact fingers pass through the second openings and protrude from the inner wall surface.
19. The electrical connector according to claim 11, further comprising a grounding sheet disposed in the inner housing and partially extending into the insertion space.
20. The electrical connector according to claim 11, wherein the inner housing comprises two inner housing parts forming a closed annular structure and the insertion space, each of the inner housing parts has part of the outer wall surface, part of the inner wall surface, and part of the first openings.
Description
BRIEF DESCRIPTION OF THE DRAWING
[0018]
[0019]
[0020]
[0021]
DESCRIPTION OF THE EMBODIMENTS
[0022]
[0023]
[0024] In this embodiment, the inner housing 110 is an insulative housing and has an insertion space 111, an inner wall surface 112, and an outer wall surface 113. The inner wall surface 112 faces toward the insertion space 111, and the outer wall surface 113 faces away from the insertion space 111. Another electrical connector is suitable to be inserted to the insertion space 111 of the inner housing 110 along the insertion axis A1. Here, the inner housing 110 is composed of two inner housing parts 110a and 110b that form a closed annular structure and the insertion space 111. The two inner housing parts 110a and 110b are disposed symmetrically with respect to the insertion axis A1.
[0025] Please refer to
[0026] Specifically, in this embodiment, the two insulators 120 are disposed symmetrically with respect to the insertion axis A1, and the two metallic sheets 140 are disposed symmetrically with respect to the insertion axis A1. The inner housing 110 has a plurality of first openings 114, and the terminals 130 protrude from the outer wall surface 113 through the first openings 114 to protrude from the inner wall surface 112 and extend to the insertion space 111, so as to connect with another electrical connector. Each metallic sheet 140 is stacked on the corresponding insulator 120 along the Z-axis to partially cover the portion of the aforementioned terminals 130 extending into the insertion space 111.
[0027] In this embodiment, one of the insulators 120 and the corresponding metallic sheet 140 are disposed in the inner housing part 110a of the inner housing 110 along the Z-axis, and the other insulator 120 and the corresponding metallic sheet 140 are disposed in the inner housing part 110b of the inner housing 110 along the Z-axis.
[0028] In this embodiment, the insulator 120 is made of an insulative material and includes a first component 121 and a second component 122, the terminals 130 are disposed in the first component 121 and assembled to the outer wall surface 113 along with the first component 121, the connecting ends 131 (marked in
[0029] Here, the degree of coplanarity of the arc height refers to the degree of coincidence of the arc surfaces of the part where the terminals 130 extend into the insertion space 111. The true position specifies the geometric shapes and regulates the deviation of the insulator 120 and the metallic sheets 140 from their ideal position according to design.
[0030] Please refer to
[0031] In addition, as shown in
[0032]
[0033] Please refer to
[0034] In this embodiment, the first openings 114 connect the inner wall surface 112 and the outer wall surface 113, and the connecting ends 131 of the terminals 130 respectively pass through the first openings 114 from the outer wall surface 113 of the inner housing 110 and abut against bearing parts 118 of the inner housing 110. Compared with the suspended connecting ends of the terminals in a conventional electrical connector, the arc surfaces 131-1 of the connecting ends 131 of this embodiment have good coplanarity degree of arc height.
[0035] Next, please refer to
[0036] Note here that in this embodiment, the first component 121 and the terminals 130 are combined by, for example, insert molding, but the disclosure is not limited thereto. One of the first component 121 and one set of the terminals 130 forms a terminal module, and each terminal module is disposed on the outer wall surface 113 of the inner housing 110. Meanwhile, the first component 121 and the second component 122 are two independent elements that may be assembled separately, but the disclosure is not limited thereto. In other embodiments, the first component 121 and the second component 122 may be fabricated by integral molding, depending on the requirements of the fabrication process.
[0037] Please refer to
[0038] Please refer to
[0039] Specifically, each metallic sheet 140 has positioning bends 142 and 143 extending along the Z-axis, the inner housing 110 has a second positioning groove 117 corresponding to the positioning bend 142, and the first component 121 has a third positioning groove 121-2 corresponding to the positioning bend 143. The positioning bend 142 of each metallic sheet 140 is fitted into the corresponding second positioning groove 117 of the inner housing 110 along the Z-axis, and the positioning bend 143 is fitted into the third positioning groove 121-2 of the first component 121, so as to limit the movement of the metallic sheets 140 in the insertion axis A1 and the arrangement axis while securing the fixed relationship between the metallic sheet 140 and the inner housing 110 and the fixed relationship between the metallic sheet 140 and the first component 121.
[0040] To sum up, in the electrical connector of the disclosure, as the insulator is disposed in the inner housing and partially overlapped on the outer wall surface, and the metallic sheets are disposed on the outer wall surface of the inner housing and stacked on the insulator, the elements are able to apply a pressure in advance on the terminals disposed on the insulator during assembly. Accordingly, the part where the terminals extend into the insertion space has good coplanarity degree of arc height due to the overlap of the elements, such that the true position of the elements related to the terminals in the electrical connector may be controlled effectively during the production, and the difficulty in producing the elements related to the terminals in the electrical connector may be reduced, improving the production yield of the electrical connector.