Integrated TYPEC sheath

Through the snap connection between the integrated tinplate structure and the TYPE C joint, the gaps and production processes at the Type-C interface connection are solved, and a higher shielding effect and a simplified production process are achieved.

CN223309271UActive Publication Date: 2025-09-05SHENZHEN LITKCONN TECH
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Patent Information

Application Number
CN202421997405.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-19
Publication Date
2025-09-05
Estimated Expiration
2034-08-19

AI Technical Summary

Technical Problem

The existing Type-C interface tinplate structure is split, with easy gaps at the connection, poor shielding effect, and cumbersome production process.

Method used

The integrated tinplate structure is adopted, and the snap connection between the straight sheath and the TYPE C joint and the integrated tinplate is replaced by the traditional upper and lower cover buckle method to improve integrity and shielding effect, and simplify the production process.

Benefits of technology

Improve the shielding signal effect, reduce connection gaps, simplify the production process, and improve production efficiency and assembly speed.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an integrated TYPE C sheath, which comprises a TYPE C joint, a straight sheath and an integrated tinplate, the TYPE C joint comprises a TYPE C male head and a PCB, the integrated tinplate is of an integrated structure, the TYPE C joint is connected with the integrated tinplate through the straight sheath, the straight sheath is connected with the TYPE C male head, and the integrated tinplate is connected with the straight sheath. The straight tube sheath is provided with a first positioning clamping point and a second positioning clamping point, the integrated tinplate comprises a first base plate and a second base plate, the first base plate is provided with a second positioning clamping groove, and the second base plate is provided with a first positioning clamping groove and a third positioning clamping point. The integrated tinplate provided by the utility model is arranged to be of an integrally molded structure, an original up-and-down split structure is replaced, an original upper-and-lower cover buckling mode is further replaced, the clamping effect is good, gaps are not easy to generate at the joint, the signal shielding effect of a product is further improved, and the production process is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of TYPE C sheaths, in particular to an integrated TYPE C sheath. Background Art

[0002] The Type-C interface, also known as Type-C USB, is a new universal interface standard used to connect electronic products, including mobile devices, laptops, external hard drives, digital cameras, and more. The Type-C interface is more compact in design, and its rear interface allows for bidirectional insertion and supports multiple protocols and functions. Compared to traditional interface types, the Type-C interface's advantages lie in its diversity and superior performance. The Type-C interface supports high-speed transmission, has high reliability, and can support video, audio, and power functions, making it an indispensable universal interface in electronic products. In the TYPE C connector, shielding against noise interference is a key step, so the design and manufacture of the shielding shell are particularly important. Tinplate mainly plays a shielding role, and the faster the bus speed, the higher the shielding requirements.

[0003] Most existing tinplates are of upper and lower split structures, connected by snapping the upper and lower covers together. On the one hand, gaps are easily produced at the joints, resulting in poor shielding effect and affecting functionality. On the other hand, the integrity of the split structure is poor and the production process is relatively complicated. Utility Model Content

[0004] The purpose of the present invention is to provide an integrated TYPE C sheath to solve the problems raised in the above background technology.

[0005] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: an integrated TYPE C sheath, comprising a TYPE C connector, a straight-tube sheath and an integrated tinplate, the TYPE C connector comprising a TYPE C male head and a PCB board, the integrated tinplate being configured as an integrally formed structure, the TYPE C connector and the integrated tinplate being connected via a straight-tube sheath, the straight-tube sheath being provided with a first positioning card point and a second positioning card point, the integrated tinplate comprising a first substrate and a second substrate, the first substrate being provided with a second positioning card slot, and the second substrate being provided with a first positioning card slot and a third positioning card point.

[0006] The straight-tube sheath includes a sheath body, and four groups of the first positioning points are provided. The four groups of the first positioning points are respectively distributed on both side surfaces of the sheath body.

[0007] Wherein, the second positioning card point is located on a side surface of the sheath body, and the second positioning card point of the straight-tube sheath is snap-connected with the first positioning card slot of the integral tinplate.

[0008] Wherein, first side edges are provided on both sides of the first substrate, and second positioning slots are provided on two groups of the first side edges.

[0009] Wherein, second side edges are provided on both sides of the second substrate, and third positioning points are provided on both groups of the second side edges.

[0010] Wherein, the third positioning card point on the second side is snap-connected with the second positioning card slot on the first side.

[0011] The second side of the second substrate is located inside the first side of the first substrate.

[0012] Wherein, a plug-in slot for plugging in a PCB board and a straight-tube sheath is formed between the first substrate and the second substrate of the integrated tinplate.

[0013] Wherein, the straight tube sheath is sleeved on the TYPE C connector.

[0014] Compared with the prior art, the beneficial effects of the present invention are:

[0015] 1. The integrated tinplate of the utility model is set as an integrated molding structure, replacing the original upper and lower split structure, and then replacing the original upper and lower cover buckle mode, with a good snap-fit ​​effect, and it is not easy to produce gaps at the connection, thereby improving the shielding signal effect of the product.

[0016] 2. The one-piece tinplate of the present invention adopts an one-piece production process, which has the characteristics of simple manufacturing process, short process flow, high production efficiency, etc. compared with the split production process, improves the production process, and can reduce production and assembly time. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic diagram of the assembly structure of the utility model Figure 1 ;

[0018] Figure 2 This is a schematic diagram of the assembly structure of the utility model Figure 2 ;

[0019] Figure 3 This is a schematic diagram of the split structure of the utility model;

[0020] Figure 4 This is a schematic diagram of the one-side structural view of the integrated tinplate of the present utility model;

[0021] Figure 5 This is another side view of the integrated tinplate structure of the present invention.

[0022] In the figure: 1. TYPE C connector; 2. Straight sleeve; 3. Integrated tinplate; 11. TYPE C male connector; 12. PCB board; 21. Sheath body; 22. First positioning point; 23. Second positioning point; 31. First substrate; 32. Second substrate; 33. First positioning slot; 34. First side; 35. Second positioning slot; 36. Second side; 37. Third positioning point. DETAILED DESCRIPTION

[0023] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0024] See also Figure 1-5 The utility model provides a technical solution: an integrated TYPE C sheath, including a TYPE C connector 1, a straight sheath 2 and an integrated tinplate 3, the TYPE C connector 1 including a TYPE C male head 11 and a PCB board 12, the integrated tinplate 3 is set as an integrated molding structure, the TYPE C connector 1 and the integrated tinplate 3 are connected through the straight sheath 2, the straight sheath 2 is provided with a first positioning card point 22 and a second positioning card point 23, the integrated tinplate 3 includes a first substrate 31 and a second substrate 32, the first substrate 31 is provided with a second positioning card slot 35, and the second substrate 32 is provided with a first positioning card slot 33 and a third positioning card point 37.

[0025] Among them, the integrated tinplate 3 is an integrated molding structure, which has higher integrity and structural strength than the split structure. Figure 4 and Figure 5 As shown, when the integrated tinplate 3 is in a split state, the first substrate 31 and the second substrate 32 are in a separated state. At this time, the insertion slot of the integrated tinplate 3 is in an open state. When the integrated tinplate 3 needs to be buckled together, it is only necessary to apply a certain external force to drive the first substrate 31 and the second substrate 32 so that the third positioning card point 37 of the second substrate 32 is engaged and fixed with the second positioning card slot 35 of the first substrate 31.

[0026] Among them, the integrated tinplate 3 of the integrated structure replaces the original upper and lower split structure, and further replaces the original upper and lower cover buckling method, with a good snap-fit ​​effect, and it is not easy to produce gaps at the connection, thereby improving the shielding effect.

[0027] Among them, the integrated production process has the characteristics of simple manufacturing process, short process flow, and high production efficiency compared to the split production process. It can reduce production and assembly time and is suitable for mass production and processing.

[0028] Among them, the straight-tube sheath 2 includes a sheath body 21, and four groups of first positioning card points 22 are provided. The four groups of first positioning card points 22 are respectively distributed on the two side surfaces of the sheath body 21. During assembly, the straight-tube sheath 2 is first put on the TYPE C connector 1, and then the straight-tube sheath 2 and the TYPE C connector 1 are assembled with the integrated tinplate 3, and finally the integrated tinplate 3 is buckled. The connection method is simple and easy to assemble and disassemble.

[0029] Among them, the second positioning card point 23 is located on one side surface of the sheath body 21, and the second positioning card point 23 of the straight-tube sheath 2 is snap-connected with the first positioning card groove 33 of the integrated tinplate 3. When the straight-tube sheath 2 and the integrated tinplate 3 are assembled, the second positioning card point 23 of the straight-tube sheath 2 is snap-connected with the first positioning card groove 33 of the integrated tinplate 3 to achieve a fixed connection between the two.

[0030] The first substrate 31 is provided with first side edges 34 on both sides. Two groups of first side edges 34 are provided with second positioning slots 35 . There are four groups of second positioning slots 35 , which are distributed on both sides of the first substrate 31 .

[0031] Among them, second side edges 36 are set on both sides of the second substrate 32, and third positioning points 37 are set on both groups of second side edges 36. There are four groups of third positioning points 37 in total, and the four groups of third positioning points 37 are distributed on both sides of the second substrate 32.

[0032] Among them, multiple groups of second positioning slots 35 are respectively arranged corresponding to multiple groups of third positioning points 37. When a certain external force is applied to buckle the integrated tinplate 3, the multiple groups of second positioning slots 35 can accurately match with the multiple groups of third positioning points 37.

[0033] The third positioning point 37 on the second side 36 is snap-connected to the second positioning slot 35 on the first side 34 , and the connection method is simple.

[0034] The second side 36 of the second substrate 32 is located inside the first side 34 of the first substrate 31. After the fastening is completed, the second side 36 is located inside the first side 34. The side structure improves the sealing of the integrated tinplate 3 and thus improves the shielding effect.

[0035] A plug-in slot for plugging in the PCB board 12 and the straight sleeve 2 is formed between the first substrate 31 and the second substrate 32 of the integrated tinplate 3 , and the plug-in slot is adapted to the structural shapes of the PCB board 12 and the straight sleeve 2 .

[0036] The straight tube sheath 2 is sleeved on the TYPE C connector 1 .

[0037] Working principle: During assembly, first assemble the TYPE C connector 1 with the straight sleeve 2, and then assemble it with the integrated tinplate 3 shell and buckle it together. First, put the straight sleeve 2 on the TYPE C connector 1, and then insert the straight sleeve 2 and the TYPE C connector 1 into the plug-in slot of the integrated tinplate 3. Finally, apply a certain external force to drive the first substrate 31 and the second substrate 32, so that the third positioning point 37 of the second substrate 32 is engaged and fixed with the second positioning slot 35 of the first substrate 31, and the second positioning point 23 of the straight sleeve 2 is buckled with the first positioning slot 33 of the integrated tinplate 3 to complete the assembly.

[0038] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An integrated TYPE C sheath, comprising a TYPE C connector (1), a straight sheath (2) and an integrated tinplate (3), characterized in that: The TYPE C connector (1) comprises a TYPE C male connector (11) and a PCB board (12); the integrated tinplate (3) is configured as an integrated molded structure; the TYPE C connector (1) and the integrated tinplate (3) are connected via a straight sleeve (2); a first positioning card point (22) and a second positioning card point (23) are provided on the straight sleeve (2); the integrated tinplate (3) comprises a first substrate (31) and a second substrate (32); the first substrate (31) is provided with a second positioning card slot (35); and the second substrate (32) is provided with a first positioning card slot (33) and a third positioning card point (37).

2. The integrated TYPE C sheath according to claim 1, characterized in that: The straight-tube sheath (2) comprises a sheath body (21), and four groups of the first positioning card points (22) are provided. The four groups of the first positioning card points (22) are respectively distributed on both sides of the sheath body (21).

3. The integrated TYPE C sheath according to claim 2, characterized in that: The second positioning card point (23) is located on a side surface of the sheath body (21), and the second positioning card point (23) of the straight-tube sheath (2) is snap-connected to the first positioning card slot (33) of the integrated tinplate (3).

4. The integrated TYPE C sheath according to claim 1, characterized in that: Both sides of the first substrate (31) are provided with first side edges (34), and two groups of the first side edges (34) are provided with second positioning slots (35).

5. The integrated TYPE C sheath according to claim 4, characterized in that: Second side edges (36) are provided on both sides of the second substrate (32), and third positioning points (37) are provided on both groups of the second side edges (36).

6. The integrated TYPE C sheath according to claim 5, characterized in that: The third positioning clamping point (37) on the second side (36) is snap-connected to the second positioning clamping groove (35) on the first side (34).

7. The integrated TYPE C sheath according to claim 6, characterized in that: The second side edge (36) of the second substrate (32) is located inside the first side edge (34) of the first substrate (31).

8. The integrated TYPE C sheath according to claim 1, characterized in that: A plug-in slot for plugging in a PCB board (12) and a straight-tube sheath (2) is formed between the first base plate (31) and the second base plate (32) of the integrated tinplate (3).

9. The integrated TYPE C sheath according to claim 1, characterized in that: The straight tube sheath (2) is sleeved on the TYPE C connector (1).