Vertical DisplayPort female seat connector

By designing a vertical DisplayPort female connector with a metal housing and multiple connection components, the problem of unstable display effects of existing connectors at different resolutions and refresh rates has been solved, achieving high-quality display, simplifying production, and improving user experience.

CN224164406UActive Publication Date: 2026-04-24SHENZHEN JIANDUAN TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN JIANDUAN TECH
Filing Date
2025-03-14
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Existing DisplayPort female connectors cannot provide stable and high-quality display effects at different resolutions and refresh rates, and their manufacturing process is complex and the connection fixation is poor.

Method used

Design a vertical DisplayPort female connector, employing a structure including a metal housing, connection components, a suction cap, multiple notches, springs, connection pins, and a protective sleeve, to ensure stable display at different resolutions and refresh rates, and to meet the DP1.4 specification.

Benefits of technology

It achieves stable, high-quality display effects at different resolutions and refresh rates, improves the user experience, and simplifies the production process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a vertical DisplayPort female seat connector, which belongs to the technical field of DisplayPort female seat connectors and comprises a metal shell. The number of the upper terminals and the number of the lower terminals are 20, the output is designed to be of an upper-row and lower-row DIP pin structure, the horizontal and vertical distance is 1.3 mm, meanwhile, the upper main body and the upper terminals are formed in an inserting and molding mode, the lower main body and the lower terminals are formed in an inserting and molding mode, special sheaths are designed, the upper main body and the lower main body are respectively arranged in the sheaths after terminal material belts are removed, and the upper main body and the lower main body are combined into one to form a product body. Not only is board-striking welding in a client wave-soldering process facilitated, but also the structural design meets the DP1.4 specification, the DP1.4 can support a refresh rate of 120Hz at most under the resolution of 4K, the DP1.4 can support a refresh rate as high as 144Hz under the resolution of 2K, in addition, the DP1.4 can support a refresh rate of 60Hz at most under the resolution of 8K, and the DP1.4 can support a refresh rate as high as 144Hz at the resolution of 8K. Therefore, it is ensured that the DisplayPort female seat connector provides a stable and high-quality display effect under different resolutions and refresh rates, and the user experience is improved.
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Description

Technical Field

[0001] This utility model relates to the field of DisplayPort female connector technology, and in particular to a vertical DisplayPort female connector. Background Technology

[0002] The DisplayPort female connector is a type of DisplayPort interface used to receive the insertion of a DisplayPort plug to enable connection and data transmission between devices. It is widely used in video signal transmission of devices such as computers, televisions, and monitors, especially in scenarios requiring high resolution and high-speed data transmission.

[0003] Most existing DisplayPort female connectors are horizontal SMT or DIP type structures, and most do not support the DP1.4 association standard. This results in DisplayPort female connectors being unable to provide stable and high-quality display effects at different resolutions and refresh rates, thus affecting the user experience. In addition, some DisplayPort female connectors have relatively complex structures and are more troublesome to manufacture, resulting in poor connection and fixation when connected to the PCB board. Utility Model Content

[0004] To address the aforementioned issues, this invention proposes a vertical DisplayPort female connector, which more precisely resolves the problem that existing DisplayPort female connectors cannot provide stable and high-quality display effects at different resolutions and refresh rates.

[0005] This utility model is achieved through the following technical solution:

[0006] This utility model proposes a vertical DisplayPort female connector, including a metal housing with an arc-shaped end edge. A connection component is disposed inside the metal housing, which can be used for connection and data transmission between devices.

[0007] Furthermore, a suction cap is provided inside the end of the metal casing, and the suction cap is limited to the metal casing by a first spring piece.

[0008] Furthermore, the connecting assembly includes multiple sets of notches, a first spring clip, two sets of second spring clips, multiple sets of connecting feet, and a protective sleeve. The multiple sets of notches are formed on the top and bottom surfaces of the metal casing. The first spring clip is disposed on the inner wall of the notch. The two sets of second spring clips are symmetrically disposed in the side walls of the metal casing. The multiple sets of connecting feet are disposed at the tail edge of the metal casing. The protective sleeve is snapped into the tail of the metal casing.

[0009] Furthermore, the first spring has an arc-shaped protrusion at its end, the second spring is a tearing spring, and multiple sets of connecting feet are evenly distributed.

[0010] Furthermore, the top and bottom of the sheath have a first buckle and a second buckle.

[0011] Furthermore, the connecting assembly also includes multiple sets of second fastening points, an upper body, a lower body, and multiple sets of first fastening points. The multiple sets of second fastening points are respectively disposed on the top and bottom surfaces of the metal shell. The upper body is disposed inside the protective sleeve, and the lower body is disposed inside the protective sleeve and located below the upper body. The multiple sets of first fastening points are respectively disposed on the top of the upper body and the bottom of the lower body.

[0012] Furthermore, the first deduction point is set to correspond to the first deduction position, and the second deduction point is set to correspond to the second deduction position.

[0013] Furthermore, the upper body is provided with multiple sets of upper terminals, and the lower body is provided with multiple sets of lower terminals.

[0014] The beneficial effects of this utility model are:

[0015] This utility model proposes a vertical DisplayPort female connector with 20 upper and lower terminals. The output design features a top-and-bottom row of DIP pins with a horizontal and vertical spacing of 1.3mm. The upper body and upper terminals are molded together, and the lower body and lower terminals are also molded together. A dedicated protective sleeve is included. After removing the terminal strip from the upper and lower bodies, the protective sleeve is inserted into each body, forming a 3-in-1 product. This design not only facilitates wave soldering for the client but also meets the DP1.4 specification. DP1.4 supports a maximum refresh rate of 120Hz at 4K resolution and up to 144Hz at 2K resolution. Furthermore, DP1.4 supports a maximum refresh rate of 60Hz at 8K resolution, ensuring stable and high-quality display effects at different resolutions and refresh rates, thus enhancing the user experience. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the metal protective shell structure of this utility model;

[0018] Figure 3 This is a schematic diagram of the sheath structure of this utility model;

[0019] Figure 4This is a schematic diagram of the upper and lower main body structures of this utility model;

[0020] Figure 5 This is a schematic diagram of the upper and lower terminals of this utility model.

[0021] The attached figures are labeled as follows:

[0022] In the diagram: 1. Metal casing; 2. Suction cap; 3. Notch; 4. Spring No. 1; 5. Spring No. 2; 6. Connecting foot; 7. Sheath; 8. Buckle No. 1; 9. Buckle No. 2; 10. Buckle No. 2; 11. Upper body; 12. Lower body; 13. Buckle No. 1; 14. Upper terminal; 15. Lower terminal. Detailed Implementation

[0023] To more clearly and completely illustrate the technical solution of this utility model, the following description, in conjunction with the accompanying drawings, will further explain this utility model.

[0024] Please refer to Figures 1-5 This utility model proposes an upright DisplayPort female connector, including a metal housing 1. The end edge of the metal housing 1 has an arc-shaped structure. A connecting component is provided inside the metal housing 1. A suction cover 2 is provided inside the end of the metal housing 1. The suction cover 2 is limited to the metal housing 1 by a first spring piece 4. With the suction cover 2, it is convenient for subsequent suction equipment to pick up and transport the DisplayPort female connector. After the transport operation is completed, the suction cover 2 can be removed and recycled.

[0025] The connecting assembly includes multiple sets of notches 3, a first spring clip 4, two sets of second spring clips 5, multiple sets of connecting feet 6, a sheath 7, multiple sets of second fastening points 10, an upper body 11, a lower body 12, and multiple sets of first fastening points 13. The multiple sets of notches 3 are formed on the top and bottom surfaces of the metal casing 1. The first spring clip 4 is disposed on the inner wall of the notch 3. The two sets of second spring clips 5 are symmetrically disposed on the side walls of the metal casing 1. The multiple sets of connecting feet 6 are disposed at the tail edge of the metal casing 1. The sheath 7 is snapped into the tail of the metal casing 1. The end of the first spring clip 4 has an arc-shaped protrusion, and the second spring clip 5 has a tearing structure. The spring clips are evenly distributed with multiple sets of connecting feet 6. The top and bottom of the sheath 7 have first-numbered fastening positions 8 and second-numbered fastening positions 9. Multiple sets of second-numbered fastening points 10 are respectively disposed on the top and bottom surfaces of the metal outer shell 1. The upper body 11 is disposed inside the sheath 7, and the lower body 12 is disposed inside the sheath 7 and located below the upper body 11. Multiple sets of first-numbered fastening points 13 are respectively disposed on the top of the upper body 11 and the bottom of the lower body 12. The first-numbered fastening points 13 correspond to the first-numbered fastening positions 8, and the second-numbered fastening points 10 correspond to the second-numbered fastening positions 9. An insert is placed inside the upper body 11. Multiple sets of upper terminals 14 are provided, and multiple sets of lower terminals 15 are inserted into the lower body 12. With the first latch 8 and the first latch point 13, the upper body 11 and lower body 12 will not disengage from the sheath 7 when the product is plugged in or unplugged from the male connector, thus ensuring the mechanical strength of the product during plugging and unplugging. With the second latch 9 and the second latch point 10, the sheath 7 will not disengage from the metal shell 1 during plugging and unplugging. With multiple sets of connecting pins 6, the metal shell 1 is designed with eight connecting pins 6, ensuring the strength of the metal shell 1 after soldering to the PCB, making it difficult for the product to peel off the PCB board. With the first spring contact 4 and the second... With the setting of spring 5, the insertion and extraction force when the product is inserted and extracted with the male connector is guaranteed, giving the product a better insertion and extraction feel. This product has 20 upper terminals 14 and lower terminals 15. The output design is a top and bottom row DIP pin structure with a horizontal and vertical spacing of 1.3mm. At the same time, the upper body 11 and upper terminals 14 are inserted and molded, and the lower body 12 and lower terminals 15 are inserted and molded. A special protective sleeve 7 is designed. After removing the terminal strip from the upper body 11 and lower body 12, the protective sleeve 7 is inserted into them respectively. The three are combined into one to form the body of the product. This not only facilitates the wave soldering process of the client, but also meets the DP1.4 specification in terms of structural design.

[0026] In this embodiment

[0027] When using this upright DisplayPort female connector, the suction cover 2 facilitates the subsequent suction equipment to pick up and transport the DisplayPort female connector. After the transport operation is completed, the suction cover 2 can be removed and reused. During the manufacturing of the DisplayPort female connector, the user first inserts the upper terminal 14 and upper body 11, and the lower terminal 15 and lower body 12 into the molding process. Then, the primary and secondary material strips of the upper terminal 14 and lower terminal 15 are removed. Finally, the upper body 11 and lower body 12 are assembled. Inside the sheath 7, the metal outer shell 1 is then assembled onto the outside of the sheath 7, and finally the suction cap 2 is installed, thus completing the production of the DisplayPort female connector. With the first snap-fit ​​position 8 and the first snap-fit ​​point 13, the upper body 11 and lower body 12 will not exit the sheath 7 when the product is plugged in or unplugged from the male connector, thereby ensuring the mechanical strength of the product during plugging and unplugging. With the second snap-fit ​​position 9 and the second snap-fit ​​point 10, the sheath 7 will not exit the metal outer shell 1 during plugging and unplugging. With multiple sets of connecting pins 6, the metal outer shell 1 is designed with 8 connecting pins 6, ensuring... The metal casing 1 is designed to withstand the strength of the PCB after soldering, making it difficult for the product to peel off the PCB. The placement of spring contacts 4 and 5 ensures optimal insertion and extraction force when the product is connected to the male connector, providing a better feel. This product has 20 upper terminals 14 and lower terminals 15, with an output design of upper and lower rows of DIP pins, with a horizontal and vertical spacing of 1.3mm. The upper body 11 and upper terminals 14 are inserted and molded, as are the lower body 12 and lower terminals 15. A dedicated protective sleeve 7 is included. After removing the terminal strip, the upper body 11 and lower body 12... The 7-in-1 housing, which integrates the 3 components, not only facilitates wave soldering for the client but also meets the DP1.4 specification. DP1.4 supports a maximum refresh rate of 120Hz at 4K resolution and up to 144Hz at 2K resolution. Furthermore, DP1.4 supports a maximum refresh rate of 60Hz at 8K resolution, thus ensuring that the DisplayPort female connector provides stable and high-quality display effects at different resolutions and refresh rates, enhancing the user experience.

[0028] Of course, there may be other implementations of this utility model. Based on this implementation, other implementations obtained by those skilled in the art without any creative effort are all within the scope of protection of this utility model.

Claims

1. A vertical DisplayPort female connector, characterized in that, It includes a metal casing with an arc-shaped edge at the end of the metal casing, and a connecting component is provided inside the metal casing. The connecting component can be used for connection between devices and data transmission. The connecting assembly includes multiple sets of notches, a first spring clip, two sets of second spring clips, multiple sets of connecting feet, and a protective sleeve. The multiple sets of notches are formed on the top and bottom surfaces of the metal shell. The first spring clip is disposed on the inner wall of the notch. The two sets of second spring clips are symmetrically disposed on the side walls of the metal shell. The multiple sets of connecting feet are disposed at the tail edge of the metal shell. The protective sleeve is snapped into the tail of the metal shell. The connecting assembly also includes multiple sets of second fastening points, an upper body, a lower body, and multiple sets of first fastening points. The multiple sets of second fastening points are respectively disposed on the top and bottom surfaces of the metal shell. The upper body is disposed inside the protective sleeve, and the lower body is disposed inside the protective sleeve and located below the upper body. The multiple sets of first fastening points are respectively disposed on the top of the upper body and the bottom of the lower body.

2. The upright DisplayPort female connector according to claim 1, characterized in that, A suction cap is provided inside the end of the metal shell, and the suction cap is limited to the metal shell by a first spring piece.

3. A vertical DisplayPort female connector according to claim 1, characterized in that, The first spring has an arc-shaped protrusion at its end, the second spring is a tearing spring, and multiple sets of connecting feet are evenly distributed.

4. A vertical DisplayPort female connector according to claim 1, characterized in that, The top and bottom of the sheath have a first buckle and a second buckle.

5. A vertical DisplayPort female connector according to claim 1, characterized in that, The first deduction point is set to correspond to the first deduction position, and the second deduction point is set to correspond to the second deduction position.

6. A vertical DisplayPort female connector according to claim 1, characterized in that, The upper body is provided with multiple sets of upper terminals, and the lower body is provided with multiple sets of lower terminals.