HDMI connector stress relief snap-fit structure
By employing a snap-fit, smooth plug connection, slide rail guidance, and sealing structure, the problems of friction, misalignment, and environmental intrusion in HDMI connectors are solved, achieving high-quality signal transmission and extending connector life.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 江西鼎端精密科技有限公司
- Filing Date
- 2025-09-08
- Publication Date
- 2026-07-31
AI Technical Summary
Existing HDMI connectors generate stress due to friction during insertion and removal, leading to increased insertion and removal resistance, wear on contact points, and impact on signal transmission quality and connector lifespan. Furthermore, the lack of sliding rail structures and sealing measures results in issues such as misalignment, poor contact, and environmental intrusion.
It adopts a snap-fit smooth plug connection structure, slide rail guide design and sealing structure, combined with polyurethane sealing gasket, to reduce friction and environmental intrusion, and ensure accurate plugging and stable connection.
Reduce insertion and removal resistance, improve the ease and accuracy of insertion and removal, prevent contact point wear and contamination, extend connector life, and ensure signal transmission stability and quality.
Smart Images

Figure CN224582604U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of HDMI connector technology, and in particular to a stress-relieving snap-fit structure for HDMI connectors. Background Technology
[0002] An HDMI connector is a high-definition multimedia interface widely used in electronic devices for transmitting high-definition video and audio signals. It consists of two parts: a male connector and a female connector. The male connector includes a male housing and a male plug, which is the key part for signal transmission. It has multiple metal pins arranged on it for transmitting video, audio, and control signals. The female connector includes a female housing and a female slot. The female housing also has protective and shielding functions, and the female slot has contact points that match the male connector pins. When the male connector is inserted into the female connector, the two are tightly connected to ensure stable signal transmission, enabling high-quality audio and video interaction between devices.
[0003] In existing technologies, the male plug and female slot of an HDMI connector generate stress due to friction. During insertion and removal, the two are in close contact, and the friction causes stress on the surfaces of the plug and slot. This stress not only increases the resistance to insertion and removal, reducing the user experience, but may also cause wear on the plug pins and slot contact points. Long-term wear can deform the contact points, increase contact resistance, affect signal transmission quality, and cause problems such as screen flickering and audio interruption. In addition, continuous stress may also reduce the structural stability of the plug and slot, reduce the lifespan of the connector, increase equipment maintenance costs and replacement frequency, and cause inconvenience to users. Utility Model Content
[0004] The purpose of this invention is to address the shortcomings of existing technologies by proposing a stress-relieving snap-fit structure for HDMI connectors.
[0005] To achieve the above objectives, this utility model adopts the following technical solution: an HDMI connector stress-relieving snap-fit structure, including a male connector shell and a female connector shell. The male connector shell has a male connector plug on one side, and the female connector shell has a female connector slot on one side. The surface of the male connector plug is smooth, and the inner wall of the female connector slot is smooth. A clamping plate is fixed to one side of the male connector shell, and a clamping groove is formed through the clamping plate from one side to the other. The female connector shell... Both sides are provided with locking grooves. The inner wall of the locking groove is provided with groove one, and the inner wall of groove one is provided with groove two. A release button is slidably connected to the inner wall of groove two. A slide rail groove is provided in the inner wall of groove two. Slide rail blocks are fixed on both sides of the release button. Slide rail blocks slide on the inner wall of slide rail groove one. A spring is fixed on one side of the release button. The other end of the spring is fixed to the inner wall of groove two. A buckle plate is fixed on one side of the release button. A buckle hook is fixed on one side of the buckle plate. The buckle hook is located on the inner wall of the locking groove.
[0006] Preferably, a slide block two is fixed on one side of the male connector plug, and a female connector shell is fixed on the other side of the male connector plug. The surfaces of slide block two and slide block three are both smooth. The inner wall of the female connector slot is provided with slide groove two and slide groove three. The inner walls of slide groove two and slide groove three are both smooth. Slide block two slides on the inner wall of slide groove two, and slide block three slides on the inner wall of slide groove three. In existing technologies, HDMI connectors typically lack a guide rail structure when inserting the male plug into the female plug. Due to this lack of guidance, the male plug's alignment is often inaccurate when inserted into the female plug slot, leading to misalignment or incomplete insertion. This not only increases the difficulty of insertion and removal, reducing user experience, but can also cause poor contact between the plug and the slot, affecting signal transmission stability. Furthermore, frequent insertion and removal operations may cause unnecessary wear on the contact points between the plug and the slot, resulting in increased contact resistance and issues such as screen flickering and audio interruption. To address these problems, this invention employs a guide rail structure, with a guide rail block fixed to one side of the male plug and the connector fixed to the other side. The female connector housing, slide rail two, and slide rail three all have smooth surfaces to reduce friction. The inner wall of the female connector slot has slide rail groove two and slide rail groove three, which are also smooth. When the male connector is inserted into the female connector slot, slide rail two and slide rail three slide within slide rail groove two and slide rail groove three respectively, improving the convenience and accuracy of insertion and removal, significantly enhancing the user experience, and reducing wear on contact points caused by improper insertion and removal. Precise alignment and stable connection ensure high-quality signal transmission, avoiding problems such as screen flickering and audio interruption. In addition, reduced wear on contact points lowers contact resistance, further improving the stability of signal transmission and extending the connector's service life.
[0007] Preferably, a sealing gasket is fixed to the side of the male connector shell near the female connector shell, and a sealing gasket is fixed to the side of the female connector shell near the male connector shell. Both sealing gaskets are made of polyurethane. In the prior art, HDM connectors typically lack a sealing mechanism when the male connector is inserted into the female connector. Due to the lack of a sealing structure, dust, particles, and liquids can easily penetrate the connector, contaminating the contact points of the plug and slot, leading to poor contact, affecting the stability and quality of signal transmission, and potentially causing problems such as screen flickering and audio interruption. Furthermore, long-term exposure to harsh environments can accelerate connector corrosion and aging, reducing its lifespan, increasing equipment maintenance costs and replacement frequency, and causing considerable inconvenience to users. To address these issues, this invention employs a sealing structure: a sealing gasket is fixed to the side of the male connector shell near the female connector shell, and a sealing gasket is fixed to the side of the female connector shell near the male connector shell. A second sealing gasket is fixed on one side, both made of polyurethane. When the male connector is inserted into the female connector, the first and second sealing gaskets are pressed against each other to form a tight seal. The polyurethane material has good elasticity and wear resistance, which can maintain a stable sealing effect during insertion and removal. This effectively solves the problem of dust, particulate matter and liquid intrusion caused by the lack of a sealing structure in the existing technology. This improvement can prevent the contact point from being contaminated and avoid poor contact, thereby ensuring the stability and quality of signal transmission, reducing problems such as screen flicker and audio interruption. At the same time, the sealing structure can also protect the connector from the effects of harsh environments, slow down corrosion and aging, extend its service life, and reduce equipment maintenance costs and replacement frequency.
[0008] Preferably, both the male connector housing and the female connector housing are transparent. By designing the male and female connector housings to be transparent, the connection status of the plug and slot inside the connector, as well as the condition of components such as the sealing gasket, can be directly observed. This design not only allows users to quickly confirm whether the connection is correct, but also enables them to promptly detect whether there are foreign objects such as dust or liquid inside, thus allowing them to take cleaning or maintenance measures in advance.
[0009] Preferably, the release button has anti-slip textured grooves on the side away from the connector female housing. These grooves significantly increase friction when the user operates the release button, making it easier and more stable to press the button and preventing operation failure due to slippage.
[0010] Preferably, the inclined surface of the latch hook is smooth. Designing the inclined surface of the latch hook to be smooth can significantly reduce the friction when the male plug is inserted into the female plug slot. This design allows the male plug to make smoother contact with the latch hook during insertion, reducing resistance during insertion and thus improving the user's plugging and unplugging experience.
[0011] Preferably, a cable sheath is fixed to both the side of the male connector housing away from the female connector housing and the side of the female connector housing away from the male connector housing. Fixing cable sheaths to the sides of both the male and female connector housings away from each other effectively protects the cable from external physical damage such as compression, friction, and pulling. This design also prevents dust and liquid contaminants from entering the cable, thereby extending the cable's lifespan and ensuring the stability and reliability of signal transmission.
[0012] Beneficial effects:
[0013] 1. In existing technologies, friction generates stress between the male plug and female slot of an HDM connector. During insertion and removal, the two are in close contact, and the friction causes stress on the surfaces of the plug and slot. This stress not only increases the resistance to insertion and removal, reducing the user experience, but may also lead to wear on the plug pins and slot contact points. Long-term wear can deform the contact points, increase contact resistance, affect signal transmission quality, and cause problems such as screen flickering and audio interruption. In addition, continuous stress may also reduce the structural stability of the plug and slot, shorten the connector's lifespan, increase equipment maintenance costs and replacement frequency, and cause inconvenience to users. To address these issues, this utility model adopts a snap-fit fixed smooth plug connection structure, effectively solving the problem of stress generated by friction. This design significantly reduces insertion and removal resistance, improves the user experience, reduces wear on the plug pins and slot contact points, thereby avoiding contact point deformation and increased contact resistance, ensuring the stability and quality of signal transmission, effectively preventing problems such as screen flickering and audio interruption, and at the same time reducing the impact of continuous stress on the structural stability of the plug and slot, extending the connector's lifespan, reducing equipment maintenance costs and replacement frequency, and providing users with a more reliable and convenient user experience.
[0014] 2. In existing technologies, the male connector of an HDM connector typically lacks a sliding rail structure when inserted into the female connector. Due to the lack of a sliding rail guide, the male plug is not accurately aligned when inserted into the female connector slot, easily resulting in misalignment or incomplete insertion. This not only increases the difficulty of insertion and removal, reducing the user experience, but may also lead to poor contact between the plug and the slot, affecting the stability of signal transmission. Furthermore, frequent insertion and removal operations may cause unnecessary wear on the contact points of the plug and slot, leading to increased contact resistance and problems such as screen flickering and audio interruption. To address these issues, this utility model adopts a sliding rail guide structure, which improves the convenience and accuracy of insertion and removal, significantly enhancing the user experience. It also reduces contact point wear caused by improper insertion and removal. Precise alignment and stable connection ensure high-quality signal transmission, avoiding problems such as screen flickering and audio interruption. In addition, reducing contact point wear lowers contact resistance, further improving the stability of signal transmission and extending the connector's service life.
[0015] 3. In existing technologies, the male connector of an HDM connector typically lacks a sealing mechanism when inserted into the female connector. Due to the lack of a sealing structure, dust, particles, and liquids can easily penetrate the connector, contaminating the contact points of the plug and slot, leading to poor contact and affecting the stability and quality of signal transmission. This can result in issues such as screen flickering and audio interruption. Furthermore, long-term exposure to harsh environments can accelerate connector corrosion and aging, reducing its lifespan, increasing equipment maintenance costs and replacement frequency, and causing considerable inconvenience to users. To address these issues, this invention employs a sealing structure, effectively solving the problem of dust, particles, and liquid intrusion caused by the lack of a sealing structure in existing technologies. This improvement prevents contact point contamination, avoids poor contact, thereby ensuring the stability and quality of signal transmission, reducing screen flickering and audio interruption. Simultaneously, the sealing structure also protects the connector from the effects of harsh environments, slowing down corrosion and aging, extending its lifespan, and reducing equipment maintenance costs and replacement frequency. Attached Figure Description
[0016] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0017] Figure 2 This is a three-dimensional structural diagram of the snap-fit fixed smooth plug connection structure of this utility model;
[0018] Figure 3 This is a three-dimensional structural diagram of the slide rail guide structure of this utility model;
[0019] Figure 4 This is an exploded view of the snap-fit fixed smooth plug connection structure of this utility model;
[0020] Figure 5This is an exploded view of the connecting wire sheath structure of this utility model;
[0021] Figure 6 for Figure 4 Enlarged view of point A in the middle.
[0022] Legend:
[0023] 1. Connector male housing; 101. Connector male plug; 102. Connector female housing; 103. Connector female slot; 104. Clamping plate; 105. Clamping groove; 106. Clamping slide; 107. Slide one; 108. Slide two; 109. Release button; 110. Slide rail groove one; 111. Slide rail block one; 112. Spring; 113. Buckle plate; 114. Buckle hook; 2. Slide rail block two; 201. Slide rail block three; 202. Slide rail groove two; 203. Slide rail groove three; 3. Connecting wire sheath; 4. Anti-slip texture. Detailed Implementation
[0024] To make the technical means, creative features, and achieved objectives and effects of this utility model easier to understand, the present utility model is further described below with reference to specific embodiments and accompanying drawings. However, the following embodiments are merely preferred embodiments of this utility model and not all of them. Other embodiments obtained by those skilled in the art based on the embodiments described in the implementation plan without creative effort are all within the protection scope of this utility model.
[0025] The specific embodiments of this utility model are described below with reference to the accompanying drawings. Specific implementation examples:
[0027] Reference Figure 1-6The HDM connector stress-relieving snap-fit structure includes a male connector housing 1 and a female connector housing 102. The male connector housing 1 has a male connector plug 101 on one side, and the female connector housing 102 has a female connector slot 103 on one side. The male connector plug 101 has a smooth surface, and the inner wall of the female connector slot 103 is smooth. A clamping plate 104 is fixed to one side of the male connector housing 1, and a clamping groove 105 is formed through the clamping plate 104 from one side to the other. Clamping sliding grooves 106 are formed on both sides of the female connector housing 102, and the inner wall of the clamping sliding grooves 106 is... There is a slide groove 107, and a slide groove 2 108 is opened on the inner wall of the slide groove 107. A release button 109 is slidably connected to the inner wall of the slide groove 2 108. A slide rail groove 110 is opened on the inner wall of the slide groove 110. A slide rail block 111 is fixed on both sides of the release button 109. The slide rail block 111 slides on the inner wall of the slide rail groove 110. A spring 112 is fixed on one side of the release button 109. The other end of the spring 112 is fixed on the inner wall of the slide groove 2 108. A buckle plate 113 is fixed on one side of the release button 109. A buckle hook 114 is fixed on one side of the buckle plate 113. The buckle hook 114 is located on the inner wall of the clamping groove 105. In existing technologies, the male plug and female slot of an HDMI connector generate stress due to friction. During insertion and removal, the two are in close contact, and the friction causes stress on the surfaces of the plug and slot. This stress not only increases the resistance to insertion and removal, reducing the user experience, but may also cause wear on the plug pins and slot contact points. Long-term wear can deform the contact points, increase contact resistance, affect signal transmission quality, and cause problems such as screen flickering and audio interruption. In addition, continuous stress may also reduce the structural stability of the plug and slot, reduce the lifespan of the connector, increase equipment maintenance costs and replacement frequency, and cause inconvenience to users. To address these issues, this utility model adopts a snap-fit fixed smooth plug connection structure, where the smooth surfaces of the male plug 101 and the female slot 103... The design effectively reduces friction during insertion and removal, lowering stress caused by friction. When the male connector housing 1 is inserted into the female connector housing 102, the locking groove 105 on the locking plate 104 on one side of the male connector housing 1 aligns with the locking slide grooves 106 on both sides of the female connector housing 102. At this time, the release button 109, under the elastic force of the spring 112, pushes the latch plate 113 and the latch hook 114 to slide into the locking groove 105. The latch hook 114 engages in the locking groove 105, achieving a secure connection between the male and female connectors. When it is necessary to remove the male connector, press the release button 109. The release button 109 slides in the slide groove 110 through the slide block 111, compressing the spring 112 and causing the latch plate 113 and the latch hook 114 to exit the locking groove 105, allowing the male connector to be easily removed.
[0028] A slide rail block 2 is fixed on one side of the male connector plug 101, and a female connector housing 102 is fixed on the other side of the male connector plug 101. The surfaces of slide rail block 2 and slide rail block 3 201 are both smooth. The inner wall of the female connector slot 103 is provided with slide rail groove 202 and slide rail groove 3 203. The inner walls of slide rail groove 202 and slide rail groove 3 203 are both smooth. Slide rail block 2 slides on the inner wall of slide rail groove 202, and slide rail block 3 201 slides on the inner wall of slide rail groove 3 203. In existing technologies, HDMI connectors typically lack a guide rail structure when inserting the male plug into the female connector. Due to this lack of guidance, the male plug's alignment is often inaccurate when inserted into the female connector slot, leading to misalignment or incomplete insertion. This not only increases the difficulty of insertion and removal, reducing the user experience, but can also cause poor contact between the plug and the slot, affecting signal transmission stability. Furthermore, frequent insertion and removal operations may cause unnecessary wear on the contact points between the plug and the slot, resulting in increased contact resistance and causing issues such as screen flickering and audio interruptions. To address this issue, this utility model employs a slide rail guide structure. A slide rail block 2 is fixed on one side of the male plug 101, and a connector female shell 102 is fixed on the other side. The surfaces of slide rail block 2 and slide rail block 3 201 are both smooth to reduce friction. The inner wall of the female socket 103 is provided with slide rail groove 202 and slide rail groove 3 203, and its inner wall is also smooth. When the male plug 101 is inserted into the female socket 103, slide rail block 2 and slide rail block 3 201 slide within slide rail groove 202 and slide rail groove 3 203, respectively.
[0029] A sealing gasket 1 is fixed on the side of the male connector housing 1 near the female connector housing 102, and a sealing gasket 2 is fixed on the side of the female connector housing 102 near the male connector housing 1. Both sealing gaskets 1 and 2 are made of polyurethane. In existing technologies, HDMI connectors typically lack sealing measures when the male connector is inserted into the female connector. Due to the lack of a sealing structure, dust, particles, and liquids can easily penetrate the connector, contaminating the contact points of the plug and slot, leading to poor contact, affecting the stability and quality of signal transmission, and potentially causing problems such as screen flickering and audio interruption. Furthermore, long-term exposure to harsh environments can accelerate connector corrosion and aging, reducing its lifespan, increasing equipment maintenance costs and replacement frequency, and causing considerable inconvenience to users. To address these issues, this invention employs a sealing structure. A sealing gasket 1 is fixed to the side of the male connector shell 1 near the female connector shell 102, while a sealing gasket 2 is fixed to the side of the female connector shell 102 near the male connector shell 1. Both are made of polyurethane. When the male connector is inserted into the female connector, the sealing gaskets 1 and 2 are pressed against each other, forming a tight sealing contact. The polyurethane material has good elasticity and wear resistance, maintaining a stable sealing effect during insertion and removal.
[0030] Both the male connector housing 1 and the female connector housing 102 are transparent. By making them transparent, the connection status of the plug and slot inside the connector, as well as the condition of components such as the sealing gasket, can be directly observed. This design not only allows users to quickly confirm the correctness of the connection but also enables them to promptly detect any foreign matter such as dust or liquid inside, allowing for early cleaning or maintenance. The release button 109 has anti-slip texture 4 on the side away from the female connector housing 102. This significantly increases the friction when the user operates the release button, making it easier and more stable to press the button and preventing operation failure due to slippage. The inclined surface of the latch hook 114 is smooth, allowing the latch to... The hook 114 has a smooth inclined surface, which can significantly reduce the friction when the male plug 101 is inserted into the female socket 103. This design allows the male plug to make smoother contact with the hook during insertion, reducing resistance and improving the user's insertion and removal experience. The male connector housing 1 away from the female connector housing 102 and the female connector housing 102 away from the male connector housing 1 are both fixed with a cable sheath 3. The cable sheath 3 is fixed on the side of the male connector housing 1 and the female connector housing 102 away from each other, which can effectively protect the cable from external physical damage such as squeezing, friction and pulling. This design can also prevent dust and liquid contaminants from entering the cable, thereby extending the service life of the cable and ensuring the stability and reliability of signal transmission.
[0031] The working principle of this utility model is as follows: The smooth surfaces of the male plug 101 and the female slot 103 effectively reduce friction during insertion and removal, and reduce stress caused by friction. When the male plug housing 1 is inserted into the female plug housing 102, the locking groove 105 on the locking plate 104 on one side of the male plug housing 1 aligns with the locking slide grooves 106 on both sides of the female plug housing 102. At this time, under the elastic force of the spring 112, the release button 109 pushes the latch plate 113 and the latch hook 114 to slide into the locking groove 105. The latch hook 114 engages with the locking groove 105, achieving a firm connection between the male and female plugs. When it is necessary to remove the male plug, press the release button 109. The release button 109 slides in the slide groove 110 through the slide block 111, compressing the spring 112 and causing the latch plate 113 and the latch hook 114 to exit the locking groove 105, allowing the male plug to be easily removed. 1. A slide rail block 2 is fixed on one side, and a connector female head shell 102 is fixed on the other side. The surfaces of slide rail block 2 and slide rail block 3 201 are smooth to reduce friction. The inner wall of the female head slot 103 is provided with slide rail groove 202 and slide rail groove 3 203, and its inner wall is also smooth. When the male head plug 101 is inserted into the female head slot 103, slide rail block 2 and slide rail block 3 201 slide in slide rail groove 202 and slide rail groove 3 203 respectively. A sealing gasket 1 is fixed on the side of the connector male head shell 1 near the connector female head shell 102, and a sealing gasket 2 is fixed on the side of the connector female head shell 102 near the connector male head shell 1. Both are made of polyurethane. When the male head is inserted into the female head, the sealing gasket 1 and sealing gasket 2 are squeezed against each other to form a tight sealing contact. The polyurethane material has good elasticity and wear resistance, and can maintain a stable sealing effect during insertion and removal.
[0032] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0033] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely preferred examples and are not intended to limit the utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. An HDMI connector stress-relieving snap-fit structure, comprising a male connector housing (1) and a female connector housing (102), wherein a male connector plug (101) is provided on one side of the male connector housing (1), and a female connector slot (103) is provided on one side of the female connector housing (102), characterized in that: The male connector plug (101) has a smooth surface, and the inner wall of the female connector slot (103) is smooth. A clamping plate (104) is fixed on one side of the male connector housing (1). A clamping groove (105) is formed through the clamping plate (104) from one side to the other. A clamping slide groove (106) is formed on both sides of the female connector housing (102). A slide groove one (107) is formed on the inner wall of the clamping slide groove (106). A slide groove two (108) is formed on the inner wall of the slide groove one (107). A release button (109) is slidably connected to the inner wall of the slide groove two (108). The inner wall of the second slide groove (108) is provided with a slide rail groove (110). The release button (109) is fixed with slide rail blocks (111) on both sides. The slide rail blocks (111) slide on the inner wall of the slide rail groove (110). A spring (112) is fixed on one side of the release button (109). The other end of the spring (112) is fixed to the inner wall of the second slide groove (108). A buckle plate (113) is fixed on one side of the release button (109). A buckle hook (114) is fixed on one side of the buckle plate (113). The buckle hook (114) is located on the inner wall of the clamping groove (105).
2. The HDMI connector stress-relieving snap-fit structure according to claim 1, characterized in that: The male connector plug (101) is fixed with a slide rail block two (2) on one side and a female connector shell (102) is fixed with the other side. The surfaces of the slide rail block two (2) and the slide rail block three (201) are smooth. The inner wall of the female connector slot (103) is provided with slide rail groove two (202) and slide rail groove three (203). The inner walls of the slide rail groove two (202) and the slide rail groove three (203) are smooth. The slide rail block two (2) slides on the inner wall of the slide rail groove two (202) and the slide rail block three (201) slides on the inner wall of the slide rail groove three (203).
3. The HDMI connector stress-relieving snap-fit structure according to claim 1, characterized in that: A sealing gasket is fixed on the side of the male connector housing (1) near the female connector housing (102), and a sealing gasket is fixed on the side of the female connector housing (102) near the male connector housing (1). Both the sealing gasket and the sealing gasket are made of polyurethane.
4. The HDMI connector stress-relieving snap-fit structure according to claim 1, characterized in that: Both the male connector housing (1) and the female connector housing (102) are transparent.
5. The HDMI connector stress-relieving snap-fit structure according to claim 1, characterized in that: The release button (109) has anti-slip texture (4) on the side away from the connector female housing (102).
6. The stress-relieving snap-fit structure for an HDMI connector according to claim 1, characterized in that: The inclined surface of the buckle hook (114) is smooth.
7. The HDMI connector stress-relieving snap-fit structure according to claim 1, characterized in that: The connector male housing (1) is fixed with a connecting wire cover (3) on the side away from the connector female housing (102) and the connector female housing (102) is fixed with a connecting wire cover (3) on the side away from the connector male housing (1).