Waterproof high-definition wire harness adapter applied to AI robot

By adopting the matching design of conductive columns and conductive slots in the waterproof high-definition wiring harness adapter for AI robots, and combining waterproof components and water absorption components, the problem of difficult to meet high-definition signal transmission and strong waterproof performance in the prior art is solved, and efficient waterproofness and signal stability are achieved.

CN119994543AInactive Publication Date: 2025-05-13GUANGZHOU ZYE ELECTRONIC TECH CO LTD

Patent Information

Application Number
CN202510465502.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-15
Publication Date
2025-05-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing waterproof high-definition wiring harness adapters are difficult to meet the needs of high-definition signal transmission and strong waterproof performance at the same time, and the structural design has problems with complex installation and unstable fixation methods, which affects the stability of signal transmission.

Method used

A waterproof high-definition wiring harness adapter including adapter plug and adapter is designed. It adopts a matching design of conductive posts and conductive slots, combining water barrier components and water absorption components to achieve efficient waterproof performance through automatic sealing, automatic adsorption and drying of moisture.

Benefits of technology

It improves the waterproofness of the adapter and the stability of signal transmission, extends the service life of the equipment, and avoids signal failures and equipment damage caused by moisture intrusion.

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Abstract

The invention relates to the technical field of wire harness adapters, in particular to a waterproof high-definition wire harness adapter applied to an AI robot. The device comprises an adapter plug and an adapter base, a conductive column is arranged at the end of the adapter plug, guide blocks are arranged on the two sides of the end of the conductive column, a conductive groove is formed in the adapter base, a water retaining assembly is arranged on the surface of the adapter plug and used for automatically sealing the guide groove in the end of the adapter base, and a water absorbing assembly is arranged in the water retaining assembly. When water flows through the check ring and the end of the adapter, the water flows through the surface of the ring pipe due to the fact that the groove is formed in the check ring and the ring pipe is arranged at the end of the groove, the water flows in from the through holes and is adsorbed by the sponge due to the fact that the multiple through holes are formed in the surface of the ring pipe, and meanwhile the ring pipe is subjected to the effect of the compression spring; and the side wall is always attached to the end part of the adapter, so that water flowing through a gap between the check ring and the adapter is completely adsorbed, and the waterproof effect of the adapter is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of wire harness adapters, and in particular to a waterproof high-definition wire harness adapter for use in AI robots. Background Art

[0002] With the rapid development of artificial intelligence (AI) and machine learning technologies, AI robots are increasingly being used in various fields. Such robots not only need to have a high degree of intelligence and precise motion control capabilities, but also need to be able to operate stably in various complex environments, including humid or watery environments. In these environments, traditional wiring harness adapters are prone to signal transmission failures or equipment damage due to moisture intrusion, which seriously affects the performance and reliability of AI robots.

[0003] At present, although there are some waterproof connectors on the market, they often cannot meet the requirements of high-definition signal transmission and strong waterproof performance at the same time. For example, although some industrial connectors have excellent waterproof and corrosion resistance, their designs tend to focus more on the reliability and mechanical strength of electrical connections, and may be lacking in high-definition signal transmission. On the other hand, some adapters designed for high-definition signal transmission, such as HDMI waterproof adapters, can provide good signal transmission quality, but their waterproof performance in extremely humid or underwater environments may still not be sufficient to meet the application requirements of AI robots.

[0004] In addition, existing waterproof high-definition harness adapters also have some shortcomings in structural design. For example, the sealing structure of some adapters may be too complicated, making installation and maintenance difficult; or their fixing method is not stable enough, and they are easily loosened due to vibration or impact during the movement of the robot, thereby affecting the stability of signal transmission.

[0005] The wiring harness is the overall service equipment for a certain load source group, such as relay lines, switching devices, control systems, etc. With the continuous development of automotive electronic technology, the types and number of vehicle-mounted electronic equipment are increasing. High-definition video transmission is increasingly widely used in vehicle entertainment systems, reversing images, driving recorders, etc. For adapters, when using vehicle-mounted adapters, drinking water during driving can easily cause water to splash onto the adapters, causing moisture damage. Therefore, waterproof high-definition wiring harness adapters are now mostly used for AI robots.

[0006] There are many existing technologies for adapters, such as: Chinese patent publication number CN215377818U discloses a wiring harness waterproof adapter, including a first terminal and a second terminal, the second terminal is provided with a conductive column inside, the first terminal port is provided with a conductive column slot, the inner wall of the second terminal is provided with a positioning convex strip, the outer side of the first terminal is provided with a positioning groove, the outer side of the first terminal is provided with a sealing ring, the outer side of the first terminal is installed with a first fixing ring, and the outer side of the second terminal is rotatably connected with a second fixing ring. The invention can fix the contact point between the first terminal and the second terminal through the coordinated setting of the sealing ring, the first fixing ring and the second fixing ring, while maintaining the seal, so that the adapter has good waterproof performance, and the positioning convex strip and the positioning groove are set to ensure that the conductive column is accurately inserted into the conductive column slot, which is convenient and quick to use, and improves the practicality of the adapter.

[0007] At present, during the use of traditional winding devices, a sealing ring is set at the adapter to block the water. During the process of fitting the sealing ring, professional personnel are required to fit it to avoid gaps during the fitting process, which affects the waterproof effect. Moreover, since the sealing ring is easily oxidized in the air, it needs to be replaced frequently, which increases the cost of use.

[0008] In view of this, we propose a waterproof high-definition wiring harness adapter for AI robots. Summary of the invention

[0009] The purpose of the present invention is to provide a waterproof high-definition wiring harness adapter for an AI robot to solve the problems raised in the above-mentioned background technology.

[0010] To achieve the above-mentioned purpose, the purpose of the present invention is to provide a waterproof high-definition wiring harness adapter for AI robots, including an adapter plug and an adapter seat, a conductive column is provided at the end of the adapter plug, guide blocks are provided on both sides of the end of the conductive column, a conductive groove is provided inside the adapter seat, the conductive column and the conductive groove are adapted to each other, a fixing groove is provided on the outer wall of the adapter seat, the fixing groove is symmetrical, a guide groove is provided at the end of the adapter seat, a steering groove is provided at the end of the guide groove, the guide block moves on the inner wall of the guide groove, a water retaining component is provided on the surface of the adapter plug, the water retaining component is used to automatically seal the guide groove at the end of the adapter seat, a water absorption component is provided inside the water retaining component, the water absorption component is used to automatically absorb and collect water dripping into the water retaining component, and automatically dry the collected water, a fixing component is provided on the top of the water retaining component, and the fixing component is used to fix the adapter plug and the adapter seat after the plug-in adaptation is completed.

[0011] As a further improvement of the technical solution, a rubber pad is provided at the end of the adapter plug. When the adapter plug is plugged into the adapter socket, the rubber pad is used to seal the gap between the conductive column and the conductive groove to isolate external dust from entering.

[0012] As a further improvement of the present technical solution, the water retaining assembly includes a column tube arranged at the end of the adapter plug, the column tube is symmetrically arranged on both sides of the adapter plug, a sliding column is slidably provided on the inner wall of the column tube, a moving block is provided at the end of the sliding column, a retaining ring is provided between the moving blocks, and the retaining ring is fitted with the end of the adapter seat.

[0013] As a further improvement of the technical solution, a telescopic spring is provided between the column tube and the sliding column, and the moving block is subjected to pressure to push the sliding column to slide on the inner wall of the column tube, and the sliding column squeezes the telescopic spring during the movement.

[0014] As a further improvement of the technical solution, the mating surface between the retaining ring and the end of the adapter seat is provided with a slope surface inclined from the outside to the inner ring core, the surface of the slope surface is provided with a groove, and a water absorption component is provided inside the groove, and the water absorption component is used to absorb water.

[0015] As a further improvement of the technical solution, the water absorption component includes a ring tube arranged at the end of the groove, the inside of the ring tube is hollow, the inside of the ring tube is filled with sponge, and a plurality of through holes are opened on the surface of the ring tube.

[0016] As a further improvement of the technical solution, a compression spring is provided between the groove and the coil tube. During the adaptation process of the adapter plug and the adapter seat, the coil tube is always tightly fitted with the end of the adapter seat due to the force of the compression spring.

[0017] As a further improvement of the technical solution, a ventilation groove is provided on the side of the retaining ring away from the adapter, and air passes through the ventilation groove to dry the sponge that absorbs water inside the ring tube, so that the sponge can be reused multiple times.

[0018] As a further improvement of the present technical solution, the fixing assembly includes a support column arranged on the top of the retaining ring, an arc-shaped clamping plate is rotatably provided on the surface of the support column, a torsion spring is provided on the surface of the support column, the two ends of the torsion spring are respectively connected to the support column and the arc-shaped clamping plate, and the bottom of the arc-shaped clamping plate is fixed to the bottom of the fixing groove.

[0019] Compared with the prior art, the present invention has the following beneficial effects: 1. In the waterproof high-definition harness adapter used for AI robots, when the guide block moves to the steering groove and rotates 90° to continue moving during the movement of the adapter plug, the retaining ring is squeezed by the end of the adapter seat, so that the moving blocks on both sides of the retaining ring drive the sliding column to slide on the inner wall of the column tube and squeeze the telescopic spring. When the conductive column moves and is plugged and fixed in the conductive groove, the telescopic spring is acted upon by the restoring force to give the sliding column a reverse force, so that the moving block at the end of the sliding column drives the retaining ring to always keep in contact with the end of the fixed groove, so that the retaining ring is in contact with and closed on the notch of the guide groove at the end of the adapter, thereby blocking external water and improving the waterproofness of the adapter.

[0020] 2. In the waterproof high-definition harness adapter used for AI robots, when water flows through the retaining ring and the end of the adapter, since there is a groove inside the retaining ring, a ring tube is provided at the end of the groove, and a sponge is provided inside the ring tube, when the water flows along the inner wall of the retaining ring, the water flows through the surface of the ring tube. Since there are multiple through holes on the surface of the ring tube, the water flows in from the through holes and is adsorbed by the sponge. At the same time, the ring tube is acted upon by the compression spring, and the side wall always keeps in contact with the end of the adapter, completely adsorbing the water flowing through the gap between the retaining ring and the adapter, thereby preventing the device from being damaged by moisture and improving the waterproof effect of the adapter.

[0021] 3. In the waterproof high-definition harness adapter used for AI robots, the guide block moves along the inner wall of the guide groove. When the guide block moves to the turning groove, the adapter plug is rotated to 90° and continues to move, so that the guide block moves along the inner wall of the guide groove to prevent the conductive column provided at the end of the adapter plug from being displaced when inserted into the conductive groove, causing uneven force on the pin to be damaged, thereby improving the service life of the adapter. At the same time, by arranging a rubber pad at the end of the adapter plug, when the conductive column is inserted into the conductive groove, the gap between them is sealed and isolated, so as to prevent dust from entering from the gap to hinder the normal transmission of the signal, thereby improving the stability of the adapter signal. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 It is a schematic diagram of the overall structure assembly of the present invention; Figure 2 is a cross-sectional view of the adapter of the present invention; Figure 3 It is a schematic diagram of the structure of the water retaining assembly of the present invention; Figure 4 For the present invention Figure 3 Schematic diagram of point A; Figure 5 It is a schematic diagram of the structure of the adapter plug of the present invention; Figure 6 It is a schematic diagram of the structure of the water absorption component of the present invention; Figure 7 It is a cross-sectional view of the water retaining assembly of the present invention; Figure 8 For the present invention Figure 7 Schematic diagram of point B; Fig. 9 It is a schematic diagram of the structure of the fixing component of the present invention.

[0023] The meaning of each number in the figure is: 100, adapter plug; 101, conductive column; 102, guide block; 103, rubber pad; 200, adapter; 201, conductive slot; 202, fixing slot; 203, guide slot; 204, steering slot; 300, water retaining assembly; 301, column; 302, sliding column; 303, telescopic spring; 304, moving block; 305, retaining ring; 306, groove; 307, air-permeable groove; 400, water absorption component; 401, coil; 402, sponge; 403, compression spring; 404, through hole; 500, fixing assembly; 501, supporting column; 502, arc-shaped clamping plate; 503, torsion spring. DETAILED DESCRIPTION

[0024] 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 described embodiments 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 creative work are within the scope of protection of the present invention.

[0025] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", "clockwise", "counterclockwise" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the referred device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present invention.

[0026] The purpose of this embodiment is to provide a waterproof high-definition wiring harness adapter for AI robots. Figure 1-Figure 9As shown, it includes an adapter plug 100 and an adapter seat 200, the end of the adapter plug 100 is provided with a conductive column 101, and the two sides of the end of the conductive column 101 are provided with guide blocks 102, the inside of the adapter seat 200 is provided with a conductive groove 201, the conductive column 101 and the conductive groove 201 are adapted, the outer wall of the adapter seat 200 is provided with a fixed groove 202, the fixed groove 202 is symmetrical, the end of the adapter seat 200 is provided with a guide groove 203, the end of the guide groove 203 is provided with a steering groove 204, the guide block 102 moves on the inner wall of the guide groove 203, and the adapter A water retaining assembly 300 is provided on the surface of the plug 100, and the water retaining assembly 300 is used to automatically seal the guide groove 203 at the end of the adapter seat 200. A water absorption assembly 400 is provided inside the water retaining assembly 300, and the water absorption assembly 400 is used to automatically absorb and collect water dripping into the water retaining assembly 300, and automatically dry the collected water. A fixing assembly 500 is provided on the top of the water retaining assembly 300, and the fixing assembly 500 is used to fix the adapter plug 100 and the adapter seat 200 after the plug-in adaptation is completed.

[0027] When water flows through the retaining ring 305 and the end of the adapter 200, since the retaining ring 305 is provided with a groove 306, the end of the groove 306 is provided with a ring tube 401, and the ring tube 401 is provided with a sponge 402, when the water flows along the inner wall of the retaining ring 305, the water flows through the surface of the ring tube 401. Since the surface of the ring tube 401 is provided with a plurality of through holes 404, the water flows in from the through holes 404 and is adsorbed by the sponge 402. At the same time, the ring tube 401 is acted upon by the compression spring 403, and the side wall always keeps in contact with the end of the adapter 200, and the water flowing through the gap between the retaining ring 305 and the adapter 200 is completely adsorbed, so as to prevent the device from being damaged by moisture and improve the waterproof effect of the adapter.

[0028] When the adapter is in use, due to the gap between the adapter plug 100 and the adapter seat 200, dust in the environment floats into the inside, and the dust will adhere to the metal contacts, pins, jacks and other parts of the adapter plug 100 or the adapter seat 200, hindering the normal transmission of current, resulting in unstable or interrupted signal transmission. Therefore, a rubber pad 103 is provided at the end of the adapter plug 100. When the adapter plug 100 is plugged into the inside of the adapter seat 200, the rubber pad 103 is used to seal the gap between the conductive column 101 and the conductive groove 201 to isolate external dust from entering. When the adapter plug 100 is inserted into the inside of the adapter seat 200, the guide block 102 moves along the conductive column 101 to seal the gap between the conductive column 101 and the conductive groove 201. The inner wall of the guide groove 203 moves, and when the guide block 102 moves to the turning groove 204, the adapter plug 100 is rotated to 90° and continues to move, so that the guide block 102 moves along the inner wall of the guide groove 203 to limit the movement, thereby preventing the conductive column 101 provided at the end of the adapter plug 100 from being displaced when inserted into the conductive groove 201, causing uneven force on the pin to be damaged, thereby improving the service life of the adapter. At the same time, by providing a rubber pad 103 at the end of the adapter plug 100, when the conductive column 101 is inserted into the conductive groove 201, the gap between them is sealed and isolated, thereby preventing dust from entering through the gap to hinder the normal transmission of the signal, thereby improving the stability of the adapter signal.

[0029] When the adapter plug 100 and the adapter seat 200 are adapted, since the end of the adapter seat 200 is provided with a guide groove 203, when the external water body is sprinkled on the surface of the adapter seat 200, the water body flows in along the inner wall of the notch of the guide groove 203, causing the adapter to short-circuit and damage. Therefore, the water retaining assembly 300 includes a column 301 provided at the end of the adapter plug 100, and the column 301 is symmetrically arranged on both sides of the adapter plug 100, and the inner wall of the column 301 is slidingly provided. There is a slide post 302, a moving block 304 is provided at the end of the slide post 302, a retaining ring 305 is provided between the moving blocks 304, the retaining ring 305 is fitted with the end of the adapter 200, a telescopic spring 303 is provided between the column tube 301 and the slide post 302, the moving block 304 is pressed to push the slide post 302 to slide on the inner wall of the column tube 301, and the slide post 302 squeezes the telescopic spring 303 during the movement. When the guide block 102 at the end of the adapter plug 100 moves along the guide block 102, the adapter plug 100 is connected to the adapter 200. When the adapter plug 100 is inserted into the inner wall of the groove 203 into the adapter 200, during the movement of the adapter plug 100, the retaining ring 305 fits the end of the adapter 200. When the guide block 102 moves to the steering groove 204 and rotates 90° to continue moving, the retaining ring 305 is squeezed by the end of the adapter 200, so that the moving blocks 304 provided on both sides of the retaining ring 305 drive the sliding column 302 to slide on the inner wall of the column tube 301 and squeeze the telescopic spring 303. When the conductive column 101 moves and is plugged and fixed in the conductive groove 201, the telescopic spring 303 is acted upon by the restoring force to give the sliding column 302 a reverse force, so that the moving block 304 provided at the end of the sliding column 302 drives the retaining ring 305 to always keep in contact with the end of the fixed groove 202, so that the retaining ring 305 fits and closes the notch of the guide groove 203 at the end of the adapter 200, blocks the external water body, improves the waterproofness of the adapter 200, and improves the service life of the device.

[0030] Considering that when there is a lot of external water flow, in order to prevent a small amount of water from flowing into the gap between the retaining ring 305 and the adapter 200, causing the equipment to be damaged by moisture and short circuit, the retaining ring 305 and the adapter 200 end fitting surface are provided with a slope surface inclined from the outside to the inner ring core, and a groove 306 is provided on the surface of the slope surface. A water absorption component 400 is provided inside the groove 306. The water absorption component 400 is used to absorb the water. The water absorption component 400 includes a ring tube 401 provided at the end of the groove 306. The inside of the ring tube 401 is hollow and filled with Sponge 402, a plurality of through holes 404 are provided on the surface of the circle tube 401, the water absorbing component 400 includes a circle tube 401 arranged at the end of the groove 306, the inside of the circle tube 401 is hollow, the inside of the circle tube 401 is filled with sponge 402, and a plurality of through holes 404 are provided on the surface of the circle tube 401. Since the end face of the side adjacent to the retaining ring 305 and the adapter 200 is provided with a slope surface inclined from the outside to the inner ring core, therefore, when there is more water flow at the ends of the retaining ring 305 and the adapter 200, the water flow will flow along a path with less resistance when subjected to gravity. In the case of a slope and a vertical slope, the slope surface provides a downward oblique channel for the water flow, while the vertical surface is nearly perpendicular to the ground, and the water flow on the vertical surface is mainly affected by the downward force of gravity, and it is difficult to effectively guide the flow in directions other than the vertical direction. According to the basic principles of fluid mechanics, the fluid, here water, tends to flow in the direction where its potential energy decreases fastest during the flow process. For the slope surface, the direction in which its potential energy decreases is downward along the slope, and the water flow can flow naturally along the slope; while the direction in which the potential energy of the vertical surface decreases is vertically downward, and it is difficult for the water flow to have an obvious lateral flow on the vertical surface. Therefore, when the water flow passes through the retaining ring 305 and the end of the adapter 200, the water flow is large. Part of the water flows along the slope surface of the retaining ring 305. Since a groove 306 is provided inside the retaining ring 305, a ring tube 401 is provided at the end of the groove 306, and a sponge 402 is provided inside the ring tube 401, when the water flows along the inner wall of the retaining ring 305, the water flows through the surface of the ring tube 401. Since a plurality of through holes 404 are provided on the surface of the ring tube 401, the water flows in from the through holes 404 and is adsorbed by the sponge 402. At the same time, the ring tube 401 is acted upon by the compression spring 403, and the side wall always keeps in contact with the end of the adapter 200, so that the water flowing through the gap between the retaining ring 305 and the adapter 200 is completely adsorbed, thereby preventing the device from being damaged by moisture and improving the waterproof effect of the adapter.

[0031] When water is absorbed inside the sponge 402, in order to improve the waterproof effect, the water absorbed inside the sponge 402 needs to be dried quickly. Therefore, a ventilation groove 307 is provided on the side of the retaining ring 305 away from the adapter 200. The air dries the sponge 402 absorbed with water inside the circle tube 401 through the ventilation groove 307, so that the sponge 402 can be reused multiple times. By providing the ventilation groove 307 on one side of the retaining ring 305, the flow of external air into the sponge 402 inside the circle tube 401 is accelerated, so that the external air drives the water vapor absorbed in the sponge 402, and the drying speed of the sponge 402 is accelerated, so that the sponge 402 can be reused multiple times.

[0032] When the conductive column 101 and the conductive slot 201 are adapted, the retaining ring 305 is attached to the end of the adapter 200. Since the sliding column 302 provided at the end of the moving block 304 on both sides of the retaining ring 305 is acted upon by the restoring force of the telescopic spring 303, the retaining ring 305 gives a reverse force to the end of the adapter 200 to push it, which may cause the conductive column 101 and the conductive slot 201 to loosen during the adaptation process, affecting the transfer effect. Therefore, the fixing assembly 500 includes a support column 501 provided on the top of the retaining ring 305, and the support column 501 is provided on the top of the retaining ring 305. 01 surface is provided with an arc-shaped clamping plate 502 for rotation, and a torsion spring 503 is provided on the surface of the support column 501. The two ends of the torsion spring 503 are respectively connected to the support column 501 and the arc-shaped clamping plate 502. The bottom of the arc-shaped clamping plate 502 is fixed to the bottom of the fixed groove 202. When the conductive column 101 and the conductive groove 201 are adapted, the arc-shaped clamping plate 502 is directly clamped on the inner wall of the fixed groove 202 by the force of the torsion spring 503, thereby fixing the axial position of the conductive column 101 and the conductive groove 201, improving the stability of the plug-in and ensuring the transfer effect.

[0033] In summary, the working principle of the present invention is as follows: when in use, the guide block 102 moves along the inner wall of the guide slot 203, and when the guide block 102 moves to the turning slot 204, the adapter plug 100 is rotated to 90° and continues to move, so that the guide block 102 moves along the inner wall of the guide slot 203 to prevent the conductive column 101 provided at the end of the adapter plug 100 from being offset when inserted into the conductive slot 201, resulting in uneven force on the pins and damage, thereby improving the service life of the adapter. At the same time, by providing a rubber pad 103 at the end of the adapter plug 100, when the conductive column 101 is inserted into the conductive slot 201, the gap between them is sealed and isolated, so as to prevent dust from entering from the gap to hinder the normal transmission of the signal, thereby improving the stability of the adapter signal; When the adapter plug 100 moves, the retaining ring 305 fits the end of the adapter seat 200. When the guide block 102 moves to the steering groove 204 and rotates 90 degrees to continue moving, the retaining ring 305 is squeezed by the end of the adapter seat 200, so that the moving blocks 304 on both sides of the retaining ring 305 drive the sliding column 302 to slide on the inner wall of the column tube 301 and squeeze the telescopic spring 303. When the conductive column 101 moves and is plugged and fixed in the conductive groove 201, the telescopic spring 303 is acted upon by the restoring force to give the sliding column 302 a reverse force, so that the moving block 304 at the end of the sliding column 302 drives the retaining ring 305 to always keep in contact with the end of the fixed groove 202, so that the retaining ring 305 fits and closes the notch of the guide groove 203 at the end of the adapter seat 200, thereby blocking the external water body and improving the conversion. The waterproof property of the adapter 200 improves the service life of the device. When water flows through the retaining ring 305 and the end of the adapter 200, most of the water flows along the slope surface of the retaining ring 305. Since the retaining ring 305 is provided with a groove 306, a ring tube 401 is provided at the end of the groove 306, and a sponge 402 is provided inside the ring tube 401, when the water flows along the inner wall of the retaining ring 305, the water flows through the surface of the ring tube 401. Since a plurality of through holes 404 are provided on the surface of the ring tube 401, the water flows in from the through holes 404 and is adsorbed by the sponge 402. At the same time, the ring tube 401 is acted upon by the compression spring 403, and the side wall always keeps in contact with the end of the adapter 200, and completely adsorbs the water flowing through the gap between the retaining ring 305 and the adapter 200, thereby preventing the device from being damaged by moisture and improving the waterproof effect of the adapter. When the conductive column 101 and the conductive slot 201 are adapted, the arc-shaped card plate 502 is directly clamped on the inner wall of the fixed slot 202 by the force of the torsion spring 503, thereby fixing the axial position of the conductive column 101 and the conductive slot 201, improving the stability of the plug-in connection, and ensuring the switching effect. When the adapter plug 100 needs to be replaced and maintained, the arc-shaped card plate 502 is moved to rotate on the surface of the support column 501, so that the arc-shaped card plate 502 is away from the inner wall of the fixed slot 202, thereby quickly pulling out the adapter plug 100.

[0034] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. The above embodiments and descriptions are only preferred examples of the present invention and are not intended to limit the present invention. Without departing from the spirit and scope of the present invention, the present invention may have various changes and improvements, which fall within the scope of the present invention. The scope of protection of the present invention is defined by the attached claims and their equivalents.

Claims

1. A waterproof high-definition harness adapter for AI robots, characterized by: The invention comprises an adapter plug (100) and an adapter seat (200), wherein a conductive column (101) is provided at the end of the adapter plug (100), guide blocks (102) are provided on both sides of the end of the conductive column (101), a conductive slot (201) is provided inside the adapter seat (200), the conductive column (101) and the conductive slot (201) are adapted to each other, a fixing slot (202) is provided on the outer wall of the adapter seat (200), the fixing slot (202) is symmetrical, a guide slot (203) is provided at the end of the adapter seat (200), a steering slot (204) is provided at the end of the guide slot (203), and the guide block (102) moves in the guide slot (203) to rotate. ) inner wall, the surface of the adapter plug (100) is provided with a water retaining assembly (300), the water retaining assembly (300) is used to automatically seal the guide groove (203) at the end of the adapter seat (200), the water retaining assembly (300) is provided with a water absorbing assembly (400) inside, the water absorbing assembly (400) is used to automatically absorb and collect water that drips into the water retaining assembly (300), and automatically dry the collected water, the top of the water retaining assembly (300) is provided with a fixing assembly (500), the fixing assembly (500) is used to fix the adapter plug (100) and the adapter seat (200) after the plug-in adaptation is completed.

2. The waterproof high-definition wiring harness adapter for AI robots according to claim 1, characterized in that: A rubber pad (103) is provided at the end of the adapter plug (100); when the adapter plug (100) is plugged into the inside of the adapter seat (200), the rubber pad (103) is used to seal the gap between the conductive column (101) and the conductive slot (201) to isolate external dust from entering.

3. The waterproof high-definition wiring harness adapter for AI robots according to claim 1, characterized in that: The water retaining assembly (300) comprises a column (301) arranged at the end of the adapter plug (100), the column (301) being symmetrically arranged on both sides of the adapter plug (100), a sliding column (302) being slidably provided on the inner wall of the column (301), a moving block (304) being provided at the end of the sliding column (302), a retaining ring (305) being provided between the moving blocks (304), and the retaining ring (305) being in contact with the end of the adapter seat (200).

4. The waterproof high-definition harness adapter for AI robots according to claim 3 is characterized by: A telescopic spring (303) is provided between the column tube (301) and the sliding column (302), and the moving block (304) is pressed to push the sliding column (302) to slide on the inner wall of the column tube (301), and the sliding column (302) compresses the telescopic spring (303) during the movement.

5. The waterproof high-definition harness adapter for AI robots according to claim 3, characterized in that: The mating surface between the retaining ring (305) and the end of the adapter seat (200) is provided with a slope surface inclined from the outside to the inner ring core, and the surface of the slope surface is provided with a groove (306). A water absorption component (400) is provided inside the groove (306). The water absorption component (400) is used to absorb water.

6. The waterproof high-definition wiring harness adapter for AI robots according to claim 1, characterized in that: The water absorption component (400) comprises a ring tube (401) arranged at the end of the groove (306); the interior of the ring tube (401) is hollow; the interior of the ring tube (401) is filled with sponge (402); and a plurality of through holes (404) are provided on the surface of the ring tube (401).

7. The waterproof high-definition harness adapter for AI robots according to claim 5, characterized in that: A compression spring (403) is provided between the groove (306) and the ring tube (401); during the adaptation process of the adapter plug (100) and the adapter seat (200), the ring tube (401) is always tightly fitted with the end of the adapter seat (200) due to the force of the compression spring (403).

8. The waterproof high-definition harness adapter for AI robots according to claim 5, characterized in that: A ventilation groove (307) is provided on the side of the retaining ring (305) away from the adapter (200), and air passes through the ventilation groove (307) to dry the sponge (402) that absorbs water inside the ring tube (401), thereby facilitating repeated use of the sponge (402).

9. The waterproof high-definition wiring harness adapter for AI robots according to claim 1, characterized in that: The fixing assembly (500) comprises a support column (501) arranged on the top of the retaining ring (305); an arc-shaped clamping plate (502) is rotatably provided on the surface of the support column (501); a torsion spring (503) is provided on the surface of the support column (501); two ends of the torsion spring (503) are respectively connected to the support column (501) and the arc-shaped clamping plate (502); and the bottom of the arc-shaped clamping plate (502) is fixed to the bottom of the fixing groove (202).

Citation Information

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