Dustproof new energy automobile Ethernet connector

By integrating dust prevention and suction mechanisms, the problem of dust entering and accumulating in the Ethernet connectors of new energy vehicles is solved, achieving dust prevention and suction of the connection ports, thereby improving signal quality and usability.

CN121507482APending Publication Date: 2026-02-10广州贝兴电子科技有限公司
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Patent Information

Application Number
CN202511512146.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-22
Publication Date
2026-02-10

AI Technical Summary

Technical Problem

Existing Ethernet connectors for new energy vehicles are prone to dust accumulation during use because the connection ports are open, leading to reduced connection accuracy and poor signal strength. Furthermore, dust accumulation after the data cable is unplugged exacerbates contamination.

Method used

It adopts an integrated dustproof and dust suction mechanism, including a dust cover, a reset spring rod, a guide roller and a gas storage bladder. It achieves dustproof and dust suction at the connection port through negative pressure adsorption, preventing dust from entering and accumulating.

Benefits of technology

The dustproof effect of the connection port is improved, avoiding poor contact caused by dust, ensuring signal stability, and extending the service life of the Ethernet connector.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a dustproof new energy automobile Ethernet connector, and relates to the technical field of Ethernet connectors, the dustproof new energy automobile Ethernet connector comprises a mounting shell, a connecting port is arranged in the mounting shell, a dustproof and dust collection integrated mechanism is arranged at the position, located on the periphery of the connecting port, of the mounting shell, and the dustproof and dust collection integrated mechanism comprises two inner connecting plates. According to the dustproof Ethernet connector for the new energy automobile, when the connecting port is in an idle state, the dustproof cover is closed under pushing of the reset spring rod, so that dust prevention in the connecting port is achieved, when the connecting port is used, after the insertion end makes contact with the flow guide roller on the pressing moving plate, the flow guide roller is squeezed into the connecting port, and therefore dust prevention is achieved. And when the insertion end and the connection port are in butt joint, the dustproof cover realizes dust prevention on the periphery of the butt joint position of the insertion end and the connection port, so that the dustproof effect of the connection port is improved, and the situation that dust enters the connection port to cause poor contact is avoided.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of Ethernet connectors, in particular to a dustproof Ethernet connector for new energy vehicles. BACKGROUND

[0002] The intelligence of new energy vehicles, such as advanced auxiliary driving and ultra-high-definition vehicle entertainment systems, is backed by the transmission of massive amounts of data, and the vehicle Ethernet connector is the key to ensuring the high-speed and stable circulation of these data.

[0003] The existing Ethernet connector for new energy vehicles has an open connection port, which allows dust to enter the connection port, reducing the connection accuracy and causing signal differences when the connection port is connected to a data line. Moreover, after the data line is pulled out of the connection port, some dust carried by the data line will remain in the connection port, further exacerbating the dust pollution of the connection port and reducing the use value of the Ethernet connector for new energy vehicles. SUMMARY

[0004] The present application discloses a dustproof Ethernet connector for new energy vehicles, which aims to solve the technical problem of the existing Ethernet connector for new energy vehicles, which has an open connection port that allows dust to enter the connection port, reducing the connection accuracy and causing signal differences when the connection port is connected to a data line. Moreover, after the data line is pulled out of the connection port, some dust carried by the data line will remain in the connection port, further exacerbating the dust pollution of the connection port and reducing the use value of the Ethernet connector for new energy vehicles.

[0005] To achieve the above purpose, the present application adopts the following technical scheme: A dustproof Ethernet connector for new energy vehicles, comprising a mounting shell, the mounting shell is provided with a connection port inside, and the mounting shell is provided with a dust and suction integrated mechanism outside the connection port, the dust and suction integrated mechanism comprises two inner connecting plates, and the two inner connecting plates are fixedly connected to the inner walls of the mounting shell on both sides, the opposite side of the two inner connecting plates is fixedly connected with the same outer sleeve ring, the two inner connecting plates and the outer sleeve ring are provided with connecting sliding grooves, the inner part of the two connecting sliding grooves is slidably connected with connecting sliding blocks, and the side of the two connecting sliding blocks facing away from the mounting shell is fixedly connected with connecting blocks, the two connecting blocks are fixedly connected with dust covers, the side of the two connecting sliding blocks away from the dust covers is fixedly connected with reset spring rods, and the end part of the two reset spring rods is fixedly connected with matching blocks, the matching blocks are fixedly connected to the inner connecting plates, the side of the two dust covers facing away from the mounting shell is fixedly connected with pressing moving plates, and the two pressing moving plates are provided with mounting grooves, and the inner part of the two mounting grooves is connected with guide rollers through bearings at equal distances.

[0006] In an preferred scheme, two said inner plates are fixedly connected with a same gas storage bag away from one side of the dust cover, and two dust covers are provided with two docking holes, and each docking hole is fixedly connected with a suction pipe, one end of the suction pipe is inserted into the gas storage bag, and the suction pipe is connected with a one-way valve I through a flange away from the outer side wall of the gas storage bag.

[0007] In an preferred scheme, two said inner plates are fixedly connected with a same gas storage bag away from one side of the dust cover, and two dust covers are provided with two docking holes, and each docking hole is fixedly connected with a suction pipe, one end of the suction pipe is inserted into the gas storage bag, and the suction pipe is connected with a one-way valve I through a flange away from the outer side wall of the gas storage bag.

[0008] In an preferred scheme, said mounting shell is provided with a guide positioning mechanism near the open end, and the guide positioning mechanism comprises a guide ring frame, two limiting sliding grooves are formed in the inner walls on both sides of the mounting shell at the open end, each limiting sliding groove is slidably connected with a limiting sliding block, and the two limiting sliding blocks on one side are fixedly connected with a same integrated rod.

[0009] In an preferred scheme, two said integrated rods are fixedly connected with a guide rod away from one side of the open end of the mounting shell, and the end of each guide rod is fixedly connected with an external rod, the guide ring frame is fixedly connected to the opposite side of the two external rods, the inner ring surface of the guide ring frame is fixedly connected with a squeeze air bag, the outer side wall of the squeeze air bag away from the upper side is provided with a gas hole, the inner side of the gas hole is fixedly connected with a connecting air pipe, and the open end of the connecting air pipe is screwed with a pipe cover.

[0010] In an preferred scheme, said mounting shell is provided with a guide positioning mechanism near the open end, and the guide positioning mechanism comprises a guide ring frame, two limiting sliding grooves are formed in the inner walls on both sides of the mounting shell at the open end, each limiting sliding groove is slidably connected with a limiting sliding block, and the two limiting sliding blocks on one side are fixedly connected with a same integrated rod.

[0011] In an preferred scheme, said guide ring frame is fixedly connected with an inclined flow guide ring frame away from one side of the connecting port, and the inclined flow guide ring frame is fixedly connected with a positioning ring frame, a plurality of groups of positioning spring rods are fixedly connected to the inner ring surface of the positioning ring frame, one end of each group of positioning spring rods is fixedly connected with a same positioning plate, the two sides of the positioning plate are fixedly connected with a drainage piece, the outer side wall of the positioning plate between each group of positioning spring rods is fixedly connected with a telescopic connecting rod, and one end of the telescopic connecting rod is fixedly connected to the inner ring surface of the positioning ring frame.

[0012] In a preferred scheme, the mounting shell is provided with receiving grooves on both sides near the open end, and wire positioning and clamping mechanisms are arranged on the two receiving grooves, the wire positioning and clamping mechanism comprising an adjusting rail, the upper and lower ends of the adjusting rail being connected to the top inner wall and the bottom inner wall of the receiving groove through bearings.

[0013] In a preferred scheme, the inside of the adjusting rail is slidably connected with two sliding long rods, the end of each of the two sliding long rods is fixedly connected with an intermediate plate, the side close to the lower side of the intermediate plate is fixedly connected with a lower collar, the side close to the upper side of the intermediate plate is hingedly connected with an upper collar, the outer side wall away from the intermediate plate of the upper collar and the lower collar is fixedly connected with a flow guide arc rod, the inner annular surface of the upper collar and the lower collar is provided with a filling air bag, the top of the intermediate plate is fixedly connected with an arc-shaped abutting plate, the arc surface of the arc-shaped abutting plate facing the upper collar is fixedly connected with a connecting spring at equal distances, and one end of the connecting spring is fixedly connected to the outer side wall of the upper collar.

[0014] In a preferred scheme, the bottom of the adjusting rail between the two sliding long rods is fixedly connected with a supporting plate, the top of the supporting plate is provided with a positioning sliding groove, the inside of the positioning sliding groove is slidably connected with a positioning sliding rod, the top of the positioning sliding rod is fixedly connected with a circular ring pressing plate, the top of the supporting plate close to the adjusting rail is fixedly connected with a fixed plate, one side of the fixed plate is connected with a winding roller through a bearing, the circular ring pressing plate passes through the winding roller, one side of the fixed plate facing the circular ring pressing plate is fixedly connected with two extrusion spring rods, and one end of each of the two extrusion spring rods is fixedly connected to one side of the circular ring pressing plate.

[0015] As can be seen from the above, the dustproof new energy automobile Ethernet connector provided by the application has the following technical effects: when the connecting port is in an idle state, the dust cover is closed under the pushing of the reset spring rod, thereby realizing dustproof of the inside of the connecting port; when the connecting port is in use, the insertion end is in contact with the flow guide roller on the pressing moving plate and is extruded into the connecting port, the pressing moving plate compresses the reset spring rod, and when the insertion end is connected with the connecting port, the dust cover realizes dustproof of the periphery of the connection position of the insertion end and the connecting port, thereby improving the dustproof effect of the connecting port and avoiding the entry of dust into the connecting port to cause poor contact. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 The figure is a schematic diagram of the overall structure of the dustproof new energy automobile Ethernet connector.

[0017] Figure 2 The figure is a sectional view of the mounting shell structure of the dustproof new energy automobile Ethernet connector.

[0018] Figure 3 The figure is a sectional view of the mounting shell structure of the dustproof new energy automobile Ethernet connector. Figure 1The overall planar structure schematic diagram of the application.

[0019] Figure 4 The internal structure schematic diagram of the mounting shell of the dustproof new energy vehicle Ethernet connector is proposed in the application.

[0020] Figure 5 The dustproof and dust collection integrated mechanism schematic diagram of the dustproof new energy vehicle Ethernet connector is proposed in the application.

[0021] Figure 6 The overall structure flip chart of the application. Figure 5

[0022] Figure 7 The guiding and positioning mechanism schematic diagram of the dustproof new energy vehicle Ethernet connector is proposed in the application.

[0023] Figure 8 The guiding ring frame and positioning ring frame structure sectional view of the dustproof new energy vehicle Ethernet connector is proposed in the application.

[0024] Figure 9 The wire positioning and clamping mechanism schematic diagram of the dustproof new energy vehicle Ethernet connector is proposed in the application.

[0025] Figure 10 The overall structure flip chart of the application. Figure 9 The upper sleeve ring, lower sleeve ring and sliding long rod combined structure enlarged view in the application.

[0026] ​In the figure: 1, mounting shell; 2, wire positioning and clamping mechanism; 201, adjusting rail; 202, upper collar; 203, support plate; 204, round ring pressing plate; 205, winding roller; 206, positioning sliding groove; 207, positioning sliding rod; 208, filling air bag; 209, fixed plate; 210, extrusion spring rod; 211, sliding long rod; 212, arc-shaped resisting plate; 213, middle plate; 214, lower collar; 215, flow guide arc rod; 216, connecting spring; 3, limiting sliding groove; 4, guiding and positioning mechanism; 401, guiding ring frame; 402, limiting sliding block; 403, extrusion air bag; 404, clamping rod; 405, unfolding spring rod; 406, end block; 407, external connecting rod; 408, lock hole; 409, pipe cover; 410, connecting air pipe; 411, positioning ring frame; 412, lock block; 413, leading-out rod; 414, integrated rod; 415, inclined flow guide ring frame; 416, positioning plate; 417, drainage sheet; 418, telescopic connecting rod; 419, positioning spring rod; 5, storage groove; 6, connecting port; 7, dustproof and dust collection integrated mechanism; 701, internal connecting plate; 702, pull rod; 703, gas storage bag; 704, extrusion ball; 705, external collar frame; 706, air suction pipe; 707, reset spring rod; 708, pressing moving plate; 709, flow guide roller; 710, dustproof cover; 711, connecting block; 712, connecting sliding block; 713, matching block; 714, connecting sliding groove; 715, one-way valve I; 716, reciprocating ring; 717, exhaust pipe; 718, one-way valve II. DETAILED DESCRIPTION

[0027] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all.

[0028] The dustproof new energy vehicle Ethernet connector disclosed in the present application is mainly applied to the existing new energy vehicle Ethernet connector in use. Since the connection port is in an open state, dust is easy to enter the inside of the connection port. The existence of dust reduces the connection precision, causes the problem of signal difference after the connection port is connected with the data line, and after the data line is pulled out of the connection port, part of the dust carried by the data line is retained in the inside of the connection port, further aggravating the scene of dust pollution of the connection port.

[0029] REFERENCE Figures 1-10The dustproof new energy vehicle Ethernet connector, which comprises a mounting shell 1, a connecting port 6 is arranged in the mounting shell 1, a dustproof and dust collection integrated mechanism 7 is arranged at the periphery of the connecting port 6, the dustproof and dust collection integrated mechanism 7 comprises two inner connecting plates 701, the two inner connecting plates 701 are fixedly connected to the inner walls of the two sides of the mounting shell 1, the same outer sleeve ring frame 705 is fixedly connected to the opposite sides of the two inner connecting plates 701, connecting sliding grooves 714 are formed in the two inner connecting plates 701 and the outer sleeve ring frame 705, connecting sliding blocks 712 are slidably connected to the interiors of the two connecting sliding grooves 714, connecting blocks 711 are fixedly connected to the sides of the two connecting sliding blocks 712, which face the exterior of the mounting shell 1, dustproof covers 710 are fixedly connected to the two connecting blocks 711, reset spring rods 707 are fixedly connected to the sides of the two connecting sliding blocks 712, which are away from the dustproof covers 710, matching blocks 713 are fixedly connected to the ends of the two reset spring rods 707, the matching blocks 713 are fixedly connected to the inner connecting plates 701, pressing moving plates 708 are fixedly connected to the sides of the two dustproof covers 710, which face the exterior of the mounting shell 1, and flow guide rollers 709 are rotatably connected to the interiors of the two pressing moving plates 708 through bearings.

[0030] In a specific application scenario, when the connecting port 6 is in an idle state, the dustproof cover 710 is closed under the pushing of the reset spring rod 707, so as to realize dustproof of the interior of the connecting port 6, when the connecting port 6 is used, after the insertion end contacts the flow guide roller 709 on the pressing moving plate 708 and is pressed into the connecting port 6, the pressing moving plate 708 compresses the reset spring rod 707, when the insertion end is connected with the connecting port 6, the dustproof cover 710 realizes dustproof of the periphery of the connection position of the insertion end and the connecting port 6, so as to improve the dustproof effect of the connecting port 6, avoid dust from entering the connecting port 6 to cause poor contact, and improve the use value of the Ethernet connector.

[0031] Specifically, after the insertion end is pulled out, the dustproof cover 710 is reset under the driving of the reset spring rod 707, the operator pulls the pull rod 702, the pull rod 702 drives the pressing ball 704 on the reciprocating ring 716 to press the gas in the gas storage bag 703, the gas in the gas storage bag 703 is discharged through the exhaust pipe 717, after the pressing ball 704 is separated from the gas storage bag 703, the suction pipe 706 sucks the gas in the connecting port 6 and the dust carried by the gas into the gas storage bag 703, under the reciprocating operation, the dust in the connecting port 6 is treated by negative pressure adsorption, the dust retention is avoided to cause poor contact after next connection, and the dustproof effect of the Ethernet connector is further improved.

[0032] Reference Figures 1-6In one preferred implementation, the two inner connecting plates 701 are fixedly connected with the same gas storage bag 703 away from one side of the dust cover 710, and two docking holes are opened on each of the two dust covers 710, and a gas suction pipe 706 is fixedly connected inside each of the docking holes, one end of the gas suction pipe 706 is inserted into the inside of the gas storage bag 703, and a one-way valve I 715 is connected to the outer side wall of the gas suction pipe 706 close to the gas storage bag 703 through a flange, and the one-way valve I 715 is directed from the inside of the gas suction pipe 706 to the inside of the gas storage bag 703.

[0033] Referring to Figure 5 and Figure 6 In one preferred implementation, sliding holes are opened on the two inner connecting plates 701, and the same pull rod 702 is slidingly connected inside the two sliding holes, the end of the pull rod 702 is fixedly connected with a reciprocating ring 716, the reciprocating ring 716 is annularly distributed with extrusion balls 704 on the side facing the gas storage bag 703, two exhaust holes are opened on the side of the gas storage bag 703 away from the dust cover 710, and an exhaust pipe 717 is fixedly connected inside each of the two exhaust holes, a one-way valve II 718 is connected to each of the two exhaust pipes 717 through a flange, and the one-way valve II 718 is directed from the inside of the gas storage bag 703 to the outside of the gas storage bag 703.

[0034] Referring to Figure 1 , Figure 2 , Figure 4 and Figure 7 In one preferred implementation, the mounting shell 1 is provided with a guide positioning mechanism 4 close to the open end, the guide positioning mechanism 4 includes a guide ring frame 401, two limiting sliding grooves 3 are opened on the inner walls of the mounting shell 1 on both sides of the open end, a limiting sliding block 402 is slidingly connected inside each of the limiting sliding grooves 3, and the same integrated rod 414 is fixedly connected to the two limiting sliding blocks 402 on one side.

[0035] Specifically, when the insertion end is docked with the connection port 6, the insertion end enters the positioning ring frame 411 through the guide ring frame 401 and the inclined flow guide ring frame 415, and in the process of gradually moving into the connection port 6, the positioning spring rod 419 drives the positioning plate 416 to position and clamp the periphery, at the same time, the extrusion air bag 403 improves the reinforcing effect, avoids the insertion end and the connection port 6 from being loose and separated due to pulling at the docking position, and improves the docking effect.

[0036] It should be noted that when the insertion end is separated from the connection port 6, the lock block 412 is rotated by 90°, and then the plurality of unfolded spring rods 405 are gradually unfolded, so as to drive the guide ring frame 401 and the positioning ring frame 411 to elastically move outwardly of the mounting shell 1, avoiding damage to the insertion end and the connection port 6 caused by hard pulling.

[0037] Referring to Figure 7 andFigure 8 In one preferred embodiment, the two integrated rods 414 are fixedly connected with a lead-out rod 413 on the side facing the open end of the mounting shell 1, and the ends of the two lead-out rods 413 are fixedly connected with an external rod 407, the guide ring frame 401 is fixedly connected to the opposite side of the two external rods 407, the inner ring surface of the guide ring frame 401 is fixedly connected with a squeeze air bag 403, the squeeze air bag 403 is provided with a gas hole on the outer side wall facing upward, and the inside of the gas hole is fixedly connected with a connecting air pipe 410, and the open end of the connecting air pipe 410 is screwed with a pipe cap 409.

[0038] Referring to Figure 7 In one preferred embodiment, the side inner wall of the mounting shell 1 at each limiting sliding groove 3 is fixedly connected with an end block 406, and one side of the end block 406 is fixedly connected with a clamping rod 404, and the side wall of the integrated rod 414 at each clamping rod 404 is provided with a lock hole 408, and one end of the clamping rod 404 passing through the lock hole 408 is connected with a lock block 412 through a bearing, and one side of the limiting sliding block 402 facing the inside of the limiting sliding groove 3 is fixedly connected with an unfolding spring rod 405, and one end of the unfolding spring rod 405 is fixedly connected to the inside of the limiting sliding groove 3.

[0039] Referring to Figure 8 In one preferred embodiment, the side of the guide ring frame 401 facing the connecting port 6 is fixedly connected with an inclined flow guide ring frame 415, and one side of the inclined flow guide ring frame 415 is fixedly connected with a positioning ring frame 411, and the inner ring surface of the positioning ring frame 411 is fixedly connected with a plurality of groups of positioning spring rods 419, one end of each group of positioning spring rods 419 is fixedly connected with the same positioning plate 416, both sides of the positioning plate 416 are fixedly connected with a drainage piece 417, and the outer side wall of the positioning plate 416 between each group of positioning spring rods 419 is fixedly connected with a telescopic connecting rod 418, and one end of the telescopic connecting rod 418 is fixedly connected to the inner ring surface of the positioning ring frame 411.

[0040] Referring to Figure 1 , Figure 2 and Figure 9 In one preferred embodiment, the two sides of the mounting shell 1 close to the open end are provided with a receiving groove 5, and each of the two receiving grooves 5 is provided with a wire positioning and clamping mechanism 2, and the wire positioning and clamping mechanism 2 comprises an adjusting rail 201, and the upper and lower ends of the adjusting rail 201 are connected to the top inner wall and the bottom inner wall of the receiving groove 5 through bearings.

[0041] It should be noted that after the insertion end is connected with the connecting port 6, the corresponding wire positioning and clamping mechanism 2 is flipped to the outside according to the guiding direction of the insertion end, and the other wire positioning and clamping mechanism 2 is received in the receiving groove 5.

[0042] Referring to Figure 9 and Figure 10In an preferred embodiment, the inner sliding connection of the adjusting rail 201 is provided with two sliding long rods 211, and the end of each of the two sliding long rods 211 is fixedly connected with an intermediate plate 213. The intermediate plate 213 is fixedly connected with a lower collar 214 on the side close to the lower side. The intermediate plate 213 is hingedly connected with an upper collar 202 on the side close to the upper side. The outer side wall of the upper collar 202 and the lower collar 214 away from the intermediate plate 213 is fixedly connected with a flow guide arc rod 215. The inner annular surface of the upper collar 202 and the lower collar 214 is provided with a filling air bag 208. The top of the intermediate plate 213 is fixedly connected with an arc-shaped abutting plate 212. The arc surface of the arc-shaped abutting plate 212 facing the upper collar 202 is fixedly connected with a connecting spring 216 at equal distances. One end of the connecting spring 216 is fixedly connected to the outer side wall of the upper collar 202.

[0043] Specifically, after the insertion end is connected with the connecting port 6, the wire is pressed between the upper collar 202 and the lower collar 214. The excess wire is wound on the winding roller 205 to avoid the wire from being placed loosely and causing unexpected situations. After the wire is wound, the circular ring pressing plate 204 is pressed under the action of the extrusion spring rod 210 to press the wire, thereby improving the tightness of the winding.

[0044] Referring to Figure 9 In an preferred embodiment, the bottom of the adjusting rail 201 between the two sliding long rods 211 is fixedly connected with a supporting plate 203. The top of the supporting plate 203 is provided with a positioning sliding groove 206. The inner sliding connection of the positioning sliding groove 206 is provided with a positioning sliding rod 207. The top of the positioning sliding rod 207 is fixedly connected with a circular ring pressing plate 204. The top of the supporting plate 203 close to the adjusting rail 201 is fixedly connected with a fixed plate 209. One side of the fixed plate 209 is rotatably connected with a winding roller 205 through a bearing. The circular ring pressing plate 204 passes through the winding roller 205. One side of the fixed plate 209 facing the circular ring pressing plate 204 is fixedly connected with two extrusion spring rods 210. One end of each of the two extrusion spring rods 210 is fixedly connected to one side of the circular ring pressing plate 204.

[0045] Working principle: During use, when the insertion end is connected to the connection port 6, the insertion end enters the positioning ring frame 411 through the guide ring frame 401 and the inclined guide ring frame 415. As it gradually moves into the connection port 6, the positioning spring rod 419 drives the positioning plate 416 to position and clamp its periphery. At the same time, the compression airbag 403 improves the reinforcement effect. When the insertion end contacts the guide roller 709 on the pressing moving plate 708, it is pressed into the connection port 6. The pressing moving plate 708 then compresses the reset spring rod 707, and the dust cover 710 achieves dust prevention around the insertion end and the connection port 6 connection position. After the insertion end and the connection port 6 are connected, the wire is pressed between the upper collar 202 and the lower collar 214, and the excess wire is wound around the winding roller 205 to prevent the wire from being loose and causing accidents. After the wire is wound, the circular pressure plate 204 presses the wire under the action of the compression spring rod 210. The insertion end is squeezed to achieve a tight connection with the connection port 6. When the insertion end needs to be pulled out, the locking block 412 rotates 90°, and multiple unfolding spring rods 405 gradually unfold, thereby driving the guide ring frame 401 and the positioning ring frame 411 to move elastically towards the outside of the mounting housing 1. After the insertion end is pulled out, the reset spring rod 707 drives the dust cover 710 to reset. Then the operator pulls the pull rod 702, and the pull rod 702 drives the squeezing ball 704 on the reciprocating ring 716 to press the gas inside the gas storage bag 703. The gas inside is then discharged through the exhaust pipe 717. After the squeezing ball 704 separates from the gas storage bag 703, the suction pipe 706 sucks the gas inside the connection port 6 and the dust it carries into the gas storage bag 703. Under the reciprocating operation, the dust inside the connection port 6 is suctioned through negative pressure adsorption. After the dust suction is completed, the wire positioning clamping mechanism 2 is stored in the storage slot 5, and the operation ends.

[0046] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. A dustproof Ethernet connector for new energy vehicles, comprising a mounting housing (1), characterized in that, The mounting housing (1) has a connection port (6) inside, and a dustproof and dust-collecting integrated mechanism (7) is provided around the connection port (6). The dustproof and dust-collecting integrated mechanism (7) includes two inner plates (701), and the two inner plates (701) are respectively fixedly connected to the inner walls of the two sides of the mounting housing (1). The same outer ring frame (705) is fixedly connected to the opposite side of the two inner plates (701). Both the two inner plates (701) and the outer ring frame (705) have connection grooves (714). Both of the two connection grooves (714) have connecting sliders (712) slidably connected inside, and the two connecting sliders (712) face the mounting housing (1). A connecting block (711) is fixedly connected to one side of the exterior. A dust cover (710) is fixedly connected to each of the two connecting blocks (711). A reset spring rod (707) is fixedly connected to the side of each of the two connecting sliders (712) away from the dust cover (710). A mating block (713) is fixedly connected to the end of each of the two reset spring rods (707). The mating block (713) is fixedly connected to the inner plate (701). A pressing moving plate (708) is fixedly connected to the side of each of the two dust covers (710) facing the exterior of the mounting shell (1). A mounting groove is opened on each of the two pressing moving plates (708). A guide roller (709) is connected to each of the two mounting grooves at equal distances through a bearing.

2. The dustproof Ethernet connector for new energy vehicles according to claim 1, characterized in that, The two inner plates (701) are fixedly connected to the same gas storage bladder (703) on the side away from the dust cover (710), and two docking holes are opened on the two dust covers (710). A suction pipe (706) is fixedly connected inside each docking hole. One end of the suction pipe (706) is inserted into the inside of the gas storage bladder (703). A one-way valve (715) is connected to the outer wall of the gas storage bladder (703) near the suction pipe (706) through a flange. The one-way valve (715) points from the suction pipe (706) to the inside of the gas storage bladder (703).

3. The dustproof Ethernet connector for new energy vehicles according to claim 2, characterized in that, Both inner plates (701) have sliding holes, and the same pull rod (702) is slidably connected inside the two sliding holes. A reciprocating ring (716) is fixedly connected to the end of the pull rod (702). A compression ball (704) is distributed in a ring on the side of the reciprocating ring (716) facing the gas storage bladder (703). Two exhaust holes are opened on the side of the gas storage bladder (703) away from the dust cover (710). An exhaust pipe (717) is fixedly connected inside the two exhaust holes. A one-way valve (718) is connected to the two exhaust pipes (717) through a flange. The one-way valve (718) points from the inside of the gas storage bladder (703) to the outside of the gas storage bladder (703).

4. The dustproof Ethernet connector for new energy vehicles according to claim 1, characterized in that, The mounting housing (1) is provided with a guide positioning mechanism (4) near the opening end, and the guide positioning mechanism (4) includes a guide ring frame (401). The inner walls on both sides of the mounting housing (1) at the opening end are provided with two limiting slide grooves (3). Each limiting slide groove (3) is slidably connected to a limiting slider (402). The same integrated rod (414) is fixedly connected to the two limiting sliders (402) on one side.

5. A dustproof Ethernet connector for new energy vehicles according to claim 4, characterized in that, Both integrated rods (414) are fixedly connected to the side of the housing (1) facing the opening end of the housing (1) with an outlet rod (413), and the ends of the two outlet rods (413) are fixedly connected to an external rod (407). The guide ring frame (401) is fixedly connected to the opposite side of the two external rods (407). The inner ring surface of the guide ring frame (401) is fixedly connected to a compression airbag (403). The outer side wall of the compression airbag (403) facing upward has an air hole. The air hole is fixedly connected to a connecting air pipe (410). The opening end of the connecting air pipe (410) is screwed with a pipe cap (409).

6. A dustproof Ethernet connector for new energy vehicles according to claim 5, characterized in that, The mounting housing (1) is fixedly connected to an end block (406) on one side of the inner wall of each limiting slide groove (3), and a locking rod (404) is fixedly connected to one side of the end block (406). The integrated rod (414) has a locking hole (408) on the side wall of each locking rod (404). The end of the locking rod (404) passing through the locking hole (408) is connected to a locking block (412) through a bearing. The side of the limiting slider (402) facing the inside of the limiting slide groove (3) is fixedly connected to an unfolding spring rod (405), and one end of the unfolding spring rod (405) is fixedly connected to the inside of the limiting slide groove (3).

7. A dustproof Ethernet connector for new energy vehicles according to claim 6, characterized in that, The guide ring frame (401) is fixedly connected to the side facing the connection port (6) with an inclined guide ring frame (415), and a positioning ring frame (411) is fixedly connected to one side of the inclined guide ring frame (415). Multiple sets of positioning spring rods (419) are fixedly connected to the inner ring surface of the positioning ring frame (411). One end of each set of positioning spring rods (419) is fixedly connected to the same positioning plate (416). Both sides of the positioning plate (416) are fixedly connected to a flow guide plate (417). The outer wall of the positioning plate (416) between each set of positioning spring rods (419) is fixedly connected to a telescopic connecting rod (418). One end of the telescopic connecting rod (418) is fixedly connected to the inner ring surface of the positioning ring frame (411).

8. A dustproof Ethernet connector for new energy vehicles according to claim 1, characterized in that, The mounting housing (1) has storage slots (5) on both sides near the opening end, and each of the two storage slots (5) is provided with a wire positioning clamping mechanism (2). The wire positioning clamping mechanism (2) includes an adjustment rail (201). The upper and lower ends of the adjustment rail (201) are connected to the top inner wall and bottom inner wall of the storage slot (5) through bearings.

9. A dustproof Ethernet connector for new energy vehicles according to claim 8, characterized in that, The adjustment rail (201) has two sliding rods (211) internally connected, and the ends of the two sliding rods (211) are fixedly connected to a middle plate (213). The middle plate (213) is fixedly connected to a lower collar (214) on the side near the bottom. The middle plate (213) is connected to an upper collar (202) via a hinge on the side near the top. The outer walls of the upper collar (202) and the lower collar (214) away from the middle plate (213) are fixedly connected to a guide arc rod (215). The inner ring surfaces of the upper collar (202) and the lower collar (214) are provided with filling airbags (208). The top of the middle plate (213) is fixedly connected to an arc-shaped abutment plate (212). The arc-shaped abutment plate (212) facing the upper collar (202) is fixedly connected to a connecting spring (216) at equal intervals. One end of the connecting spring (216) is fixedly connected to the outer wall of the upper collar (202).

10. A dustproof Ethernet connector for new energy vehicles according to claim 9, characterized in that, The adjustment rail (201) is located between two sliding rods (211) and a support plate (203) is fixedly connected to the bottom. The support plate (203) has a positioning groove (206) on its top. A positioning rod (207) is slidably connected inside the positioning groove (206). A circular pressure plate (204) is fixedly connected to the top of the positioning rod (207). A fixing plate (209) is fixedly connected to the top of the support plate (203) near the adjustment rail (201). A winding roller (205) is connected to one side of the fixing plate (209) through a bearing. The circular pressure plate (204) passes through the winding roller (205). Two compression spring rods (210) are fixedly connected to the side of the fixing plate (209) facing the circular pressure plate (204). One end of each compression spring rod (210) is fixedly connected to one side of the circular pressure plate (204).

Citation Information

Patent Citations

  • New energy electric vehicle charging plug

    CN112467454A

  • Ethernet automatic plugging mechanism

    CN115832774A

  • LED splicing processor

    CN115982088A

  • Wiring plug for computer network wiring construction

    CN209993807U

  • Waterproof and dustproof plug for communication equipment jack

    CN211182662U