Code scanning device and parking space lock

By separating the scanning device from the parking space lock and using connectors and adhesives to fix the interactive components, the problems of easy damage and high maintenance costs of the scanning signs are solved, and the scanning device can be stably installed and operated efficiently.

CN223907398UActive Publication Date: 2026-02-13GUANGXUN INTERCONNECTION TECHNOLOGY (SHENZHEN) CO LTD
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Patent Information

Application Number
CN202520368959.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2026-02-13
Estimated Expiration
2035-03-03

AI Technical Summary

Technical Problem

The existing parking lock's QR code unlocking label is located on the top surface of the parking lock's housing, which causes the car door to bump into the housing, tripping pedestrians, and is easily damaged when run over by car wheels, increasing maintenance costs.

Method used

The barcode scanning device is installed separately from the parking lock via a mounting base. It is securely mounted on the external connection surface using connectors, and the interactive components are fixed in the mounting groove with adhesive. The pressure-bearing surface buffers the wheel pressure, and the guiding surface guides the wheel, reducing shaking and detachment.

Benefits of technology

It reduces the maintenance cost of the scanning device, extends its service life, reduces manual intervention, and improves the operational efficiency of the parking lot.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a code scanning device and a parking lock, the code scanning device comprises a mounting seat, an interaction assembly, a first connecting piece and a second connecting piece, the mounting seat is provided with a mounting surface and a pressure-bearing surface, and the pressure-bearing surface is provided with a mounting groove; the interaction assembly is mounted in the mounting groove; the first connecting piece is used for connecting the interaction assembly and the mounting groove; the second connecting piece is used for connecting the mounting surface and the external connecting surface. The parking space lock comprises a ground lock and the code scanning device. According to the code scanning device, the interaction assembly is stably installed in the installation groove of the installation base through the first connecting piece, the risk that the interaction assembly is separated from the installation base is reduced, and therefore the maintenance cost of the device is reduced. Meanwhile, the mounting seat of the code scanning device is mounted on the external connecting surface through the second connecting piece, so that the mounting seat and the parking lock are arranged in a split manner, and the mounting seat does not displace or topple when being rolled by a vehicle. In addition, the parking lock on the parking space can be unlocked through the code scanning device.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of wisdom parking, especially relates to a code scanning device and parking stall lock. BACKGROUND

[0002] At present, parking stall lock is generally installed on the parking stall, which can prevent private or chargeable parking stall from being randomly occupied, and realize vehicle parking as it comes, without the need of personnel management. For unattended chargeable parking stall, the vehicle owner can unlock the signboard by scanning the code through the mobile phone, and then unlock the parking stall lock after settling the parking fee, and then the vehicle can drive away from the parking stall.

[0003] The existing code scanning and unlocking signboard is arranged on the upper end face of the parking stall lock machine box, which increases the overall height of the parking stall lock machine box, causing the bottom of the door to knock the machine box when the door is opened, resulting in door damage; and the high parking stall lock is also easy to trip pedestrians when arranged on the roadside parking stall.

[0004] In addition, the vehicle frequently enters and exits the parking stall, and the parking stall lock is in the position that must be passed through when the vehicle drives and parks. When the vehicle is parked or moved, the wheel may directly crush or rub against the code scanning and unlocking signboard. Over a long period of time, the code scanning and unlocking signboard may be separated from the base of the parking stall lock machine box, increasing the maintenance cost of the parking stall. UTILITY MODEL CONTENTS

[0005] In order to overcome at least one of the defects of the prior art described above, one of the purposes of the utility model is to provide a code scanning device, the mounting seat of which is directly mounted on the external connecting surface through the connecting piece, realizing separate arrangement with the parking stall lock; and the interactive component is mounted in the mounting groove of the mounting seat through another connecting piece, reducing the risk of separation from the mounting seat.

[0006] The second purpose of the utility model is to provide a parking stall lock, which can be unlocked after payment operation by scanning the code scanning device through the mobile phone camera, thereby realizing unattended management and charging of the parking stall.

[0007] One of the technical solutions adopted by the utility model to solve the problem is:

[0008] A code scanning device, comprising,

[0009] A mounting seat, the mounting seat has a mounting surface and a pressure bearing surface, and the pressure bearing surface is provided with a mounting groove;

[0010] An interactive component mounted in the mounting groove;

[0011] A first connecting piece for connecting the interactive component and the mounting groove;

[0012] A second connecting piece for connecting the mounting surface and the external connecting surface.

[0013] The scanning code device provided by the utility model, its interactive assembly is stably connected in the installation groove through the first connecting piece, when the wheel rolls over the mounting seat, the interactive assembly will not shake, displace or fall off in the installation groove.

[0014] Further, the installation groove has a bottom wall and a side wall, the first connecting piece includes adhesive, and the bottom wall and the side wall are both provided with the adhesive.

[0015] Therefore, by arranging the adhesive on the bottom wall and the side wall of the installation groove, strong fixing force can be provided for the interactive assembly from multiple directions, and the interactive assembly can be effectively prevented from shaking, displacing or tilting in the installation groove.

[0016] Further, a plurality of accommodating grooves are arranged on the bottom wall at intervals, and the adhesive is arranged in the accommodating grooves.

[0017] Therefore, the accommodating grooves provide additional accommodating space for the adhesive, and the adhesive in the accommodating grooves can form a more uniform adhesive layer with a certain thickness, and this distribution mode can better adapt to the shape of the bottom surface of the interactive assembly, fill the possible slight unevenness, and further enhance the overall adhesive force.

[0018] Further, a guide surface connected with the mounting surface is arranged on the circumferential surface of the pressure bearing surface, and the guide surface is inclined outward from one end close to the pressure bearing surface to one end close to the mounting surface.

[0019] Therefore, the inclined arrangement of the guide surface provides a transition area for buffering and guiding the wheel, so that the vehicle can pass through the scanning code device more smoothly when entering and leaving the parking space, and the wheel can be naturally guided to the pressure bearing surface, reducing the jamming or bumping of the wheel.

[0020] Further, the interactive assembly includes a mounting plate and an information module, the mounting plate is installed in the installation groove through the first connecting piece, and the information module is installed on the mounting plate.

[0021] Therefore, the mounting plate provides physical support for the information module, which enables the information module to be stably installed in the installation groove.

[0022] Further, the mounting plate is made of transparent material, the mounting plate has a connecting surface and a display surface arranged away from each other; the information module comprises a two-dimensional code, the two-dimensional code is arranged on the connecting surface; the display surface is flush with the pressure surface or arranged oppositely, and the display surface is used for presenting the two-dimensional code.

[0023] Therefore, when the wheel rolls over the display surface of the mounting plate, the two-dimensional code pattern will not be worn by the wheel because the information module is arranged on the other side, the service life of the two-dimensional code is effectively prolonged, and the two-dimensional code can be kept clear and identifiable in the long-term use of the code scanning device.

[0024] Further, the second connecting member comprises a plurality of connecting columns, one end of each connecting column is connected with the mounting surface, and the other end of each connecting column is provided with a guide inclined surface; the external connecting surface is provided with a mounting hole, and the guide inclined surface guides the mounting of the second connecting member into the mounting hole.

[0025] Therefore, the guide inclined surface simplifies the mounting process, improves the mounting efficiency, and reduces the mounting difficulty.

[0026] Further, the mounting surface is further provided with a reinforcing member, and the reinforcing member and all the connecting columns are integrally formed with the mounting seat.

[0027] Therefore, the overall compression resistance of the mounting seat is enhanced.

[0028] The technical solution two adopted by the utility model to solve the problem is:

[0029] A parking space lock comprises a ground lock and the code scanning device.

[0030] In summary, the code scanning device and the parking space lock have the following technical effects:

[0031] 1) The code scanning device of the utility model, the interactive assembly is stably connected in the mounting groove through the first connecting member, when the wheel rolls over the mounting seat, the pressure surface can directly bear and disperse the force during the wheel rolling, the interactive assembly will not shake, displace or fall off in the mounting groove, and the maintenance cost of the code scanning device and the parking space can be reduced.

[0032] 2) The code scanning device of the utility model, the mounting seat is directly connected with the external connecting surface through the second connecting member, so that the mounting seat can resist the influence of natural environmental factors such as vibration generated during vehicle driving, collision of pedestrians and wind force, ensure that the code scanning device is in the correct installation position, and will not displace or fall down due to external force, thereby ensuring the normal use of the code scanning device.

[0033] 3) The parking space lock of the utility model, the ground lock can be unlocked after payment operation through mobile phone camera scanning code scanning device, reduces manual intervention, reduces labor cost, improves the overall operation efficiency of the parking lot. BRIEF DESCRIPTION OF DRAWINGS

[0034] Figure 1 It is the structure schematic view of the code scanning device of the utility model embodiment;

[0035] Figure 2 It is the application scene schematic view of the code scanning device and the parking space lock of the utility model embodiment;

[0036] Figure 3 It is the section view when the code scanning device and the ground are installed of the utility model embodiment;

[0037] Figure 4 It is the section view when the code scanning device hides the first connecting piece of the utility model embodiment;

[0038] Figure 5 It is the structure schematic view of another view of Figure 1

[0039] Figure 6 It is the plan view of the code scanning device of the utility model embodiment.

[0040] Among them, the meaning of the reference sign is as follows:

[0041] 1, code scanning device;10, mounting seat;11, mounting surface;111, connecting part;112, circular segment;113, guide part;12, pressure receiving surface;13, mounting groove;131, bottom wall;132, side wall;133, accommodating groove;14, first connecting piece;15, second connecting piece;151, guide inclined surface;16, mounting plate;161, connecting surface;17, reinforcing piece;18, two-dimensional code;19, information display area;2, parking space;20, external connecting surface;3, parking space lock. DETAILED DESCRIPTION

[0042] In order to better understand and implement, the technical scheme in the utility model embodiment will be described clearly and completely in combination with the drawings in the utility model embodiment.

[0043] In the description of the utility model, it should be explained that the orientation or position relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like is the orientation or position relationship based on the orientation or position relationship shown in the drawings, which is only for the convenience of describing the utility model and simplifying the description, and does not indicate or imply that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, therefore it cannot be understood as a limitation on the utility model.​

[0044] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the description herein is for describing particular embodiments only and is not intended to be limiting of the application.

[0045] Embodiment one

[0046] Referring to Figure 1 and Figure 2 , the application discloses a code scanning device 1, which comprises a mounting seat 10, an interactive component, a first connecting piece 14 and a second connecting piece 15. Specifically, the mounting seat 10 has a mounting surface 11 and a pressure bearing surface 12, referring to Figure 3 and Figure 6 , the pressure bearing surface 12 is provided with a mounting groove 13, and the interactive component is installed in the mounting groove 13. Among them, the first connecting piece 14 is used to connect the interactive component and the mounting groove 13. Referring to Figure 3 and Figure 4 , the second connecting piece 15 is used to connect the mounting surface 11 and the external connecting surface 20.

[0047] On the basis of this structure, when using the code scanning device 1 of the application, when assembling, the interactive component can be installed in the mounting groove 13 through the first connecting piece 14, then the mounting surface 11 of the mounting seat 10 is directed and close to the external connecting surface 20, and the mounting surface 11 is fixed on the external connecting surface 20 through the second connecting piece 15, so as to ensure that the mounting seat 10 will not move during use. Among them, the external connecting surface 20 can be the ground of the parking space, the wall surface of the building and the like.

[0048] When using the code scanning device 1, the car owner can take out the mobile phone, use the mobile phone camera to scan the identification code on the interactive component to identify the information interaction, and perform the payment operation. After the terminal of the interactive component receives the code scanning signal, the signal is transmitted to the control system of the ground lock 3, referring to Figure 2 , after the control system receives the signal, according to the preset instruction, the ground lock 3 is controlled to descend, at this time the vehicle can enter or leave the parking space 2.

[0049] The first connecting member 14 is used to physically connect the interactive component and the mounting groove 13, so that the interactive component is stably connected with the mounting groove 13. In this way, when the wheels roll over the mounting seat 10, the interactive component will not shake, displace or fall off in the mounting groove 13. At the same time, the pressure bearing surface 12 can directly bear and disperse the force when the wheels roll, preventing the interactive component from being damaged due to direct force. In addition, through the second connecting member 15, the mounting seat 10 can be directly connected with the external connecting surface 20, so that the mounting seat 10 can resist the influence of vibration generated when the vehicle is running, the collision of pedestrians and the influence of natural environmental factors such as wind, so as to ensure that the code scanning device 1 is in the correct installation position and will not displace or fall due to external force, thereby ensuring the normal use of the code scanning device 1.

[0050] Specifically, when the mounting surface 11 is connected with the ground of the parking space, the pressure bearing surface 12 faces upward and directly faces the path that the wheels may pass through when the vehicle enters and exits, and thus bears the force when the vehicle rolls. When the wheels roll on the pressure bearing surface 12, the pressure acts vertically downward on the pressure bearing surface 12. In this process, the pressure bearing surface 12 bears and disperses the pressure of the wheels, protecting the internal structure of the mounting seat 10 and the interactive component mounted thereon.

[0051] At the same time, part of the force is transmitted downward to the mounting surface 11 and dispersed by the mounting surface 11 to the ground closely attached thereto. In this way, the mounting seat 10 cooperates with the pressure bearing surface 12 and the mounting surface 11 to realize the bearing and dispersion of external force, preventing local fatigue, rupture and other problems caused by excessive pressure, prolonging the service life of the mounting seat 10 and the entire code scanning device 1, and reducing maintenance and replacement costs.

[0052] At the same time, since the code scanning device 1 and the ground lock 3 of the lock are separately arranged, the ground lock 3 on the parking space 2 can correspondingly reduce the height of the machine box, reducing the collision between the ground lock 3 and the bottom end of the vehicle door and the tripping of pedestrians.

[0053] It should be noted that the second connecting member 15 can be an external connecting member such as a screw or an expansion bolt. When it is necessary to connect the mounting surface 11 and the external connecting surface 20, the screw or bolt is sequentially arranged through the mounting seat 10 and the ground or wall surface. When it is necessary to maintain or replace the code scanning device 1, the second connecting member 15 is also convenient to disassemble, which can reduce the maintenance time and cost.

[0054] It is worth noting that the code scanning device 1 of the present application can be installed in front of the parking space of the underground parking space 2, or can be installed on the side parking space 2 on the roadside. When the code scanning device 1 is installed on the side parking space 2, referring to Figure 2, the mounting seat 10 can be installed on the side of the parking space 2 close to the road, so that when the owner walks to the side of the driver's door, the code can be scanned and the lock can be unlocked before getting on the car. By installing the code scanning device 1 on the side of the owner getting on the car, the problem that the owner forgets to scan the code before getting on the car, which leads to the vehicle starting in the state that the ground lock 3 is not unlocked, and then causing the vehicle to collide with the ground lock 3, can be avoided.

[0055] Further, referring to Figure 4 , the mounting groove 13 has a bottom wall 131 and a side wall 132, the first connecting piece 14 includes adhesive, and the bottom wall 131 and the side wall 132 are provided with adhesive.

[0056] On the basis of this structure, when installing the interactive assembly, the adhesive can be evenly applied on the bottom wall 131 and the side wall 132 of the mounting groove 13, and then the interactive assembly is placed in the mounting groove 13, so that it is in full contact with the bottom wall 131 and the side wall 132 with the adhesive applied. Gently press the interactive assembly, so that the adhesive can better play the adhesion, ensure that the interactive assembly is tightly attached to the mounting groove 13, and complete the connection of the interactive assembly and the mounting seat 10 through the first connecting piece 14.

[0057] Among them, the adhesive can be epoxy resin glue, silicone glue and the like in the prior art.

[0058] Therefore, by providing adhesive on the bottom wall 131 and the side wall 132 of the mounting groove 13, strong fixing force can be provided to the interactive assembly from multiple directions, effectively preventing the interactive assembly from shaking, shifting or tilting in the mounting groove 13. Even in the case that the vehicle frequently enters and exits the parking space, and the code scanning device 1 bears vibration and external impact, the interactive assembly can always be kept in the correct installation position, and the stable operation of the code scanning function can be ensured.

[0059] In addition, since the interactive assembly is connected to the mounting groove 13 through the adhesive, the adhesive layer has a certain flexibility, and when the interactive assembly is also subjected to the rolling of the vehicle, the adhesive layer can buffer part of the pressure, avoiding that the interactive assembly bears excessive impact. At the same time, the adhesive applied on the bottom wall 131 and the side wall 132 can also play a role in waterproofing and dustproofing to a certain extent. When rainwater, dust and other impurities may enter the mounting groove 13, the adhesive can fill the gap between the interactive assembly and the mounting groove 13, reduce the erosion of impurities to the interactive assembly and its internal electronic elements, and prolong the service life of the interactive assembly.

[0060] Further, a plurality of accommodating grooves 133 are provided on the bottom wall 131 in a spaced manner, and the adhesive is also provided in the accommodating grooves 133.

[0061] Compared with directly applying the adhesive on the flat bottom wall 131, the accommodating groove 133 provides additional accommodation space for the adhesive, and the adhesive in the accommodating groove 133 can form a more uniform and certain thickness adhesive layer, which can better adapt to the shape of the bottom surface of the interactive assembly, fill the possible slight unevenness, and thus enhance the overall adhesion. This helps to maintain the close connection between the interactive assembly and the mounting seat 10 under various environmental conditions, and ensures the normal operation of the code scanning device 1.

[0062] In addition, the first connecting piece 14 can also be a buckle structure arranged on the side wall 132, and the interactive assembly is circumferentially provided with a corresponding clamping block structure. In this way, when the interactive assembly is installed into the mounting groove 13, the clamping block can be clamped with the buckle on the side wall 132, and the elastic buckle and the clamping force can be used to realize the close connection between the interactive assembly and the mounting seat 10.

[0063] Further, a guide surface connected with the mounting surface 11 is further arranged on the circumference of the pressure bearing surface 12, and the guide surface is outwardly inclined from the end close to the pressure bearing surface 12 to the end close to the mounting surface 11.

[0064] On the basis of this structure, when the wheel rolls over the mounting seat 10, the wheel will first contact the guide surface. Since the guide surface is outwardly inclined from the end close to the pressure bearing surface 12 to the end close to the mounting surface 11, the wheel will be naturally guided to the top of the pressure bearing surface 12 under the action of the guide surface. When the wheel travels on the pressure bearing surface 12, the pressure bearing surface 12 begins to bear the main pressure of the vehicle, and the pressure is transmitted to the mounting seat 10 in all directions and downward through the guide surface, and then dispersed to the ground through the mounting surface 11.

[0065] Therefore, the inclined arrangement of the guide surface provides a transition area for the wheel to provide a buffer and a guide, so that the vehicle can pass through the code scanning device 1 more smoothly when entering and leaving the parking space, and the wheel can be naturally guided to the pressure bearing surface 12, reducing the jamming or bumping of the wheel, and improving the efficiency and comfort of vehicle passing. At the same time, it can also prevent the wheel from directly impacting the side of the mounting seat 10, causing damage such as cracking and deformation of the code scanning device 1. At the same time, the guide surface can also guide the rainwater on the pressure bearing surface 12 towards the ground, reducing the accumulation of rainwater on the pressure bearing surface 12, so that the identification code on the interactive assembly can be clearly displayed on the top surface of the mounting seat 10.

[0066] Further, the guide surface along the pressure bearing surface 12 to the mounting surface 11 includes a guide portion 113 and a connecting portion 111 connected in sequence, specifically, the guide portion 113 is an inclined surface inclined outwardly from top to bottom, and the connecting portion 111 is a vertical surface, and the upper and lower ends of the vertical surface are connected with the lower end of the inclined surface and the circumferential edge of the mounting surface 11, respectively.

[0067] The connecting part 111 makes the connection between the guide surface and the mounting surface 11 more stable, and the guide part 113 realizes the guiding and buffering of the wheels, so that the vehicle can pass through the code scanning device 1 more smoothly when entering and leaving the parking space, and the jamming or bumping of the wheels is slowed down, and the efficiency and comfort of the vehicle passing are improved.

[0068] Referring to Figure 4 The guide part 113 and the connecting part 111 can also be connected through the arc segment 112. When the wheels go up or leave the guide part 113, they will contact the arc segment 112. Through the connection of the arc segment 112, the stability of the wheels rolling over the mounting seat 10 can be further improved. At the same time, the setting of the arc segment 112 avoids scratching the wheels due to the existence of sharp corners on the edge of the mounting seat 10, and provides a safe and soft transition path for the wheels.

[0069] In addition, the arc segment 112 also increases the contact area between the wheels and the edge of the mounting seat 10, so that the pressure can be more evenly distributed on the contact surface, effectively avoiding the occurrence of stress concentration, thereby protecting the mounting seat 10 and prolonging its service life.

[0070] Further, the interactive assembly includes a mounting plate 16 and an information module, wherein the mounting plate 16 is installed on the mounting groove 13 through the first connecting piece 14, and the information module is installed on the mounting plate 16.

[0071] On the basis of this structure, when assembling, first install the information module on the mounting plate 16, and then place the mounting plate 16 in the mounting groove 13 of the mounting seat 10. When the first connecting piece 14 is adhesive, the bottom and side surfaces of the mounting plate 16 will be in full contact with and firmly bonded to the adhesive on the bottom wall 131 and the side wall 132 of the mounting groove 13.

[0072] The mounting plate 16 provides physical support for the information module, which enables the information module to be stably installed in the mounting groove 13. Moreover, by connecting the mounting plate 16 and the mounting groove 13, the information module is positioned in the appropriate position, facilitating the vehicle owner to perform the code scanning operation.

[0073] In addition, when the vehicle enters and leaves the parking space, the pressure bearing surface 12 bears the pressure of the vehicle and the possible vibration, the mounting plate 16 can play a buffering and isolation role. It can reduce the influence of external vibration and pressure on the information module, and ensure the service life and reliability of the code scanning device 1.

[0074] Further, the mounting plate 16 is made of transparent material, and the mounting plate 16 has a connecting surface 161 and a display surface which are arranged away from each other. In addition, the information module includes a two-dimensional code 18, and the two-dimensional code 18 is arranged on the connecting surface 161. The display surface is flush with or oppositely arranged with the pressure bearing surface 12, and the display surface is used to present the two-dimensional code 18.

[0075] On this basis, when assembling, the connecting surface 161 provided with the pattern of the two-dimensional code 18 is close to the bottom wall 131 of the mounting groove 13, and the mounting plate 16 is fixed in the mounting groove 13 by adhesive, at this time, the display surface is towards the opening side of the mounting groove 13. When the display surface is flush with the pressure bearing surface 12, the display surface and the pressure bearing surface 12 jointly bear the rolling action of the wheel.

[0076] When the display surface is arranged opposite to the pressure bearing surface 12, the opening of the mounting groove 13 is also provided with a perspective protection plate, and the outer side of the perspective protection plate is flush with the pressure bearing surface 12. At this time, since the outer side of the perspective protection plate is flush with the pressure bearing surface 12, the outer side of the perspective protection plate and the pressure bearing surface 12 jointly bear the rolling action of the wheel.

[0077] Among them, the pattern of the two-dimensional code 18 can be printed on the connecting surface 161 by silk screen printing technology, and since the mounting plate 16 is made of transparent material, the display surface arranged away from the connecting surface 161 can display the pattern of the two-dimensional code 18. In this way, when the wheel rolls over the display surface of the mounting plate 16, since the information module is on the other side, the information module arranged on the connecting surface 161 can be protected from physical damage from the outside, such as being scratched by vehicles, being hit by foreign objects, etc., and can also block impurities such as rainwater and dust from invading the information module.

[0078] In addition, other information of the product can also be printed on the connecting surface 161 by silk screen printing technology, and these information is displayed on the information display area 19 on the display surface, which helps users to obtain other production information or use guidance of the scanning code device.

[0079] Therefore, the pattern of the two-dimensional code 18 or the information in the information display area 19 will not be worn by the wheel, effectively prolonging the service life of the two-dimensional code 18, ensuring that the two-dimensional code 18 remains clear and identifiable during long-term use of the scanning code device 1, reducing the frequency of replacement due to wear of the two-dimensional code 18, and reducing maintenance costs.

[0080] In addition, the interactive assembly can also include a display panel and a power supply battery, the display panel can be a liquid crystal display panel or an electronic ink display panel in the prior art, which can be installed on the mounting plate 16 or in the mounting groove 13, and the power supply battery provides power support for the display panel. Among them, the display panel can display the pattern of the two-dimensional code 18 and various state information of the parking space, guide the vehicle owner to scan and pay, and facilitate the vehicle owner to understand the parking time and charging situation, so that the user can use the parking space more conveniently.

[0081] Further, the second connecting member 15 comprises a plurality of connecting columns, specifically, one end of each connecting column is connected with the mounting surface 11, and the other end of each connecting column is provided with a guide inclined surface 151. In addition, the external connecting surface 20 is provided with mounting holes. The guide inclined surface 151 is used to guide the installation of the second connecting member 15 into the mounting holes.

[0082] On the basis of this structure, when installing the code scanning device 1, first ensure that the ground of the parking space or other external connecting surface 20 has been pre-drilled with appropriate mounting holes according to the size and spacing of the connecting columns. The depth and diameter of these mounting holes should match the connecting columns to ensure that the connecting columns can be smoothly inserted.

[0083] During installation, align the connecting columns of the mounting seat 10 with the pre-drilled mounting holes. Since the end of the connecting column is provided with a guide inclined surface 151, during the process of inserting the connecting column into the mounting hole, the guide inclined surface 151 will guide the connecting column to gradually slide into the mounting hole, making the insertion process of the connecting column more smooth. As the connecting column is continuously inserted, it will gradually fill the mounting hole, ensuring a firm connection between the mounting seat 10 and the external connecting surface 20.

[0084] When the code scanning device 1 needs to be maintained or replaced, the mounting seat 10 needs to be disassembled from the external connecting surface 20. During disassembly, a special pulling tool can be used to apply a certain pulling force to pull the connecting column out of the mounting hole.

[0085] When vehicles enter or exit the parking space, the wheels may crush the area where the code scanning device 1 is located. At this time, the second connecting member 15, as the connecting part of the mounting seat 10 and the ground, will bear the pressure and vibration from the vehicle. The connecting column, through the firm connection with the ground, ensures that the mounting seat 10 will not shift or shake.

[0086] The guide inclined surface 151 simplifies the installation process. For on-site construction personnel, when inserting the connecting column into the pre-drilled mounting hole, there is no need for very precise alignment. Even if there is a certain positional deviation, the guide inclined surface 151 can guide the connecting column to slide into the mounting hole, improving installation efficiency and reducing installation difficulty. Especially when installing multiple code scanning devices 1 in a large-scale parking lot, a lot of installation time and labor cost can be saved.

[0087] In addition, the second connecting member 15 can also be a screw, and the pre-buried mounting hole on the parking space 2 is provided with an expansion sleeve. When the screw is screwed into the expansion sleeve, the expansion sleeve will be extruded and its external shape will change, thereby tightly combining with the ground to generate friction and achieve the fixing effect. The second connecting member 15 can also be a glue layer, and the mounting surface 11 is bonded to the ground through the glue layer. When the mounting seat 10 is under pressure, the glue layer can provide a certain buffer effect, enhancing the pressure resistance of the mounting seat 10.

[0088] Further, referring to Figure 5 The mounting surface 11 is further provided with a reinforcing member 17, and the reinforcing member 17 is integrally formed with the mounting base 10 and all the connecting columns.

[0089] Specifically, the reinforcing member 17 can be a plurality of reinforcing ribs protruding on the mounting surface 11, and the plurality of reinforcing ribs are connected in a triangular shape at the peripheral portion of the mounting surface 11, and extend horizontally and vertically at the central portion of the mounting surface 11.

[0090] At the same time, the connecting columns and the reinforcing member 17 are integrally formed on the mounting surface 11. Specifically, when the mounting base 10 is made of metal materials such as stainless steel, aluminum alloy, etc., the connecting columns and the reinforcing member 17 can be integrally formed with the mounting base 10 by pressure casting process. When the mounting base 10 is made of plastic materials, the connecting columns and the reinforcing member 17 can be integrally formed with the mounting base 10 by injection molding process.

[0091] Therefore, the integrally formed connecting columns and the reinforcing member 17 form a seamless whole with the mounting base 10, avoiding the weak points of the connecting parts. Under the long-term use and frequent pressure and vibration of the vehicle, the problems such as separation of the connecting columns from the mounting base 10 and loosening of the reinforcing member 17 do not occur, ensuring the integrity and stability of the structure, and effectively resisting various external forces generated when the vehicle enters and exits.

[0092] In addition, by integrally forming the connecting columns on the mounting surface 11, the use of additional connecting parts can be reduced, thereby avoiding the problems such as loss or installation error of parts that may occur during installation, improving the accuracy and reliability of installation.

[0093] Embodiment Two

[0094] Different from the first embodiment, the present embodiment discloses a parking lock, which comprises a ground lock 3 and the code scanning device 1 in the first embodiment.

[0095] When using the parking lock in the present embodiment, the ground lock 3 can be installed on the parking space 2, and the ground lock 3 is provided with a sensing device, which can be an ultrasonic sensor, an RFID sensor, etc. When the sensing device detects that a vehicle has parked in the parking space 2, the ground lock 3 can be triggered to rise and block the wheels of the vehicle.

[0096] When the vehicle owner drives the vehicle to leave the parking space 2, the vehicle owner can scan the code scanning device 1 through the camera of the mobile phone, interact information by identifying the identification code thereon, and perform payment operation. After the terminal of the interaction assembly receives the code scanning signal, the signal is transmitted to the control system of the ground lock 3. After the control system receives the signal, the ground lock 3 is controlled to descend according to the preset instruction, and at this time the vehicle can enter or leave the parking space 2.

[0097] Thus, through the parking space lock, the management work of the parking lot can be simplified, the use condition of the parking space is grasped in real time through the inductive device, the parking space resources are conveniently arranged reasonably, and effective parking lot planning and scheduling are carried out.

[0098] The technical means disclosed in the utility model scheme are not limited to the technical means disclosed in the above-mentioned embodiments, and also include technical schemes composed of any combination of the above technical features. It should be pointed out that, for ordinary skilled persons in the art, without departing from the principles of the utility model, a number of improvements and refinements can be made, and these improvements and refinements are also considered to be within the protection scope of the utility model.

Claims

1. A code scanning device, characterized by: The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device.

2. The code scanning apparatus of claim 1, wherein: The application relates to a code scanning device.

3. The code scanning apparatus of claim 2, wherein: The application relates to a code scanning device.

4. The code scanning apparatus of claim 1, wherein: The application relates to a code scanning device.

5. The code scanning apparatus of claim 1, wherein: The application relates to a code scanning device.

6. The code scanning apparatus of claim 5, wherein: The application relates to a code scanning device.

7. The code scanning apparatus according to any one of claims 1 to 6, characterized in that: The application relates to a code scanning device.

8. The code scanning apparatus of claim 7, wherein: The application relates to a code scanning device.

9. A parking spot lock characterized by: The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device. The application relates to a code scanning device