Binding machine

By introducing sensors and pushing components designs into the binding machine, and automatically distinguishing and launching normal and abnormal electronic tags, the problem that existing binding machines cannot be distinguished is solved, and efficient label sorting and binding process is achieved.

CN223260181UActive Publication Date: 2025-08-22SUZHOU XIAOMA YOUSHU TECH CO LTD
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Patent Information

Application Number
CN202422408818.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-08-22
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

The existing binding machines cannot automatically distinguish between normal and abnormal electronic tags, resulting in high labor intensity and low work efficiency.

Method used

A binding machine is designed, including a housing, a first sensor, a processor and a push component. Through the sensor, the electronic tag information is identified and the push component controls the push component to push the normal and abnormal tags to achieve automatic distinction and rollout.

Benefits of technology

It improves the convenience of the binding machine, reduces the working intensity and time of the user, and improves work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of wireless communication binding machines, in particular to a binding machine. Comprising a shell, a first sensor, a processor and a pushing assembly, a cavity is formed in the shell, a storage rack is arranged on one side face of the shell, an extension table is arranged at the bottom of the shell, the extension table and the storage rack are arranged on the same side, a storage groove is formed in the storage rack, a gap is formed between the storage rack and the extension table, and a through hole corresponding to the storage groove is formed in the extension table; the first sensor is arranged on the side face, away from the storage frame, of the extension table and corresponds to the through hole. The processor is arranged in the cavity, and the first sensor is electrically connected with the processor; the pushing assembly is arranged on the extension table and can move relative to the extension table, the pushing assembly is electrically connected with the processor, and the pushing assembly has a first motion state for pushing out a normal electronic tag and a second motion state for pushing out an abnormal electronic tag. The problems that in the prior art, a binding machine cannot distinguish normal and abnormal electronic tags, so that the labor intensity is large, and the working efficiency is low are solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of wireless communication equipment, in particular to a binding machine. Background Art

[0002] With the development of information technology, many businesses are using electronic anti-theft tags to improve the security of their merchandise. These tags maintain a signal connection with a binding machine within a certain range. When the item attached to the tag moves a certain distance from that range, an alarm is triggered, effectively preventing theft.

[0003] In addition to the above-mentioned anti-theft effect, the electronic tag can also be bound to the product information. When replacing the product, you only need to modify the corresponding information of the electronic tag. Compared with the disadvantage of traditional price tags that can only be marked once, electronic price tags can be reused, which reduces costs.

[0004] When electronic tags are connected to a binding machine for information binding, existing binding machines can mark normal and correctly oriented electronic tags, but require manual sorting of abnormal tags. This requires manual effort to distinguish and sort normal and abnormal tags, a time-consuming and labor-intensive process that impacts work efficiency. Utility Model Content

[0005] The technical problem to be solved by the embodiments of the present invention is to provide a binding machine to solve the problem in the prior art that the binding machine cannot distinguish between normal and abnormal electronic tags, resulting in high labor intensity and low work efficiency.

[0006] The utility model discloses a binding machine, comprising: a shell, a first sensor, a processor and a pushing assembly, wherein a cavity is formed in the shell, a storage rack is further provided on one side surface of the shell, the storage rack is extended in the vertical direction, an extension platform is provided at the bottom of the shell along the width direction of the shell, the extension platform is provided on the same side as the storage rack, a storage slot is formed in the storage rack, the storage slot is used for stacking a plurality of electronic tags, a gap is provided between the storage rack and the extension platform, and a through hole corresponding to the storage slot is provided on the extension platform; the first sensor is provided on a side of the extension platform away from the storage rack and is provided corresponding to the through hole; the processor is provided in the cavity, and the first sensor is electrically connected to the processor; the pushing assembly is provided on the extension platform and can move relative to the extension platform, the pushing assembly is electrically connected to the processor, and the pushing assembly has a first motion state of moving a first stroke relative to the extension platform, and a second motion state of moving a second stroke relative to the extension platform; wherein the first motion state is used to push a normal electronic tag out of the storage slot, and the second motion state is used to push an abnormal electronic tag out of the storage slot.

[0007] Optionally, a plurality of positioning protrusions are provided on a side of the shell facing the storage rack, a plurality of slide grooves are provided on a side of the storage rack facing the shell, the slide grooves are correspondingly connected to the positioning protrusions, and a convex edge is provided on the extension platform to abut against the bottom of the storage rack.

[0008] Optionally, a accommodating groove is provided on the shell, and the extension platform includes a first connecting part and a second connecting part connected to each other, the first connecting part passes through the accommodating groove and is arranged in the cavity, the second connecting part is located outside the shell, the pushing assembly is arranged on the first connecting part, and the through hole is arranged on the second connecting part.

[0009] Optionally, the first connecting part and the second connecting part are respectively provided with a plurality of first limiting grooves on the side facing the storage rack, and positioning holes are respectively provided on the inner walls on the opposite sides of the first limiting grooves. The extension platform is also provided with a plurality of first pulleys, which are located in the first limiting grooves and are rotatably connected to the positioning holes.

[0010] Optionally, the pushing assembly includes an electric push rod, a push head is provided at the cantilever end of the telescopic shaft of the electric push rod, a sliding sleeve is provided on the second connecting part, the telescopic shaft is slidably connected to the sliding sleeve, and the push head is used to push the electronic tag.

[0011] Optionally, a second limiting groove is provided on the pushing head, and the pushing assembly further includes a second pulley, the second pulley is provided in the second limiting groove, and the second pulley is rotatably connected to the pushing head via the second limiting groove.

[0012] Optionally, the protruding edge includes a first side wall and a second side wall respectively arranged on opposite sides of the extension platform along the length direction, the first side wall is arranged on one side of the first connecting part, the second side wall is arranged on the other side of the first connecting part and extends to the second connecting part, the sliding sleeve is respectively connected to the first side wall and the second side wall, the first side wall and the second side wall are respectively provided with connecting holes, and the storage rack is respectively connected to the first side wall and the second side wall through the connecting holes.

[0013] Optionally, a first window is provided on the shell, and the first window is connected to the cavity. The binding machine also includes a display screen, which is provided in the cavity and exposed through the first window. The display screen is electrically connected to the processor.

[0014] Optionally, the binding machine also includes a second sensor, and a second window is provided on one side of the shell, the second window is connected to the cavity, the second sensor is provided in the cavity and exposed through the second window, and the second sensor is electrically connected to the processor.

[0015] Optionally, a USB socket is provided on a side of the binding machine facing away from the storage rack, and the USB socket is electrically connected to the processor. The binding machine also includes a POE switch, and the POE switch is electrically connected to the processor. The POE switch is provided on the top of the shell to expose the interface of the POE switch.

[0016] Compared with the prior art, the binding machine provided by the embodiment of the present invention has the beneficial effect that the cavity can protect the internal components of the binding machine from the influence of the external environment. A storage rack and an extension table are provided on one side of the shell, and a storage slot is formed in the storage rack. The storage slot is used to store electronic tags in a stacked manner, and the electronic tags can slide relative to the storage rack to the extension table in the storage slot by gravity. A through hole is provided on the extension table, and the through hole is provided corresponding to the storage slot, and the first sensor is provided corresponding to the through hole, so that the first sensor can sense or scan the electronic tags that slide into the storage slot, so as to distinguish the electronic tags into normal electronic tags and abnormal electronic tags. Among them, the processor can establish a signal connection with the electronic tag, which facilitates information binding between the binding machine and the electronic tag. A pushing component is provided on the extension table, and the pushing component can move relative to the extension table, and a gap is formed between the storage rack and the extension table, so that the electronic tag can be pushed out relative to the extension table. The pushing component has a first motion state for pushing the first stroke and a second motion state for pushing the second stroke. It can push out normal electronic tags and abnormal electronic tags in different motion states. The first motion state corresponds to normal electronic tags, and the second motion state corresponds to abnormal electronic tags. In actual use, the product information of the commodity is first bound to the binding machine and the processor. The processor transmits a start signal to the pushing component to retract the pushing component that was extended in the waiting state. Then, multiple electronic tags are set on the storage rack. The electronic tags slide to the extension table through the storage slot of the storage rack. The first sensor senses or scans the electronic tags through the through hole. If the electronic tag information is successfully bound normally or the position and direction are correct after sensing or scanning, then the electronic tag is a normal electronic tag. The first sensor feeds back the information to the processor. The processor controls the pushing component to start the first motion state and push out the normal electronic tag for subsequent use. If the electronic tag's information binding is abnormal after scanning or the electronic tag's position and direction are incorrect, the electronic tag is considered an abnormal electronic tag. The first sensor feeds the information back to the processor, which controls the pushing component to initiate the second motion state, pushing the abnormal electronic tag to a position different from the normal electronic tag, thereby helping the user quickly distinguish between normal and abnormal electronic tags. With the above-mentioned setting, the binding machine can quickly distinguish between normal and abnormal electronic tags, and push the normal and abnormal electronic tags to different positions through the pushing component, helping the user to store them separately for use. This can improve the convenience of using the binding machine, help reduce the user's workload, reduce working time, and make the use of the binding machine more convenient and quick. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The technical solution of the present invention will be further described in detail below with reference to the accompanying drawings and embodiments, in which:

[0018] Figure 1It is a schematic diagram of a binding machine provided by an embodiment of the present utility model;

[0019] Figure 2 It is a schematic diagram of the storage rack and housing provided by an embodiment of the utility model;

[0020] Figure 3 is a schematic diagram of a cavity and a display screen provided in an embodiment of the present utility model;

[0021] Figure 4 is a schematic diagram of an extension platform and a first sensor provided in an embodiment of the present utility model;

[0022] Figure 5 yes Figure 4 A partial enlarged schematic diagram of position A in the middle;

[0023] Figure 6 It is a schematic diagram of an extension platform provided in an embodiment of the present utility model.

[0024] The reference numerals in the figures are:

[0025] 1000, binding machine; 100, shell; 110, cavity; 101, positioning cam; 102, first window; 103, accommodating slot; 200, storage rack; 201, slide slot; 202, storage slot; 300, extension platform; 301, first connecting part; 3011, sliding sleeve; 302, second connecting part; 3021, through hole; 303, first limiting slot; 3031, positioning hole; 304, convex edge; 3041, first side wall; 3042, second side wall; 30421, connecting hole; 400, first sensor; 600, display screen. DETAILED DESCRIPTION

[0026] It should be noted that, in the absence of conflict, the embodiments and features of the embodiments in this application can be combined with each other. Now, in conjunction with the accompanying drawings, a detailed description of the preferred embodiments of the present utility model will be given.

[0027] The present invention provides a binding machine 1000, such as Figure 1-3As shown, it includes: a shell 100, a first sensor 400, a processor and a pushing component. A cavity 110 is formed in the shell 100. A storage rack 200 is also provided on one side of the shell 100. The storage rack 200 is extended in the vertical direction. An extension platform 300 is provided at the bottom of the shell 100 along the width direction of the shell 100. The extension platform 300 is provided on the same side as the storage rack 200. A storage slot 202 is formed in the storage rack 200. The storage slot 202 is used to stack a number of electronic tags. There is a gap between the storage rack 200 and the extension platform 300. The extension platform 300 is provided with a through hole 3021 corresponding to the storage slot 202; the first sensor The sensor 400 is arranged on a side of the extension platform 300 away from the storage rack 200 and is arranged corresponding to the through hole 3021; ​​the processor is arranged in the cavity 110, and the first sensor 400 is electrically connected to the processor; the pushing component is arranged on the extension platform 300 and can move relative to the extension platform 300, the pushing component is electrically connected to the processor, and the pushing component has a first motion state of moving a first stroke relative to the extension platform 300, and a second motion state of moving a second stroke relative to the extension platform 300; wherein the first motion state is used to push a normal electronic tag out of the storage slot 202, and the second motion state is used to push an abnormal electronic tag out of the storage slot 202.

[0028] The cavity 110 can protect the internal components of the binding machine 1000 from the influence of the external environment. A storage rack 200 and an extension platform 300 are provided on one side of the shell 100. A storage slot 202 is formed in the storage rack 200. The storage slot 202 is used to store electronic tags in a stacked manner, and the electronic tags can slide relative to the storage rack 200 in the storage slot 202 to the extension platform 300 by gravity. A through hole 3021 is provided on the extension platform 300. The through hole 3021 is provided corresponding to the storage slot 202, and the first sensor 400 is provided corresponding to the through hole 3021, so that the first sensor 400 can sense or scan the electronic tags that slide into the storage slot 202, so as to distinguish the electronic tags into normal electronic tags and abnormal electronic tags. Among them, the processor can establish a signal connection with the electronic tag to facilitate information binding between the binding machine 1000 and the electronic tag. A push assembly is mounted on the extension platform 300. The push assembly is movable relative to the extension platform 300, creating a gap between the storage rack 200 and the extension platform 300. This allows the electronic tags to be pushed out of the extension platform 300. The push assembly has a first motion state (a first-stroke push) and a second motion state (a second-stroke push). This allows normal and abnormal electronic tags to be pushed out in different motion states. The first motion state corresponds to normal electronic tags, while the second motion state corresponds to abnormal electronic tags. During actual use, the product information of the commodity is first bound to the binding machine 1000 and the processor. The processor transmits a start signal to the push component, causing the push component, which was extended in the standby state, to retract. Then, multiple electronic tags are placed on the storage rack 200. The electronic tags slide through the storage slot 202 of the storage rack 200 to the extension platform 300. The first sensor 400 senses or scans the electronic tags through the through hole 3021. If the electronic tag information is successfully bound or the position and direction are correct after sensing or scanning, the electronic tag is a normal electronic tag. The first sensor 400 feeds back the information to the processor, which controls the push component to start the first motion state and push the normal electronic tag out for subsequent use. If the electronic tag information is not bound normally or the position and direction are incorrect after scanning, the electronic tag is an abnormal electronic tag. The first sensor 400 feeds back the information to the processor, which controls the push component to start the second motion state and push the abnormal electronic tag to a position different from the normal electronic tags, helping users quickly distinguish between normal and abnormal electronic tags. With the above setting, the binding machine 1000 can quickly distinguish between normal electronic tags and abnormal electronic tags, and push the normal electronic tags and abnormal electronic tags to different positions by pushing the components, helping users to store and use them separately. This can improve the convenience of using the binding machine 1000, help reduce the workload of users, reduce working time, and make the use of the binding machine 1000 more convenient and quick.

[0029] Specifically, the processor receives and processes information from the first sensor 400, thereby enabling identification and ejection of the electronic tag. This structure enables the binding machine 1000 to automatically identify and process tags. The first sensor 400 is electrically connected to the processor, and is used to distinguish between normal and abnormal electronic tags. It then feeds the scanned information back to the processor, enabling the push component to switch between the corresponding first and second motion states.

[0030] Specifically, the pushing component can switch between a first motion state corresponding to a normal electronic tag and a second motion state corresponding to an abnormal electronic tag, thereby pushing out normal electronic tags and abnormal electronic tags respectively in different motion modes, thereby improving the functionality of the binding machine 1000, and enabling the pushing component to help users distinguish and organize normal electronic tags and abnormal electronic tags, saving time in organizing electronic tags.

[0031] It should be noted that a normal electronic tag is an electronic tag whose QR code can be scanned by the first sensor 400 and which is successfully bound to the processor information in the binding machine 1000, that is, an electronic tag with normal functions and a normal setting direction. An abnormal electronic tag is an electronic tag whose QR code cannot be scanned by the first sensor 400 and which is unsuccessfully bound to the processor information in the binding machine 1000, that is, an electronic tag with abnormal functions and an incorrect direction. The first motion state of the pushing component can push the normal electronic tag for a first stroke, causing the normal electronic tag to move to a certain location, and the second motion state of the pushing component mechanism can push the abnormal electronic tag for a second stroke, causing the abnormal electronic tag to move to a location different from the normal electronic tag, thereby helping users distinguish and separate normal electronic tags from abnormal electronic tags.

[0032] It should be noted that the first sensor 400 can be a scanner that uses optical scanning and sensing to identify the QR code or barcode set on the electronic tag, and uses the scanned information to help the processor bind the electronic tag information. In addition, the first sensor 400 can collect the electronic tag information through wireless sensing, such as a wireless sensor, NFC sensor, or Bluetooth sensor.

[0033] refer to Figure 2 A plurality of positioning protrusions 101 are provided on one side of the shell 100 facing the storage rack 200, and a plurality of slide grooves 201 are provided on the side of the storage rack 200 facing the shell 100. The slide grooves 201 are correspondingly connected to the positioning protrusions 101, and a convex edge 304 is provided on the extension platform 300 to abut against the bottom of the storage rack 200.

[0034] The corresponding connection between the positioning protrusion 101 set on the shell 100 and the slide groove 201 on the storage rack 200 can ensure a firm connection between the shell 100 and the storage rack 200, improve the structural stability of the binding machine 1000, and reduce the possibility of shaking or loosening of the storage rack 200 and the shell 100 during use, thereby ensuring the uniformity and consistency of the movement of the electronic tag relative to the storage rack 200, and increasing the reliability of the binding machine 1000 during use.

[0035] Specifically, during actual use, the storage rack 200 is connected to the positioning protrusion 101 through the slide groove 201, and slides relative to the positioning protrusion 101 through the slide groove 201 to install the storage rack 200 to the desired position. This setting method can facilitate the connection and installation between the storage rack 200 and the shell 100, and can facilitate the subsequent disassembly and installation of the storage rack 200, and facilitate the use of the binding machine 1000.

[0036] It should be noted that, because the ridge 304 has a certain height, the storage rack 200 can be raised to a certain height, so that a certain distance is maintained between the storage rack 200 and the extension platform 300, thereby facilitating the pushing component to push the electronic tag relative to the extension platform 300.

[0037] refer to Figure 4 A accommodating groove 103 is provided on the shell 100, and the extension platform 300 includes a first connecting part 301 and a second connecting part 302 connected to each other. The first connecting part 301 passes through the accommodating groove 103 and is arranged in the cavity 110. The second connecting part 302 is located outside the shell 100. The pushing component is arranged on the first connecting part 301, and the through hole 3021 is arranged in the second connecting part 302.

[0038] The extension platform 300 accommodates its first connecting portion 301 within the housing 100 via the receiving slot 103. The push assembly is located on the first connecting portion 301, thereby protecting the push assembly from environmental influences to a certain extent and ensuring stability and reliability when the push assembly moves relative to the extension platform 300. The first connecting portion 301 is accommodated within the cavity 110 via the receiving slot 103, making the structure of the binding machine 1000 more organized and compact.

[0039] Specifically, the first sensor 400 is disposed at the second connection portion 302 corresponding to the through hole 3021 , which facilitates the corresponding arrangement of the first sensor 400 with the through hole 3021 and avoids shielding and blocking of the first sensor 400 and affecting the normal use of the first sensor 400 .

[0040] refer to Figure 4 and Figure 5A plurality of first limiting grooves 303 are provided on the side of the first connecting portion 301 and the second connecting portion 302 facing the storage rack 200, and positioning holes 3031 are respectively provided on the inner walls on the opposite sides of the first limiting grooves 303. A plurality of first pulleys are also provided on the extension platform 300, and the first pulleys are located in the first limiting grooves 303 and are rotatably connected to the positioning holes 3031.

[0041] The first and second connecting portions 301, 302 are each provided with a first limiting groove 303 for accommodating a first pulley. Positioning holes 3031 are provided on the inner walls of the first limiting groove 303 on opposite sides, so that the first pulley is rotatably connected to the positioning holes 3031. In actual use, the first pulleys provided on the first and second connecting portions 301, 302 can reduce friction between the pushing assembly and the extension portion, making movement of the pushing assembly on the first and second connecting portions 301, 302 smoother and more efficient, and facilitating movement of the pushing assembly relative to the extension portion.

[0042] On the other hand, when the normal electronic tags and abnormal electronic tags moved from the storage rack 200 to the extension platform 300 are pushed by the components to move, the friction between them and the extension platform 300 can be reduced, thereby facilitating the movement of the normal electronic tags and abnormal electronic tags.

[0043] Specifically, the first pulley facilitates the movement of the push assembly relative to the first connecting portion 301 and the second connecting portion 302. Positioning holes 3031 are provided on the inner walls of the first limiting groove 303 on opposite sides. The limiting grooves further limit and secure the first pulley, helping the first pulley maintain stable rotation within the first limiting groove 303, making the push assembly more stable and reliable during movement.

[0044] In an optional embodiment of the present invention, the pushing component includes an electric push rod, a push head is provided at the cantilever end of the telescopic shaft of the electric push rod, a sliding sleeve 3011 is provided on the second connecting part 302, the telescopic shaft is slidably connected to the sliding sleeve 3011, and the push head is used to push the electronic tag.

[0045] It should be noted that the end of the telescopic shaft on the electric push rod that extends out is the cantilever end.

[0046] The electric push rod drives the telescopic shaft and the push head on the cantilever end of the telescopic shaft relative to the extension platform 300, pushing the electronic tag relative to the extension platform 300 to move it to the desired position. The telescopic shaft is slidably connected to a sliding sleeve 3011 provided on the second connecting portion 302. The sliding sleeve 3011 positions and guides the telescopic shaft, ensuring its stability during the pushing process.

[0047] Specifically, the sliding connection between the telescopic shaft and the sliding sleeve 3011 can reduce friction during the movement of the push assembly relative to the extension platform 300, making the movement of the push assembly smoother and more efficient. Furthermore, the provision of the sliding sleeve 3011 can help limit the range of motion of the telescopic shaft, thereby improving operational convenience and safety.

[0048] In an optional embodiment of the present invention, a second limiting groove is provided on the pushing head, and the pushing assembly further includes a second pulley, which is provided in the second limiting groove and is rotatably connected to the pushing head via the second limiting groove.

[0049] It should be noted that the second limiting groove provided on the pusher head is a through groove, so the second pulley provided in the second limiting groove can be directly connected to the roller of the extension platform 300.

[0050] A second limit groove and a second pulley are provided on the push head for sliding connection with the push head through the second limit groove. The second pulley reduces the friction between the push head and the extension platform 300 when the push head moves relative to the extension platform 300, thereby making it easier for the push head to slide relative to the extension platform 300 and also making it easier for the push head to push the electronic tag to move relative to the extension platform 300.

[0051] It should be noted that, in this embodiment, a second pulley is provided on the pushing head, and a first pulley is provided on the first connecting part 301 and the second connecting part 302 respectively. Therefore, in order to ensure the stability of the movement of the pushing head, the second pulley needs to be set to be flush with the extension platform 300, and / or the second pulley needs to be set to be flush with the bottom surface of the pushing head, so as to avoid shaking and ups and downs of the pushing head during movement.

[0052] refer to Figure 3 A first window 102 is provided on the shell 100, and the first window 102 is connected to the cavity 110. The binding machine 1000 also includes a display screen 600, which is provided in the cavity 110 and exposed through the first window 102. The display screen 600 is electrically connected to the processor.

[0053] Display screen 600 is used to visualize the information on the electronic tag. It facilitates the user's understanding of the binding information between the electronic tag and the binding machine 1000, and allows the user to intuitively distinguish between normal and abnormal electronic tags. Display screen 600 is exposed through first window 102, allowing the operator to easily view the information displayed on display screen 600. This configuration provides visual feedback and information display for the binding machine 1000, facilitating user interaction with the binding machine 1000 through display screen 600 and making operation of the binding machine 1000 more intuitive and convenient.

[0054] Specifically, the display screen 600 is electrically connected to the processor, which can help display the result of binding the binding machine 1000 with the electronic tag information on the display screen 600, and can also help the display screen 600 distinguish normal electronic tags and abnormal electronic tags distinguished after scanning by the first sensor 400.

[0055] In an optional embodiment of the present invention, the binding machine 1000 further includes a recycling box, which is arranged on a side of the extension platform 300 away from the shell 100, and is used to recycle abnormal electronic tags.

[0056] The recovery box is used to accommodate and recover abnormal electronic tags that have fallen after the push component activates the second motion state and pushes the abnormal electronic tags onto the extension platform 300 for subsequent use. The recovery box is located on the side of the extension platform 300 facing away from the housing 100, so that it is arranged corresponding to the extension platform 300. This can better recover abnormal electronic tags and prevent them from being damaged during the recovery process. The recovery box stores recovered abnormal electronic tags in a centralized location, preventing confusion between normal and abnormal electronic tags, making it easier for users to identify and store abnormal electronic tags, and allowing them to quickly place abnormal electronic tags into the recovery box, thereby improving the efficiency of the recovery process.

[0057] Specifically, the position of the recycling box can automatically push abnormal electronic tags into it by pushing the component, eliminating the need for operators to manually sort them, simplifying the operating steps and improving the convenience and efficiency of the recycling operation.

[0058] refer to Figure 6 The protruding edge 304 includes a first side wall 3041 and a second side wall 3042 respectively arranged on opposite sides of the extension platform 300 along the length direction. The first side wall 3041 is arranged on one side of the first connecting part 301, and the second side wall 3042 is arranged on the other side of the first connecting part 301 and extends to the second connecting part 302. The sliding sleeve 3011 is respectively connected to the first side wall 3041 and the second side wall 3042. The first side wall 3041 and the second side wall 3042 are respectively provided with connecting holes 30421, and the storage rack 200 is respectively connected to the first side wall 3041 and the second side wall 3042 through the connecting holes 30421.

[0059] The first side wall 3041 and the second side wall 3042 comprised by the ledge 304 serve as position limiting and guiding mechanisms, ensuring that the pushing mechanism maintains a stable motion state while pushing the electronic tag and preventing the electronic tag from accidentally falling off the extension platform 300, thereby improving the safety and stability of the binding machine 1000. The first side wall 3041 is provided only on one side of the first connecting portion 301, while the second side wall 3042 is provided on both the first connecting portion 301 and the second connecting portion 302. This fully limits the position of the pushing mechanism and the electronic tag on the side where the second side wall 3042 is provided. On the side where the first side wall 3041 is provided, it is convenient for a user to manually collect the electronic tag from the area of ​​the second connecting portion 302 where the first side wall 3041 is not provided, thus facilitating user operation and use. The sliding sleeve 3011 is connected to the first side wall 3041 and the second side wall 3042 respectively. The first side wall 3041, the second side wall 3042 and the sliding sleeve 3011 support and connect with each other, thereby enhancing the structural stability of the first side wall 3041, the second side wall 3042 and the sliding sleeve 3011, enhancing the structural strength of the extension platform 300, and ensuring its stability during use.

[0060] Specifically, a connecting hole 30421 is provided on the first side wall 3041 and the second side wall 3042, and the storage rack 200 is connected to the first side wall 3041 and the second side wall 3042 respectively through the connecting hole 30421, which has a certain supporting effect on the storage rack 200, thereby preventing the storage rack 200 from shaking and displacing during use, thereby avoiding the impact on the falling process of the electronic tag relative to the storage rack 200, and ensuring the reliability of the binding machine 1000 during use.

[0061] In an optional embodiment of the present invention, the binding machine 1000 also includes a second sensor, and a second window is provided on one side surface of the shell 100. The second window is connected to the cavity 110. The second sensor is provided in the cavity 110 and exposed through the second window. The second sensor is electrically connected to the processor.

[0062] During actual use, the second sensor is first used to sense or scan the tag of the goods leaving the warehouse to feed the information of the goods back to the sensor. The sensor then sends a signal to retract the pushing mechanism from the extended standby state. The first sensor 400 is then used to scan or sense the information of the electronic tag, and the information of the electronic tag is fed back to the processor, so that the binding machine 1000 can check and compare the information of the goods with the information of the electronic tag connected to it, and distinguish the first sensor and the second sensor in turn. The second sensor is located in the cavity 110 and exposed through the second window, so that the operator can easily use the scanning function of the second sensor. The above setting provides a convenient scanning experience, speeds up scanning speed and operating efficiency. At the same time, it can further expand the use function of the binding machine 1000, so that it can also scan the goods, making it convenient for the binding machine 1000 to collect the information of the goods, and then use the binding machine 1000 to compare the information between the goods and the electronic tag, and use the binding machine 1000 to bind the information between the electronic tag and the goods.

[0063] Specifically, the second sensor is electrically connected to the processor so that the second sensor feeds back the scanned QR code or barcode information of the goods to the binding machine 1000, facilitating the next processing by the binding machine 1000. Integrating the second sensor into the binding machine 1000 can integrate the function of collecting product information with the function of collecting electronic tags, making it easier for users to quickly complete the information collection and binding of goods and electronic tags, eliminating the need for separate binding machines 1000 to complete the above steps. This enables rapid data exchange and processing, thereby improving work efficiency.

[0064] It should be noted that the second sensor can be a scanner that uses optical scanning and sensing to identify the QR code or barcode set on the product label, and the information obtained from the scan helps the processor bind the product information. In addition, the second sensor can collect product information through wireless sensing. For example, if an NFC coil is built into the product label, the second sensor can be an NFC sensor for sensing and collecting. Alternatively, the second sensor can be a binding machine 1000 such as a wireless sensor or Bluetooth sensor.

[0065] In an optional embodiment of the present invention, a USB plug interface is provided on a side of the binding machine 1000 facing away from the storage rack 200, and the USB plug interface is electrically connected to the processor.

[0066] The USB port is used to connect other expansion devices to the binding machine 1000, such as a mouse and keyboard. This further facilitates the operation and use of the binding machine 1000. The USB port facilitates the connection between binding machines 1000 and the reception and transmission of data. The USB port on one side of the binding machine 1000 increases the versatility of the binding machine 1000 and improves its ease of use.

[0067] Specifically, the USB interface is a universal interface that is widely used in the market, so the compatibility of the binding machine 1000 can be increased, and the user can more easily connect various binding machines 1000 for data transmission or connect an external binding machine 1000.

[0068] Specifically, the USB socket is set on a side opposite to the storage rack 200 to avoid mutual interference between the storage rack 200 and the USB socket, making it convenient for users to use the USB socket for connection.

[0069] In an optional embodiment of the present invention, the binding machine 1000 further includes a POE switch, which is electrically connected to the processor. The POE switch is disposed on the top of the housing 100 to expose the interface of the POE switch.

[0070] A POE (Power Over Ethernet) switch is a network device 1000 that can transmit data via Ethernet cables while also providing power to connected devices 1000. A POE switch can connect multiple devices 1000 through its built-in interfaces. POE switches are commonly used to power devices such as network cameras, wireless access points, IP phones, and network intercom systems.

[0071] In this embodiment, the POE switch is responsible for power supply and connection to the internal LAN for localized computing and store usage interaction. Placing the POE switch on the top of the housing 100 and exposing the interface can improve the usability and maintenance convenience of the binding machine 1000. Users can more easily connect and manage the POE switch without having to disassemble the housing 100 of the binding machine 1000. The POE switch is located on the top of the housing 100, which can make the wiring of the binding machine 1000 simpler, the user can more conveniently connect to other gateway binding machines 1000, and can more effectively utilize the internal space of the binding machine 1000. This helps to reduce the size of the binding machine 1000, making the binding machine 1000 more compact and suitable for environments with limited space.

[0072] It should be understood that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Those skilled in the art may modify the technical solutions described in the above embodiments, or make equivalent replacements for some of the technical features therein; and all these modifications and replacements should fall within the scope of protection of the claims attached to the present invention.

Claims

1. A binding machine, characterized in that: include: A shell, wherein a cavity is formed in the shell, and a storage rack is further provided on one side of the shell, wherein the storage rack extends in a vertical direction, and an extension platform is provided at the bottom of the shell along the width direction of the shell, wherein the extension platform is provided on the same side as the storage rack, and a storage slot is formed in the storage rack, wherein the storage slot is used for stacking a plurality of electronic tags, and a gap is provided between the storage rack and the extension platform, and the extension platform is provided with a through hole corresponding to the storage slot; A first sensor is provided on a side of the extension platform facing away from the storage rack and corresponding to the through hole; a processor, the processor being disposed in the cavity, the first sensor being electrically connected to the processor; a pushing assembly disposed on the extension platform and capable of moving relative to the extension platform, the pushing assembly being electrically connected to the processor, the pushing assembly having a first motion state in which it moves a first stroke relative to the extension platform, and a second motion state in which it moves a second stroke relative to the extension platform; The first motion state is used to push a normal electronic tag out of the storage slot, and the second motion state is used to push an abnormal electronic tag out of the storage slot.

2. The binding machine according to claim 1, characterized in that: The shell is provided with a plurality of positioning protrusions on one side facing the storage rack, and the storage rack is provided with a plurality of slide grooves on the side facing the shell. The slide grooves are correspondingly connected to the positioning protrusions, and the extension platform is provided with a convex edge that abuts against the bottom of the storage rack.

3. The binding machine according to claim 2, characterized in that: The shell is provided with a accommodating groove, and the extension platform includes a first connecting part and a second connecting part connected to each other, the first connecting part passes through the accommodating groove and is arranged in the cavity, and the second connecting part is located outside the shell, the pushing assembly is arranged on the first connecting part, and the through hole is arranged in the second connecting part.

4. The binding machine according to claim 3, characterized in that: The first connecting part and the second connecting part are respectively provided with a plurality of first limiting grooves on the side facing the storage rack, and positioning holes are respectively provided on the inner walls on the opposite sides of the first limiting grooves. The extension platform is also provided with a plurality of first pulleys, which are located in the first limiting grooves and are rotatably connected to the positioning holes.

5. The binding machine according to claim 3, characterized in that: The pushing assembly includes an electric push rod, a push head is provided at the cantilever end of the telescopic shaft of the electric push rod, a sliding sleeve is provided on the second connecting part, the telescopic shaft is slidably connected to the sliding sleeve, and the push head is used to push the electronic tag.

6. The binding machine according to claim 5, characterized in that: The pushing head is provided with a second limiting groove, and the pushing assembly further includes a second pulley, the second pulley is provided in the second limiting groove, and the second pulley is rotatably connected to the pushing head through the second limiting groove.

7. The binding machine according to claim 5, characterized in that: The convex edge includes a first side wall and a second side wall respectively arranged on opposite sides of the extension platform along the length direction, the first side wall is arranged on one side of the first connecting part, the second side wall is arranged on the other side of the first connecting part and extends to the second connecting part, the sliding sleeve is respectively connected to the first side wall and the second side wall, the first side wall and the second side wall are respectively provided with connecting holes, and the storage rack is respectively connected to the first side wall and the second side wall through the connecting holes.

8. The binding machine according to claim 1, characterized in that: The shell is provided with a first window, which is connected to the cavity. The binding machine also includes a display screen, which is provided in the cavity and exposed through the first window. The display screen is electrically connected to the processor.

9. The binding machine according to any one of claims 1 to 8, characterized in that: The binding machine also includes a second sensor. A second window is provided on one side of the shell. The second window is connected to the cavity. The second sensor is provided in the cavity and exposed through the second window. The second sensor is electrically connected to the processor.

10. The binding machine according to any one of claims 1 to 8, characterized in that: A USB socket is provided on a side of the binding machine facing away from the storage rack, and the USB socket is electrically connected to the processor. The binding machine also includes a POE switch, and the POE switch is electrically connected to the processor. The POE switch is provided on the top of the shell to expose the interface of the POE switch.