Intelligent printing, authentic identification and batch stamping all-in-one machine

The intelligent printing and authentication batch stamping machine, which integrates scanning, printing, paper feeding and stamping mechanisms, solves the problems of stamp tube storage and stamping security in traditional printing control machines, and achieves efficient and secure document processing.

CN224276670UActive Publication Date: 2026-05-26SHENZHEN INFOTECH TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN INFOTECH TECH
Filing Date
2025-05-08
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing printing control machines lack the functions of storing stamp tubes and automatic stamping, and it is difficult to balance the security and speed of stamping.

Method used

A smart printing, authentication, and batch stamping machine was designed, integrating scanning, printing, paper feeding, and stamping mechanisms. It adopts multi-motor and roller assembly to achieve multi-channel transmission and precise control of documents, and combines a display touch screen and camera for authorization verification.

Benefits of technology

It improves paper transfer efficiency and seal security, reduces equipment footprint, simplifies operation procedures, and enhances office efficiency and seal security.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of stamping, in particular to an intelligent stamping, authentic identification and batch stamping all-in-one machine. According to the automatic stamping machine, the scanning mechanism, the printing mechanism, the paper conveying mechanism and the stamping mechanism are arranged, scanned files are separately conveyed through the paper conveying mechanism, files needing to be stamped and files not needing to be stamped are separately conveyed through channels, the paper conveying efficiency is improved, and then the stamping efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of seal technology, and in particular to an intelligent printing, authentication, and batch stamping integrated machine. Background Technology

[0002] Existing printing control machines lack the function of storing the stamp tubes within the machine and the function of automatically applying the stamps. Furthermore, existing technologies often fail to balance and unify the security and speed of stamp application.

[0003] Printing, stamping, and authentication of documents are common and important processes. Traditional document processing often requires multiple separate devices to complete these tasks, such as scanners for scanning, printers for printing, and stamping machines for stamping. Documents need to be transferred between different devices multiple times, requiring manual handling, making the process cumbersome.

[0004] Chinese Patent Publication No. CN110014754B discloses a printing, authentication, and batch stamping integrated machine and its processing method. The printing, authentication, and batch stamping integrated machine includes: a housing, the interior of which is divided by a partition into a first region located in the upper left corner, a second region located in the upper right corner, and a third region located below the first and second regions; a document acquisition device for acquiring electronic documents; a printing device for printing the electronic documents into document pages; a paper transport device for transporting the document pages printed by the printing device to the second region; a scanning device for scanning the placed document pages; a processing device for identifying whether previous and subsequent documents are consistent; and a stamping device installed in the second region for stamping the identified document pages to be stamped. It is evident that the printing, authentication, and batch stamping integrated machine has the following problems: it mainly relies on roller sets and motor-driven active rollers for paper transport, which affects paper transport efficiency. Utility Model Content

[0005] To address this issue, this utility model provides an intelligent printing, authentication, and batch stamping integrated machine to overcome the problem in existing technologies that rely mainly on roller groups and motor-driven active rollers for paper transfer, which affects paper transfer efficiency.

[0006] To achieve the above objectives, this utility model provides an intelligent printing, authentication, and batch stamping integrated machine, comprising:

[0007] shell;

[0008] A scanning mechanism, housed within the casing, is used to scan documents to generate scanned documents;

[0009] A printing mechanism, which is located below the scanning mechanism, prints online documents.

[0010] A paper conveying mechanism, located below the scanning mechanism, is used to transport the scanned print file.

[0011] A stamping mechanism, located inside the housing on the side away from the printing mechanism, is used to stamp documents to be stamped output from the paper feeder.

[0012] Furthermore, the outer casing includes,

[0013] The display touchscreen is located above the housing and is used by the user to transmit online documents to be printed, to select a stamp to be used, and to verify whether the user has stamping privileges.

[0014] Furthermore, the printing mechanism includes,

[0015] A printer, located below the scanning mechanism, is used to print online documents;

[0016] A paper storage box, located below the printer, is used to store the paper to be printed.

[0017] Furthermore, the paper conveying mechanism includes,

[0018] A paper feeder is located at the output end of the scanning mechanism so that the document slides down the paper feeder due to gravity.

[0019] A dual-channel paper feed port is located at the output end of the paper feeder for document passage;

[0020] A paper feeder is located on the side of the dual-channel paper feed port away from the paper feeder, so as to form a channel with the paper feeder for the document to move along the direction of the stamping mechanism;

[0021] The paper output tray is located below the paper feed tray and one end is flush with the lower edge of the dual-channel paper feed port, so as to form a channel with the paper feed tray for the document to move along the printer direction;

[0022] A paper feeding limit plate is located below the paper feeder to limit the falling direction of the scanned document, so that the scanned document falls into the dual-channel paper feed port.

[0023] A paper collection box, located below the paper output rack, is used to collect unstamped documents output from the paper output rack.

[0024] Furthermore, the paper conveying mechanism also includes,

[0025] The remote printing conveyor motor is located on one side of the dual-channel paper feed port to provide power for documents to enter or exit the paper feeder.

[0026] The remote printing output shaft is connected to the remote printing conveyor motor to achieve transmission;

[0027] The remote printing roller assembly, which is connected to the remote printing output shaft, is controlled by the remote printing output shaft to rotate and transport the document along both sides of the dual-channel paper feed port.

[0028] Furthermore, the remote printing roller assembly includes,

[0029] The remote printing drive wheel is connected to the remote printing output shaft and is controlled by the remote printing output shaft to achieve rotation;

[0030] Several remote printing driven rollers are provided, and each remote printing driven roller and the remote printing driving roller are located inside the dual-channel paper feed port. Each remote printing driven roller is driven by the remote printing driving roller to transport the document along both sides of the dual-channel paper feed port.

[0031] Furthermore, the paper conveying mechanism also includes,

[0032] A single-channel paper feed port is located at the output end of the paper feeder to provide a channel for transporting documents to be stamped to the stamping mechanism;

[0033] A proximity conveyor motor, located on one side of the single-channel paper feed port, is used to provide power for documents to enter the stamping mechanism or output the paper feeder.

[0034] The proximity roller assembly is located inside the single-channel paper feed port and connected to the proximity conveyor motor for rotation controlled by the printing conveyor motor to transport the document along both sides of the single-channel paper feed port.

[0035] Furthermore, the near-printing roller assembly includes,

[0036] The proximity drive wheel is connected to the proximity conveyor motor and is controlled by the proximity conveyor motor to achieve rotation;

[0037] Several proximity printing driven rollers are arranged inside the single-channel paper feed port, and each proximity printing driven roller is driven by the proximity printing driven roller to transport the document along both sides of the single-channel paper feed port.

[0038] Furthermore, the stamping mechanism includes,

[0039] The stamping platform is located at the single-channel paper feed port to support documents for stamping;

[0040] A stamp storage unit is located above the stamping platform and is used to store multiple stamp tubes.

[0041] The robotic arm for stamping is positioned above the stamp storage unit. It is used to grasp the stamp tubes stored in the stamp storage unit and move the stamp tubes to the corresponding stamping position on the stamping platform to complete the stamping operation on the documents to be stamped.

[0042] Furthermore, the outer casing also includes,

[0043] A facial recognition camera, which is mounted on the top of the housing, is used to capture the user's facial features;

[0044] An environmental camera is positioned on the upper part of the housing, away from the portrait camera, to acquire images of the external environment.

[0045] Compared with the prior art, the beneficial effect of this utility model is that it is equipped with a scanning mechanism, a printing mechanism, a paper conveying mechanism and a stamping mechanism. The paper conveying mechanism is used to separate the scanned documents for transmission, so as to separate the documents that need to be stamped and the documents that do not need to be stamped into different channels, thereby improving the paper separation efficiency.

[0046] Furthermore, through the coordinated work of multiple motors and roller groups, the paper feeding process at different stages can be precisely controlled, and the paper feeding speed can be adjusted according to the document transmission requirements, thereby improving paper feeding efficiency and thus improving printing efficiency.

[0047] Furthermore, this utility model achieves precise operation of the paper feeding and output processes by coordinating the paper feeder, dual-channel paper feed port, paper feeder, paper output rack, paper feed limit plate, and paper collection box when stamping documents. This avoids the impact of jams and delays in the paper feeding and output processes on stamping efficiency, thereby further improving stamping security and efficiency.

[0048] Furthermore, the scanning, printing, paper feeding, and stamping mechanisms are integrated into a single housing, forming a multi-functional batch printing and stamping all-in-one machine. This achieves one-stop processing of document scanning, printing, and stamping, avoiding multiple transfers of documents between different devices and greatly improving office efficiency. The integrated design reduces the machine's footprint and lowers the required office space.

[0049] Furthermore, a touchscreen display is located on the top of the casing, allowing users to transfer online documents to be printed, select available stamps, and verify stamp usage permissions. This provides a user-friendly interface, enabling intuitive operation of the all-in-one printer without complex procedures. Simultaneously, the stamp usage permission verification function prevents unauthorized personnel from using stamps, improving the security and management efficiency of stamp usage.

[0050] Furthermore, the paper conveying mechanism employs a structure including a paper feeder, dual-channel paper feed ports, a paper delivery rack, an output paper feeder, and a paper feed limit plate. Combined with a remote printing conveyor motor, a remote printing roller assembly, a proximity printing conveyor motor, and a proximity printing roller assembly, it achieves efficient document transfer. It can quickly and accurately transfer documents from the scanning mechanism to the paper collection box or stamping mechanism, ensuring the continuity and efficiency of document processing. The dual-channel and single-channel paper feed port designs can be flexibly selected according to document processing needs, improving the equipment's adaptability. Simultaneously, the paper collection box can collect unstamped documents for convenient subsequent processing.

[0051] Furthermore, the stamping mechanism includes a stamping platform, a stamp storage unit, and a robotic arm. The stamp storage unit can hold multiple stamp tubes, and the robotic arm can grasp the stamp tubes and move them to the corresponding stamping position on the stamping platform for the stamping operation. This automates the stamping process, reduces human error, and allows the robotic arm to accurately stamp the document at the designated location, improving both the quality and efficiency of the stamping process. Simultaneously, the stamp storage unit can store multiple stamps, allowing users to conveniently select different stamps as needed.

[0052] Furthermore, a facial recognition camera and an ambient camera are installed on the top of the casing to capture images of the user's facial features and the external environment, respectively. The facial recognition camera can be used for identity verification, further enhancing the security of the seal. By recognizing the user's facial features, it ensures that only authorized personnel can use the seal. The ambient camera can monitor the environment around the device in real time, providing assurance for the safe operation of the device. Attached Figure Description

[0053] Figure 1 This is a structural schematic diagram of the intelligent printing, authentication, and batch stamping integrated machine of this utility model;

[0054] Figure 2 This is a schematic diagram of the internal structure of the intelligent printing, authentication, and batch stamping integrated machine of this utility model;

[0055] Figure 3 This is another internal structural view of the intelligent printing, authentication, and batch stamping integrated machine according to an embodiment of this utility model;

[0056] Figure 4 Other angle internal structure diagrams of the intelligent printing, authentication, and batch stamping integrated machine according to an embodiment of this utility model;

[0057] Figure 5 This is a detailed structural diagram of the paper feeding unit of the intelligent printing and authentication batch stamping machine according to an embodiment of this utility model;

[0058] In the diagram: 1. Housing; 2. Touchscreen display; 31. Human face camera; 32. Environmental camera; 4. Scanning mechanism; 5. Printer; 51. Paper storage box; 61. Paper feed limit plate; 62. Paper feeder; 63. Paper output rack; 64. Paper collection box; 65. Single-channel paper feed port; 66. Dual-channel paper feed port; 67. Remote printing conveyor motor; 68. Near-field printing conveyor motor; 69. Printing platform; 7. Printing robotic arm; 71. Hanger; 72. Detailed Implementation

[0059] To make the objectives and advantages of this utility model clearer, the utility model will be further described below with reference to the embodiments; it should be understood that the specific embodiments described herein are only for explaining this utility model and are not intended to limit this utility model.

[0060] Preferred embodiments of the present invention will now be described with reference to the accompanying drawings. Those skilled in the art should understand that these embodiments are merely illustrative of the technical principles of the present invention and are not intended to limit the scope of protection of the present invention.

[0061] It should be noted that in the description of this utility model, the terms "upper", "lower", "left", "right", "inner", "outer", etc., indicating the direction or positional relationship are based on the direction or positional relationship shown in the drawings. This is only for the convenience of description and is not intended to indicate or imply that the batch printing and stamping machine or component must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation of this utility model.

[0062] Furthermore, it should be noted that, in the description of this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0063] Example 1

[0064] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 as well as Figure 5 The figures shown are, respectively, the external structure diagram, the internal structure diagram from another angle, the internal structure diagram from other angles, and the specific structure diagram of the paper feeding unit of the intelligent printing, counterfeit detection, and batch stamping integrated machine of this utility model embodiment; the intelligent printing, counterfeit detection, and batch stamping integrated machine of this utility model embodiment includes:

[0065] Please see Figure 1and Figure 2 The diagrams shown are a structural schematic and an internal structural schematic of the intelligent printing, authentication, and batch stamping integrated machine of this utility model. The machine includes a housing 1, a scanning mechanism 4, a printing mechanism, a paper conveying mechanism, and a stamping mechanism. The scanning mechanism 4 is located inside the housing 1 and is used to scan documents to generate scanned documents. The printing mechanism is located below the scanning mechanism 4 to print online documents. The paper conveying mechanism is located below the scanning mechanism 4 and is used to transport the scanned documents. The stamping mechanism is located inside the housing 1 on the side away from the printing mechanism and is used to stamp the documents to be stamped.

[0066] When the batch printing and stamping machine of this utility model is running, the printing mechanism set inside the outer casing 1 prints the online documents; the scanning mechanism 4 scans the documents to generate scanned documents; when it is determined that the scanned documents meet the stamping requirements, the paper conveying mechanism set below the scanning mechanism transmits the scanned printed documents to the stamping mechanism, and the stamping mechanism stamps the documents to be stamped.

[0067] Specifically, the requirements for stamping include confirming, based on the scanned document, that the printed document is free of omissions or errors, and that the online document is the one that needs to be stamped.

[0068] Specifically, the housing includes a display touchscreen 2; the display touchscreen 2 is disposed above the housing 1 for users to transmit online documents to be printed, for users to select a seal to be used, and for verifying whether the user has the right to use the seal.

[0069] Specifically, the printing mechanism includes a printer 5 and a paper storage box 51. The printer is located below the scanning mechanism 4 and is used to print online documents. The paper storage box 51 is located below the printer to store paper to be printed.

[0070] When the batch printing and stamping all-in-one machine of this utility model is running, the user transmits online documents via the touch screen 2. The user determines whether stamping is required and verifies whether stamping permissions are available via the touch screen 2. The printer then prints the online documents.

[0071] This utility model is equipped with a scanning mechanism 4, a printing mechanism, a paper conveying mechanism, and a stamping mechanism. The paper conveying mechanism is used to separate and transmit scanned documents, so as to separate documents that need to be stamped from those that do not need to be stamped, thereby improving paper separation efficiency.

[0072] The paper conveying mechanism of this utility model includes a paper feeder 62, a dual-channel paper inlet 67, a paper feeder 63, an output paper feeder 64, a paper feed limiting plate 61, and a paper collection box 65. The paper feeder 62 is located at the output end of the scanning mechanism 4, allowing documents to slide down the paper feeder 62 due to gravity. The dual-channel paper inlet 67 is located at the output end of the paper feeder 62 for document passage. The paper feeder 63 is located on the side of the dual-channel paper inlet 67 away from the paper feeder 62, forming a channel with the paper feeder 62 for documents to move along the stamping mechanism direction. The output paper feeder 64 is located below the paper feeder 62, with one end flush with the lower edge of the dual-channel paper inlet 67, forming a channel with the paper feeder 63 for documents to move along the printer 5 direction. The paper feed limiting plate 61 is located below the paper feeder 62 to restrict the falling direction of scanned documents, ensuring they fall into the dual-channel paper inlet 67. The paper collection box 65 is located below the paper output rack 64 and is used to collect unstamped documents output by the paper output rack 64.

[0073] After the scanning mechanism completes the scanning of the document, it outputs the document. The document, restrained by gravity and the paper feeding limit plate 61, falls onto the paper feeder 62. The document is then transferred to the paper delivery tray 63 via the dual-channel paper feed port 67. If the document is ready for stamping, it is transferred to the stamping mechanism. If it is determined that the document does not require stamping, it is transferred from the paper delivery tray 63 to the output tray 64. The document, constrained by gravity, falls into the paper collection box 65 located below the output tray 64, which is used for temporary storage of documents that do not require stamping.

[0074] This utility model achieves precise operation of the paper feeding and output processes by coordinating the paper feeder 62, dual-channel paper feed port 67, paper feeder 63, paper output rack 64, paper feed limit plate 61, and paper collection box 65 when stamping documents. This avoids the impact of jams and delays in the paper feeding and output processes on stamping efficiency, and further improves stamping security and efficiency.

[0075] The paper conveying mechanism of this utility model further includes a remote printing conveyor motor 68, a remote printing output shaft (not shown in the figure), and a remote printing roller assembly (not shown in the figure). The remote printing conveyor motor 68 is disposed on one side of the dual-channel paper feed port 67 to provide power for documents to enter or exit the paper feeder 63; the remote printing output shaft is connected to the remote printing conveyor motor 68 for transmission. The remote printing roller assembly is connected to the remote printing output shaft and is controlled by the remote printing output shaft to rotate and convey documents along both sides of the dual-channel paper feed port 67.

[0076] The remote printing roller assembly includes a remote printing drive roller (not shown in the figure) and a remote printing driven roller (not shown in the figure). The remote printing drive roller is connected to the remote printing output shaft and is controlled by the remote printing output shaft to achieve rotation. Several remote printing driven rollers are arranged inside the dual-channel paper feed port 67, and each remote printing driven roller is driven by the remote printing drive roller to transport the document along both sides of the dual-channel paper feed port 67.

[0077] The paper conveying mechanism of this utility model also includes a single-channel paper feed port 66, a proximity conveyor motor 69, and a proximity roller assembly (not shown in the figure). The single-channel paper feed port 66 is located at the output end of the paper feeder 63 and provides a channel for conveying documents to be stamped to the stamping mechanism. The proximity conveyor motor 69 is located on one side of the single-channel paper feed port 66 and provides power for documents to enter the stamping mechanism or exit the paper feeder 63. The proximity roller assembly is located inside the single-channel paper feed port 66 and connected to the proximity conveyor motor 69, and is controlled by the printing conveyor motor 27 to rotate, thereby conveying documents along both sides of the single-channel paper feed port 66.

[0078] The proximity roller assembly includes a proximity drive roller (not shown in the figure) and proximity driven rollers (not shown in the figure). The proximity drive roller is connected to the proximity conveyor motor 69 and is controlled by the proximity conveyor motor 69 to rotate. Several proximity driven rollers are disposed inside the single-channel paper feed port 66, and each proximity driven roller is driven by the proximity drive roller to transport the document along both sides of the single-channel paper feed port 66.

[0079] After the scanning mechanism 4 completes the scanning of the document, the document falls into the dual-channel paper feed port 67 along the paper feeder 62 under gravity. The remote printing conveyor motor 68 rotates, driving the remote printing output shaft to rotate, thereby driving the remote printing roller assembly set in the dual-channel paper feed port 67 to rotate. The remote printing roller assembly carries the document into the paper feeder 63 and transports the document along the paper feeder 63 to the single-channel paper feed port 66.

[0080] When a document is determined to be a document to be stamped, the proximity conveyor motor 69 on one side of the single-channel paper feed port 66 operates, driving the proximity roller assembly to rotate, so as to transport the document into the stamping mechanism.

[0081] When it is determined that the document does not need to be stamped, the near print conveyor motor 69 and the far print conveyor motor 68 run in opposite directions to drive the near print roller group and the far print roller group to rotate in opposite directions, so as to move the document along the printer 5 direction. When the document is affected by gravity, it moves along the paper output rack 64 when it passes through the dual-channel paper feed port 67 and falls into the paper collection box 65.

[0082] The batch printing and stamping machine of this utility model uses a remote printing conveyor motor 68 to precisely adjust the speed of the paper feeding process, which improves the control of the paper feeding process for printing speed and further enhances the security and efficiency of printing.

[0083] The stamping mechanism includes a stamping platform 7, a stamp tube storage unit, and a stamping robotic arm 71. The stamping platform 7 is located at the single-channel paper feed port 66 to support documents for stamping. The stamp tube storage unit is located above the stamping platform 7 and stores multiple stamp tubes. The stamping robotic arm 71 is located above the stamp tube storage unit and grasps the stamp tubes stored in the storage unit, moving them to the corresponding stamping position on the stamping platform 7 to complete the stamping operation on the documents to be stamped.

[0084] After the document is transmitted out of the single-channel paper feed port 66, the document falls above the stamping platform 7. The stamping robotic arm 71 grabs the corresponding stamp to be stamped in the stamp storage unit and moves the stamp tube to the corresponding stamping position on the stamping platform 7 to complete the stamping operation of the document to be stamped.

[0085] The batch printing and stamping integrated machine of this utility model is equipped with a stamping platform 7, a stamp storage unit, and a stamping robotic arm 71. It stamps determined documents that require stamping, avoiding direct contact between the user and the stamp, thus further improving stamping security and efficiency.

[0086] The stamp storage unit includes a main storage frame (not shown in the figure) and several hanging racks 72. The main storage frame is partially located above the stamping platform 7 to provide a place for storing stamps; the several hanging racks 72 are connected to the main storage frame to hang the stamps.

[0087] The batch printing and stamping integrated machine of this utility model provides a storage function for stamp tubes by setting up a main storage frame and several hanging racks 72. When it is necessary to use stamps outside, it is convenient to use different types of stamp tubes, which further improves the security and efficiency of stamping.

[0088] The outer casing 1 is also provided with a portrait camera 31 and an environment camera 32. The portrait camera 31 is located on the upper part of the outer casing 1 and is used to acquire the facial features of the user; the environment camera 32 is located on the upper part of the outer casing 1 away from the portrait camera 31 and is used to acquire images of the external environment.

[0089] The batch printing and stamping integrated machine of this utility model is equipped with a human face camera 31 and an environmental camera 32. When using a stamp tube to stamp documents outside, the human face camera 31 and the environmental camera 32 continuously or intermittently acquire images of the behavior and facial features of the person stamping, which improves the security of stamping when stamping externally and further enhances the security and efficiency of stamping.

[0090] The technical solution of this utility model has been described above with reference to the preferred embodiments shown in the accompanying drawings. However, it will be readily understood by those skilled in the art that the protection scope of this utility model is obviously not limited to these specific embodiments. Without departing from the principle of this utility model, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will all fall within the protection scope of this utility model.

[0091] The above description is merely a preferred embodiment of this utility model and is not intended to limit the scope of this utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A smart printing, authentication, and batch stamping integrated machine, characterized in that, include: shell; A scanning mechanism, housed within the casing, is used to scan documents to generate scanned documents; A printing mechanism, which is located below the scanning mechanism, prints online documents. The paper conveying mechanism, which is located below the scanning mechanism, is used to transport the scanned printed document. It includes a paper feeder located at the output end of the scanning mechanism so that the document slides down in a predetermined direction under the influence of gravity, a dual-channel paper feed port located at the output end of the paper feeder for the document to pass through, and a paper delivery rack located on the side of the dual-channel paper feed port away from the paper feeder so as to form a channel with the paper feeder for the document to move in a direction away from the printing mechanism. A stamping mechanism, located inside the housing on the side away from the printing mechanism, is used to stamp documents to be stamped output from the paper feeder.

2. The intelligent printing and authentication batch stamping integrated machine according to claim 1, characterized in that, The outer casing includes, The display touchscreen is located above the housing and is used by the user to transmit online documents to be printed, to select a stamp to be used, and to verify whether the user has stamping privileges.

3. The intelligent printing and authentication batch stamping integrated machine according to claim 2, characterized in that, The printing mechanism includes, A printer, located below the scanning mechanism, is used to print online documents; A paper storage box, located below the printer, is used to store the paper to be printed.

4. The intelligent printing and authentication batch stamping integrated machine according to claim 3, characterized in that, The paper conveying mechanism includes... The paper output tray is located below the paper feed tray and one end is flush with the lower edge of the dual-channel paper feed port, so as to form a channel with the paper feed tray for the document to move along the printer direction; A paper feeding limit plate is located below the paper feeder to limit the falling direction of the scanned document, so that the scanned document falls into the dual-channel paper feed port. A paper collection box, located below the paper output rack, is used to collect unstamped documents output from the paper output rack.

5. The intelligent printing and authentication batch stamping integrated machine according to claim 4, characterized in that, The paper conveying mechanism also includes, The remote printing conveyor motor is located on one side of the dual-channel paper feed port to provide power for documents to enter or exit the paper feeder. The remote printing output shaft is connected to the remote printing conveyor motor to achieve transmission; The remote printing roller assembly, which is connected to the remote printing output shaft, is controlled by the remote printing output shaft to rotate and transport the document along both sides of the dual-channel paper feed port.

6. The intelligent printing and authentication batch stamping integrated machine according to claim 5, characterized in that, The remote printing roller assembly includes, The remote printing drive wheel is connected to the remote printing output shaft and is controlled by the remote printing output shaft to achieve rotation; Several remote printing driven rollers are provided, and each remote printing driven roller and the remote printing driving roller are located inside the dual-channel paper feed port. Each remote printing driven roller is driven by the remote printing driving roller to transport the document along both sides of the dual-channel paper feed port.

7. The intelligent printing and authentication batch stamping integrated machine according to claim 6, characterized in that, The paper conveying mechanism also includes, A single-channel paper feed port is located at the output end of the paper feeder to provide a channel for transporting documents to be stamped to the stamping mechanism; A proximity conveyor motor, located on one side of the single-channel paper feed port, is used to provide power for documents to enter the stamping mechanism or output the paper feeder. The proximity roller assembly is located inside the single-channel paper feed port and connected to the proximity conveyor motor for rotation controlled by the printing conveyor motor to transport the document along both sides of the single-channel paper feed port.

8. The intelligent printing and authentication batch stamping integrated machine according to claim 7, characterized in that, The near-printing roller assembly includes, The proximity drive wheel is connected to the proximity conveyor motor and is controlled by the proximity conveyor motor to achieve rotation; Several proximity printing driven rollers are arranged inside the single-channel paper feed port, and each proximity printing driven roller is driven by the proximity printing driven roller to transport the document along both sides of the single-channel paper feed port.

9. The intelligent printing and authentication batch stamping integrated machine according to claim 8, characterized in that, The stamping mechanism includes, The stamping platform is located at the single-channel paper feed port to support documents for stamping; A stamp storage unit is located above the stamping platform and is used to store multiple stamp tubes. The robotic arm for stamping is positioned above the stamp storage unit. It is used to grasp the stamp tubes stored in the stamp storage unit and move the stamp tubes to the corresponding stamping position on the stamping platform to complete the stamping operation on the documents to be stamped.

10. The intelligent printing and authentication batch stamping integrated machine according to claim 9, characterized in that, The outer casing also includes, A facial recognition camera, which is mounted on the top of the housing, is used to capture the user's facial features; An environmental camera is positioned on the upper part of the housing, away from the portrait camera, to acquire images of the external environment.

Citation Information

Patent Citations

  • A batch stamping and printing machine for counterfeit detection and processing method

    CN110014754B