A multi-scene intelligent recommended reading and printing system
The intelligent recommendation reading and printing system, which integrates a control system, a printing unit, and a display unit, solves the problem of independent reading and printing devices, and enables intelligent, convenient operation and personalized recommendations in multiple scenarios.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BEIJING JINGXINGXINGZHI INFORMATION TECHNOLOGY CO LTD
- Filing Date
- 2025-07-28
- Publication Date
- 2026-05-29
AI Technical Summary
Existing reading and printing devices are independent and lack intelligent linkage, resulting in cumbersome operation and difficulty in adapting to the needs of multiple usage scenarios.
Design an intelligent recommendation reading and printing system suitable for multiple scenarios, integrating core components such as control system, printing unit, display unit and speaker, collecting user behavior data through intelligent camera to make personalized recommendations, and realizing intelligent linkage of devices through control motherboard.
It integrates reading content viewing, instant printing, and audio interaction, simplifying the user operation process and improving the user interaction experience and device adaptability.
Smart Images

Figure CN224304106U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of reading device technology, specifically relating to an intelligent recommended reading and printing system suitable for multiple scenarios. Background Technology
[0002] In existing technologies, reading devices and printing devices are typically independent, requiring users to operate each device separately, resulting in fragmented functionality and significant space consumption. Traditional reading devices often only offer basic display functions and lack intelligent recommendation capabilities based on user behavior, making it difficult to accurately match user reading needs. Printing devices, on the other hand, are often placed separately and lack integration with the reading system, forcing users to frequently switch between devices during reading, leading to cumbersome operation. Furthermore, the structural design of existing devices is often geared towards single-use scenarios, with limited interface types and insufficient expandability, making it difficult to adapt to the diverse needs of museums, cultural centers, libraries, and schools, and failing to meet users' demands for integrated, intelligent, and convenient devices. Utility Model Content
[0003] The purpose of this invention is to provide an intelligent recommended reading and printing system suitable for multiple scenarios, in order to solve the problem that existing reading devices lack intelligent printing linkage functions.
[0004] To achieve the above objectives, the present invention adopts the following technical solution:
[0005] This utility model provides an intelligent recommended reading and printing system suitable for multiple scenarios, including a cylindrical shell, a circular base installed at the bottom of the cylindrical shell, the diameter of the circular base being larger than the diameter of the cylindrical shell, a control system and a printing unit installed inside the cylindrical shell, and a circular top cover installed at the top of the cylindrical shell, the diameter of the circular top cover being slightly larger than the diameter of the cylindrical shell, and a display unit installed on the upper part of the circular top cover.
[0006] In a further technical solution, the control system includes a circular base, which is fixed to the inner wall of a cylindrical shell. A motherboard base is mounted on the circular base, and a control motherboard is mounted on the motherboard base. A motherboard protective cover is provided above the control motherboard and is mounted on the motherboard base.
[0007] In a further technical solution, a power supply mounting bracket is installed at the bottom of the motherboard base, and a power converter is installed on the power supply mounting bracket.
[0008] In a further technical solution, speaker brackets are installed on the motherboard bases on both sides of the control motherboard, and speakers are installed on the speaker brackets.
[0009] In a further technical solution, the printing unit includes a small printer, which is fixed on the inner wall of the cylindrical outer shell. A hook is installed at the bottom of the small printer, and printing paper is suspended on the hook. A printing outlet is provided on the cylindrical outer shell corresponding to the position of the small printer.
[0010] In a further technical solution, a control button is provided on the circular top cover, and a smart camera is provided on the circular top cover near the control button.
[0011] In a further technical solution, the display unit includes a support, a book-shaped display housing is mounted on the upper part of the support, and a display screen is embedded in the display housing.
[0012] In a further technical solution, a multi-functional socket is provided at the rear of the cylindrical outer shell near the circular base, playback ports are provided on both sides of the middle of the cylindrical outer shell, and an inspection door is provided on the upper rear side of the cylindrical outer shell.
[0013] In a further technical solution, the multi-functional socket includes a power socket, a network socket, a data socket, and a power switch.
[0014] In a further technical solution, the socket and power switch are electrically connected to the power converter, the power converter is electrically connected to the control motherboard, speaker, small printer, smart camera and display screen, and the control motherboard is connected to the speaker, small printer, smart camera, display screen, network port and data port via data cables.
[0015] Beneficial effects:
[0016] This invention integrates intelligent recommended reading, printing, and audio playback functions. Through a control system connecting core components such as the display unit, printing unit, and speaker, it achieves integrated operation of reading content viewing, intelligent recommendations, instant printing, and audio interaction, eliminating the need for users to configure multiple devices separately and significantly simplifying the operation process. By using a smart camera to collect user behavior and age data, combined with the data analysis capabilities of the control motherboard, personalized reading content recommendations can be achieved. The book-shaped display casing and screen design enhance the reading immersion, while the speaker provides audio output functionality, improving the user interaction experience in multiple dimensions. Attached Figure Description
[0017] This utility model will be described by way of example and with reference to the accompanying drawings, wherein:
[0018] Figure 1 A schematic diagram of the external structure of an intelligent recommended reading and printing system applicable to multiple scenarios, provided for an embodiment of this utility model;
[0019] Figure 2A schematic diagram of the internal structure of an intelligent recommended reading and printing system applicable to multiple scenarios, provided for an embodiment of this utility model;
[0020] Figure 3 A rear view of an intelligent recommended reading and printing system applicable to multiple scenarios, provided as an embodiment of this utility model;
[0021] Figure 4 A schematic diagram of the control system structure of an intelligent recommended reading and printing system applicable to multiple scenarios, provided for an embodiment of this utility model;
[0022] Figure 5 A schematic diagram of the printing unit structure of an intelligent recommended reading and printing system applicable to multiple scenarios, provided for an embodiment of this utility model;
[0023] Figure 6 and Figure 7 A schematic diagram of the display unit structure of an intelligent recommended reading and printing system applicable to multiple scenarios, provided for an embodiment of this utility model;
[0024] Figure 8 This is a structural schematic diagram of a multi-functional socket for an intelligent recommended reading and printing system applicable to multiple scenarios, provided as an embodiment of the present utility model.
[0025] in:
[0026] 1. Cylindrical outer shell; 2. Circular base; 3. Control system; 4. Printing unit; 5. Circular top cover; 6. Display unit; 101. LED strip one; 102. Acrylic sheet; 103. LED strip two; 104. LED strip three; 105. Multi-function socket; 106. Playback port; 107. Inspection door; 301. Circular base; 302. Mainboard base; 303. Control mainboard; 304. Mainboard protective cover; 305. Power supply mounting bracket; 306. Power converter; 307. Speaker bracket; 308. Speaker; 401. Mini printer; 402. Hook; 403. Printing paper; 404. Printing outlet; 501. Control button; 502. Smart camera; 601. Stand; 602. Monitor shell; 603. Display screen; 1051. Power socket; 1052. Network socket; 1053. Data socket; 1054. Power switch. Detailed Implementation
[0027] To make the objectives, features, and advantages of this utility model more apparent and understandable, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0028] Example:
[0029] like Figure 1 and Figure 2 As shown, this utility model embodiment provides an intelligent recommended reading and printing system suitable for multiple scenarios, including a cylindrical shell 1, a circular base 2 installed at the bottom of the cylindrical shell 1, the diameter of the circular base 2 being larger than the diameter of the cylindrical shell 1, a control system 3 and a printing unit 4 installed inside the cylindrical shell 1, a circular top cover 5 installed at the top of the cylindrical shell 1, the diameter of the circular top cover 5 being slightly larger than the diameter of the cylindrical shell 1, and a display unit 6 installed on the upper part of the circular top cover 5.
[0030] This embodiment of the invention uses a cylindrical outer shell 1 as the main support structure, with a circular base 2 at the bottom, larger in diameter than the outer shell, to enhance overall stability. Inside the outer shell, a control system 3 and a printing unit 4 are installed via a fixing structure. A circular top cover 5, slightly larger in diameter than the outer shell, is installed on top, with a display unit 6 fixed to the top of the top cover via a support 601. The circular base 2, cylindrical outer shell 1, and circular top cover 5 form a closed and orderly overall structure. All core functional units are integrated inside the outer shell and on the top, achieving compact system integration, avoiding the problem of multiple devices being scattered, while also providing protection for internal components and reducing interference from the external environment on the core units. The overall structure is suitable for placement in various scenarios such as museums, cultural centers, libraries, and schools.
[0031] In one feasible implementation scheme, such as Figure 2 and Figure 4As shown, the control system 3 includes a circular base 301, which is fixed to the inner wall of the cylindrical outer shell 1. A motherboard base 302 is mounted on the circular base 301, and a control motherboard 303 is mounted on the motherboard base 302. A motherboard protective cover 304 is provided above the control motherboard 303 and is mounted on the motherboard base 302. A power supply mounting bracket 305 is mounted at the bottom of the motherboard base 302, and a power converter 306 is mounted on the power supply mounting bracket 305. The circular base 301 is fixed to a predetermined position on the inner wall of the cylindrical outer shell 1 by screws. The motherboard base 302 is horizontally mounted on the circular base 301, and the control motherboard 303 is fixed to the central area of the motherboard base 302 by bolts. The motherboard protective cover 304 is made of insulating material, covers the outside of the control motherboard 303, and is connected to the motherboard base 302, forming physical protection for the control motherboard 303. The power supply mounting bracket 305 is fixed to the bottom center of the motherboard base 302. The power converter 306 is fixed inside the power supply mounting bracket 305 by clips. The input end of the power converter 306 is connected to the power socket 1051 of the multi-function socket 105, and the output end is connected to the control motherboard 303 and other electrical components via wires. The layered fixing structure of the circular base 301 and the motherboard base 302 ensures that the control motherboard 303 is firmly installed, avoiding poor contact caused by equipment shaking. The motherboard protective cover 304 effectively isolates dust, moisture and interference from other internal components, protecting the circuit safety of the control motherboard 303 and improving the operational stability and service life of the control system 3. The power supply mounting bracket 305 provides a stable mounting carrier for the power converter 306, preventing it from shifting during equipment operation. The power converter 306 centrally manages power supply, converting external voltage into voltages suitable for each component, reducing the impact of voltage fluctuations on the equipment, and simultaneously organizing wiring to reduce the risk of circuit failure.
[0032] In one feasible implementation scheme, such as Figure 4 As shown, speaker brackets 307 are mounted on the motherboard bases 302 on both sides of the control motherboard 303, and speakers 308 are mounted on the speaker brackets 307. The speaker brackets 307 are symmetrically fixed to the motherboard bases 302 on both sides of the control motherboard 303, and the speakers 308 are mounted on the speaker brackets 307 with screws. The audio cable of the speaker 308 is connected to the audio interface of the control motherboard 303, and the sound output direction of the speaker 308 corresponds to the playback port 106 in the middle of the cylindrical outer shell 1. The symmetrically distributed speaker brackets 307 ensure that the speakers 308 are securely installed. The correspondence between the speaker 308 and the playback port 106 allows for efficient transmission of audio signals, enabling audio playback of the reading content, enhancing the user's audio interaction experience with the system, and enriching the system's functional dimensions.
[0033] In one feasible implementation scheme, such as Figure 2 and 5As shown, the printing unit 4 includes a small printer 401, which is fixed to the inner wall of the cylindrical outer shell 1. A hook 402 is installed at the lower part of the small printer 401, and printing paper 403 is suspended on the hook 402. A printing outlet 404 is provided on the cylindrical outer shell 1 corresponding to the position of the small printer 401. The small printer 401 is fixed to the inner wall of the cylindrical outer shell 1 by screws, with its printing outlet 404 facing a pre-set opening in the outer shell. The hook 402 is a metal hook, welded or screwed to the lower housing of the small printer 401. The roll of printing paper 403 is suspended on the hook 402 via a central shaft, and the end of the printing paper 403 passes through the paper inlet of the small printer 401. The fixed installation of the small printer 401 ensures a stable printing process and avoids printing misalignment; the design of the hook 402 to hang the printing paper 403 makes it easy to replace the printing paper 403, and the printing paper 403 has high compatibility with the printer's paper inlet, realizing the function of instant printing of reading content. Users can directly print recommended or browsed content, improving the system's usability.
[0034] In one feasible implementation scheme, such as Figure 6 As shown, a control button 501 is provided on the circular top cover 5, and a smart camera 502 is located on the circular top cover 5 near the control button 501. The control button 501 on the circular top cover 5 facilitates manual operation of the device, such as power on / off and function switching, improving ease of use. The smart camera 502 is embedded in the circular top cover 5 near the control button 501, with its lens facing the user's operating area. The camera is connected to the control motherboard 303 via a data cable, collecting the user's facial image data in real time and transmitting it to the control motherboard 303. Combined with the algorithm analysis of the control motherboard 303, the user's identity can be identified, and matching reading content can be intelligently recommended based on user characteristics, achieving personalized recommendations and optimizing the user's reading experience.
[0035] In one feasible implementation scheme, such as Figure 1As shown, the display unit 6 includes a support 601, a book-shaped display housing 602 mounted on the upper part of the support 601, a vertical light strip 101 in the middle of the display housing 602, a display screen 603 embedded in one side of the display housing 602 with an acrylic plate 102 embedded in the other side of the display housing 602 with the light strip 101. This is achieved by mounting a book-shaped display housing 602 on the upper part of the support 601 of the display unit 6, providing a vertical light strip 101 in the middle of the display housing 602, embedding a display screen 603 in one side of the display housing 602 with the light strip 101, and embedding an acrylic plate 102 in the display housing 602 with the light strip 101 on the other side of the display housing 602 with the light strip 101. The book-shaped display casing 602 is aesthetically pleasing and matches the reading theme; the light strip 101 emits light, enhancing the visual effect and atmosphere of the display unit 6; the display screen 603 is used to display intelligently recommended reading content, system operation interface and other information for user convenience; the acrylic panel 102 has good light transmission and decorative properties, improving the overall texture of the display unit 6.
[0036] In one feasible implementation scheme, such as Figure 1 As shown, a second light strip 103 is provided at the bottom of the cylindrical outer shell 1 near the circular base 2, and a third light strip 104 is provided at the bottom of the cylindrical outer shell 1 near the circular top cover 5. By providing the second light strip 103 at the bottom of the cylindrical outer shell 1 near the circular base 2 and the third light strip 104 at the bottom of the cylindrical outer shell 1 near the circular top cover 5, the second and third light strips 103 and 104 can emit different lights. The color or brightness of the light can be changed according to the system's operating status and scene requirements, thus decorating the system's appearance and enhancing its visual appeal. Simultaneously, they also serve as status indicators to a certain extent, allowing users to intuitively understand the system's operating status.
[0037] In one feasible implementation scheme, such as Figure 7As shown, the display unit 6 includes a support 601, on which a book-shaped display housing 602 is mounted. A display screen 603 is embedded in the display housing 602. The support 601 is fixed to the circular top cover 5, and its upper part is connected to the back of the book-shaped display housing 602. The display housing 602 adopts a book-like design. The display screen 603 is fixed in a recessed area on the front of the housing. The data cable of the display screen 603 is connected to the control motherboard 303 to receive and display reading content and recommended information. The book-shaped display housing 602 enhances the immersive reading experience and improves the user's visual experience. The adjustable support 601 allows users to adjust the angle of the display screen 603 according to their usage habits, adapting to the reading needs of different heights or sitting postures. The display screen 603 displays recommended content and the operation interface in real time, serving as the core interactive window of the system and ensuring that users can clearly obtain information.
[0038] In one feasible implementation scheme, such as Figure 3 As shown, a multi-functional socket 105 is provided at the rear of the cylindrical outer shell 1 near the circular base 2. Playback ports 106 are provided on both sides of the middle of the cylindrical outer shell 1, and an access door 107 is provided on the upper rear side of the cylindrical outer shell 1. By installing the multi-functional socket 105 on the outer wall of the cylindrical outer shell 1 near the circular base 2, the socket panel is flush with the surface of the outer shell. The playback ports 106 are symmetrically located on both sides of the middle of the outer shell, corresponding to the sound output direction of the internal speaker 308. The access door 107 is a detachable panel, connected to the upper rear side of the outer shell by hinges, covering the maintenance area of the internal control system 3 and printing unit 4. The multi-functional socket 105 provides a centralized interface access point, facilitating power supply to the device and connection to external devices; the playback ports 106 ensure efficient audio transmission, avoiding muffled sound; the access door 107 provides a convenient passage for the maintenance and repair of internal components without disassembling the entire outer shell, reducing maintenance costs and improving the maintainability of the equipment.
[0039] In one feasible implementation scheme, such as Figure 8 As shown, the multi-functional socket 105 includes a power socket 1051, a network socket 1052, a data socket 1053, and a power switch 1054. The diverse socket types meet the power supply, networking, and external device data transmission needs of the device in different scenarios, adapting to extended use in various situations; the power switch 1054 can quickly cut off the main power supply, improving the safety of device use.
[0040] In one feasible implementation scheme, such as Figure 2As shown, the socket and power switch 1054 are electrically connected to the power converter 306. The power converter 306 is electrically connected to the control motherboard 303, speaker 308, small printer 401, smart camera 502 and display screen 603. The control motherboard 303 is connected to the speaker 308, small printer 401, smart camera 502, display screen 603, network port 1052 and data port 1053 via data cables. By connecting the power socket 1051 and power switch 1054 to the input terminal of the power converter 306 via wires, the output terminal of the power converter 306 is connected to the power supply interfaces of the control motherboard 303, speaker 308, mini printer 401, smart camera 502, and display screen 603 via wires. The control motherboard 303 is connected to the audio interface of the speaker 308, the control interface of the mini printer 401, the data interface of the smart camera 502, the signal interface of the display screen 603, network port 1052, and data port 1053 via data cables, forming a complete signal and power supply link. The power converter 306 manages the power supply uniformly, ensuring voltage compatibility of each component and avoiding malfunctions caused by power supply chaos. The control motherboard 303, as the core hub, realizes the signal interaction of each component, ensuring the coordinated operation of functions such as intelligent recommendation, printing, display, and audio, and improving the overall stability and intelligent linkage effect of the system.
[0041] This utility model provides an intelligent recommended reading and printing system applicable to multiple scenarios. In its implementation, a cylindrical outer shell 1 serves as the main support structure, with a circular base 2 fixed to the bottom of the cylindrical outer shell 1 using screws. Since the diameter of the circular base 2 is larger than that of the cylindrical outer shell 1, it is necessary to ensure that the base and shell are coaxial during installation. Tightening with bolts enhances overall stability, forming the system's basic support structure. At a predetermined position on the inner wall of the cylindrical outer shell 1, a circular ring base 301 is horizontally fixed with screws, ensuring a firm fit against the inner wall. Subsequently, a mainboard base 302 is horizontally installed on the circular ring base 301, with layered fixing achieved using bolts, providing a stable carrier for the control mainboard 303. The control mainboard 303 is fixed to the center area of the mainboard base 302 with bolts, ensuring that the circuit interface faces a direction conducive to wiring. A mainboard protective cover 304 made of insulating material is installed outside the control mainboard 303, connected to the mainboard base 302 with screws, forming physical protection for the control mainboard 303 and isolating it from dust, moisture, and internal interference. A power supply mounting bracket 305 is fixed at the center of the bottom of the motherboard base 302. The power converter 306 is securely fixed inside the power supply mounting bracket 305 with clips, ensuring that the power converter 306 does not shift during device operation. Speaker brackets 307 are symmetrically fixed on the motherboard bases 302 on both sides of the control motherboard 303. Speakers 308 are mounted on the brackets with screws, so that the sound output direction of the speakers 308 corresponds to the preset playback port 106 in the middle of the cylindrical shell 1. At the same time, the audio cable of the speakers 308 is connected to the audio interface of the control motherboard 303. The small printer 401 is fixed to a preset position on the inner wall of the cylindrical shell 1 with screws, ensuring that its printing outlet 404 faces the corresponding printing outlet 404 opened in the shell. On the lower shell of the small printer 401, a metal hook 402 is fixed by welding or screws. The roll of printing paper 403 is suspended on the hook 402 through the central shaft, and the paper end of the printing paper 403 is passed through the paper inlet of the small printer 401, completing the mechanical installation of the printing unit 4. A multi-function socket 105 is installed on the outer wall of the cylindrical outer shell 1 near the circular base 2 at the rear. The socket panel is flush with the outer shell surface. The multi-function socket 105 integrates a power socket 1051, a network socket 1052, a data socket 1053, and a power switch 1054. Playback ports 106 are symmetrically located on both sides of the middle of the outer shell, corresponding to the sound output direction of the internal speaker 308. A removable access door 107 is connected to the upper rear side of the outer shell via a hinge, covering the access area of the internal control system 3 and the printing unit 4. A second LED strip 103 is embedded at the bottom of the cylindrical outer shell 1 near the circular base 2, and a third LED strip 104 is embedded near the top of the outer shell. The LED strip wiring is laid along a pre-reserved groove on the inner wall of the outer shell, ensuring the LED strips are installed flat and do not affect internal components. A circular top cover 5 is bolted to the top of the cylindrical outer shell 1, ensuring a tight seal between the top cover and the outer shell.A control button 501 is installed at a preset position on the circular top cover 5 for easy user operation of the device's power switch and function switching. A smart camera 502 is embedded in the top cover near the control button 501, with the lens facing the user's operating area. The camera is connected to the internal control motherboard 303 via a data cable. The support 601 of the display unit 6 is fixed to the upper part of the circular top cover 5 with screws, and the upper part of the support 601 is connected to the back of the book-shaped display housing 602. According to the design, a vertical light strip 101 is installed in the middle of the display housing 602, with the display screen 603 embedded on one side of the light strip 101 and an acrylic plate 102 embedded on the other side; or the display screen 603 can be directly embedded in the groove on the front of the book-shaped housing. The data cable of the display screen 603 is laid along the internal wire groove of the support 601 and connected to the signal interface of the control motherboard 303, completing the mechanical and preliminary signal connection of the display unit 6. Connect the power socket 1051 and power switch 1054 of the multi-functional socket 105 to the input terminal of the power converter 306 via wires. Connect the output terminal of the power converter 306 to the power supply interfaces of the control motherboard 303, speaker 308, small printer 401, smart camera 502, display screen 603, LED strip 2 103, and LED strip 3 104 via wires to ensure voltage compatibility of each component. Connect the control motherboard 303 to the audio interface of the speaker 308, the control interface of the small printer 401, the data interface of the smart camera 502, the signal interface of the display screen 603, the network port 1052, and the data port 1053 via data cables. Organize the wiring and secure the wires to prevent tangling or loosening. The circular base 2, cylindrical shell 1, and circular top cover 5 form a closed and orderly structure, integrating all core functional units inside, suitable for placement and use in various scenarios such as museums, cultural centers, libraries, and schools.
[0042] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the scope of protection of this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the scope of protection of this utility model.
Claims
1. An intelligent recommendation reading and printing system suitable for multiple scenarios, characterized in that: The device includes a cylindrical outer shell (1), a circular base (2) installed at the bottom of the cylindrical outer shell (1), the diameter of the circular base (2) being larger than the diameter of the cylindrical outer shell (1), a control system (3) and a printing unit (4) installed inside the cylindrical outer shell (1), a circular top cover (5) installed at the top of the cylindrical outer shell (1), the diameter of the circular top cover (5) being slightly larger than the diameter of the cylindrical outer shell (1), and a display unit (6) installed on the upper part of the circular top cover (5).
2. The intelligent recommendation reading and printing system applicable to multiple scenarios according to claim 1, characterized in that: The control system (3) includes a circular base (301), which is fixed on the inner wall of the cylindrical shell (1). A motherboard base (302) is installed on the circular base (301), and a control motherboard (303) is installed on the motherboard base (302). A motherboard protective cover (304) is provided above the control motherboard (303). The motherboard protective cover (304) is installed on the motherboard base (302). A power supply mounting bracket (305) is installed at the bottom of the motherboard base (302), and a power converter (306) is installed on the power supply mounting bracket (305).
3. The intelligent recommendation reading and printing system applicable to multiple scenarios according to claim 2, characterized in that: Speaker brackets (307) are installed on the motherboard bases (302) on both sides of the control motherboard (303), and speakers (308) are installed on the speaker brackets (307).
4. The intelligent recommendation reading and printing system applicable to multiple scenarios according to claim 1, characterized in that: The printing unit (4) includes a small printer (401), which is fixed on the inner wall of the cylindrical shell (1). A hook (402) is installed on the lower part of the small printer (401), and printing paper (403) is suspended on the hook (402). A printing outlet (404) is provided on the cylindrical shell (1) corresponding to the position of the small printer (401).
5. The intelligent recommendation reading and printing system applicable to multiple scenarios according to claim 1, characterized in that: A control button (501) is provided on the circular top cover (5), and a smart camera (502) is provided on the circular top cover (5) near the control button (501).
6. The intelligent recommendation reading and printing system applicable to multiple scenarios according to claim 1, characterized in that: The display unit (6) includes a support (601), a book-shaped display housing (602) is mounted on the upper part of the support (601), a vertical light strip (101) is provided in the middle of the display housing (602), a display screen (603) is embedded on the display housing (602) on one side of the light strip (101), and an acrylic plate (102) is embedded on the display housing (602) on the other side of the light strip (101).
7. The intelligent recommendation reading and printing system applicable to multiple scenarios according to claim 1, characterized in that: A second light strip (103) is provided at the bottom of the cylindrical outer shell (1) near the circular base (2), and a third light strip (104) is provided at the bottom of the cylindrical outer shell (1) near the circular top cover (5).
8. The intelligent recommendation reading and printing system applicable to multiple scenarios according to claim 1, characterized in that: A multi-functional socket (105) is provided at the rear of the cylindrical shell (1) near the circular base (2), a playback port (106) is provided on both sides of the middle of the cylindrical shell (1), and an inspection door (107) is provided on the upper rear side of the cylindrical shell (1).
9. The intelligent recommendation reading and printing system applicable to multiple scenarios according to claim 8, characterized in that: The multi-functional socket (105) includes a power socket (1051), a network socket (1052), a data socket (1053), and a power switch (1054).
10. The intelligent recommendation reading and printing system applicable to multiple scenarios according to claim 9, characterized in that: The socket and power switch (1054) are electrically connected to the power converter (306). The power converter (306) is electrically connected to the control motherboard (303), speaker (308), small printer (401), smart camera (502), display screen (603), light strip one (101), light strip two (103) and light strip three (104). The control motherboard (303) is connected to the speaker (308), small printer (401), smart camera (502), display screen (603), light strip one (101), light strip two (103) and light strip three (104), network socket (1052) and data socket (1053) via data cables.