Embedded hotel self-service check-in equipment

By using embedded design and sliding rail system, the problem of self-service check-in equipment occupying counter space in hotels has been solved, achieving space saving and aesthetic uniformity of the equipment, and improving the stability of the equipment and user experience.

CN224035943UActive Publication Date: 2026-03-24SHENZHEN ZHONGYIWEI TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-25
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Existing hotel self-check-in equipment uses an external installation method, which occupies a lot of counter space, affects aesthetics, and does not conform to modern architectural design concepts.

Method used

Design an embedded hotel self-check-in device. The device is embedded in a cabinet or wall and concealed using a sliding rail system. The extended sliding rail increases the overlapping area to enhance stability and load-bearing capacity. It integrates a touch screen, a camera module, and an automatic card issuing and receiving module, and integrates ID card recognition and facial recognition functions.

Benefits of technology

It effectively saves countertop space, improves the integration of equipment with cabinets or walls, enhances the stability and security of equipment, simplifies the installation and maintenance process, and improves the accuracy of user authentication and the overall aesthetics of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of hotel self-service, in particular to embedded hotel self-service check-in equipment which comprises a machine body, the machine body comprises a panel assembly and a rear shell, an installation cavity is defined by the panel assembly and the rear shell, and a touch display screen, a camera module and an automatic card receiving and sending module are arranged in the installation cavity. And the rear shell is provided with a mounting part. According to the utility model, the installation part is arranged at the bottom of the rear shell, so that the machine body can be embedded in a cabinet body or a wall body, compared with a traditional external installation mode, the machine body does not occupy the space of a table top of a hotel, space is saved, and the area of the table top is more spacious and neat, in addition, the embedded machine body can be integrated with the cabinet body or the wall body, and the installation is convenient. Therefore, the overall visual effect of the machine body is more coordinated and unified, the design concept of modern buildings is favorably met, and the problem that the hotel self-service check-in equipment adopts an external installation mode and occupies more tabletop space is effectively solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to hotel self -service technical field, concretely is a kind of embedded hotel self -check -in equipment. BACKGROUND

[0002] With the continuous development of modern hotel industry, people put forward higher requirements on the convenience and efficiency of check-in experience. The traditional hotel check-in process requires guests to queue at the front desk to handle procedures, which is complicated and time-consuming. Especially during the peak season of tourism or business travel, it is easy to cause long waiting time for guests, affecting the check-in experience. In order to improve service quality and operational efficiency, hotel self-check-in equipment emerges as the times require. This equipment integrates advanced information technology, such as face recognition, identity card recognition, mobile payment and other functions, so that guests can quickly and self-check-in, room card collection, check-out and other operations, greatly shortening the handling time, improving the operational efficiency of the hotel, and also providing more convenient and personalized check-in experience for guests.

[0003] The existing hotel self-check-in equipment is usually designed compactly, but still needs a certain space for placement and installation. Most hotel self-check-in equipment adopts external installation method, which occupies more countertop space and affects the appearance, not in line with the design concept of modern architecture.

[0004] The utility model is proposed to solve the problems of the prior art. UTILITY MODEL CONTENT

[0005] In view of the above-mentioned problem that the prior art cannot solve the problem of hotel self-check-in equipment using external installation method and occupying more countertop space, the technical solution adopted by the utility model to solve its technical problem is:

[0006] An embedded hotel self-check-in equipment, comprising a machine body embedded in a cabinet or a wall, the machine body comprising a panel assembly located on the front of the machine body, and a rear shell located on the back of the panel assembly, the panel assembly and the rear shell forming an installation cavity, the installation cavity being provided with a touch display screen, a camera module and an automatic card receiving and sending module in communication with the panel assembly, the rear shell being provided with a mounting portion for fixing the machine body to the position of the cabinet or the wall.

[0007] Further, the mounting portion comprises a slide rail fixing bracket fixed in the cabinet or the wall, and a slide rail bearing bracket connected with the bottom of the rear shell, the slide rail bearing bracket comprising a slide rail body in sliding connection with the slide rail fixing bracket, and a slide rail extension body provided in the slide rail body, when the slide rail body moves relative to the slide rail fixing bracket, the slide rail extension body can slide in the opposite direction to increase the overlapping area of the slide rail body and the slide rail fixing bracket.

[0008] Further, the sliding rail body is provided with a sliding convex column at one end away from the panel assembly, and the sliding rail extension body is provided with an extension sliding groove in sliding connection with the sliding convex column.

[0009] Further, the sliding rail fixed frame is provided with a fixed sliding groove on both sides, the sliding rail body is provided with a first sliding convex, the sliding rail extension body is provided with a second sliding convex, and the first sliding convex and the second sliding convex are in sliding connection with the fixed sliding groove respectively.

[0010] Further, the first sliding convex is inwardly folded to form a connecting sliding groove, the sliding rail extension body is provided with a connecting plate surface in sliding connection with the connecting sliding groove, and the connecting plate surface and the second sliding convex are adjacently arranged.

[0011] Further, the connecting plate surface and the extension sliding groove are arranged along the length direction of the sliding rail extension body, and the length of the extension sliding groove is less than the length of the connecting plate surface.

[0012] Further, the sliding convex column is integrally formed on the sliding rail body.

[0013] Further, the first sliding convex and the second sliding convex are both in circular arc shape in cross section.

[0014] Further, the touch display screen is in an inclined posture, and the included angle between the touch display screen and a horizontal plane is 15°-45°.

[0015] Further, the camera module comprises a binocular camera.

[0016] The utility model discloses the beneficial effect is as follows:

[0017] The utility model discloses a rear shell bottom setting installation part, to make the body can be embedded in the cabinet or wall, compared with traditional external installation mode, will not occupy the hotel's mesa space, is favorable to the space saving, makes the mesa area more spacious and neat, in addition, the embedded body can be integrated with the cabinet or wall, thereby making the overall visual effect of the body more coordinated and unified, which is helpful to meet the design concept of modern architecture, effectively solve the problem that the hotel self-service check-in equipment adopts the installation mode of external equipment and occupies more mesa space.

[0018] The utility model will be further described in connection with the drawings and specific embodiment. DRAWINGS

[0019] Figure 1 It is the exploded schematic view of the body of the utility model;

[0020] Figure 2This is a schematic diagram of the mounting part of this utility model;

[0021] Figure 3 This is one of the exploded schematic diagrams showing the connection between the slide rail support and the slide rail fixing frame of this utility model;

[0022] Figure 4 This is the second exploded schematic diagram showing the connection between the slide rail support and the slide rail fixing frame of this utility model.

[0023] Figure 5 This is one of the schematic diagrams showing the sliding state of the slide rail support and slide rail fixing frame of this utility model;

[0024] Figure 6 This is the second schematic diagram showing the sliding state of the slide rail support and slide rail fixing frame of this utility model. Detailed Implementation

[0025] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings.

[0026] like Figures 1 to 6 An embedded hotel self-check-in device is shown, comprising a body 1 embedded in a cabinet or wall. The body 1 includes a panel assembly 2 on the front of the body 1 and a rear housing 3 on the back of the panel assembly 2. The panel assembly 2 and the rear housing 3 enclose a mounting cavity 4. The mounting cavity 4 is provided with a touch screen 41, a camera module 42, and an automatic card issuing and receiving module 43 that communicate with the panel assembly 2. The rear housing 3 is provided with a mounting part 5 for fixing the body 1 to the cabinet or wall.

[0027] This utility model features an installation part at the bottom of the rear housing, allowing the unit to be embedded in a cabinet or wall. Compared to traditional external installation methods, this does not occupy counter space in the hotel, saving space and making the counter area more spacious and tidy. Furthermore, the embedded unit can blend seamlessly with the cabinet or wall, resulting in a more harmonious and unified overall visual effect, which aligns with modern architectural design concepts. This effectively solves the problem of external installation methods for hotel self-check-in equipment occupying a significant amount of counter space.

[0028] Furthermore, the panel assembly 2 and the rear housing 3 enclose each other to form a mounting cavity 4, which integrates important components such as the touch display screen 41, camera module 42 and automatic card sending and receiving module 43. This not only effectively protects the internal components from external dust, moisture and other corrosion, but also makes the structure of the body 1 more compact, which is helpful for management and maintenance.

[0029] Optionally, the panel assembly 2 and the rear housing 3 can be connected by screws, snap-fit ​​connections, magnetic connections, or other connection methods.

[0030] Specifically, the installation cavity 4 is further provided with an ID recognition module, a main control and an invoice printing module, the main control uniformly controls the ID recognition module, the invoice printing module, the touch display screen 41, the camera module 42 and the automatic card sending and receiving module 43, the ID recognition module can quickly read the customer's ID information, and the face recognition is combined with the camera module 42 to realize double verification, which is beneficial to ensure the accuracy and authenticity of the customer's identity; secondly, the unified control of the main control enables the various functional modules to work cooperatively, the customer can complete the operation on the touch display screen 41, and the check-in registration and check-out procedures can be quickly completed through the ID recognition and face recognition, the whole process does not need manual intervention, and the handling time is greatly shortened.

[0031] Further, the card outlet of the automatic card sending and receiving module 43 is located on the panel assembly 2, an invoice outlet housing is arranged below the card outlet, one side of the invoice outlet housing close to the card outlet is provided with an invoice outlet communicated with the invoice printing module, and the card outlet and the invoice outlet are located close to each other, so that the user can naturally and conveniently obtain the invoice at the invoice outlet after taking the card at the card outlet, the time and energy of the user in searching for the invoice outlet in front of the equipment are reduced, the overall efficiency is improved, meanwhile, the invoice outlet housing is arranged below the card outlet, the vertical space is fully utilized, the overall structure of the equipment is more compact, and the occupation of excessive plane space due to the dispersed layout of components is avoided; secondly, when the maintenance personnel need to replace the printing paper in the invoice printing module, the invoice outlet housing on the panel assembly 2 only needs to be disassembled, and the paper replacement operation can be performed, which is beneficial to save the time and energy of the maintenance personnel and is helpful to ensure the normal operation of the invoice printing function.

[0032] Optionally, in some embodiments, a special glass cover plate is arranged on the touch display screen 41 to realize the function of the anti-peep screen, which is beneficial to greatly enhance the security of information, and the user does not need to worry about the risk of information leakage; secondly, the glass cover plate of the anti-peep screen can protect the screen to a certain extent while not affecting the normal touch operation function of the touch display screen 41, and the possibility of scratching and wearing of the screen is reduced.

[0033] Optionally, in some embodiments, an anti-peep film is arranged on the touch display screen 41 to realize the function of the anti-peep screen, the arrangement of the anti-peep film can effectively block the peeping gaze from the side, so that the user does not need to worry about the screen content being stolen by others when performing the operation related to personal privacy, and the confidentiality and security of information are greatly enhanced; secondly, the installation of the anti-peep film is relatively simple and does not interfere with the original function of the touch display screen 41.

[0034] As Figures 1 to 6The mounting part 5 shown comprises a slide rail fixing frame 51 fixed in the cabinet body or wall body, and a slide rail bearing bracket 52 connected with the bottom of the rear shell 3, the slide rail bearing bracket 52 comprises a slide rail body 521 in sliding connection with the slide rail fixing frame 51, and a slide rail extension body 522 arranged in the slide rail body 521, when the slide rail body 521 moves relative to the slide rail fixing frame 51, the slide rail extension body 522 can slide in the opposite direction to increase the overlapping area of the slide rail body 521 and the slide rail fixing frame 51;

[0035] Further, when the machine body 1 is installed on the cabinet body or wall body, by setting the sliding connection of the slide rail bearing bracket 52 and the slide rail fixing frame 51, the maintenance personnel can easily push the machine body 1 along the slide rail to the predetermined position, avoiding the cumbersome process of accurately aligning and fixing multiple screws in the traditional installation method, greatly saving the installation time and labor cost.

[0036] Further, when the machine body 1 needs to be overhauled, debugged or replaced with parts, the maintenance personnel can slide the machine body 1 out of the cabinet body or wall body along the slide rail, so that the back and side of the machine body 1 are completely exposed, facilitating various operations; secondly, the setting of the slide rail extension body 522 can increase the overlapping area of the slide rail body 521 and the slide rail fixing frame 51, which is conducive to ensuring the stability of the machine body 1 during sliding out, reducing the risk of shaking and tilting of the machine body 1, and helping to improve the safety and efficiency of maintenance work.

[0037] Specifically, the traditional guide rail usually comprises a first guide rail and a second guide rail, the first guide rail is fixedly arranged, and the second guide rail is in sliding connection with the first guide rail, when the second guide rail is completely pulled out, there is only an overlapping area at the connection between the second guide rail and the first guide rail, and the overlapping area is too short, so that the guide rail is damaged by the weight supported due to insufficient support strength, the utility model sets the slide rail extension body 522, the slide rail extension body 522 can slide in the opposite direction to increase the overlapping area of the slide rail body 521 and the slide rail fixing frame 51, so that during the installation and use of the machine body 1, a greater weight and pressure can be borne, in the hotel self-check-in equipment, usually containing more electronic equipment and parts, the weight is large, the setting of the slide rail extension body 522 can ensure that the mounting part will not be deformed or damaged due to gravity during long-term use, ensuring the stability and reliability of the equipment.

[0038] Specifically, when the user needs to pull out the body 1, the slide rail fixed frame 51 is fixed to the cabinet body or the wall, and the slide rail body 521 moves relative to the slide rail fixed frame 51 until the slide rail body 521 is pulled to the end, at which time the slide rail extension body 522 in the slide rail body 521 is also exposed, and the user can push the slide rail extension body 522 with his hand to make the slide rail extension body 522 move in the opposite direction, that is, the slide rail extension body 522 moves from the side close to the slide rail body 521 to the side close to the slide rail fixed frame 51, thereby increasing the overlapping area between the slide rail fixed frame 51 and the slide rail body 521, which is beneficial to improve the overall strength of the device.

[0039] As shown in Figures 1 to 6 The end of the slide rail body 521 away from the panel assembly 2 is provided with a sliding convex column 5211, and the slide rail extension body 522 is provided with an extension sliding groove 5221 in sliding connection with the sliding convex column 5211, and the sliding convex column 5211 penetrates through the extension sliding groove 5221 and extends towards the slide rail support bracket 51;

[0040] Further, the sliding connection of the sliding convex column 5211 and the extension sliding groove 5221 provides precise guidance for the relative sliding between the slide rail body 521 and the slide rail extension body 522. When the slide rail body 521 moves relative to the slide rail fixed frame 51, the sliding convex column 5211 slides smoothly in the extension sliding groove 5221 to ensure that the slide rail extension body 522 can slide in the opposite direction according to the predetermined trajectory, avoiding deviation or shaking during sliding, thereby making the equipment more stable and reliable during installation and sliding out.

[0041] Further, the arrangement of the sliding convex column 5211 penetrating through the extension sliding groove 5221 further enhances the connection tightness between the slide rail body 521 and the slide rail extension body 522, effectively preventing the mutual disengagement of the slide rail body 521 and the slide rail extension body 522 during sliding, which is beneficial to ensure the integrity and stability of the entire slide rail system, effectively reducing the risk of equipment damage or failure to use normally due to disengagement.

[0042] Further, the sliding fit of the sliding convex column 5211 and the extension sliding groove 5221 reduces direct contact wear, and also helps to reduce vibration and noise during movement of the slide rail, further prolonging the service life of the slide rail; secondly, during installation of the equipment, it is relatively simple to align the sliding convex column 5211 with the extension sliding groove 5221 for installation, which reduces the difficulty and complexity of assembly, is beneficial to improve the installation efficiency, and helps to reduce errors that may occur during installation.

[0043] As shown in Figures 1 to 6The slide rail fixing frame 51 shown is provided with fixing grooves 511 on both the upper and lower sides. The slide rail body 521 is provided with a first sliding protrusion 5212 and the slide rail extension 522 is provided with a second sliding protrusion 5222. The first sliding protrusion 5212 and the second sliding protrusion 5222 are slidably connected to the fixing grooves 511 respectively.

[0044] Specifically, the first sliding protrusion 5212 and the second sliding protrusion 5222 are both correspondingly provided with the fixed slide groove 511. The first sliding protrusion 5212 is located on the upper and lower sides of the slide rail body 521. Similarly, the second sliding protrusion 5222 is located on the upper and lower sides of the slide rail extension body 522.

[0045] Furthermore, the slide rail fixing frame 51 is provided with fixing grooves 511 on both the upper and lower sides, and the first sliding protrusion 5212 of the slide rail body 521 and the second sliding protrusion 5222 of the slide rail extension body 522 are slidably connected to the fixing grooves 511, forming multiple support points and positioning points. This multi-point support structure can effectively distribute the weight of the equipment and the external forces generated during use, avoiding structural deformation or damage caused by excessive force on a single point. In daily use of the equipment, especially when sliding out of the cabinet or wall for maintenance operations, it can ensure that the equipment slides smoothly, reducing the possibility of shaking and tilting, which is conducive to improving the stability and safety of the equipment.

[0046] Furthermore, the fixed groove 511 provides a clear sliding path for the first sliding protrusion 5212 and the second sliding protrusion 5222, so that the slide rail body 521 and the slide rail extension 522 can move along the fixed track during the sliding process, which helps to reduce frictional resistance and unnecessary shaking during the sliding process, thereby making the sliding of the equipment smoother.

[0047] Furthermore, the sliding connection between the first sliding protrusion 5212 and the second sliding protrusion 5222 and the fixed slide groove 511 not only provides the sliding function, but also enhances the connection strength between the slide rail body 521, the slide rail extension 522 and the slide rail fixing frame 51, so that the various components can be tightly connected and jointly bear the weight of the body 1 and the external force, which is conducive to improving the structural strength and reliability of the entire slide rail system.

[0048] like Figures 1 to 6 The first sliding protrusion 5212 shown is folded inward to form a connecting groove 5213. The slide rail extension body 522 is provided with a connecting plate surface 5223 that is slidably connected to the connecting groove 5213. The connecting plate surface 5223 and the second sliding protrusion 5222 are arranged adjacent to each other.

[0049] Further, the first sliding protrusion 5212 is inwardly folded to form a connecting sliding groove 5213 which is in sliding connection with the connecting plate surface 5223 of the slide rail extension body 522, so that a more close connection relationship is established between the slide rail body 521 and the slide rail extension body 522, which is beneficial to ensure that the slide rail extension body 522 can act in cooperation with the slide rail body 521 when the slide rail body 521 moves relative to the slide rail fixed frame 51, and the sliding process of the machine body 1 is completed together, which helps to improve the structural stability of the entire slide rail system and effectively reduces the shaking and instability phenomenon caused by loosening or misalignment between components.

[0050] Further, the connecting plate surface 5223 and the second sliding protrusion 5222 are arranged adjacent to each other, so that the slide rail extension body 522 can more evenly disperse the weight of the machine body 1 and external forces generated during use when connecting with the slide rail body 521 and the slide rail fixed frame 51. When the device bears a large load, the connecting plate surface 5223 and the second sliding protrusion 5222 jointly bear the force, avoiding the case of excessive stress at a single point, thereby enhancing the load capacity and structural strength of the entire slide rail system and ensuring the stability and reliability of the device during long-term use.

[0051] Further, the sliding cooperation of the connecting sliding groove 5213 and the connecting plate surface 5223 provides a continuous and smooth path for the relative sliding between the slide rail body 521 and the slide rail extension body 522.

[0052] As shown in Figures 1 to 6 The connecting plate surface 5223 and the extension sliding groove 5221 are arranged along the length direction of the slide rail extension body 522, and the length of the extension sliding groove 5221 is less than the length of the connecting plate surface 5223.

[0053] Further, when the length of the extension sliding groove 5221 is less than the length of the connecting plate surface 5223, the movement distance of the slide rail extension body 522 relative to the slide rail body 521 in the opposite direction can be effectively limited. If there is no such limitation, the slide rail extension body 522 can be excessively slid out, resulting in that the overlapping area of the slide rail body 521 and the slide rail support frame 51 is too small. However, sufficient overlapping area is the key to maintaining structural stability, which can make the slide rail body 521 and the slide rail support frame 51 better disperse and bear the weight and external force of the device, and prevent the shaking, tilting or even structural damage caused by insufficient overlapping area.

[0054] Further, the setting of the extension sliding groove 5221 can limit the movement distance of the slide rail extension body 522, and ensure that there is always enough connecting part between the slide rail body 521 and the slide rail support frame 51, and at the same time, it is beneficial to reduce the possibility of derailment of the slide rail system.

[0055] As shown in Figures 1 to 6The sliding convex column 5211 is integrally formed on the slide rail body 521;

[0056] Further, the integrally formed sliding convex column 5211 and the slide rail body 521 are a whole structure, compared with the sliding convex column mounted on the slide rail body 521 by welding, bolt connection and other methods, the integrally formed structure has no risk of loosening and falling off at the connection part, and can withstand greater external force and friction during frequent sliding of the slide rail system, ensuring the reliability of the connection between the sliding convex column 5211 and the slide rail body 521, thereby improving the stability of the entire slide rail system.

[0057] Further, the integrally formed structure eliminates the gaps and weak points between different components, and forms a continuous and complete structure of the slide rail body 521 and the sliding convex column 5211, which helps to more evenly disperse the stress, reduces the stress concentration phenomenon, reduces the possibility of structural damage caused by excessive local stress, and enhances the overall strength of the slide rail system.

[0058] Further, the integrally formed structure is beneficial to reduce additional assembly procedures, and does not need to perform complex connection operations such as preheating and cooling treatment of welding, punching and tightening of bolt connection, so that the production process is more simple and efficient, and helps to reduce human error and quality fluctuation in the production process.

[0059] As shown in the drawings, the cross sections of the first sliding convex 5212 and the second sliding convex 5222 are circular arcs; Figures 1 to 6

[0060] Further, when the circular arc-shaped first sliding convex 5212 and the second sliding convex 5222 respectively contact the matched sliding groove or track, the contact area is smaller than other shapes such as square and rectangle, and under the condition of certain normal pressure and friction coefficient, the contact area is reduced, and the friction is also reduced accordingly, so that the slide rail is more smooth during sliding, which is beneficial to improve the use convenience of the equipment.

[0061] Further, the circular arc shape has no sharp corners, and will not generate large local friction with the sliding groove during sliding like the shapes with corners, reducing the wear and heat generated by friction, and helping to prolong the service life of the slide rail extension 522, the slide rail body 521 and related components, effectively reducing the maintenance cost of the equipment.

[0062] ​Furthermore, when the arc-shaped first sliding protrusion 5212 and the second sliding protrusion 5222 slide in the fixed slide groove 511, they have a certain self-aligning capability. When the slide rail deviates slightly or shakes during the sliding process, the arc-shaped surface can guide the first sliding protrusion 5212 and the second sliding protrusion 5222 to automatically return to the center position of the fixed slide groove 511, ensuring the straightness and stability of the sliding.

[0063] like Figures 1 to 6 The touch display screen 41 shown is tilted, and the angle between the touch display screen 41 and the horizontal plane is 15°-45°.

[0064] Optionally, in some embodiments, the touch display screen 41 is at an angle of 15° to the horizontal plane. The 15° tilt angle is relatively small, which is suitable for users to operate for a long time while standing or sitting, allowing their arms and wrists to maintain a natural posture and reducing fatigue. Secondly, the smaller tilt angle makes the device more compact overall, which is suitable for installation environments with limited space. Finally, in low-light environments, the smaller tilt angle can reduce screen reflections and provide a better visual effect.

[0065] Optionally, in some embodiments, the angle between the touch display screen 41 and the horizontal plane is 30°. A 30° tilt angle is a relatively ergonomic angle. For most users who are standing or sitting normally, their eyes can naturally look at the screen at eye level, and their necks do not need to be overly tilted up or down, reducing neck fatigue caused by long-term operation. Secondly, a 30° tilt angle can effectively reduce screen reflection and provide a better visual experience.

[0066] Optionally, in some embodiments, the touch display screen 41 is at an angle of 45° to the horizontal plane. The 45° tilt angle can make the screen content more prominently displayed to the user, which is conducive to creating a better visual effect. In addition, the larger tilt angle can also reduce the possibility of accidental dropping of objects or touch of the screen, thus improving the safety and stability of the device.

[0067] like Figures 1 to 6 The camera module 42 shown includes a binocular camera;

[0068] Furthermore, the binocular camera 42 captures images of the same scene from different angles through two lenses, and calculates the distance between the object and the camera using the principle of parallax, thereby providing depth information. This makes the device more accurate in scenarios such as face recognition and object detection, and can effectively avoid misjudgments caused by background interference or changes in lighting.

[0069] Further, in face recognition applications, the binocular camera 42 can generate a three-dimensional face model, significantly improving the accuracy and security of recognition, and it can detect living bodies, prevent photo or video fraud, and ensure that only real faces can pass verification. This high-precision recognition capability is particularly important for hotel self-check-in devices, effectively meeting safety and compliance requirements.

[0070] Further, the binocular camera 42 performs well under different lighting conditions, whether in strong light or weak light environment, and can work stably to enable the hotel self-check-in device to operate normally in various scenarios and not be affected by changes in ambient light.

[0071] Further, the binocular camera 42 is provided with a breathing light module on both sides. In different light environments, the imaging effect of the binocular camera 42 may be affected. The breathing light module can provide adjustable brightness for lighting the shooting scene, effectively improving the clarity, color restoration, and contrast of the image, and avoiding the problem of image blur or distortion caused by light; secondly, the breathing light module can convey various signals and state information through different brightness changes, flashing frequencies, and color combinations, which is conducive to increasing the interactivity and interest between the device and the user. The user can observe the state of the breathing light to understand the operation of the device in a timely manner.

[0072] The implementation of embodiment one is as follows:

[0073] An embedded hotel self-check-in device includes a body 1 embedded in a cabinet or wall, the body 1 including a panel assembly 2 located on the front of the body 1, and a rear shell 3 located on the back of the panel assembly 2, the panel assembly 2 and the rear shell 3 enclosing an installation cavity 4, the installation cavity 4 being provided with a touch display screen 41, a camera module 42, and an automatic card sending and receiving module 43 in communication with the panel assembly 2, and the rear shell 3 being provided with a mounting portion 5 for fixing the body 1 to a position of the cabinet or wall.

[0074] The utility model discloses a mounting portion is arranged at the bottom of the rear shell, so that the body can be embedded in the cabinet or wall, compared with the traditional external device installation mode, the hotel's table space is not occupied, which is conducive to saving space and making the table area more spacious and tidy. In addition, the embedded body can be integrated with the cabinet or wall, so that the overall visual effect of the body is more coordinated and unified, which helps to meet the design concept of modern architecture and effectively solves the problem of occupying more table space caused by the installation mode of the hotel self-check-in device using external devices.

[0075] The implementation of embodiment two is as follows:

[0076] The embodiment two is based on the embodiment one and has the following implementation: the mounting part 5 comprises a slide rail fixing frame 51 fixed in the cabinet or wall, and a slide rail bearing bracket 52 connected with the bottom of the rear shell 3, the slide rail bearing bracket 52 comprises a slide rail body 521 slidably connected with the slide rail fixing frame 51, and a slide rail extension body 522 arranged in the slide rail body 521, when the slide rail body 521 moves relative to the slide rail fixing frame 51, the slide rail extension body 522 can slide in the opposite direction to increase the overlapping area of the slide rail body 521 and the slide rail fixing frame 51.

[0077] Specifically, when the user needs to pull out the cabinet 1, the slide rail fixing frame 51 is fixed to the cabinet or wall, and the slide rail body 521 moves relative to the slide rail fixing frame 51 until the slide rail body 521 reaches the end, at this time, the slide rail extension body 522 in the slide rail body 521 is also exposed, and the user can push the slide rail extension body 522 with his hand to move the slide rail extension body 522 in the opposite direction, i.e. from the side close to the slide rail body 521 to the side close to the slide rail fixing frame 51, so as to increase the overlapping area between the slide rail fixing frame 51 and the slide rail body 521, which is beneficial to improve the overall strength of the device.

[0078] The embodiment three has the following implementation:

[0079] The embodiment three is based on the embodiment two and has the following implementation: the end of the slide rail body 521 away from the panel assembly 2 is provided with a sliding convex column 5211, the slide rail extension body 522 is provided with an extension sliding groove 5221 slidably connected with the sliding convex column 5211, and the sliding convex column 5211 penetrates through the extension sliding groove 5221 and extends towards the slide rail bearing bracket 51.

[0080] The embodiment four has the following implementation:

[0081] The embodiment four is based on the embodiment three and has the following implementation: the slide rail fixing frame 51 is provided with a fixed sliding groove 511 on both sides, the slide rail body 521 is provided with a first sliding convex 5212, and the slide rail extension body 522 is provided with a second sliding convex 5222, the first sliding convex 5212 and the second sliding convex 5222 are slidably connected with the fixed sliding groove 511 respectively.

[0082] The embodiment five has the following implementation:

[0083] The embodiment five is based on the embodiment four and has the following implementation: the first sliding convex 5212 is inwardly folded to form a connecting sliding groove 5213, the slide rail extension body 522 is provided with a connecting plate surface 5223 slidably connected with the connecting sliding groove 5213, and the connecting plate surface 5223 and the second sliding convex 5222 are arranged adjacent to each other.

[0084] The embodiment six has the following implementation:

[0085] The embodiment six has the following implementation based on the embodiment five: the connecting plate surface 5223 and the extension sliding groove 5221 are arranged along the length direction of the sliding rail extension body 522, and the length of the extension sliding groove 5221 is less than the length of the connecting plate surface 5223.

[0086] The embodiment seven has the following implementation:

[0087] The embodiment seven has the following implementation based on the embodiment three: the sliding convex column 5211 is integrally formed on the sliding rail body 521.

[0088] The embodiment eight has the following implementation:

[0089] The embodiment eight has the following implementation based on the embodiment four: the cross sections of the first sliding convex 5212 and the second sliding convex 5222 are circular arcs.

[0090] The embodiment nine has the following implementation:

[0091] The embodiment nine has the following implementation based on the embodiment one: the touch display screen 41 is in an inclined posture, and the angle between the touch display screen 41 and the horizontal plane is 45°. The inclined angle of 45° can make the screen content more prominently displayed to the user, which is conducive to creating a better visual effect. In addition, the larger inclined angle can also reduce the possibility of accidental dropping or touching the screen, thereby improving the safety and stability of the device use.

[0092] The embodiment ten has the following implementation:

[0093] The embodiment ten has the following implementation based on the embodiment one: the camera module 42 includes a binocular camera.

[0094] The embodiment eleven has the following implementation:

[0095] The embodiment eleven is different from the embodiment nine in that the angle between the touch display screen 41 and the horizontal plane is 30°. The inclined angle of 30° is a more ergonomic angle. For most users standing or sitting normally, the eyes can naturally level the screen, and the neck does not need to be excessively tilted or bent, thereby reducing the neck fatigue caused by long-time operation. In addition, the inclined angle of 30° can effectively reduce the screen reflection, while providing a better visual experience.

[0096] The embodiment twelve has the following implementation:

[0097] The difference between the embodiment twelve and the embodiment nine is that the angle between the touch display screen 41 and the horizontal plane is 15°, the inclination angle of 15° is relatively small, is suitable for the user to operate for a long time when standing or sitting, the arm and the wrist can keep the natural posture, reduces the fatigue, secondly, the small inclination angle makes the device more compact, is suitable for the installation environment with limited space, finally, in the weak light environment, the small inclination angle can reduce the screen reflection, provides better visual effect.

[0098] The above is only to further illustrate the technical content of the present application by way of examples, so that the reader can more easily understand, but does not represent the embodiment of the present application is limited to this, any technical extension or re-creation made according to the present application, are protected by the present application. The protection scope of the present application is subject to the claims.

Claims

1. An embedded hotel self-check-in device, comprising a body (1) embedded in a cabinet or wall, characterized in that: The body (1) includes a panel assembly (2) located on the front of the body (1) and a rear shell (3) located on the back of the panel assembly (2). The panel assembly (2) and the rear shell (3) enclose a mounting cavity (4). The mounting cavity (4) is provided with a touch screen (41), a camera module (42), and an automatic card sending and receiving module (43) communicating with the panel assembly (2). The rear shell (3) is provided with a mounting part (5) for fixing the body (1) to a cabinet or wall.

2. The embedded hotel self-check-in device according to claim 1, characterized in that: The mounting part (5) includes a slide rail fixing bracket (51) fixed in the cabinet or wall and a slide rail support bracket (52) connected to the bottom of the rear housing (3). The slide rail support bracket (52) includes a slide rail body (521) slidably connected to the slide rail fixing bracket (51) and a slide rail extension body (522) disposed in the slide rail body (521). When the slide rail body (521) moves relative to the slide rail fixing bracket (51), the slide rail extension body (522) can slide in the opposite direction to increase the overlap area of ​​the slide rail body (521) and the slide rail fixing bracket (51).

3. An embedded hotel self-check-in device according to claim 2, characterized in that: The slide rail body (521) has a sliding protrusion (5211) at one end away from the panel assembly (2), and the slide rail extension body (522) has an extension groove (5221) that is slidably connected to the sliding protrusion (5211). The sliding protrusion (5211) passes through the extension groove (5221) and extends toward the slide rail support (52).

4. An embedded hotel self-check-in device according to claim 3, characterized in that: The slide rail fixing frame (51) is provided with fixing grooves (511) on both the upper and lower sides. The slide rail body (521) is provided with a first sliding protrusion (5212), and the slide rail extension body (522) is provided with a second sliding protrusion (5222). The first sliding protrusion (5212) and the second sliding protrusion (5222) are respectively slidably connected to the fixing grooves (511).

5. An embedded hotel self-check-in device according to claim 4, characterized in that: The first sliding protrusion (5212) is folded inward to form a connecting groove (5213). The slide rail extension (522) is provided with a connecting plate surface (5223) that is slidably connected to the connecting groove (5213). The connecting plate surface (5223) is arranged adjacent to the second sliding protrusion (5222).

6. An embedded hotel self-check-in device according to claim 5, characterized in that: Both the connecting plate surface (5223) and the extension groove (5221) extend along the length direction of the slide rail extension body (522), and the length of the extension groove (5221) is less than the length of the connecting plate surface (5223).

7. An embedded hotel self-check-in device according to claim 3, characterized in that: The sliding protrusion (5211) is integrally formed on the slide rail body (521).

8. An embedded hotel self-check-in device according to claim 4, characterized in that: The cross-sections of the first sliding protrusion (5212) and the second sliding protrusion (5222) are both arc-shaped.

9. An embedded hotel self-check-in device according to claim 1, characterized in that: The touch screen (41) is tilted, and the angle between the touch screen (41) and the horizontal plane is 15°-45°.

10. An embedded hotel self-check-in device according to claim 1, characterized in that: The camera module (42) includes a binocular camera.