Hidden electronic lock door and electronic device

By using a concealed electronic lock door shielding module and cloud control, the problem of cabinet door anti-theft and monitoring in the communication power system is solved, and the security and real-time monitoring are improved.

CN223539209UActive Publication Date: 2025-11-11DELTA ELECTRONICS INC(CN)
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Patent Information

Application Number
CN202423156020.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-08-20
Filing Date
2024-12-20
Publication Date
2025-11-11
Estimated Expiration
2034-12-20

AI Technical Summary

Technical Problem

The cabinet doors of existing communication power systems cannot effectively prevent theft, and cannot accurately record and remotely monitor opening and closing times.

Method used

The door adopts a concealed electronic lock, which is controlled by the cloud via wireless transmission. The door lock is opened and closed by a concealing module on the door panel to conceal or expose the electronic lock. The door lock is operated by controlling the door lock opening and closing via the cloud. Combined with a card reader, it can achieve multiple applications.

Benefits of technology

It improves the security and anti-theft mechanism of the communication power system, and can monitor and record the opening and closing information of the cabinet door in real time, eliminating the inconvenience of users carrying physical keys and enhancing the access control capability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a hidden electronic lock door and an applicable electronic device thereof. The hidden electronic lock door comprises a door plate body, an electronic lock and a shielding module. The door plate body is arranged at the opening of the cabinet body and is configured to close or open the opening of the cabinet body. The electronic lock is arranged on the door plate body and comprises a controller and a signal receiver, the signal receiver is connected with the controller and is configured to receive an operation instruction sent in a wireless transmission mode and transmit the operation instruction to the controller, and the controller opens or closes the electronic lock according to the operation instruction. The shielding module is spatially arranged relative to the electronic lock and is configured to selectively shield or expose the electronic lock. Therefore, the hidden electronic lock allows a door lock switch to be controlled in a wireless transmission mode in cooperation with a cloud end, and the opening and closing conditions of the cabinet door are effectively controlled and confirmed under the situation that the electronic lock is shielded.
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Description

Technical Field

[0001] This application relates to an electronic lock door structure, and more particularly to a concealed electronic lock door and the electronic device applicable thereto. The concealed electronic lock allows for wireless transmission in conjunction with cloud control of the lock opening and closing, so as to effectively control and confirm the opening and closing status of the cabinet door. Background Technology

[0002] In the event of power outages or fluctuations in telecommunications networks, communication power systems ensure the normal operation of telecommunications services. Therefore, communication power systems are widely used in various fields. Currently, most common communication power systems on the market are installed in communication power cabinets, with cabinet doors opened by traditional handles or requiring a key. Because the handles are directly exposed, they are not effective in preventing theft, resulting in insufficient security and anti-theft mechanisms.

[0003] On the other hand, the safety mechanisms of the communication power system cannot accurately record the date and time of cabinet door opening and closing. Naturally, users also cannot connect to the system remotely to receive immediate information about cabinet door opening or closing.

[0004] In view of this, it is necessary to provide a concealed electronic lock door and a suitable electronic device thereof. The concealed electronic lock allows for wireless transmission in conjunction with cloud control of the door lock switch, so as to effectively control and confirm the opening and closing status of the cabinet door, and solve the deficiencies of known technologies. Utility Model Content

[0005] The purpose of this application is to provide a concealed electronic lock door and a suitable electronic device thereof. The concealed electronic lock allows for wireless transmission in conjunction with cloud control of the door lock switch, so as to effectively control and confirm the opening and closing status of the cabinet door.

[0006] Another objective of this application is to provide a concealed electronic lock door and a suitable electronic device thereof. The concealed electronic lock door utilizes a concealing module to construct a concealed space on the door panel body. An electronic lock installed within this concealed space can be selectively concealed or exposed by operating the concealing module. The concealing module can be operated, for example, by a pivotal or sliding cover combined with a magnetic latch, butterfly hinge, snap-fit, or magnetic switch, allowing the concealed space to be sealed to conceal the electronic lock, or opened to expose the electronic lock, thereby constructing a concealed electronic lock on the door panel body. Besides providing basic protection for the electronic lock, this also helps prevent intentional vandalism. Furthermore, the opening and closing of the electronic lock is controlled via cloud-based door lock control, eliminating the inconvenience of users carrying physical keys. The cloud-controlled door lock switch can wirelessly transmit operation commands to the electronic lock's signal receiver via a mobile application (APP), user web, or Radio Frequency Identification (RFID) system, and then to the controller to control the opening and closing of the electronic lock, even when the electronic lock is still hidden by the concealment module. Furthermore, the electronic lock within the concealed space can be opened and revealed only when inspection or maintenance is required. Of course, a card reader can also be added within the concealed space and electrically connected to the electronic lock, realizing the diverse applications of the concealed electronic lock door. With the concealed electronic lock door feature of this application, electronic devices such as communication power cabinets can provide system administrators with immediate information on whether the cabinet door is open or closed, further enhancing security and anti-theft mechanisms. Simultaneously, through methods such as mobile applications or user web, the date and time of cabinet door opening and closing can be accurately recorded, further strengthening access control. This has significant industrial applicability.

[0007] To achieve the aforementioned objectives, this application provides a concealed electronic lock door, including a door panel body, an electronic lock, and a concealment module. The door panel body is disposed in an opening of a cabinet and configured to close or open the cabinet opening. The electronic lock is disposed on the door panel body and includes a controller and a signal receiver, wherein the signal receiver is connected to the controller and configured to receive operation commands transmitted wirelessly and transmit the operation commands to the controller, which then opens or closes the electronic lock according to the operation commands. The concealment module is spatially disposed relative to the electronic lock and configured to selectively conceal or expose the electronic lock.

[0008] In one embodiment, the wireless transmission is performed by a mobile application (APP), a user webpage, or a radio frequency identification (RFID) system.

[0009] In one embodiment, the shielding module includes a cover plate pivotally connected to the door panel body, spatially opposite the electronic lock, and configured on the door panel body to form a shielding space, through which the electronic lock communicates outward.

[0010] In one embodiment, the cover plate is connected to the door panel body by a magnetic snap, butterfly hinge or fastener to seal and shield the space and shield the electronic lock.

[0011] In one embodiment, the cover rotates to disengage from the magnetic latch, butterfly hinge, or snap fastener, thereby opening the concealed space and exposing the electronic lock.

[0012] In one embodiment, the shielding module includes a cover plate that is slidably disposed on the door panel body and spatially opposite to the electronic lock. The cover plate is configured on the door panel body to form a shielding space, and the electronic lock communicates outward through the shielding space.

[0013] In one embodiment, the cover plate is connected to the door panel body via a magnetic switch to seal and shield the space and shield the electronic lock.

[0014] In one embodiment, the cover slides away from the magnetic switch to open the shielded space and expose the electronic lock.

[0015] In one embodiment, the cover plate is slidably disposed on the mounting housing via a slide rail, the mounting housing being embedded in the door panel body, and the slide rail being disposed parallel to the front side of the door panel body.

[0016] In one embodiment, the cover plate is inclined relative to the front of the door panel body.

[0017] In one embodiment, the cover plate is L-shaped relative to the front and side planes of the door panel body.

[0018] In one embodiment, the concealed electronic lock door also includes a card reader, which is disposed adjacent to the electronic lock, housed in a concealed space, and electrically connected to the controller.

[0019] To achieve the aforementioned objectives, this application also provides an electronic device, including a cloud-controlled door lock switch and a concealed electronic lock door. The cloud-controlled door lock switch is configured to send operation commands wirelessly. The concealed electronic lock door is configured to be controlled by the cloud-controlled door lock switch and includes a door panel body, an electronic lock, and a concealment module. The door panel body is located at an opening in a cabinet and is configured to close or open the cabinet opening. The electronic lock is located on the door panel body and includes a controller and a signal receiver, wherein the signal receiver is connected to the controller and is configured to receive operation commands sent by the cloud-controlled door lock switch and transmit the operation commands to the controller, which then opens or closes the electronic lock according to the operation commands. The concealment module is spatially positioned relative to the electronic lock and is configured to selectively conceal or expose the electronic lock.

[0020] In one embodiment, cloud-based control of the door lock switch includes a mobile application, a user webpage, or a radio frequency identification (RFID) system.

[0021] In one embodiment, the shielding module further includes a mounting housing, which is detachably embedded in the door panel body and configured to form a shielding space, within which the electronic lock is housed. Attached Figure Description

[0022] The following detailed description of this application and the schematic diagrams of the embodiments are intended to enable those skilled in the art to better understand the above content, and are not intended to limit this application.

[0023] Figure 1 This is a schematic diagram showing the external structure of the electronic device and the concealed electronic lock door according to the first embodiment of this application.

[0024] Figure 2 This is a schematic diagram illustrating the structure of the electronic device and the concealed electronic lock door according to the first embodiment of this application.

[0025] Figures 3A to 3C This diagram illustrates the schematic structure of the concealment module in the concealed electronic lock door of this application.

[0026] Figure 4 This is a schematic diagram showing the external structure of the electronic device and the concealed electronic lock door according to the second embodiment of this application.

[0027] Figure 5 This is a schematic diagram illustrating the structure of the electronic device and the concealed electronic lock door according to the second embodiment of this application.

[0028] Figure 6 This diagram illustrates the schematic structure of the concealment module in the concealed electronic lock door of this application.

[0029] Explanation of reference numerals in the attached figures

[0030] 1, 1a: Electronic devices,

[0031] 2.2a: Concealed electronic lock door

[0032] 3: Cloud-based control of door lock opening and closing;

[0033] 4: Operation instructions

[0034] 10, 10a: Door panel body,

[0035] 11: Front

[0036] 12: Side slope,

[0037] 12a: Lateral plane,

[0038] 13: Exhaust port,

[0039] 20: Electronic lock

[0040] 21: Signal receiver

[0041] 22: Controller

[0042] 30, 30', 30”, 30a: Masking module

[0043] 300: Sheltered space

[0044] 31: Cover plate,

[0045] 32: Magnetic buckle

[0046] 33: Fasteners,

[0047] 34: Butterfly hinge

[0048] 35: Install the housing;

[0049] 36: Magnetic switch

[0050] 37: Slide rail,

[0051] 40: Card reader,

[0052] 9: Cabinet,

[0053] 90: Opening. Detailed Implementation

[0054] Some typical embodiments embodying the features and advantages of this application will be described in detail in the following description. It should be understood that this application can have various variations in different ways, all of which do not depart from the scope of this application, and the descriptions and drawings herein are for illustrative purposes only and not intended to limit this application. For example, if the following description of this application stating that a first feature is disposed on or above a second feature indicates that it includes embodiments where the first and second features are in direct contact, and also includes embodiments where additional features can be disposed between the first and second features, so that the first and second features may not be in direct contact. Furthermore, different embodiments in this application may use repeated reference numerals and / or markings. These repetitions are for simplification and clarity and are not intended to limit the relationships between the various embodiments and / or the described appearance structures. Moreover, to facilitate the description of the relationship between one component or feature and another component(s) or feature(s) in the drawings, spatially related terms such as "inner," "outer," "left," "right," and similar terms may be used. In addition to the orientations illustrated in the accompanying drawings, spatially related terms are used to cover different orientations of the device in use or operation. The device may also be otherwise positioned (e.g., rotated 90 degrees or located in other orientations), and the descriptions of the spatially related terms used will be interpreted accordingly. Furthermore, when a component is referred to as "connected to" or "coupled to" another component, it may be directly connected to or coupled to the other component, or there may be intervening components. Although the numerical ranges and parameters of the broad scope of this application are approximate, the values ​​are stated as precisely as possible in specific examples. Additionally, it is understood that while terms such as "first," "second," etc., may be used in the claims to describe different components, these components should not be limited by these terms, and the components described accordingly in the embodiments are represented by different component symbols. These terms are used to distinguish different components. For example, a first component may be referred to as a second component, and similarly, a second component may be referred to as a first component without departing from the scope of the embodiments. The term "and / or" as thus used includes any or all combinations of one or more of the related listed items.

[0055] Figure 1 This is a schematic diagram showing the external structure of the electronic device and the concealed electronic lock door according to the first embodiment of this application. Figure 2 This is a schematic diagram illustrating the structure of a concealed electronic lock door according to the first embodiment of this application. (Reference) Figures 1 to 2In this embodiment, this application provides an electronic device 1 including a concealed electronic lock door 2. The electronic device 1 is applied, for example, to a communication power system, including a cloud-controlled door lock switch 3 and the concealed electronic lock door 2. In this embodiment, the concealed electronic lock door 2 is configured to be controlled by the cloud-controlled door lock switch 3. The cloud-controlled door lock switch 3 refers to software or hardware capable of transmitting operation commands wirelessly, such as a mobile application (APP), a user webpage, or a radio frequency identification (RFID) system, which can transmit operation commands wirelessly through user operation. In this embodiment, the concealed electronic lock door 2 includes a door panel body 10, an electronic lock 20, and a shielding module 30. The door panel body 10 is disposed at an opening 90 of a cabinet 9 and configured to close or open the opening 90 of the cabinet 9. The cabinet 9 may contain, for example, a server or power supply device for a communication power system; this application is not limited thereto. In this embodiment, the electronic lock 20 is disposed on the door panel body 10, adjacent to the left side edge, and includes a controller 22 and a signal receiver 21. In other embodiments, the electronic lock 20 may also be disposed on the right side edge of the door panel body 10. In this embodiment, the signal receiver 21 is connected to the controller 22 and configured to receive the operation command 4 sent by the cloud-controlled door lock switch 3 via wireless transmission, and transmit the operation command 4 to the controller 22. The controller 22 opens or closes the electronic lock 20 according to the operation command 4. In other words, the opening and closing operation of the electronic lock 20 is controlled by the user operating the cloud-controlled door lock switch 3. For example, the user's smartphone can be used to control the cloud-controlled door lock switch 3, eliminating the inconvenience of the user having to carry a physical key. Of course, the scenarios for operating the cloud-controlled door lock switch 3 are not limited to this. In addition, in this embodiment, the shielding module 30 is spatially disposed relative to the electronic lock 20 and configured to selectively shield or expose the electronic lock 20. In addition to providing basic protection for the electronic lock, it also helps to prevent intentional damage.

[0056] In this embodiment, the shielding module 30 is detachably embedded in the left side edge of the door panel body 10 and includes a cover plate 31. The cover plate 31 is pivotally connected to the door panel body 10 and is spatially opposite the electronic lock 20, forming a shielding space 300 on the door panel body 10. The electronic lock 20 communicates outward through the shielding space 300. In this embodiment, the cover plate 31 is connected to the door panel body 10 by a magnetic latch 32 to seal the shielding space 300 and shield the electronic lock 20. In addition, the cover plate 31 can be rotated to disengage from the magnetic latch 32 to open the shielding space 300 and expose the electronic lock 20. Thus, the user can operate the cover plate 31 to select whether to seal or open the shielding space 300, sealing the shielding space 300 when it is necessary to hide the electronic lock 20, or opening the shielding space 300 when it is necessary to view the electronic lock 20. It should be noted that when the cloud-controlled door lock switch 3 sends operation commands 4 to the signal receiver 21 of the concealed electronic lock door 2 via wireless transmission, the sealing or opening of the cover plate 31 to conceal the space 300 is not necessarily related. In other words, the user can control the electronic lock 20 by sending operation commands 4 via, for example, a cloud-controlled door lock switch 3 through an app, even when the cover plate 31 is sealing the space 300. This application is not limited to this.

[0057] In this embodiment, the door panel body 10 also includes a side slope 12, connecting the front surface 11 of the door panel body 10 and the opening 90 of the cabinet 9. The side slope 12 is provided with multiple exhaust holes 13 for ventilation and heat dissipation. In this embodiment, the shielding module 30 is embedded in the side slope 12 to provide basic concealment and protection when the cover plate 31 seals the shielding space 300. Furthermore, when the user opens the cover plate 31 to open the shielding space 300, they need to face the side slope 12, which facilitates others observing the user's actions from the front surface 11 of the door panel body 10, preventing the electronic lock 20 from being intentionally damaged. Of course, this application is not limited to this.

[0058] Figures 3A to 3C A schematic structure of the concealment module in the concealed electronic lock door of this application is shown. (Reference) Figure 1 , Figure 2 as well as Figures 3A to 3C In this embodiment, to facilitate the detachable embedding of the shielding module 30 into the side slope 12 of the door panel body 10, the shielding module 30 adopts a modular design. The shielding module 30 includes, for example, a mounting housing 35, a cover plate 31 pivotally connected to the mounting housing 35, and a magnetic buckle 32 corresponding to the cover plate 31 and pre-positioned within the mounting housing 35, such as... Figure 3A As shown. Thus, the modular shielding module 30 can correspond to the position of the electronic lock 20, detachably embedded in the side slope 12 of the door panel body 10, and the cover plate 31 is inclined relative to the front face 11 of the door panel body 10. In one embodiment, the cover plate 31, in conjunction with the operation of the fastener 33, can either seal the shielding space 300 and shield the electronic lock 20, or open the shielding space 300 and expose the electronic lock 20, such as... Figure 3B As shown. Thus, the modular shielding module 30' corresponds to the position of the electronic lock 20, and is detachably embedded in the side slope 12 of the door panel body 10, so that the cover plate 31 is inclined relative to the front face 11 of the door panel body 10. In another embodiment, the cover plate 31, in conjunction with the operation of the butterfly hinge 34, can either seal the shielding space 300 and shield the electronic lock 20, or open the shielding space 300 and expose the electronic lock 20, such as... Figure 3C As shown. Thus, the modular concealing module 30” corresponds to the position of the electronic lock 20 and is detachably embedded in the side slope 12 of the door panel body 10, so that the cover plate 31 is inclined relative to the front 11 of the door panel body 10. Of course, in other embodiments, the pivot cover plate 31 can be adjusted to combine one or more of the magnetic buckle 32, butterfly hinge 34 or fastener 33 according to the actual application requirements, thereby constructing a hidden electronic lock door 2 on the side slope 12 of the door panel body 10. In addition to providing basic protection for the electronic lock 20, it also helps to prevent intentional damage. Of course, this application is not limited to this.

[0059] In this embodiment, the concealed electronic lock door 2 also includes a card reader 40, which is disposed adjacent to the electronic lock 20, housed in the concealed space 300, and electrically connected to the controller 22. By adding a card reader 40 within the concealed space 300 and electrically connecting it to the electronic lock 20, the concealed electronic lock door 2 can be more effectively used for various applications. Thus, electronic devices such as communication power cabinets can, through the concealed electronic lock door 2 of this application, provide system administrators with immediate information on whether the cabinet door is open or closed, further enhancing security and anti-theft mechanisms. Furthermore, through applications such as mobile applications (APPs), the date and time of opening and closing the cabinet door can be accurately recorded. Of course, this application is not limited to this.

[0060] Figure 4 This is a schematic diagram showing the external structure of the electronic device and the concealed electronic lock door according to the second embodiment of this application. Figure 5 This is a schematic diagram illustrating the structure of the electronic device and the concealed electronic lock door according to the second embodiment of this application. Figure 6 This diagram illustrates the schematic structure of the concealment module in the concealed electronic lock door of this application. In this embodiment, the electronic device 1a and the concealed electronic lock door 2a have a generally similar structure. Figures 1 to 2 The electronic device 1 and the concealed electronic lock door 2 shown are labeled with the same component numbers to represent the same components, structures, and functions, and will not be described again here. Reference Figures 4 to 6In this embodiment, the door panel body 10a also includes a side plane 12a, connecting the front surface 11 of the door panel body 10a and the opening 90 of the cabinet 9. The side plane 12a is provided with multiple exhaust holes 13 for exhaust and heat dissipation. In this embodiment, the shielding module 30a also adopts a modular design. The shielding module 30a includes, for example, a cover plate 31, a mounting housing 35, a magnetic switch 36, and a slide rail 37. The mounting housing 35 is configured to be embedded between the front surface 11 and the side plane 12a of the door panel body 10a, and the electronic lock 20 is, for example, pre-placed within the mounting housing 35. In this embodiment, the cover plate 31 is slidably disposed on the mounting housing 35 via a slide rail 37, spatially relative to the electronic lock 20. Preferably, the slide rail 37 is disposed more parallel to the front surface 11 of the door panel body 10a. In this embodiment, the cover plate 31, together with the mounting housing 35, is disposed on the door panel body 10a to form a shielding space 300, through which the electronic lock 20 communicates outward. In this embodiment, the cover plate 31 is, for example, L-shaped, facing the front 11 and side plane 12a of the door panel body 10a. The side edge of the cover plate 31 facing the side plane 12a can be connected to the door panel body 10a via a magnetic switch 36 to seal the shielding space 300 and shield the electronic lock 20. Alternatively, the cover plate 31 can slide away from the magnetic switch 36 via a slide rail 37 to open the shielding space 300 and expose the electronic lock 20. Thus, the modular shielding module 30a can correspond to the position of the electronic lock 20, detachably embedded in the side plane 12a and front 11 of the door panel body 10a, and the cover plate 31 can slide parallel to the front 11 of the door panel body 10. The concealed space 300 is sealed when the electronic lock 20 needs to be hidden, or opened when the electronic lock 20 needs to be viewed. Of course, in other embodiments, the sliding cover 31 can be adjusted to combine the magnetic switch 36 and the slide rail 37 according to actual application needs, thereby constructing a hidden electronic lock door 2a between the front 11 and the side plane 12a of the door panel body 10a. In addition to providing basic protection for the electronic lock 20, it also helps to prevent intentional damage.

[0061] In this embodiment, the user allows software or hardware that transmits operation commands wirelessly, such as a mobile application (APP), user webpage, or radio frequency identification (RFID) system, to send operation commands 4 to the signal receiver 21 of the concealed electronic lock door 2a, thereby controlling the electronic lock 20, while the electronic lock 20 is hidden and sealed in the concealed space 300. Of course, this application is not limited to this.

[0062] In this embodiment, the concealed space 300 constructed by the mounting housing 35 and cover plate 31 on the concealment module 30a can be further equipped with electronic components such as a card reader 40, electrically connected to the electronic lock 20, to realize the diverse applications of the concealed electronic lock door 2a, depending on actual application needs. Thus, through the concealed electronic lock door 2a of this application, electronic devices 1a such as communication power cabinets can provide system administrators with immediate information on whether the cabinet door is open or closed, further enhancing the security and anti-theft mechanism. Simultaneously, through mobile applications (APPs), the date and time of cabinet door opening and closing can be accurately recorded, further strengthening access control. Of course, this application is not limited to this, and will not be elaborated further.

[0063] In summary, this application provides a concealed electronic lock door and a suitable electronic device thereof, allowing for wireless transmission and cloud-based control of the door lock to effectively control and confirm the opening and closing status of the cabinet door. The concealed electronic lock door utilizes a concealing module to construct a concealed space on the door panel. The electronic lock installed within this space can be concealed or exposed by operating the concealing module. The concealing module can be operated, for example, by a pivotal or sliding cover combined with a magnetic latch, butterfly hinge, snap-fit, or magnetic switch, allowing the concealed space to be sealed to conceal the electronic lock, or opened to expose the electronic lock, thus creating a concealed electronic lock on the door panel. Besides providing basic protection for the electronic lock, this also helps prevent intentional vandalism. Furthermore, the opening and closing of the electronic lock is controlled via cloud-based door lock control, eliminating the inconvenience of users carrying physical keys. The cloud-controlled door lock switch can wirelessly transmit operation commands to the electronic lock's signal receiver via a mobile application, user webpage, or RFID system, and then to the controller to control the electronic lock's opening and closing, even when the electronic lock is still hidden by the concealment module. Furthermore, the electronic lock within the concealed space can be opened and revealed only when inspection or maintenance is required. Of course, a card reader can also be added within the concealed space, electrically connected to the electronic lock, realizing the diverse applications of the concealed electronic lock door. With the concealed electronic lock door feature of this application, electronic devices such as communication power cabinets can provide system administrators with immediate information on whether the cabinet door is open or closed, further enhancing security and anti-theft mechanisms. Simultaneously, through mobile applications or user webpages, the date and time of cabinet door opening and closing can be accurately recorded, further strengthening access control. It has significant industrial applicability.

[0064] This application may be modified in various ways by those skilled in the art, but none of them shall deviate from the scope of protection sought in the appended patent application.

Claims

1. A concealed electronic lock door, wherein, include: A door panel body is provided at an opening of a cabinet and is configured to close or open the opening of the cabinet; An electronic lock, mounted on the door panel, includes a controller and a signal receiver. The signal receiver is connected to the controller and configured to receive an operation command transmitted wirelessly and transmit the operation command to the controller. The controller opens or closes the electronic lock according to the operation command. A shielding module is spatially positioned relative to the electronic lock and configured to selectively shield or expose the electronic lock.

2. The concealed electronic lock door according to claim 1, wherein, The operation command is sent by a mobile application, a user webpage, or a radio frequency identification system.

3. The concealed electronic lock door according to claim 1, wherein, The shielding module includes a cover plate that is pivotally connected to the door panel body and is spatially opposite to the electronic lock. It is disposed on the door panel body to form a shielding space, through which the electronic lock communicates outward.

4. The concealed electronic lock door according to claim 3, wherein, The cover plate is connected to the door panel body by a magnetic snap, a butterfly hinge, or a fastener to seal the concealed space and conceal the electronic lock.

5. The concealed electronic lock door according to claim 4, wherein, The cover rotates to disengage from the magnetic latch, the butterfly hinge, or the snap fastener, thus opening the concealed space and exposing the electronic lock.

6. The concealed electronic lock door according to claim 1, wherein, The shielding module includes a cover plate that is slidably disposed on the door panel body and spatially relative to the electronic lock. It is configured on the door panel body to form a shielding space, through which the electronic lock communicates outward.

7. The concealed electronic lock door according to claim 6, wherein, The cover plate is connected to the door panel body via a magnetic switch to seal the concealed space and conceal the electronic lock.

8. The concealed electronic lock door according to claim 7, wherein, The cover slides away from the magnetic switch, opening the concealed space and exposing the electronic lock.

9. The concealed electronic lock door according to claim 6, wherein, The cover plate is slidably mounted on a mounting housing via a slide rail, the mounting housing being embedded in the door panel body, and the slide rail being arranged parallel to the front of the door panel body.

10. The concealed electronic lock door according to claim 6, wherein, The cover plate is inclined relative to the front of the door panel body.

11. The concealed electronic lock door according to claim 6, wherein the cover plate is L-shaped relative to the front and side planes of the door panel body.

12. The concealed electronic lock door according to claim 6, wherein, It also includes a card reader, which is disposed adjacent to the electronic lock, housed in the sheltered space, and electrically connected to the controller.

13. An electronic device, wherein, include: A cloud-controlled door lock switch is configured to send an operation command via a wireless transmission method; as well as A concealed electronic lock door, configured to be controlled by a cloud-based door lock switch, and includes: A door panel body is provided at an opening of a cabinet and is configured to close or open the opening of the cabinet; An electronic lock, mounted on the door panel, includes a controller and a signal receiver. The signal receiver is connected to the controller and configured to receive the operation command sent by the cloud-controlled door lock switch and transmit the operation command to the controller. The controller opens or closes the electronic lock according to the operation command. A shielding module is spatially positioned relative to the electronic lock and configured to selectively shield or expose the electronic lock.

14. The electronic device according to claim 13, wherein, The cloud-controlled door lock switch can be controlled via a mobile application, a user webpage, or a radio frequency identification (RFID) system.

15. The electronic device according to claim 13, wherein, The shielding module also includes a mounting housing that is detachably embedded in the door panel body and configured to form a shielding space in which the electronic lock is housed.