Container type anti-theft door

By installing a partition inside the security door to separate the installation cavity, the problem of cumbersome installation of communication wires for electronic components is solved, enabling convenient installation and maintenance.

CN224260197UActive Publication Date: 2026-05-19WUHAN SHAOZHANGMEN TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WUHAN SHAOZHANGMEN TECH CO LTD
Filing Date
2025-07-01
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

The existing internal structure of security doors is not conducive to the installation of communication cables for electronic components, resulting in a cumbersome installation process and difficult maintenance.

Method used

A partition is installed inside the security door to divide it into a cabinet cavity and an installation cavity. Electronic components are installed in the installation cavity and connected to the cabinet cavity through windows on the partition. Communication cables are run through the installation cavity to avoid long lines from going around.

Benefits of technology

It enables convenient connection and maintenance between electronic components, reduces installation and maintenance difficulty, and improves installation efficiency.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224260197U_ABST
    Figure CN224260197U_ABST
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Abstract

The utility model provides a container type anti-theft door which comprises an anti-theft door body, a partition plate, a container door body, a light bar, an operation panel, an anti-theft door lock and a central control device. The anti-theft door lock and the central control device are both arranged in a mounting cavity of the anti-theft door body, the anti-theft door lock is used for locking the anti-theft door body, and the central control device controls opening and closing of the anti-theft door lock and opening and closing of the light bar and receives and processes operation instructions input on the operation panel. The central control device is electrically connected with the light bar, the operation panel and the anti-theft door lock through communication wires, and the communication wires penetrate through the installation cavity. According to the anti-theft door, the partition plates are arranged in the hollow anti-theft door body to isolate the installation cavity, the partition plates are used as installation base points of all the components, and the threading lines of all the components are arranged in the installation cavity in a penetrating mode, so that all the components can be connected through short communication wires, and it is avoided that the threading lines of electronic components are mainly arranged in a long route; and communication wires are all positioned in the mounting cavity, so that mounting personnel can conveniently disassemble, assemble and maintain.
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Description

Technical Field

[0001] This utility model relates to the field of container security door technology, and in particular to a container-type security door. Background Technology

[0002] Recently, a type of security door with a function for receiving goods or express deliveries has appeared on the market and has become very popular. For example, Chinese patent CN215369515U discloses a security door with a function for picking up and putting away express deliveries. It mainly involves installing a box or cabinet for receiving goods on the security door, with the door of the box or cabinet nested inside the security door body. This type of security door is equipped with both a security door lock and a cabinet door lock to lock the security door itself and the cabinet door respectively. The cabinet door lock can be controlled by the homeowner's mobile phone, thus enabling the effective receipt of goods or express deliveries. While ensuring security and theft prevention, it also allows for convenient and quick delivery even when no one is home. As the functions and types of cabinet security doors become increasingly diverse, the number of electronic components installed inside the security doors has also increased significantly. Communication wires for these electronic components need to be routed in and out of the security door. How to design the internal structure of the security door to make it easier and faster for installers to run the wires for these electronic components has become a problem that designers urgently need to solve. Utility Model Content

[0003] In view of this, this utility model proposes a container-type security door, which solves the problem of how to design the internal structure of the security door to make it easier and faster for installers to wire various electronic components.

[0004] The technical solution of this utility model is implemented as follows: This utility model provides a container-type security door, including a security door body, a partition, a container door, a light strip, an operation panel, a security door lock, and a central control device; the security door body is hollow; the partition is vertically installed inside the security door body and divides the interior of the security door body into a cabinet cavity and an installation cavity, the side of the cabinet cavity facing the outside penetrates through the outer wall of the security door and is open, a first window is opened on the partition, the first window connects the cabinet cavity and the installation cavity; the container door covers the open surface of the cabinet cavity; the light strip... The light strip is embedded in the first window and provides lighting for the cabinet cavity; two operation panels are respectively set on the surface of the security door facing the outside and the inside, and the user inputs operation commands through the operation panels; the security door lock and the central control device are both set in the installation cavity. The security door lock is used to lock the security door, and the central control device controls the opening and closing of the security door lock, the opening and closing of the light strip, and receives and processes the operation commands input on the operation panel. The central control device is electrically connected to the light strip, the operation panel and the security door lock through a communication wire, and the communication wire runs through the installation cavity.

[0005] Based on the above technical solutions, preferably, the system also includes a container door lock. The container door lock is installed in the installation cavity and is used to lock the container door. The container door lock is electrically connected to the central control device through a communication wire inserted in the installation cavity. The central control device also controls the opening and closing of the container door lock.

[0006] In an even more preferred configuration, the security door lock and the container door lock are staggered vertically within the installation cavity.

[0007] Even more preferably, the container door lock is located inside the installation cavity on the side closer to the outside, and the anti-theft door lock is located inside the installation cavity on the side closer to the inside.

[0008] Based on the above technical solutions, preferably, it also includes an ozone generator, and a second window is provided on the partition. The second window connects the cabinet cavity and the installation cavity. The ozone generator is embedded in the second window. The ozone generator is electrically connected to the central control device through a communication wire inserted in the installation cavity. The ozone generator inputs ozone into the cabinet cavity. The central control device also controls the opening and closing of the ozone generator.

[0009] Based on the above technical solutions, preferably, it also includes an energy storage device, which is installed in the installation cavity and electrically connected to the central control device through a communication cable, and the energy storage device is used for power supply.

[0010] A further preferred embodiment includes a door frame and a wireless charging device; the door frame is fitted inside the room entrance, with a security door inside the door frame, and a third window is provided on the inner side of the door frame; a charging area is provided on the side of the security door facing the third window, and the charging area is aligned with the third window; a power storage device is installed on the inner wall of the mounting cavity and is attached to the back of the charging area, and the power storage device has a wireless charging function; the wireless charging device is embedded in the third window and is used to wirelessly charge the power storage device.

[0011] More preferably, the mounting cavity is located between the cabinet cavity and the side of the door frame where the wireless charging device is installed.

[0012] Even more preferably, the wireless charging device is connected to a power source located indoors.

[0013] More preferably, the first window extends vertically at both ends, with one end extending to the top or bottom of the cabinet cavity and the other end extending to a position close to the horizontal height of the container door lock.

[0014] The container-style security door of this utility model has the following advantages over the prior art:

[0015] (1) The present invention sets up a partition to isolate the installation cavity inside the hollow anti-theft door body, and uses the partition as the installation base point for each component. The wiring of each component is placed in the installation cavity. This not only allows the components to be connected by a shorter communication wire, thus avoiding the main long route of the wiring of electronic components, but also makes it convenient for installers to disassemble and maintain the components.

[0016] (2) The present invention installs electronic components such as light strips and ozone generators on the partition, which not only ensures that the functions of each component can affect the inside of the cabinet, but also that the wiring of each component is shorter and does not require wiring through a long line.

[0017] (3) The present invention provides a wireless charging device on the door frame to wirelessly charge the power storage device inside the security door, so that the power storage device does not need to be connected to an external power source, thereby avoiding the problem that the connection of the power storage device inside the security door may hinder the normal opening and closing of the security door. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1 This is a perspective view of the container-type security door of this utility model;

[0020] Figure 2 This is a schematic diagram of the internal structure of the container-type security door of this utility model;

[0021] Figure 3 This is a perspective view of the container-type security door of this utility model;

[0022] Figure 4 This is a schematic diagram showing the connection relationship of the internal components of the container-type security door of this utility model.

[0023] In the diagram: 1. Security door body; 101. Cabinet cavity; 102. Installation cavity; 2. Partition; 21. Container door body; 201. First window; 202. Second window; 3. Light strip; 4. Control panel; 5. Security door lock; 6. Central control device; 7. Container door lock; 8. Ozone generator; 9. Energy storage device; 10. Door frame; 110. Third window; 11. Wireless charging device; 12. Charging area. Detailed Implementation

[0024] The technical solutions of this utility model will be clearly and completely described below with reference to the embodiments of this utility model. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. Based on the embodiments of this utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of this utility model.

[0025] like Figure 1 As shown, combined with Figure 4 This utility model discloses a container-type security door, which includes a security door body 1, a partition 2, a container door body 21, a light strip 3, an operation panel 4, a security door lock 5, and a central control device 6.

[0026] The security door body 1 is hollow. Generally, the security door body 1 consists of two layers of metal panels, an inner and an outer layer, and a metal frame sandwiched between the two panels. One long side of the security door body 1 is hinged to the inner wall of the door frame.

[0027] The partition 2 is a metal plate, vertically installed inside the security door 1, dividing the interior of the security door 1 into a cabinet cavity 101 and a mounting cavity 102. The cabinet cavity 101, facing outwards, penetrates the outer wall of the security door 1 and is open. The cabinet cavity 101 has a large area and is used for storage. The mounting cavity 102 is a long vertical strip, and its interior is used to install the electronic components of the security door. A first window 201 is provided on the partition 2, connecting the cabinet cavity 101 and the mounting cavity 102.

[0028] The container door 21 covers the open surface of the container cavity 101. One long side of the container door 21 is hinged to the inner wall of the container cavity 101.

[0029] The light strip 3 is a long strip of LED light, which is embedded in the first window 201 and provides illumination for the cabinet cavity 101. In current container security doors, light strips and light source components can be installed at any position on the inner wall of the cabinet cavity 101. However, if the light source component is not installed on the partition 2, the wiring of the light source component needs to be routed around the edge of the cabinet cavity 101 and introduced into the mounting cavity 102. This makes the installation and wiring of the light source component very complicated and difficult, and also not conducive to later disassembly and maintenance.

[0030] Two control panels 4 are respectively installed on the exterior and interior surfaces of the security door 1, allowing users to input operating commands via the control panels 4. The control panels 4 can be numeric keypads, but nowadays they are typically LCD touchscreens.

[0031] Both the anti-theft door lock 5 and the central control device 6 are housed within the mounting cavity 102. The anti-theft door lock 5 is an electronic smart lock, its function being to lock the anti-theft door body 1. The anti-theft door lock 5 is an integrated product, generally including a control chip, circuit board, mechanical lock cylinder, and drive mechanism. The control chip controls the drive mechanism to drive the mechanical lock cylinder to lock or unlock. The control chip of the anti-theft door lock 5 also needs to be connected to and managed by the central control device 6. The central control device 6 controls the opening and closing of the anti-theft door lock 5, the opening and closing of the light strip 3, and receives and processes operation commands input on the operation panel 4. The central control device 6 is electrically connected to the light strip 3, the operation panel 4, and the anti-theft door lock 5 via a communication wire, which runs through the mounting cavity 102. In this embodiment, all functional electronic components inside the security door are installed in the mounting cavity 102, and electrical components that provide functions to the cabinet cavity 101 (for example, the light strip 3 provides a light source for the cabinet cavity 101) are installed on the partition 2. Therefore, the wiring of each electronic and electrical component is completed in the mounting cavity 102. Not only is the wiring distance shorter, but disassembly and maintenance can also be completed in the mounting cavity 102, which greatly reduces the difficulty of operation and maintenance.

[0032] exist Figure 2 In a preferred embodiment shown, a container door lock 7 is also included. The container door lock 7 is also an electronic smart lock. It is located within the mounting cavity 102 and is used to lock the container door 21. The container door lock 7 is electrically connected to the central control device 6 via a communication wire passing through the mounting cavity 102. The central control device 6 also controls the opening and closing of the container door lock 7. By placing the container door lock 7 within the mounting cavity 102 of the security door 1, rather than within the container door 21, the problem of having to route a large loop of wire from the container door 21 into the mounting cavity 102 of the security door 1 is avoided.

[0033] exist Figure 2 In a preferred embodiment shown, the anti-theft door lock 5 and the container door lock 7 are staggered vertically within the mounting cavity 102, which facilitates personnel to disassemble and assemble the lock body and to pull the wiring.

[0034] exist Figure 2 In a preferred embodiment shown, the container door lock 7 is located inside the mounting cavity 102 on the side closer to the outside, and the anti-theft door lock 5 is located inside the mounting cavity 102 on the side closer to the inside, because the container door 2 is located further to the outside.

[0035] exist Figure 1In a preferred embodiment shown, an ozone generator 8 is also included. A second window 202 is provided on the partition 2, connecting the cabinet cavity 101 and the mounting cavity 102. The ozone generator 8 is embedded in the second window 202. The ozone generator 8 is electrically connected to the central control device 6 via a communication wire passing through the mounting cavity 102. The ozone generator 8 inputs ozone into the cabinet cavity 101, and the central control device 6 also controls the opening and closing of the ozone generator 8. The wiring of the ozone generator 8 can be completed within the mounting cavity 102, resulting in shorter wiring distances and allowing for complete disassembly, assembly, and maintenance within the mounting cavity 102, significantly reducing maintenance difficulty.

[0036] exist Figure 1 In a preferred embodiment shown, a power storage device 9 is also included. The power storage device 9 is disposed within the mounting cavity 102 and electrically connected to the central control device 6 via a communication cable. The power storage device 9 is used for power supply. The power storage device 9 can be a battery pack. The power storage device 9 is generally installed at the bottom of the mounting cavity 102. An openable and closable cover can be provided on the indoor side of the security door 1, and the power storage device 9 can be removed and replaced by opening the cover.

[0037] exist Figure 3 In a preferred embodiment shown, the device also includes a door frame 10 and a wireless charging device 11.

[0038] The door frame 10 is installed inside the room entrance, and a security door 1 is installed inside the door frame 10. A third window 110 is provided on the inner side of the door frame 10.

[0039] A charging area 12 is provided on the side of the security door 1 facing the third window 110, with the charging area 12 aligned with the third window 110. A power storage device 9 is disposed on the inner wall of the mounting cavity 102 and attached to the back of the charging area 12; the power storage device 9 has wireless charging capabilities. A wireless charging device 11 is embedded in the third window 110 and is used to wirelessly charge the power storage device 9. The charging area 12 is an electrical component that cooperates with the wireless charging device 11. A charging base can be provided at the bottom of the mounting cavity 102, and the charging area 12 is electrically connected to the charging base. The power storage device 9 is mounted on the charging base for charging.

[0040] exist Figure 1 In a preferred embodiment shown, the mounting cavity 102 is located between the cabinet cavity 101 and the side of the door frame 10 where the wireless charging device 11 is installed, so that when the anti-theft door 1 is locked, the charging area 12 can be in close contact with the wireless charging device 11 to avoid reducing the charging efficiency.

[0041] exist Figure 4 In one preferred embodiment shown, the wireless charging device 11 is connected to a power source located indoors, and can be connected to the power source by running a cable from inside the door frame.

[0042] exist Figure 1 In a preferred embodiment shown, the first window 201 extends vertically at both ends. One end of the first window 201 extends to the top or bottom of the cabinet cavity 101, and the other end extends to a position close to the horizontal height of the container door lock 7. Therefore, the light strip 3 can be installed on the upper or lower part of the partition 2, but it needs to avoid the locking tongue position of the container door lock 7. The light strip 3 can be as long as possible to ensure sufficient light source.

[0043] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A container-type security door, characterized in that: Includes a security door body (1), a partition (2), a container door body (21), a light strip (3), an operation panel (4), a security door lock (5), and a central control device (6); The anti-theft door body (1) is hollow; The partition (2) is vertically installed inside the anti-theft door (1) and divides the interior of the anti-theft door (1) into a cabinet cavity (101) and an installation cavity (102). The cabinet cavity (101) is open and passes through the outer wall of the anti-theft door (1) on the side facing the outside. A first window (201) is provided on the partition (2), and the first window (201) connects the cabinet cavity (101) and the installation cavity (102). The container door (21) covers the open surface of the container cavity (101); The light strip (3) is embedded in the first window (201) and provides lighting for the cabinet cavity (101); The two operation panels (4) are respectively installed on the surface of the security door (1) facing the outside and the inside, and the user inputs operation commands through the operation panels (4); The anti-theft door lock (5) and the central control device (6) are both installed in the installation cavity (102). The anti-theft door lock (5) is used to lock the anti-theft door body (1). The central control device (6) controls the opening and closing of the anti-theft door lock (5), the opening and closing of the light strip (3), and receives and processes the operation commands input on the operation panel (4). The central control device (6) is electrically connected to the light strip (3), the operation panel (4) and the anti-theft door lock (5) through a communication wire, and the communication wire is run through the installation cavity (102).

2. A container-type security door according to claim 1, characterized in that: It also includes a container door lock (7), which is installed in the mounting cavity (102) and used to lock the container door (21). The container door lock (7) is electrically connected to the central control device (6) through a communication wire passing through the mounting cavity (102). The central control device (6) also controls the opening and closing of the container door lock (7).

3. A container-type security door according to claim 2, characterized in that: The anti-theft door lock (5) and the container door lock (7) are staggered vertically within the mounting cavity (102).

4. A container-type security door according to claim 3, characterized in that: The container door lock (7) is located inside the mounting cavity (102) on the side closer to the outside, and the anti-theft door lock (5) is located inside the mounting cavity (102) on the side closer to the inside.

5. A container-type security door according to claim 1, characterized in that: It also includes an ozone generator (8), and the partition (2) is provided with a second window (202). The second window (202) connects the cabinet cavity (101) and the installation cavity (102). The ozone generator (8) is embedded in the second window (202). The ozone generator (8) is electrically connected to the central control device (6) through a communication wire passing through the installation cavity (102). The ozone generator (8) inputs ozone into the cabinet cavity (101). The central control device (6) also controls the opening and closing of the ozone generator (8).

6. A container-type security door according to claim 1, characterized in that: It also includes an energy storage device (9), which is installed in the mounting cavity (102) and electrically connected to the central control device (6) via a communication cable. The energy storage device (9) is used to supply power.

7. A container-type security door according to claim 6, characterized in that: It also includes a door frame (10) and a wireless charging device (11). The door frame (10) is fitted inside the room entrance and exit, and a security door (1) is closed inside the door frame (10). A third window (110) is provided on the inner side of the door frame (10). The anti-theft door body (1) has a charging area (12) on the side facing the third window (110), and the charging area (12) is aligned with the third window (110). The energy storage device (9) is disposed on the inner wall of the mounting cavity (102) and closely attached to the back of the charging area (12). The energy storage device (9) has an unlimited charging function. The wireless charging device (11) is embedded in the third window (110) and is used to wirelessly charge the energy storage device (9).

8. A container-type security door according to claim 7, characterized in that: The mounting cavity (102) is located between the cabinet cavity (101) and the side of the door frame (10) where the wireless charging device (11) is installed.

9. A container-type security door according to claim 7, characterized in that: The wireless charging device (11) is connected to a power source located indoors.

10. A container-type security door according to claim 2, characterized in that: The first window (201) extends vertically at both ends. One end of the first window (201) extends to the top or bottom of the cabinet cavity (101), and the other end of the first window (201) extends to a position close to the horizontal height of the container door lock (7).