Integrated ozone and ultraviolet intelligent disinfection module for luggage

By integrating an ozone and ultraviolet intelligent disinfection module inside the bag, combined with touch control and remote operation, the problem of existing portable disinfection devices being unable to completely disinfect inside bags has been solved, achieving efficient, safe, and convenient disinfection effects and adapting to diverse needs.

CN224193811UActive Publication Date: 2026-05-05HUIZHOU GUANGYING PLANETARY TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUIZHOU GUANGYING PLANETARY TECH CO LTD
Filing Date
2025-05-07
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Existing portable disinfection equipment is difficult to adapt to the usage scenarios of bags, especially in environments with complex internal spaces, multiple compartments and corners, where it cannot achieve comprehensive and thorough disinfection. In addition, it requires manual operation, which is time-consuming and labor-intensive.

Method used

Design a bag-integrated ozone and ultraviolet intelligent disinfection module, including a control unit and a disinfection unit, integrated inside the bag. It is intelligently controlled via a touch module. Combining the ozone disinfection module and the ultraviolet disinfection module, it achieves three-dimensional disinfection. It is also equipped with lithium battery power supply, Bluetooth module and Hall switch, etc., to support remote control and safety management.

Benefits of technology

It achieves efficient and comprehensive disinfection of the inside of the luggage, saves space, is intelligent and convenient to operate, is safe and reliable, adapts to diverse needs, and meets civil aviation standards.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of intelligent disinfection equipment, and discloses an integrated ozone and ultraviolet intelligent disinfection module for bags and suitcases, which comprises a control unit and a disinfection unit, the control unit comprises a main control module and a touch module, the main control module is fixedly integrated in an interlayer of the luggage, the touch module is integrated on the outer surface of the luggage, and the touch module is electrically connected with a signal input end of the main control module; the disinfection unit comprises an ozone disinfection module and an ultraviolet disinfection module, the ozone disinfection module and the ultraviolet disinfection module are both integrated in the luggage, and the ozone disinfection module and the ultraviolet disinfection module are both electrically connected with the main control module. The limitation of a single disinfection mode is solved, three-dimensional disinfection is realized, modular embedding into the interlayer of the luggage is realized, the storage space is not occupied, and the device is adaptive to mainstream luggage and is convenient to mount.
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Description

Technical Field

[0001] This utility model relates to the field of intelligent disinfection equipment technology, and in particular to an integrated ozone ultraviolet intelligent disinfection module for bags. Background Technology

[0002] As people become more health-conscious, their needs for disinfection are becoming more diverse and sophisticated. Take bags that people need to carry when traveling as an example: traditional bags only have storage functions and can no longer meet people's current pursuit of healthy travel.

[0003] During daily travel, luggage is often placed in various public places, such as airport baggage check-in areas and hotel room floors, making it extremely easy for it to pick up various germs. Bacteria and viruses brought from the outside world may multiply inside the luggage, contaminating clothing, electronic products, cosmetics, and other items.

[0004] Existing portable disinfection devices are ill-suited for the use of luggage. For example, small UV disinfection sticks, while capable of localized disinfection, struggle to achieve comprehensive and thorough disinfection in the complex internal spaces of luggage, with its multiple compartments and corners. Furthermore, they require manual operation, consuming time and effort, making them impractical during busy travels.

[0005] To address this, we propose an integrated ozone ultraviolet intelligent disinfection module for bags and luggage. Utility Model Content

[0006] The purpose of this invention is to provide an integrated ozone ultraviolet intelligent disinfection module for bags, thereby solving or at least alleviating one or more of the problems mentioned above and other issues in the prior art.

[0007] To achieve the above objectives, the main technical solutions adopted by this utility model include:

[0008] An integrated ozone ultraviolet intelligent disinfection module for bags includes a control unit and a disinfection unit;

[0009] The control unit includes a main control module and a touch module. The main control module is fixedly integrated into the interlayer of the bag, and the touch module is integrated into the outer surface of the bag. The touch module is electrically connected to the signal input terminal of the main control module.

[0010] The disinfection unit includes an ozone disinfection module and an ultraviolet disinfection module, both of which are integrated inside the bag. Both the ozone disinfection module and the ultraviolet disinfection module are electrically connected to the main control module.

[0011] According to the present invention, an integrated ozone ultraviolet intelligent disinfection module for bags is provided, wherein the main control module includes a main control circuit board (100) and a main control housing (101), and the main control circuit board (100) is fixedly installed inside the main control housing (101);

[0012] The touch module includes a touch control circuit board (400) and a third housing (401). A touch display panel (402) is embedded on the surface of the third housing (401). The touch control circuit board (400) is fixedly installed inside the third housing (401). The touch display panel (402) is electrically connected to the touch control circuit board (400).

[0013] The ozone disinfection module includes an ozone generator (200) and a first housing (201). The ozone generator (200) is fixedly installed inside the first housing (201), and an ozone outlet (202) is provided on the first housing (201).

[0014] The ultraviolet disinfection module includes an ultraviolet sterilization control circuit board (300) and a second housing (301). Multiple ultraviolet sterilization lamps (302) are electrically connected to the ultraviolet sterilization control circuit board (300). The ultraviolet sterilization control circuit board (300) is fixedly installed inside the second housing (301), and the ultraviolet sterilization lamps (302) are embedded in the surface of the second housing (301).

[0015] The touch control circuit board (400) is electrically connected to the signal input terminal of the main control circuit board (100), and the ozone generator (200) and the ultraviolet sterilization control circuit board (300) are both electrically connected to the main control circuit board (100).

[0016] In a bag integrated ozone ultraviolet intelligent disinfection module according to the present invention, the surface of the third housing (401) is embedded with an LED ring (403) for displaying the operating mode, and the LED ring (403) is electrically connected to the touch control circuit board (400).

[0017] According to the present invention, an integrated ozone ultraviolet intelligent disinfection module for bags is provided, wherein the ultraviolet germicidal lamp (302) includes a UVC ultraviolet lamp and a UVA ultraviolet lamp.

[0018] According to the present invention, an integrated ozone ultraviolet intelligent disinfection module for bags includes a lithium battery (500) integrated inside the bag. A power management module is provided inside the third housing (401), and the main control circuit board (100) is electrically connected to the lithium battery (500) through the power management module.

[0019] In a bag integrated ozone ultraviolet intelligent disinfection module according to the present invention, the lithium battery (500) has a capacity of ≤100Wh.

[0020] In a bag integrated ozone ultraviolet intelligent disinfection module according to the present invention, a Bluetooth module is provided in the third housing (401), and the Bluetooth module is electrically connected to the touch control circuit board (400).

[0021] According to the present invention, an integrated ozone ultraviolet intelligent disinfection module for bags includes a Hall switch (600) for monitoring whether the bag is open, and the Hall switch (600) is electrically connected to the main control circuit board (100).

[0022] In a bag integrated ozone ultraviolet intelligent disinfection module according to the present invention, a power port (104) is embedded at one end of the main control housing (101), and the power port (104) is electrically connected to the main control circuit board (100).

[0023] In a bag integrated ozone ultraviolet intelligent disinfection module according to the present invention, a breathing light (103) is embedded in the main control housing (101), and a breathing light control button (102) is installed on one side of the main control housing (101). The breathing light control button (102) and the breathing light (103) are both electrically connected to the main control circuit board (100).

[0024] This utility model has at least the following beneficial effects:

[0025] 1. Dual-mode disinfection is highly efficient and comprehensive: ozone and ultraviolet light work together to cover the corners and surfaces of bags, overcoming the limitations of single disinfection methods and achieving three-dimensional disinfection;

[0026] 2. Integrated design saves space: Modular embedded compartments in bags and luggage do not take up storage space, are compatible with mainstream bags and luggage, and are easy to install;

[0027] 3. Intelligent and interactive, convenient and controllable: Supports touch operation and Bluetooth remote control, allows setting disinfection duration and viewing status, enhancing the user experience;

[0028] 4. Safe and compliant power supply management: The lithium battery capacity meets civil aviation standards, intelligently allocates power, supports charging while using, and balances battery life and functionality;

[0029] 5. Multiple protections ensure safety: The ultraviolet light automatically turns off when the bag is opened, and the ozone concentration is safe and controllable, avoiding harm to the human body;

[0030] 6. Highly reusable and expandable functions: It combines disinfection and power bank functions, supports software upgrades, and adapts to diverse needs. Attached Figure Description

[0031] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings:

[0032] Figure 1 This is a circuit block diagram of the present invention;

[0033] Figure 2 This is one of the structural schematic diagrams of the main control module of this utility model;

[0034] Figure 3 This is the second structural schematic diagram of the main control module of this utility model;

[0035] Figure 4 This is the third schematic diagram of the main control module of this utility model;

[0036] Figure 5 This is a schematic diagram of the ozone disinfection module of this utility model;

[0037] Figure 6 This is a schematic diagram of the structure of the ultraviolet disinfection module of this utility model;

[0038] Figure 7 This is a schematic diagram of the touch module of this utility model;

[0039] Figure 8 This is a circuit diagram of the power management module of this utility model;

[0040] Figure 9 This is a circuit diagram of the Bluetooth module of this utility model;

[0041] Figure 10 This is the circuit diagram of the touch module of this utility model.

[0042] Explanation of icon numbers:

[0043] 100. Main control circuit board; 101. Main control housing; 102. Breathing light control button; 103. Breathing light; 104. Power port; 200. Ozone generator; 201. First housing; 202. Ozone outlet; 300. Ultraviolet sterilization control circuit board; 301. Second housing; 302. Ultraviolet sterilization lamp; 400. Touch control circuit board; 401. Third housing; 402. Touch display panel; 403. Lamp ring; 500. Lithium battery; 600. Hall switch. Detailed Implementation

[0044] The following will describe in detail the implementation of this application with reference to the accompanying drawings and embodiments, so that the implementation process of how this application uses technical means to solve technical problems and achieve technical effects can be fully understood and implemented accordingly.

[0045] Please refer to Figures 1 to 10 As shown in the embodiments of this utility model,

[0046] An integrated ozone and ultraviolet intelligent disinfection module for bags includes a control unit and a disinfection unit. The control unit includes a main control module and a touch module. The main control module is fixedly integrated into the interlayer of the bag, and the touch module is integrated into the outer surface of the bag. The touch module is electrically connected to the signal input terminal of the main control module. The disinfection unit includes an ozone disinfection module and an ultraviolet disinfection module. Both the ozone disinfection module and the ultraviolet disinfection module are integrated inside the bag and are electrically connected to the main control module.

[0047] By adopting the above scheme, the touch module is used to receive user operation commands, such as starting disinfection and selecting a disinfection mode. When the user operates the touch module, the touch module transmits a signal to the main control module. As the core control component, the main control module, upon receiving the signal from the touch module, sends control signals to the ozone disinfection module and the ultraviolet disinfection module according to a preset program to start or stop the disinfection process, thereby controlling the entire disinfection module.

[0048] Specifically, in this embodiment, the main control module includes a main control circuit board 100 and a main control housing 101, with the main control circuit board 100 fixedly installed inside the main control housing 101; the touch module includes a touch control circuit board 400 and a third housing 401, with a touch display panel 402 embedded on the surface of the third housing 401, and the touch control circuit board 400 fixedly installed inside the third housing 401, with the touch display panel 402 electrically connected to the touch control circuit board 400; the ozone disinfection module includes an ozone generator 200 and a first housing 201, with the ozone generator 200 fixedly installed inside the first housing 201. Inside, the first housing 201 has an ozone outlet 202; the ultraviolet disinfection module includes an ultraviolet sterilization control circuit board 300 and a second housing 301. Multiple ultraviolet sterilization lamps 302 are electrically connected to the ultraviolet sterilization control circuit board 300. The ultraviolet sterilization control circuit board 300 is fixedly installed inside the second housing 301, and the ultraviolet sterilization lamps 302 are embedded in the surface of the second housing 301; the touch control circuit board 400 is electrically connected to the signal input terminal of the main control circuit board 100, and both the ozone generator 200 and the ultraviolet sterilization control circuit board 300 are electrically connected to the main control circuit board 100.

[0049] After detecting a user touch operation, the touch display panel 402 transmits a signal to the touch control circuit board 400. The touch control circuit board 400 processes the signal and sends it to the main control circuit board 100. Upon receiving the signal, the main control circuit board 100 sends a command to the ozone generator 200 to generate ozone and release it into the bag through the ozone outlet 202 for disinfection. Simultaneously, the main control circuit board 100 sends a signal to the ultraviolet sterilization control circuit board 300 to control the ultraviolet sterilization lamp 302 to turn on, thereby realizing the ultraviolet disinfection function.

[0050] In this embodiment, the ozone generator 200 uses a low-power ceramic electrolytic plate and supports a concentration release of 0.05 ppm.

[0051] In this embodiment, the surface of the third housing 401 is fitted with an LED ring 403 for displaying the operating mode, and the LED ring 403 is electrically connected to the touch control circuit board 400.

[0052] After the touch control circuit board 400 receives and processes the user's operation signal, in addition to sending a signal to the main control circuit board 100, it will also send a control signal to the light ring 403 according to the current operation or the operating status of the disinfection module. The light ring 403 displays different light states according to the received signals, thereby intuitively showing the user the operating mode of the disinfection module. For example, a solid blue light indicates the ozone + ultraviolet synergistic disinfection mode, and a flashing blue light indicates that it is starting up.

[0053] In this embodiment, the ultraviolet germicidal lamp 302 includes a UVC ultraviolet lamp and a UVA ultraviolet lamp, with power configured as 3W and 1.5W respectively.

[0054] UVC ultraviolet lamps, with a wavelength of 275nm-280nm, have a strong bactericidal ability. They can destroy the DNA or RNA structure of bacteria, viruses, and other microorganisms, rendering them unable to reproduce and infect, thus achieving highly efficient sterilization and disinfection. While UVA ultraviolet lamps, with a wavelength of 365nm-370nm, have a relatively weaker bactericidal ability, they can assist UVC ultraviolet lamps in disinfection, improving the overall disinfection effect.

[0055] In this embodiment, a lithium battery 500 is also included. The lithium battery 500 is integrated inside the bag. A power management module is provided inside the third housing 401. The main control circuit board 100 is electrically connected to the lithium battery 500 through the power management module.

[0056] The lithium battery 500 serves as the power source for the entire disinfection module, providing power to all components. The power management module manages the charging and discharging processes of the lithium battery 500. During external charging, the power management module transfers externally input electrical energy to the lithium battery 500 for charging and controls the charging current and voltage to prevent overcharging from damaging the battery. During discharging, the power management module, according to the instructions from the main control circuit board 100, stably distributes the electrical energy from the lithium battery 500 to various components requiring power, such as the touch module, main control module, ozone disinfection module, and ultraviolet disinfection module, ensuring the normal operation of the entire disinfection module. The control circuit has a priority strategy: during external charging, priority is given to ensuring the energy storage of the lithium battery 500; during discharging, priority is given to maintaining the operation of the disinfection unit.

[0057] In this embodiment, the lithium battery capacity is ≤100Wh. Limiting the lithium battery capacity to ≤100Wh is primarily to meet safety standards for travel scenarios such as civil aviation boarding. When the disinfection module is not operating, the power management module can control all components to enter a low-power standby state, reducing power consumption.

[0058] In this embodiment, a Bluetooth module is provided inside the third housing 401, and the Bluetooth module is electrically connected to the touch control circuit board 400.

[0059] After the Bluetooth module connects to the touch control circuit board 400, it enables wireless communication with external devices such as mobile phones. When a user operates the device through a specific application on their phone, such as a WeChat mini-program, the Bluetooth module receives the command signal sent by the phone and transmits it to the touch control circuit board 400. The touch control circuit board 400 then forwards the signal to the main control circuit board 100, thereby enabling the user to remotely control the disinfection module via their mobile phone, such as turning disinfection on or off, setting the disinfection duration, and checking the battery level. Simultaneously, the Bluetooth module can also provide feedback on the disinfection module's operating status information, such as the current disinfection mode and remaining battery level, to the mobile phone for real-time monitoring by the user.

[0060] In this embodiment, a Hall switch 600 for monitoring whether the bag is opened is also included. The Hall switch 600 is electrically connected to the main control circuit board 100.

[0061] The Hall effect switch 600 determines whether a bag is open by detecting changes in the surrounding magnetic field. For example, if a magnetic block is installed inside the bag, when the bag is closed, the Hall effect switch 600 is in a specific magnetic field environment and outputs a stable signal. When the bag is opened, the magnetic field changes, and the Hall effect switch 600 detects this change and transmits the signal to the main control circuit board 100. Upon receiving the signal, the main control circuit board 100 immediately shuts down the ultraviolet germicidal lamp 302 and the ozone generator 200 to ensure user safety.

[0062] In this embodiment, one end of the main control housing 101 is fitted with a Type-C power port 104, which supports PD3.0, and the power port 104 is electrically connected to the main control circuit board 100.

[0063] Power port 104 is used to connect an external charger. When the external charger is plugged into power port 104, electrical energy is transmitted to the main control circuit board 100 through power port 104. The main control circuit board 100 then distributes the electrical energy to the power management module, which charges the lithium battery 500. At the same time, the main control circuit board 100 can also monitor the charging status during the charging process, such as charging current and voltage, and display the charging progress to the user through the touch display panel 402 or other means.

[0064] In this embodiment, a breathing light 103 is embedded in the main control housing 101, and a breathing light control button 102 is installed on one side of the main control housing 101. Both the breathing light control button 102 and the breathing light 103 are electrically connected to the main control circuit board 100.

[0065] When the user presses the breathing light control button 102, the touch control circuit board 400 transmits the button signal to the main control circuit board 100. Upon receiving the signal, the main control circuit board 100 controls the breathing light 103 to display a preset breathing effect, such as a gradual brightening and dimming of the light. The breathing light 103 serves two purposes: firstly, it provides the user with an intuitive indication of the device's status, such as displaying the charging status during charging or indicating that the disinfection module is working during disinfection; secondly, it enhances the product's aesthetics and technological feel, improving the user experience.

[0066] When in use, a short touch on the display panel 402 will start the device, and the light ring 403 will flash blue. Then, a double short touch on the display panel 402 will activate the ozone + ultraviolet co-processing mode, at which point the light ring 403 will be solid blue. The virus killing time can be set by connecting a mobile phone to the main control circuit board 100 via Bluetooth and inputting the virus killing time on the mobile phone.

[0067] The foregoing description illustrates and describes several preferred embodiments of the present invention. However, as previously stated, it should be understood that the present invention is not limited to the forms disclosed herein and should not be construed as excluding other embodiments. It can be used in various other combinations, modifications, and environments, and can be altered within the scope of the present invention's conception through the foregoing teachings or related technical or knowledge. Any modifications and variations made by those skilled in the art that do not depart from the spirit and scope of the present invention should be within the protection scope of the appended claims.

Claims

1. A smart ozone ultraviolet disinfection module for bags and luggage, characterized in that, Includes a control unit and a disinfection unit; The control unit includes a main control module and a touch module. The main control module is fixedly integrated into the interlayer of the bag, and the touch module is integrated into the outer surface of the bag. The touch module is electrically connected to the signal input terminal of the main control module. The disinfection unit includes an ozone disinfection module and an ultraviolet disinfection module, both of which are integrated inside the bag. Both the ozone disinfection module and the ultraviolet disinfection module are electrically connected to the main control module.

2. The integrated ozone ultraviolet intelligent disinfection module for bags and luggage according to claim 1, characterized in that: The main control module includes a main control circuit board (100) and a main control housing (101), and the main control circuit board (100) is fixedly installed inside the main control housing (101); The touch module includes a touch control circuit board (400) and a third housing (401). A touch display panel (402) is embedded on the surface of the third housing (401). The touch control circuit board (400) is fixedly installed inside the third housing (401). The touch display panel (402) is electrically connected to the touch control circuit board (400). The ozone disinfection module includes an ozone generator (200) and a first housing (201). The ozone generator (200) is fixedly installed inside the first housing (201), and an ozone outlet (202) is provided on the first housing (201). The ultraviolet disinfection module includes an ultraviolet sterilization control circuit board (300) and a second housing (301). Multiple ultraviolet sterilization lamps (302) are electrically connected to the ultraviolet sterilization control circuit board (300). The ultraviolet sterilization control circuit board (300) is fixedly installed inside the second housing (301), and the ultraviolet sterilization lamps (302) are embedded in the surface of the second housing (301). The touch control circuit board (400) is electrically connected to the signal input terminal of the main control circuit board (100), and the ozone generator (200) and the ultraviolet sterilization control circuit board (300) are both electrically connected to the main control circuit board (100).

3. The integrated ozone ultraviolet intelligent disinfection module for bags and luggage according to claim 2, characterized in that: The surface of the third housing (401) is fitted with an LED ring (403) for displaying the operating mode, and the LED ring (403) is electrically connected to the touch control circuit board (400).

4. The integrated ozone ultraviolet intelligent disinfection module for bags and luggage according to claim 2, characterized in that: The ultraviolet germicidal lamp (302) includes a UVC ultraviolet lamp and a UVA ultraviolet lamp.

5. The integrated ozone ultraviolet intelligent disinfection module for bags and luggage according to claim 2, characterized in that: It also includes a lithium battery (500) integrated inside the bag, and a power management module is provided inside the third housing (401). The main control circuit board (100) is electrically connected to the lithium battery (500) through the power management module.

6. The integrated ozone ultraviolet intelligent disinfection module for bags and luggage according to claim 5, characterized in that: The lithium battery (500) has a capacity of ≤100Wh.

7. The integrated ozone ultraviolet intelligent disinfection module for bags and luggage according to claim 2, characterized in that: A Bluetooth module is provided inside the third housing (401), and the Bluetooth module is electrically connected to the touch control circuit board (400).

8. The integrated ozone ultraviolet intelligent disinfection module for bags and luggage according to claim 2, characterized in that: It also includes a Hall switch (600) for monitoring whether the bag is open, the Hall switch (600) being electrically connected to the main control circuit board (100).

9. The integrated ozone ultraviolet intelligent disinfection module for bags and luggage according to claim 2, characterized in that: One end of the main control housing (101) is fitted with a power port (104), which is electrically connected to the main control circuit board (100).

10. The integrated ozone ultraviolet intelligent disinfection module for bags and luggage according to claim 9, characterized in that: A breathing light (103) is embedded in the main control housing (101), and a breathing light control button (102) is installed on one side of the main control housing (101). Both the breathing light control button (102) and the breathing light (103) are electrically connected to the main control circuit board (100).