Portable ozone generation and safe concentration monitor

By integrating ozone generation and monitoring components, a portable ozone generation and safe concentration monitor solves the problem of limited functionality in portable ozone detectors, enabling ozone generation and concentration monitoring in multiple scenarios and enhancing portability and functional versatility.

CN223576117UActive Publication Date: 2025-11-21SHENZHEN SHUSI TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423100856.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-11-21
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

Existing portable ozone detectors have limited functionality and cannot achieve ozone generation and flexible, accurate monitoring of safe concentrations in small laboratories or field operations.

Method used

A portable ozone generation and safety concentration monitor was designed, which integrates an ozone generation component, an ozone monitoring component, and an on/off component. The ozone generation component generates ozone and releases it to the release port, the monitoring component monitors the concentration, and the on/off component controls the opening and closing of the release and monitoring ports, thereby realizing the monitoring of the ozone generation process and regional concentration.

Benefits of technology

It integrates ozone generation and concentration monitoring, is portable, and can generate and monitor ozone in real time in multiple scenarios, thus enhancing its functional versatility.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of monitoring equipment, in particular to a portable ozone generation and safe concentration monitor which comprises a shell, a controller, an ozone generation assembly, an ozone monitoring assembly and an opening and closing assembly, and the ozone generation assembly, the ozone monitoring assembly, the controller and the opening and closing assembly are arranged on the shell; an ozone release port and an ozone monitoring port are formed in the shell, and the ozone generation assembly is communicated with the ozone release port to form an ozone generation passage; one end of the ozone monitoring assembly is communicated with the ozone generation passage, and the other end is communicated with the ozone monitoring port; the opening and closing assembly is arranged at the ozone release port and the ozone monitoring port and is used for opening and closing one of the ozone release port and the ozone monitoring port; the ozone generation assembly, the ozone monitoring assembly and the opening and closing assembly are electrically connected with the controller; according to the design, the ozone generating assembly and the ozone monitoring assembly are integrated into the same machine body, and compared with a traditional ozone generator and a traditional ozone monitor with independent functions, the multifunctional design is convenient to carry and arrange.
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Description

Technical Field

[0001] This utility model relates to the field of monitoring equipment, and in particular to a portable ozone generation and safe concentration monitoring instrument. Background Technology

[0002] Existing portable ozone detectors are small, portable, and protective in design, and include components such as a digital LCD backlight display, an electrochemical ozone sensor, a rechargeable lithium battery, and an alarm device. They have measurement, calibration, and data processing functions, but their functions are limited and they do not have ozone generation capabilities. Therefore, ozone concentration monitoring is limited and cannot meet the needs of real-time ozone generation and flexible and accurate monitoring of safe concentrations in scenarios such as small laboratories and field operations. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide a portable ozone generation and safe concentration monitoring instrument that can realize ozone generation and concentration monitoring.

[0004] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: a portable ozone generation and safe concentration monitor, comprising a shell, a controller, an ozone generation component, an ozone monitoring component, and an opening / closing component. The shell is provided with the ozone generation component, the ozone monitoring component, the controller, and the opening / closing component; the shell is provided with an ozone release port and an ozone monitoring port; the ozone generation component is connected to the ozone release port to form an ozone generation path; one end of the ozone monitoring component is connected to the ozone generation path, and the other end is connected to the ozone monitoring port; the opening / closing component is located at the ozone release port and the ozone monitoring port and can selectively open or close one of them; the ozone generation component, the ozone monitoring port, and the opening / closing component are all electrically connected to the controller.

[0005] Furthermore, the back side of the housing is provided with a groove, and an ozone release port and an ozone monitoring port are provided in the groove; the opening and closing assembly includes a rotating baffle, which is rotatably disposed in the groove, and the rotating baffle is provided with a notch, one of which is opposite to the ozone release port and the ozone monitoring port.

[0006] Furthermore, it also includes a quick connector that snaps into the ozone release port.

[0007] Furthermore, it also includes a pull-out tube, which connects the ozone generating component and the quick connector; the pull-out tube is retractably located inside the ozone release port.

[0008] Furthermore, it also includes a cooling component; the cooling component includes a radiator and a fan, the radiator includes a heat sink and heat sink fins, the heat sink abuts against the ozone generating component, the side of the heat sink away from the ozone generating component is provided with heat sink fins, the housing is provided with an air inlet and an air outlet, the air inlet and the air outlet are arranged in sequence with heat sink fins and a fan, and the fan is electrically connected to the controller.

[0009] Furthermore, it also includes a transmission component, which includes a WIFI component, a Bluetooth component, and a wired interface, and the WIFI component, Bluetooth component, and wired interface are electrically connected to the controller.

[0010] Furthermore, it also includes a display component, which includes a display screen and operation buttons. The housing is provided with the display screen and operation buttons, and the display screen and operation buttons are electrically connected to the controller.

[0011] Furthermore, it also includes a detection branch pipe. The housing is provided with a mounting groove and a cover plate. The cover plate is rotatably provided on one side of the mounting groove, and the cover plate is snapped into the other side of the mounting groove. The detection branch pipe is located in the mounting groove. The detection branch pipe includes a main pipe and multiple branch pipes. One end of the main pipe is detachably connected to the ozone detection port, and the other end is connected to multiple branch pipes.

[0012] Furthermore, it also includes a power supply component, which is disposed within the housing and is electrically connected to the control component.

[0013] Furthermore, a connecting rod is provided at one end of the main pipe and the branch pipe, and a movable ring is movably sleeved on the connecting rod. A spring is connected to the end of the main pipe. A support rod is connected between the movable ring and each branch pipe. An adjusting member is locked on the connecting rod, and the adjusting member abuts against the movable ring on the side away from the main pipe.

[0014] The beneficial effects of this invention are as follows: ozone is generated by the ozone generating component and released through the ozone release port to process samples; the ozone monitoring component is connected to the ozone generation pathway, enabling the detection of ozone concentration during the ozone generation process, while the ozone monitoring port can also monitor the concentration in the area to be monitored; the ozone release port and ozone monitoring port are controlled by the opening and closing component; the above design integrates the ozone generating component and the ozone monitoring component into the same body, which, compared to traditional independent ozone generators and ozone monitors, is more portable and easier to deploy. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of a portable ozone generation and safety concentration monitoring instrument according to a specific embodiment of the present invention;

[0016] Figure 2This is a schematic diagram of the back side of the housing of the portable ozone generation and safety concentration monitor according to a specific embodiment of the present invention.

[0017] Figure 3 This is a schematic diagram of the structure of the portable ozone generation and safe concentration monitor after removing the rotating baffle on the back side of the housing, which is a specific embodiment of the present invention.

[0018] Figure 4 This is a schematic diagram of the detection branch tube of the portable ozone generation and safety concentration monitor according to a specific embodiment of the present invention.

[0019] Label Explanation:

[0020] 1. Housing; 2. Rotating baffle; 3. Ozone release port; 4. Ozone monitoring port; 5. Air inlet; 6. Air outlet; 7. Display screen; 8. Operation button; 9. Cover plate; 10. Detection branch pipe; 101. Main pipe; 102. Branch pipe; 103. Adjusting component; 104. Moving ring; 105. Support rod; 106. Connecting rod. Detailed Implementation

[0021] To explain in detail the technical content, objectives, and effects of this utility model, the following description is provided in conjunction with the embodiments and accompanying drawings.

[0022] Please refer to Figures 1 to 4 A portable ozone generation and safe concentration monitor includes a housing 1, a controller, an ozone generation component, an ozone monitoring component, and an on / off component. The housing 1 is equipped with the ozone generation component, the ozone monitoring component, the controller, and the on / off component. The housing 1 has an ozone release port 3 and an ozone monitoring port 4. The ozone generation component is connected to the ozone release port 3 to form an ozone generation path. One end of the ozone monitoring component is connected to the ozone generation path, and the other end is connected to the ozone monitoring port 4. The on / off component is located at the ozone release port 3 and the ozone monitoring port 4 and can selectively open or close one of them. The ozone generation component, the ozone monitoring component, and the on / off component are all electrically connected to the controller.

[0023] As can be seen from the above description, the beneficial effects of this utility model are as follows: ozone is generated by the ozone generating component and released through the ozone release port 3 to process the sample; through the connection design between the ozone monitoring component and the ozone generation path, the concentration of ozone during the ozone generation process can be detected, and the concentration of the area to be monitored can also be monitored through the ozone monitoring port 4; the ozone release port 3 and the ozone monitoring port 4 are controlled by the opening and closing component; the above design integrates the ozone generating component and the ozone monitoring component into the same body. Compared with traditional independent ozone generators and ozone monitors, the multi-functional design is easy to carry and deploy.

[0024] Furthermore, the back side of the housing 1 is provided with a groove, and the groove is provided with an ozone release port 3 and an ozone monitoring port 4; the opening and closing assembly includes a rotating baffle 2, which is rotatably disposed in the groove, and the rotating baffle 2 is provided with a notch, one of which is opposite to the ozone release port 3 and the ozone monitoring port 4.

[0025] As described above, the ozone release port 3 and the ozone monitoring port 4 can be opened or closed by rotating the baffle 2.

[0026] Furthermore, it also includes a quick connector that snaps into the ozone release port 3.

[0027] As described above, thanks to the snap-fit ​​quick-connect design on the ozone release port 3, users can quickly connect an extension tube to extend the operating distance.

[0028] Furthermore, it also includes a pull-out tube, which connects the ozone generating component and the quick connector; the pull-out tube is retractably located inside the ozone release port 3.

[0029] As can be seen from the above description, the pull-out tube design allows the tube to be pulled out of the housing 1 when the usage distance needs to be extended; or the extension tube can be attached to the quick connector after the pull-out tube is pulled out to further extend the usage distance.

[0030] Furthermore, it also includes a cooling component; the cooling component includes a radiator and a fan, the radiator includes a heat sink and heat sink fins, the heat sink abuts against the ozone generating component, the side of the heat sink away from the ozone generating component is provided with heat sink fins, the housing 1 is provided with an air inlet 5 and an air outlet 6, heat sink fins and a fan are arranged in sequence between the air inlet 5 and the air outlet 6, and the fan is electrically connected to the controller.

[0031] As described above, a cooling component is used to dissipate the heat generated by the ozone generating component during operation; a heat dissipation method combining a radiator and a fan can quickly dissipate the heat from the machine.

[0032] Furthermore, it also includes a transmission component, which includes a WIFI component, a Bluetooth component, and a wired interface, and the WIFI component, Bluetooth component, and wired interface are electrically connected to the controller.

[0033] As described above, by setting up multiple types of transmission components such as WIFI, Bluetooth, and wired interfaces, the transmission and sharing of monitoring data can be achieved, facilitating remote monitoring.

[0034] Furthermore, it also includes a display component, which includes a display screen 7 and operation buttons 8. The housing 1 is provided with the display screen 7 and operation buttons 8, and the display screen 7 and operation buttons 8 are electrically connected to the controller.

[0035] As described above, the monitoring concentration data and ozone generation can be observed intuitively through the display screen 7, and the functions can be switched and adjusted through the operation button 8.

[0036] Furthermore, it also includes a detection branch pipe 10. The housing 1 is provided with an installation groove and a cover plate 9. The cover plate 9 is rotatably provided on one side of the installation groove, and the cover plate 9 is snapped into the other side of the installation groove. The detection branch pipe 10 is disposed in the installation groove. The detection branch pipe 10 includes a main pipe 101 and a plurality of branch pipes 102. One end of the main pipe 101 is detachably connected to the ozone detection port, and the other end is connected to a plurality of branch pipes 102.

[0037] As described above, the detection branch tube 10 is housed in the mounting slot and cover plate 9 provided on the housing 1. When regional concentration monitoring is required, the detection branch tube 10 in the mounting slot can be taken out by opening the cover plate 9 and connected to the ozone monitoring port 4 for monitoring. In addition, the detection branch tube 10 with multiple branches 102 design can ensure that sufficient environmental information is collected to accurately monitor its ozone concentration.

[0038] Furthermore, it also includes a power supply component, which is disposed within the housing 1 and is electrically connected to the control component.

[0039] As can be seen from the above description, the device is powered by a built-in power supply component.

[0040] Furthermore, a connecting rod 106 is provided at one end of the main pipe 101 connected to the branch pipe 102, and a movable ring 104 is movably sleeved on the connecting rod 106. A spring is connected to the end of the main pipe 101 of the movable ring 104. A support rod 105 is connected between the movable ring 104 and each branch pipe 102. An adjusting member 103 is locked on the connecting rod 106, and the adjusting member 103 abuts against the movable ring 104 on the side of the movable ring 104 away from the main pipe 101.

[0041] As described above, the design employing the connecting rod 106, the moving ring 104, the spring, and the support rod 105 allows for adjustment of the unfolding angle of each branch pipe 102 relative to the main pipe 101. Specifically, by adjusting the locking position of the adjusting member 103 on the connecting rod 106, the moving ring 104 moves up and down along the connecting rod 106. The support rod 105 connected to the moving ring 104 then unfolds or retracts the branch pipe 102. This allows for adjustment according to the size of the required monitoring area to ensure sufficient gas information is collected.

[0042] Please refer to Figures 1 to 4 Embodiment 1 of this utility model is as follows:

[0043] A portable ozone generation and safe concentration monitor includes a housing 1, a controller, an ozone generation component, an ozone monitoring component, an on / off component, a cooling component, a transmission component, a display component, a power supply component, a detection branch tube 10, and a pull-out tube.

[0044] The housing 1 is equipped with an ozone generating component, an ozone monitoring component, a controller, an opening / closing component, a cooling component, a transmission component, a display component, and a power supply component. The housing 1 is equipped with an ozone release port 3 and an ozone monitoring port 4. The ozone generating component is connected to the ozone release port 3 to form an ozone generating path. One end of the ozone monitoring component is connected to the ozone generating path, and the other end is connected to the ozone monitoring port 4. The opening / closing component is located at the ozone release port 3 and the ozone monitoring port 4 and can selectively open or close one of them. The ozone generating component, the ozone monitoring component, and the opening / closing component are all electrically connected to the controller.

[0045] Specifically, the back side of the housing 1 is provided with a groove, and an ozone release port 3 and an ozone monitoring port 4 are provided in the groove; the opening and closing assembly includes a rotating baffle 2, which is rotatably disposed in the groove, and the rotating baffle 2 is provided with a notch, one of which is opposite to the ozone release port 3 and the ozone monitoring port 4. Specifically, the housing 1 is provided with a drive motor and a drive gear, the inner wall of the groove is provided with an opening, and the side of the rotating baffle 2 is provided with teeth. The drive gear meshes with the teeth of the rotating baffle 2 at the opening, and the controller controls the drive motor to drive the rotating baffle 2 to rotate to switch functions.

[0046] The pull-out tube connects the ozone generating component and the quick connector; the pull-out tube is retractably located inside the ozone release port 3.

[0047] The cooling assembly includes a radiator and a fan. The radiator includes a heat sink and heat sink fins. The heat sink abuts against the ozone generating assembly. Heat sink fins are provided on the side of the heat sink away from the ozone generating assembly. The housing 1 is provided with an air inlet 5 and an air outlet 6. Heat sink fins and a fan are arranged in sequence between the air inlet 5 and the air outlet 6. The fan is electrically connected to the controller.

[0048] The transmission components include a Wi-Fi component, a Bluetooth component, and a wired interface, which are electrically connected to the controller. Specifically, the housing 1 has a built-in data storage component, which can transmit the data stored inside via the aforementioned transmission components.

[0049] The display component includes a display screen 7 and operation buttons 8. The housing 1 is equipped with the display screen 7 and operation buttons 8, which are electrically connected to the controller. Specifically, the display screen 7 and operation buttons 8 are located on the front side of the housing 1, while the air inlet 5 and air outlet 6 are located on both sides of the housing 1 and away from the location of the operation buttons 8, so as to avoid blocking the air inlet 5 and air outlet 6 when operating the buttons by hand.

[0050] The power supply component is housed within the housing 1 and is electrically connected to the control component. Specifically, a power interface and a wired interface for connecting to the power supply component are provided at the bottom of the housing 1.

[0051] The back of the housing 1 is provided with a mounting groove and a cover plate 9. The cover plate 9 is rotatably provided on one side of the mounting groove, and the cover plate 9 is snapped into the other side of the mounting groove. The detection branch pipe 10 is disposed in the mounting groove. The detection branch pipe 10 includes a main pipe 101 and multiple branch pipes 102. One end of the main pipe 101 is detachably connected to the ozone detection port, and the other end is connected to multiple branch pipes 102. The mounting groove on the back of the housing 1 can accommodate the detection branch pipe 10 with multiple branch pipes 102.

[0052] A connecting rod 106 is provided at one end of the main pipe 101 that connects to the branch pipe 102. A movable ring 104 is movably sleeved on the connecting rod 106. A spring is connected to the end of the main pipe 101 of the movable ring 104. A support rod 105 is connected between the movable ring 104 and each branch pipe 102. An adjusting member 103 is locked on the connecting rod 106. The adjusting member 103 abuts against the movable ring 104 on the side of the movable ring 104 away from the main pipe 101.

[0053] In summary, the portable ozone generation and safety concentration monitor provided by this utility model generates ozone through an ozone generation component and releases it through an ozone release port to process samples. Through the interconnected design of the ozone monitoring component and the ozone generation pathway, the concentration of ozone generated during the process can be detected. Simultaneously, the ozone monitoring port can also monitor the concentration in the area to be monitored. An opening and closing component controls the opening and closing of both the ozone release port and the ozone monitoring port. This design integrates the ozone generation component and the ozone monitoring component into a single unit. Compared to traditional independent ozone generators and ozone monitors, this multi-functional design facilitates portability and deployment.

[0054] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent modifications made based on the content of this utility model specification and drawings, or direct or indirect applications in related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A portable ozone generator and safe concentration monitor, characterized in that, The application relates to an ozone generator, which comprises a shell, a controller, an ozone generating assembly, an ozone monitoring assembly and an opening and closing assembly.

2. The portable ozone generation and safe concentration monitor of claim 1, wherein, The shell is provided with an ozone releasing port and an ozone monitoring port; the opening and closing assembly comprises a rotating baffle, which is rotatably arranged in the groove and is provided with a notch, and the notch selectively faces the ozone releasing port and the ozone monitoring port.

3. The portable ozone generation and safe concentration monitor of claim 1, wherein, The application further comprises a quick connector, which is connected with the ozone releasing port.

4. The portable ozone generation and safe concentration monitor of claim 3, wherein, The application further comprises a pull tube, which is connected with the ozone generating assembly and the quick connector; and the pull tube is arranged in the ozone releasing port in a pullable manner.

5. The portable ozone generation and safe concentration monitor of claim 1, wherein, The application further comprises a cooling assembly; the cooling assembly comprises a radiator and a fan, the radiator comprises a radiating plate and radiating fins, the radiating plate is in abutment with the ozone generating assembly, one side of the radiating plate, which is away from the ozone generating assembly, is provided with the radiating fins, the shell is provided with an air inlet and an air outlet, the radiating fins and the fan are sequentially arranged between the air inlet and the air outlet, and the fan is electrically connected with the controller.

6. The portable ozone generation and safe concentration monitor of claim 1, wherein, The application further comprises a transmission assembly, which comprises a WIFI assembly, a Bluetooth assembly and a wired interface; the WIFI assembly, the Bluetooth assembly and the wired interface are electrically connected with the controller.

7. The portable ozone generation and safe concentration monitor of claim 1, wherein, The application further comprises a display assembly, which comprises a display screen and operation buttons; the shell is provided with the display screen and the operation buttons; and the display screen and the operation buttons are electrically connected with the controller.

8. The portable ozone generation and safe concentration monitor of claim 1, wherein, The application further comprises a detection branch pipe; the shell is provided with a mounting groove and a cover plate; one side of the mounting groove is rotatably provided with the cover plate; the cover plate is connected with the other side of the mounting groove in a clamped manner; the detection branch pipe is arranged in the mounting groove; the detection branch pipe comprises a main pipe and a plurality of branch pipes; one end of the main pipe is detachably connected with the ozone monitoring port; and the other end of the main pipe is connected with the plurality of branch pipes.

9. The portable ozone generation and safe concentration monitor of claim 1, wherein, The application further comprises a power supply assembly, which is arranged in the shell and is electrically connected with the controller.

10. The portable ozone generation and safe concentration monitor of claim 8, wherein, One end of the main pipe, which is connected with the branch pipes, is provided with a connecting rod; a moving ring is movably arranged on the connecting rod; the moving ring is connected with the end of the main pipe through a spring; a support rod is arranged between the moving ring and each branch pipe; an adjusting piece is locked on the connecting rod; and the adjusting piece is in abutment with the moving ring on the side, which is away from the main pipe, of the moving ring.