High-flux low-power-consumption air treatment array device capable of being combined at will
By designing an air purification array device that can be freely combined, and using a particulate matter sensor to detect air quality and adjust the airflow, the problem of large size and fixed airflow of existing air purifiers is solved, achieving efficient and portable air purification.
Patent Information
- Application Number
- CN202520496894.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-20
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2035-03-20
AI Technical Summary
Existing air purification devices are bulky and have a fixed air volume. Furthermore, outdoor air purification equipment occupies a large area, is inconvenient to connect to electricity, and cannot flexibly adjust the air volume.
Design a high-throughput, low-power air purification array device that can be freely combined, including a first housing and a second housing, with an air inlet and an air outlet inside, equipped with filters and a fan, using a particulate matter sensor to detect air quality, and adjusting the air volume through component combination.
It enables air quality monitoring and purification, has adjustable airflow, is portable and easy to install, and improves air purification efficiency and flexibility.
Smart Images

Figure CN223896200U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of air purification technology, specifically relating to a high-throughput, low-power air treatment array device that can be freely combined. Background Technology
[0002] Air purification equipment, also known as "air cleaning equipment" or air freshener, refers to products that can filter out or kill air pollutants and effectively improve air cleanliness. They are mainly household and commercial air purification equipment used to remove indoor air pollution. Air purification equipment can filter pollutants such as airborne particulates, bacteria, viruses, fungal spores, pollen, asbestos, and radon decay products.
[0003] In existing technologies, air purification devices are usually large in size in order to obtain a large air volume and achieve good results. However, the air volume obtained within a certain period of time is limited. Currently, there are no outdoor air purification devices on the market that can select multiple air volumes. The mainstream in the market is large outdoor air purifiers, which have problems such as large footprint and inconvenient power connection. Utility Model Content
[0004] In view of the problems mentioned in the background art, the purpose of this utility model is to provide a high-throughput, low-power air treatment array device that can be arbitrarily combined, so as to solve the problems mentioned in the background art.
[0005] To achieve the above-mentioned technical objectives, the technical solution adopted by this utility model is as follows:
[0006] A high-throughput, low-power air purification array device that can be freely combined includes a first housing and a second housing with an internal cavity. The interiors of the first housing and the second housing are interconnected. One end of the first housing is an air inlet, and one end of the second housing is an air outlet. A filter is assembled and connected inside the first housing, and a fan is assembled and connected inside the second housing. The second housing is square or circular, and the first housing is rectangular. Particulate matter sensors are arranged near the air inlet of the first housing and near the air outlet of the second housing. Connectors are assembled and connected to the outside of the second housing.
[0007] Further specifying, the filter element includes a filter membrane, an opening of the filter membrane is provided on one side of the first housing, and a baffle is detachably connected to the opening of the first housing.
[0008] Furthermore, a filter cloth is provided on the outer side of the air inlet.
[0009] Further specifying, when the second housing is square, one end of the second housing is connected to a louver; when the second housing is circular, the end of the second housing is connected to a filter cloth.
[0010] Further specifying, a plurality of uniformly arrayed rectangular frames are fixedly connected to the inner side of the first housing, and the filter membrane is located between two adjacent rectangular frames.
[0011] Furthermore, the second housing has an outlet for the particulate sensor on its side.
[0012] Further specifying, the connector is a wiring hole.
[0013] Furthermore, the lengths of both the first and second housings are less than 30cm.
[0014] Compared with the prior art, the present invention has the following advantages:
[0015] This invention has a simple structure. By setting particulate matter sensors at the air inlet and air outlet, it can detect and monitor the concentration of particulate matter in the air. At the same time, by detecting the particulate matter concentration at the air inlet and air outlet, it can detect the purification effect of the filter membrane and detect the quality of the unpurified air, thereby monitoring the particulate matter data in the air in real time.
[0016] This invention can purify air by using a filter element in the first housing to effectively improve air quality. At the same time, by combining and stacking the components, a high air volume can be formed, and the air volume can be changed by changing the number of components.
[0017] The filter membrane of this invention is easy to replace. When the filter membrane can no longer filter the air, it can be replaced by removing the baffle. The operation is simple, quick and portable. Attached Figure Description
[0018] This utility model can be further illustrated by the non-limiting embodiments given in the accompanying drawings;
[0019] Figure 1 This is a schematic diagram of the structure of a high-throughput, low-power air purification array device that can be freely combined according to this utility model;
[0020] Figure 2 This is a schematic diagram of the device for removing the baffle in this utility model.
[0021] Figure 3 This is a schematic diagram of the internal structure of a high-throughput, low-power air purification array device that can be freely combined according to this utility model.
[0022] Figure 4 This is a schematic diagram of the second shell of this utility model being circular;
[0023] Figure 5 This is a front view of the second shell of this utility model, which is circular.
[0024] The symbols for the main components are explained below:
[0025] First housing 11, rectangular frame 111, second housing 12, air inlet 13, air outlet 14, louvers 15;
[0026] Filter element 2, filter membrane 21, baffle 22, fan 3, particulate sensor 4, connector 5, filter cloth 6. Detailed Implementation
[0027] To enable those skilled in the art to better understand this utility model, the technical solution of this utility model will be further described below with reference to the accompanying drawings and embodiments. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0028] Unless otherwise defined, the technical or scientific terms used in this disclosure shall have the ordinary meaning understood by one of ordinary skill in the art to which this disclosure pertains; the terms “first,” “second,” and similar terms used in this disclosure do not indicate any order, quantity, or importance, but are merely used to distinguish different components. Terms such as “comprising” or “including” mean that an element or object preceding the word encompasses the elements or objects listed following the word and their equivalents, without excluding other elements or objects. Terms such as “connected” or “linked” are not limited to physical or mechanical connections, but can include electrical connections, whether direct or indirect.
[0029] like Figure 1-5 As shown, a high-throughput, low-power air purification array device that can be freely combined includes a first housing 11 and a second housing 12 with an internal cavity. The interiors of the first housing 11 and the second housing 12 are interconnected. One end of the first housing 11 is an air inlet 13, and one end of the second housing 12 is an air outlet 14. A filter element 2 is assembled and connected inside the first housing 11, and a fan 3 is assembled and connected inside the second housing 12. The second housing 12 is square or round, and the first housing 11 is rectangular. A particulate matter sensor 4 is arranged near the air inlet 13 of the first housing 11 and near the air outlet 14 of the second housing 12. A connector 5 is assembled and connected to the outside of the second housing 12.
[0030] In this embodiment, the first housing 11 and the second housing 12 are connected to form a component. In practical use, different numbers of components are installed and connected to the connecting frame according to different environmental conditions, thereby obtaining different air volumes to purify outdoor air. This allows ambient air to be drawn into the air purification chamber of the equipment by a power fan, where it undergoes multi-stage filtration and dust removal through the filter element 2, thus achieving the purpose of purifying the ambient air. The high-efficiency particulate air filter captures tiny particles in the air, and combined with aerodynamic design, it improves air circulation efficiency and purification speed, greatly enhancing dust removal efficiency. It is unaffected by environmental conditions. The reasonable constraint combination is easy to install and has a wide range of applications. The first housing 11 is the air inlet, and the fan 3 is installed in the second housing 12. The fan 3 draws air in from the air inlet of the first housing 11, and then filters it through the filter element 2 to remove dust and other harmful impurities from the air. The air is filtered by the particulate sensor 4, which senses the air particle size entering the first housing 11 and the air particle size passing through the filter element 2, thereby sensing the equipment's operating efficiency and periodically replacing the filter components to achieve efficient and stable operation of the equipment. The device is connected to the connecting frame through the connector 5. The individual components 1 of this device are small in size and light in weight, making them easy to install and disassemble.
[0031] Reference Figure 2 and Figure 3 The filter element 2 includes a filter membrane 21. An opening for the filter membrane 21 is provided on one side of the first housing 11, and a baffle 22 is detachably connected to the opening of the first housing 11. In this embodiment, the opening on the side of the first housing 11 allows the filter membrane 21 to be removed from the opening. When the baffle 22 is installed and connected to the first housing 11, the filter membrane 21 is located inside the baffle.
[0032] Reference Figure 3-4 A filter cloth 6 is provided on the outside of the air inlet 13. In this embodiment, the filter cloth 6 is used to perform preliminary filtration of impurities in the air.
[0033] Reference Figure 3 and Figure 5 When the second housing 12 is square, a louver 15 is connected to one end of the second housing 12; when the second housing 12 is circular, a filter cloth 6 is connected to the end of the second housing 12. In this embodiment, the louver 15 is a louver used in conjunction with the fan 3, and the air volume is changed by changing the angle of the louver.
[0034] Reference Figure 3 Multiple uniformly arrayed rectangular frames 111 are fixedly connected to the inner side of the first housing 11, and the filter membrane 21 is located between two adjacent rectangular frames 111. In this embodiment, the rectangular frames 111 are used to install the filter membrane 21.
[0035] The second housing 12 has a wire outlet for the particulate matter sensor 4 on its side. In this embodiment, the connecting wire of the particulate matter sensor 4 is discharged from the wire outlet.
[0036] Reference Figure 3 Connector 5 is a wiring hole. In this embodiment, the housing is connected to the connecting frame through connector 5, thereby fixing the housing.
[0037] The lengths of both the first housing 11 and the second housing 12 are less than 30 cm. In this embodiment, the size of the device is limited, and the total length of the first housing 11 and the second housing 12 is preferably less than 30 cm, and the side length of the first housing 11 is less than 18 cm.
[0038] The control method of this utility model is automatic control through a controller. The control circuit of the controller can be implemented by simple programming by those skilled in the art. The power supply is also common knowledge in the field. Since this utility model is mainly used to protect mechanical devices, the control method and circuit connection will not be explained in detail.
[0039] The above embodiments are merely illustrative of the principles and effects of this utility model and are not intended to limit the scope of this utility model. Any person skilled in the art can modify or alter the above embodiments without departing from the spirit and scope of this utility model. Therefore, all equivalent modifications or alterations made by those skilled in the art without departing from the spirit and technical concept disclosed in this utility model should still be covered by the claims of this utility model.
Claims
1. A high-throughput, low-power air purification array device that can be freely combined, comprising a first housing (11) and a second housing (12) having an internal cavity, characterized in that: The interiors of the first housing (11) and the second housing (12) are interconnected. One end of the first housing (11) is an air inlet (13), and one end of the second housing (12) is an air outlet (14). A filter element (2) is assembled and connected inside the first housing (11), and a fan (3) is assembled and connected inside the second housing (12). The second housing (12) is square or round, and the first housing (11) is rectangular. A particulate matter sensor (4) is provided near the air inlet (13) of the first housing (11) and near the air outlet (14) of the second housing (12). A connector (5) is assembled and connected to the outside of the second housing (12).
2. The high-throughput, low-power air purification array device that can be arbitrarily combined according to claim 1, characterized in that: The filter element (2) includes a filter membrane (21), and an opening of the filter membrane (21) is provided on one side of the first housing (11). A baffle (22) is detachably connected to the opening of the first housing (11).
3. The high-throughput, low-power air purification array device that can be arbitrarily combined according to claim 2, characterized in that: A filter cloth (6) is provided on the outside of the air inlet (13).
4. The high-throughput, low-power air purification array device that can be arbitrarily combined according to claim 3, characterized in that: When the second housing (12) is square, a louver (15) is connected to one end of the second housing (12). When the second housing (12) is round, a filter cloth (6) is connected to the end of the second housing (12).
5. The high-throughput, low-power air purification array device that can be arbitrarily combined according to claim 3, characterized in that: The first housing (11) has a plurality of uniformly arrayed rectangular frames (111) fixedly connected to its inner side, and the filter membrane (21) is located between two adjacent rectangular frames (111).
6. The high-throughput, low-power air purification array device that can be arbitrarily combined according to claim 3, characterized in that: The second housing (12) has an outlet for the particulate sensor (4) on its side.
7. The high-throughput, low-power air purification array device that can be arbitrarily combined according to claim 3, characterized in that: The connector (5) is a wiring hole.
8. The high-throughput, low-power air purification array device that can be arbitrarily combined according to claim 3, characterized in that: The lengths of the first shell (11) and the second shell (12) are both less than 30 cm.