Air-optimized louver device

CN224729510UActive Publication Date: 2026-09-08COME FOR THE CURTAIN (SHANGHAI) TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202522113108.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-30
Publication Date
2026-09-08
Estimated Expiration
2035-09-30

AI Technical Summary

Technical Problem

目前,常规的门、窗户设计在功能上存在明显局限性:普通的门、窗户无法在恶劣天气条件下 (如刮风、下雨)保持开启通风状态;传统的门、窗帘或百叶门、窗虽能调节采光,但会阻碍空气流通; 纱门、纱窗可防蚊虫但影响通风效果且无法过滤 PM2.5 等细微颗粒物

Benefits of technology

集成多种功能于一体,解决了传统门、窗户功能单一的问题;

✦ Generated by Eureka AI based on patent content.

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    Figure CN224729510U_ABST
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Abstract

The utility model discloses an air optimization louver device, including outer frame, louver inner frame, turnover motor, louver motor, telescopic motor, mosquito net, wave louver and outdoor detection module and indoor remote control mainboard, and outdoor detection module is equipped with PM2.5 sensor, wind speed sensor, rain sensor, temperature and humidity sensor and photoelectric sensor, and indoor remote control mainboard is connected with indoor environment sensor group, power module and user interactive interface, through intelligent response and integrated circuit control, drive each motor actuating mechanism, realize door, window louver angle automatic regulation, turn window opening and closing control and mosquito net telescopic operation. The utility model integrates rainproof, sunshade, ventilation, lighting, mosquito prevention, privacy protection, PM2.5 prevention and sound insulation, can automatically optimize indoor air quality according to indoor and outdoor environment parameter change, reaches the effect of all -weather intelligent regulation and control.
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Description

Technical Field

[0001] This utility model relates to an air-optimized louver device. Specifically, it relates to an intelligent ventilation and control device that integrates functions such as rain protection, sun shading, ventilation, lighting, mosquito prevention, privacy protection, PM2.5 prevention, and sound insulation for use in building doors and windows. It belongs to the field of building ventilation and smart home technology. Background Technology

[0002] With rapid urbanization, people's demands for indoor air quality and living comfort are increasing. Currently, conventional door and window designs have significant functional limitations: ordinary doors and windows cannot remain open for ventilation in inclement weather conditions (such as wind and rain); traditional doors, curtains, or louvered doors and windows, while able to regulate lighting, obstruct airflow; screen doors and windows can prevent mosquitoes but affect ventilation and cannot filter PM2.5 and other fine particulate matter. Furthermore, existing air purifiers can only circulate and purify indoor air, unable to introduce fresh outdoor air, leading to an accumulation of indoor carbon dioxide and hindering true air convection and renewal.

[0003] While some existing smart door and window products on the market possess some automation functions, such as electric opening and closing or simple wind and rain sensing, they still fall short in terms of functional integration. Specifically, they lack comprehensive sensing capabilities for multiple environmental parameters (such as PM2.5, wind speed, rain, temperature, and humidity); mosquito prevention, filtration, sun shading, and sound insulation functions are not effectively integrated; and the mechanical structure design fails to simultaneously meet multiple requirements such as precise adjustment of louver angles, anti-pinch protection, and automatic mosquito net retraction. Therefore, there is an urgent need for a comprehensive air optimization device that integrates rain protection, sun shading, ventilation, lighting, mosquito prevention, privacy, PM2.5 protection, and sound insulation functions, and can intelligently adjust according to indoor and outdoor environmental parameters. Utility Model Content

[0004] The technical problem to be solved by this utility model is to overcome the shortcomings of the existing technology and provide an intelligent air optimization louver device that integrates functions such as rainproof, sunshade, ventilation, lighting, mosquito prevention, privacy protection, PM2.5 prevention and sound insulation. It can automatically adjust according to changes in indoor and outdoor environmental parameters to achieve intelligent optimization of indoor air quality.

[0005] This utility model can be achieved through the following technical solutions: An air-optimized louver device includes an outer frame, a tilting motor, a louver motor, a telescopic motor, corrugated louvers, an outdoor detection module, and an indoor remote control mainboard. The outdoor detection module includes a PM2.5 sensor, a wind speed sensor, a rain sensor, a temperature and humidity sensor, and a photoelectric sensor. The indoor remote control mainboard is connected to an indoor environmental sensor, a power module, and a user interface. The outdoor detection module monitors outdoor environmental parameters in real time and transmits the signals to the indoor remote control mainboard. The indoor remote control mainboard generates control commands based on a preset algorithm, driving each motor to perform corresponding actions via a motor control board, achieving intelligent control of rain protection, sun shading, ventilation, lighting, mosquito prevention, privacy, PM2.5 prevention, and sound insulation. The device controls the opening and closing of the louvered window via the tilting motor, adjusts the angle of the corrugated louvers via the louver motor, and controls the automatic and manual switching of the louvered window via the telescopic motor.

[0006] Furthermore, the outer frame is provided with a louvered inner frame, on which the wavy louvers and mosquito net are installed; the mosquito net is kept taut by a mosquito net tensioning device, and the wavy louvers are angled by a cam and a connecting piece.

[0007] Furthermore, it also includes a rotating motor base beam, wherein the rotating motor is fixed to the rotating motor base beam via a rotating motor base; the output end of the rotating motor is connected to a sector gear, the sector gear meshes with a zigzag gear, the zigzag gear is connected to a butterfly support via a zigzag shaft, and the butterfly support is fixed to a butterfly support base.

[0008] Furthermore, it also includes a disengaging motor, which enables the opening and closing of the window via a style plate support rod and a nylon bearing.

[0009] Furthermore, the louver motor is mounted on the inner frame of the connecting rod and drives the movement of the wave-shaped louvers through a cam and connecting plate; the device is also equipped with a synchronous transmission component and a guide wheel to ensure the smoothness of the louver movement.

[0010] Furthermore, it also includes an anti-pinch device, which is set at the moving point and achieves balancing and reset functions through springs, guide wheels and balance bars, for safety protection to prevent fingers from being injured during operation.

[0011] Furthermore, the device is provided with a connecting rod inner frame and a louvered lower beam at the bottom. The louvered lower beam is connected to a corrugated louver, a roller is installed inside the corrugated louver, a mosquito net is installed around the roller, and the lower end of the mosquito net is connected to the upper end of the louvered lower beam to achieve a closed loop combination. The other end of the roller is provided with a mosquito net tensioning device, which controls the roller and enables the mosquito net to achieve dynamic reset.

[0012] Furthermore, the indoor remote control motherboard is also connected to a battery, power supply, touch screen, and control module, supporting multiple user interaction methods.

[0013] Furthermore, the device supports multi-module combination installation, enabling single-module arrays or multi-module collaborative operation, and is suitable for installation on doors and windows of different sizes.

[0014] Compared with the prior art, the beneficial effects of this utility model are: It integrates multiple functions into one, solving the problem of the single function of traditional doors and windows; It adopts intelligent sensing and automatic control technology to achieve all-weather automatic adjustment; The structural design is reasonable, all mechanisms work in coordination, and the operation is stable and reliable. It has safety protection functions and is safe and reliable to use; It supports multiple user interaction methods and is easy and intuitive to operate. Attached Figure Description

[0015] Figure 1 is a schematic diagram of the closure of the louvers and flip-up window of this utility model.

[0016] Figure 2 is a schematic diagram of the opening of the louvers and flip-up window of this utility model.

[0017] Figure 3 is a schematic diagram of the structure of this utility model on the right side.

[0018] Figure 4 is a schematic diagram of the structure of this utility model.

[0019] Figures 5-1 and 5-2 are enlarged schematic diagrams of the left and right sides of this utility model, respectively.

[0020] Figure 6 is a partially enlarged schematic diagram of the louvered part of this utility model.

[0021] Figure 7 is a partially enlarged schematic diagram of the window-opening motor part of this utility model.

[0022] Figure 8 is a schematic diagram of the outdoor testing and indoor remote control process of this utility model.

[0023] In the picture: 1. Outer frame; 2. Inner louver frame; 3. Rotating motor base beam; 4. Rotating motor; 5. Rotating motor base; 6. Sector gear; 7. Citizen shaft; 8. Citizen gear; 9. Butterfly support; 10. Butterfly support base; 11. Disconnect motor; 12. Style panel support rod; 13. Nylon bearing; 14. Connecting rod inner frame (upper); 15. Louver motor; 16. Cam; 17. Connecting piece; 18. Movable point; 19. Anti-pinch device; 20. Guide wheel; 21. Balance bar; 22. Spring; 23. Synchronous transmission component; 24. Bearing seat; 25. Mosquito net; 26. Wave-shaped louvers; 27. Louver upper beam; 28. Roller; 29. ​​Guide wheel; 30. Telescopic motor; 31. Telescopic motor base; 32. Mosquito net tensioning device. 33. Louvered lower beam; 34. Connecting rod inner frame (lower); 35. Outdoor detection module; 36. Indoor remote control mainboard. Detailed Implementation

[0024] The following specific embodiments illustrate the implementation of this utility model. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification.

[0025] As shown in Figures 1 to 8, the present invention provides an air-optimized louver device (system), comprising an outer frame 1, an inner louver frame 2, a flip motor seat beam 3, a flip motor 4, a flip motor seat 5, a sector gear 6, a flag shaft 7, a flag gear 8, a butterfly support 9, a butterfly support seat 10, a pull-out motor 11, a style plate support rod 12, a nylon bearing 13, an upper connecting rod inner frame 14, a louver motor 15, a cam 16, a connecting piece 17, a movable point 18, an anti-pinch device 19, a guide wheel 20, a balance bar 21, a spring 22, a synchronous transmission component 23, a bearing seat 24, a mosquito net 25, a wave-shaped louver 26, an upper louver beam 27, a roller 28, a guide wheel 29, a telescopic motor 30, a telescopic motor seat 31, a mosquito net tensioning device 32, a lower louver beam 33, a lower connecting rod inner frame 34, an outdoor detection module 35, and an indoor remote control main board 36.

[0026] The outer frame 1 is the main support structure of the device, and the inner frame 2 with louvers is installed inside. The inner frame 2 with louvers supports the corrugated louvers 26 and the mosquito net 25. The corrugated louvers 26 are arranged in horizontal stacks and have rainproof, sunshade and ventilation functions. The mosquito net 25 is built-in and retractable, and is kept taut by the mosquito net tensioning device 32.

[0027] The device has a top-mounted tilting motor support beam 3, on which a tilting motor 4 and a tilting motor base 5 are mounted. The tilting motor 4 is driven by a sector gear 6 meshing with a flag gear 8. The flag gear 8 is connected to a butterfly support 9 via a flag shaft 7. The butterfly support 9 is fixed to a butterfly support base 10. Pulling out the motor 11 enables the opening and closing of the tilting window through a style plate support rod 12 and a nylon bearing 13.

[0028] The louver motor 15 is installed on the inner frame (upper) 14 of the connecting rod. The bottom of the inner frame (upper) 14 of the connecting rod is provided with a louver upper beam 27, a roller 28 is installed inside the louver upper beam 27, a mosquito net 25 is installed around the roller 28, and the mosquito net 25 is connected to the upper end of the wavy louver 26. The roller 28 is installed inside the wavy louver 26, a mosquito net 25 is installed around the roller 28, and the mosquito net 25 is connected to the upper end of the wavy louver 26. The mosquito net 25 is finally connected to the upper end of the lower beam 33 of the louver to achieve a closed loop combination. The anti-pinch device 19 is driven by the cam 16, connecting piece 17, and movable point 18. The anti-pinch device 19 is equipped with a balance bar 21. A spring 22 is placed at the lower end of the balance bar 21. The spring 22 is installed at the upper inner end of the anti-pinch device 19. A guide wheel 20 is placed between the lower inner end of the anti-pinch device 19 and the upper end of the balance bar 21. The guide wheel 20 is connected to the opening and closing and angle adjustment of the wave louver 26 through the synchronous transmission component 23. The anti-pinch device 19 is used for the safety protection of the fingers during the movement.

[0029] The bottom of the device is equipped with a connecting rod inner frame (lower) 34, a louvered lower beam 33, a corrugated louver 26 connected to the louvered lower beam 33, a roller 28 installed inside the corrugated louver 26, a mosquito net 25 around the roller 28, and the lower end of the mosquito net 25 is connected to the upper end of the louvered lower beam 33 to achieve a closed loop combination. The other end of the roller 28 is equipped with a mosquito net tensioning device 32, which controls the roller 28 and the mosquito net 25 to achieve dynamic reset.

[0030] The outdoor detection module 35 connects to rain sensors, temperature and humidity sensors, PM2.5 sensors, wind speed sensors, etc., to detect outdoor environmental parameters in real time. The indoor remote control motherboard 36 connects to the battery, power supply, touch screen, and voice control module, and connects to multiple motor control boards via a communication bus to achieve intelligent control of the tilting motor 4, louver motor 15, telescopic motor 30, etc.

[0031] The working process of this utility model is as follows: • When the outdoor detection module 35 detects environmental changes (such as rain, wind speed, PM2.5, etc.), it transmits the signal to the indoor remote control motherboard 36.

[0032] • The indoor remote control motherboard 36 generates control commands based on a preset algorithm and drives the corresponding motor to move through the motor control board.

[0033] • The flip motor 4 controls the opening and closing of the flip window through a gear transmission mechanism. The louver motor 15 adjusts the angle and opening / closing state of the wave louvers 26 through a cam and connecting plate mechanism. The telescopic motor 30 is placed on the telescopic motor base 31. The telescopic motor 30 extends the flag gear 8, separates the sector gear 6 through the flag shaft 7, retracts the flag gear 8, and engages the sector gear through the flag shaft 7 to control the automatic and manual switching of the flip window.

[0034] • The entire system integrates multiple functions such as rain protection, sun shading, ventilation, lighting, mosquito prevention, sound insulation, and PM2.5 prevention, ensuring that indoor air quality is always at its best.

[0035] 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 and improvements 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. An air-optimized louver device, characterized in that, It includes an outer frame (1), a flip motor (4), a louver motor (15), a telescopic motor (30), a wave louver (26), an outdoor detection module (35), and an indoor remote control motherboard (36). The outdoor detection module (35) includes a PM2.5 sensor, a wind speed sensor, a rain sensor, a temperature and humidity sensor, and a photoelectric sensor; the indoor remote control motherboard (36) is connected to an indoor environment sensor, a power module, and a user interface; the outdoor detection module (35) detects outdoor environmental parameters in real time and transmits the signals to the indoor remote control motherboard (36); the indoor remote control motherboard (36) generates control commands according to a preset algorithm, drives each motor to perform corresponding actions through the motor control board, and realizes intelligent control of rain protection, sunshade, ventilation, lighting, mosquito prevention, privacy protection, PM2.5 prevention, and sound insulation; The device controls the opening and closing of the window via the flip motor (4), adjusts the angle of the wave louvers (26) via the louver motor (15), and controls the automatic and manual switching of the window via the telescopic motor (30). The outer frame (1) is provided with a louvered inner frame (2), and the wavy louver (26) and mosquito net (25) are installed on the louvered inner frame (2); the mosquito net (25) is kept in tension by a mosquito net tensioning device (32), and the wavy louver (26) is adjusted in angle by a cam (16) and a connecting piece (17).

2. The air-optimizing louver device according to claim 1, characterized in that, It also includes a rotating motor base beam (3), the rotating motor (4) is fixed on the rotating motor base beam (3) through a rotating motor base (5); the output end of the rotating motor (4) is connected to a sector gear (6), the sector gear (6) meshes with a flag gear (8), the flag gear (8) is connected to a butterfly support (9) through a flag shaft (7), and the butterfly support (9) is fixed on a butterfly support base (10).

3. The air-optimizing louver device according to claim 2, characterized in that, It also includes a pull-out motor (11), which realizes the opening and closing action of the window through the style plate support rod (12) and nylon bearing (13).

4. The air-optimizing louver device according to claim 3, characterized in that, The louver motor (15) is mounted on the inner frame (14) of the connecting rod and drives the movement of the wave louver (26) through the cam (16) and the connecting piece (17); the device is also provided with a synchronous transmission component (23) and a guide wheel (29) to ensure the smoothness of the louver movement.

5. The air-optimizing louver device according to claim 4, characterized in that, It also includes an anti-pinch device (19), a guide wheel (20), a balance bar (21), and a spring (22), which are set at the moving point (18) for the safety protection of the fingers during operation.

6. The air-optimizing louver device according to claim 5, characterized in that, The device has a connecting rod inner frame (34) and a louvered lower beam (33) at the bottom. The louvered lower beam (33) is connected to a wave louver (26). A roller (28) is installed inside the wave louver (26). A mosquito net (25) is installed around the roller (28). The lower end of the mosquito net (25) is connected to the upper end of the louvered lower beam (33) to achieve a closed loop combination. The other end of the roller (28) is provided with a mosquito net tensioning device (32). The mosquito net tensioning device (32) controls the roller (28) and the mosquito net (25) to achieve dynamic reset.

7. The air-optimizing louver device according to claim 1, characterized in that, The indoor remote control motherboard (36) is also connected to a battery, power supply, touch screen and control module, and supports multiple user interaction methods.

8. The air-optimizing louver device according to any one of claims 1-7, characterized in that, The device supports multi-module combination installation, and can realize single-module or multi-module collaborative work, and is suitable for installation on doors and windows of different sizes.