Household sleeping device
By installing flexible isolation covers and air supply systems around the bedding, the problems of insufficient airtightness and high modification costs of household air purification equipment are solved, achieving efficient air purification and emergency ventilation. It is suitable for ordinary households and has diverse functions.
Patent Information
- Application Number
- CN202511623495.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-07
- Publication Date
- 2026-01-13
AI Technical Summary
Existing home air purification devices are ineffective when the airtightness is insufficient, and the cost of modification is high, making them difficult to popularize. Existing sleep capsule products are bulky and expensive, making them difficult to be widely used in homes.
Design a home sleep device that uses a flexible isolation cover and an air supply system. The device covers the area around the bedding with a bracket. The isolation cover is equipped with a double-layer air distribution chamber and an air supply chamber, which are connected to a filter and an air supply duct to achieve air purification. In case of system failure, emergency ventilation is provided through a magnetic ventilation window.
It achieves efficient air purification under low filtration air volume conditions, reduces the burden on air purification, is suitable for ordinary households, and has emergency ventilation function. It is highly safe and versatile.
Smart Images

Figure CN121312960A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of sleep technology, specifically to a home sleep device. Background Technology
[0002] Sleep occupies one-third of our lives, and the air quality we breathe during eight hours of sleep has a significant impact on our health. However, the current air quality during sleep mainly suffers from the following problems: 1. Dust, pollutants, bacteria, viruses, and allergens in the air; 2. Excessive levels of formaldehyde and volatile organic compounds in the air; 3. Poor indoor air circulation and excessive carbon dioxide levels. Currently available products for improving air quality during sleep include air purifiers, home ventilation systems, and sleep capsules with integrated filtration systems. These products mainly suffer from the following drawbacks: Regarding air purifiers: Air purifiers can purify bedroom air, but there are the following issues when used during sleep: Indoor airtightness is usually not high, and due to the influx of outdoor air, the air purification effect cannot be achieved. Furthermore, to reduce operating noise during sleep, the purifier's airflow needs to be reduced, further lowering air quality. Our tests showed that in poorly sealed bedrooms, air purifiers running in sleep mode have virtually no purification effect. Improving the bedroom's airtightness will enhance air purification to some extent, but this will cause indoor carbon dioxide levels to exceed safe limits, which is also harmful to health. Regarding home ventilation systems: Home ventilation systems can purify the air in bedrooms and also introduce fresh air, avoiding the problem of excessive carbon dioxide levels in enclosed spaces. However, the purification effect of ventilation systems is highly dependent on the airtightness of the room. If the airtightness is not high, the effect will be poor. In addition, ventilation systems require significant home modifications, making them difficult to be widely applicable to all families. They are also costly and require high maintenance.
[0003] Regarding sleep capsules with integrated filtration systems: Existing sleep capsule products with purification functions are mainly targeted at customers who do not meet household needs. They are generally bulky, difficult to install, and expensive. Due to factors such as living habits, difficulty in home renovation, and cost, they are difficult to popularize in homes.
[0004] In summary, a new technical solution is needed to address the aforementioned technical problems. Summary of the Invention
[0005] This invention provides a home sleep device, including a support frame disposed around the bedding, an isolation cover covering the support frame, the top of the isolation cover being double-layered, the space between the two layers being an air distribution chamber, the air distribution chamber being connected to an air supply channel disposed on the inner layer of the top of the isolation cover; at least one side of the isolation cover is double-layered, with an air supply chamber between the two layers, the air supply chamber being connected to the air distribution chamber, and the air supply chamber being connected to a filter through an air supply duct.
[0006] As a preferred option, the isolation enclosure is a flexible isolation enclosure.
[0007] As a preferred embodiment, the isolation enclosure is made of TPU material.
[0008] As a preferred option, the air supply duct is made of TPU material.
[0009] As a preferred embodiment, the isolation enclosure is provided with ventilation windows, and the top of the ventilation windows is connected to the isolation enclosure by electromagnets. The electromagnets are connected to a power supply and a controller.
[0010] As a preferred embodiment, the filter includes a housing, the top of which is provided with an air outlet.
[0011] An elbow pipe installed inside the housing extends to the upper part of the housing through an air outlet. The elbow pipe is connected to the upper air chamber below it. A high-efficiency filter is installed at the lower part of the upper air chamber. Below the high-efficiency filter is the lower air chamber, in which a fan is installed. The fan is connected to a power supply and a controller. An air inlet is opened at the lower part of the lower air chamber. The lower part of the lower air chamber is the housing bottom plate. An air inlet is installed on the housing bottom plate, and a pre-filter is installed at the housing air inlet.
[0012] As a preferred embodiment, a buckle is provided on the bottom plate of the housing at a position corresponding to the air inlet of the housing, and a pre-filter is inserted into the buckle.
[0013] As a preferred embodiment, the fan is installed in a fan mounting bracket, which is fixed inside the lower air chamber.
[0014] As a preferred embodiment, a metal mesh is fixed at the air inlet.
[0015] As a preferred embodiment, the power supply and controller are installed inside the housing.
[0016] As a preferred embodiment, the power supply is connected to the charging port via a charging connection device, and the charging port is located on the outside of the housing.
[0017] As a preferred embodiment, a touch screen is provided on the outer side of the housing, and the touch screen is connected to the power supply and the controller respectively.
[0018] As a preferred embodiment, a Bluetooth speaker is installed inside the housing, and a Bluetooth speaker output port corresponding to the Bluetooth speaker is provided on the outside of the housing. The Bluetooth speaker is connected to a power supply and a controller.
[0019] As a preferred embodiment, the housing is provided with a lighting slot, and a lighting lamp is installed in the lighting slot. The lighting lamp is connected to a power supply and a controller.
[0020] As a preferred embodiment, the housing is further provided with a sensor light slot, in which a sensor light is installed. The sensor light is connected to a power supply and a control device. The housing is also provided with a human body sensor, which is connected to a power supply and a control device.
[0021] As a preferred embodiment, a filter replacement side plate is provided on one side of the housing.
[0022] As a preferred embodiment, the upper air chamber is fixed with locking seats on both sides, and the lower air chamber is fixed with locking hooks that cooperate with the locking seats on both sides; or the upper air chamber is fixed with locking hooks on both sides, and the lower air chamber is fixed with locking seats that cooperate with the locking hooks on both sides.
[0023] As a preferred embodiment, the locking seat or locking hook installed on the upper air cavity is fixed to the upper mounting strip, which is fixed to both sides of the upper air cavity. The upper mounting strip is connected to the side wall of the housing through a connector. The locking hook or locking seat installed on the lower air cavity is fixed to the lower mounting strip, which is fixed to both sides of the lower air cavity.
[0024] The present invention provides a home sleep device, including a bracket set on the top of the bedding, a rocker arm fixedly mounted on the bracket, the rocker arm being connected to an air outlet duct, the air outlet duct being connected to an air supply duct, and the air supply duct being connected to a filter.
[0025] As a preferred embodiment, the filter includes a housing with an air outlet at the top. A bent pipe inside the housing extends through the air outlet to the upper part of the housing and communicates with the upper air chamber below it. A high-efficiency filter is installed in the lower part of the upper air chamber, and a lower air chamber is located below the high-efficiency filter. A fan is installed in the lower air chamber and is connected to a power supply and a controller. An air inlet is opened in the lower part of the lower air chamber, and the lower part of the lower air chamber is the housing bottom plate. A housing air inlet is provided on the housing bottom plate, and a pre-filter is installed at the housing air inlet.
[0026] As a preferred embodiment, a buckle is provided on the bottom plate of the housing at a position corresponding to the air inlet of the housing, and a pre-filter is inserted into the buckle.
[0027] As a preferred embodiment, the fan is installed in a fan mounting bracket, which is fixed inside the lower air chamber.
[0028] As a preferred embodiment, a metal mesh is fixed at the air inlet.
[0029] As a preferred embodiment, the power supply and controller are installed inside the housing.
[0030] As a preferred embodiment, the power supply is connected to the charging port via a charging connection device, and the charging port is located on the outside of the housing.
[0031] As a preferred embodiment, a touch screen is provided on the outer side of the housing, and the touch screen is connected to the power supply and the controller respectively.
[0032] As a preferred embodiment, a Bluetooth speaker is installed inside the housing, and a Bluetooth speaker output port corresponding to the Bluetooth speaker is provided on the outside of the housing. The Bluetooth speaker is connected to a power supply and a controller.
[0033] As a preferred embodiment, the housing is provided with a lighting slot, and a lighting lamp is installed in the lighting slot. The lighting lamp is connected to a power supply and a controller.
[0034] As a preferred embodiment, the housing is further provided with a sensor light slot, in which a sensor light is installed. The sensor light is connected to a power supply and a control device. The housing is also provided with a human body sensor, which is connected to a power supply and a control device.
[0035] As a preferred embodiment, a filter replacement side plate is provided on one side of the housing.
[0036] As a preferred embodiment, the upper air chamber is fixed with locking seats on both sides, and the lower air chamber is fixed with locking hooks that cooperate with the locking seats on both sides; or the upper air chamber is fixed with locking hooks on both sides, and the lower air chamber is fixed with locking seats that cooperate with the locking hooks on both sides.
[0037] As a preferred embodiment, the locking seat or locking hook installed on the upper air cavity is fixed to the upper mounting strip, which is fixed to both sides of the upper air cavity. The upper mounting strip is connected to the side wall of the housing through a connector. The locking hook or locking seat installed on the lower air cavity is fixed to the lower mounting strip, which is fixed to both sides of the lower air cavity.
[0038] This application uses an isolation enclosure to effectively isolate the sleeping space. After the air in the bedroom is highly purified, it is delivered into the isolation enclosure, thereby achieving a high degree of cleanliness and freshness of the air in the sleeping area. This greatly reduces the burden on air purification, thus achieving extremely high purification effects under conditions of lower filtration volume. Alternatively, the purified air can be directly delivered to the user's head, allowing the user to directly inhale the purified air, which is also effective. This application requires minimal home renovation, is easy to implement, and can be carried out by ordinary families. It is foldable and can be stored without the need for professional disassembly and assembly. Attached Figure Description
[0039] Figure 1 This is a structural schematic diagram of a portion of the structure of an embodiment of this application from one angle; Figure 2 This is a structural schematic diagram from angle two of the embodiments of this application; Figure 3 This is a schematic diagram of the structure of this application without an isolation enclosure. Figure 4 This is a structural schematic diagram of Embodiment 1 of this application; Figure 5 This is a structural schematic diagram of the filter at angle one of this application; Figure 6 This is a schematic diagram of the filter structure at angle two of this application; Figure 7 This is a partial cross-sectional view of the filter in this application; Figure 8 This is a schematic diagram of a portion of the filter structure from one angle in this application; Figure 9 This is a schematic diagram of a portion of the filter structure from angle two of this application; Figure 10 This is a structural schematic diagram of the lock seat and lock hook at angle one of this application; Figure 11 This is a structural schematic diagram of the lock seat and lock hook at angle two of this application; Figure 12 This is a schematic diagram of the structure from angle one of Embodiment Six of this application; Figure 13 This is a schematic diagram of the structure from angle two of Embodiment Six of this application; Figure label: 1. Bedding; 2. Support frame; 3. Isolation enclosure; 4. Entrance curtain; 5. Air distribution chamber; 6. Air supply duct; 7. Air supply pipe; 8. Filter; 9. Elbow pipe; 10. Housing; 11. Upper air chamber; 12. High-efficiency filter; 13. Lower air chamber; 14. Fan mounting bracket; 15. Air inlet; 16. Housing base plate; 17. Pre-filter; 18. Snap-on; 19. Power supply; 20. Power supply housing; 21. Metal mesh; 22. Touch screen; 23. Bluetooth speaker output port; 24. Lighting trough; 25. Sensor light trough; 26. Sensor light; 27. Human body sensor; 28. Charging port; 29. Filter replacement side panel; 30. Lock base; 31. Lock hook; 32. Upper mounting strip; 33. Connector; 34. Ventilation window; 35. Rocker arm; 36. Air outlet duct; 37. 220V AC power interface; 38. Mounting plate; 39. Lower mounting strip. Detailed Implementation
[0040] The specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings. It should be noted that the specific embodiments described herein are for illustration and explanation only and are not intended to limit the present invention. Example
[0041] This embodiment provides a home sleep device, including a support 2 disposed around a bedding 1. The support 2 adopts existing technologies such as a telescopic and detachable mosquito net support, and the specific structure is not limited. Technicians can choose a suitable support according to specific circumstances. An isolation cover 3 covers the support 2. Preferably, to improve the stability of the isolation cover 3, the isolation cover 3 is further fixed to the support 2 by means of straps, etc. The straps are fixed to the isolation cover 3 by means of adhesive, etc. The isolation cover 3 is set according to the shape of the support 2, such as... Figure 4 The rectangular, etc., isolation enclosure 3 includes an entrance curtain 4, which allows users to easily enter the bedding 1 inside the isolation enclosure 3 for rest. The bedding includes, but is not limited to, beds, sofas, and kang (heated brick beds). The top of the isolation enclosure 3 is double-layered, with an air distribution chamber 5 between the two layers. The air distribution chamber 5 is connected to the air supply duct 6 located on the inner layer of the top of the isolation enclosure 3. At least one side of the isolation enclosure 3 is double-layered, with an air supply chamber between the two layers. The air supply chamber is connected to the air distribution chamber 5, and the air supply chamber is connected to a filter 8 through an air supply duct 7. The filtered air is then passed through the filter 8. The air is delivered into the isolation enclosure 3 through the air supply chamber, air distribution chamber 5, and air supply channel 6, achieving a high degree of cleanliness and freshness of the air in the sleeping area. To facilitate storage and maintain the comfort of the sleeping space, the isolation enclosure 3 is made of flexible material, such as TPU. The air supply duct 7 can also be made of TPU material. One end of the air supply duct 7 is connected to the filter 8 through an elbow pipe 9, and the air is sealed by bonding. The other end of the air supply duct 7 is connected to the air supply chamber. The air supply duct 7 is fixed to the isolation enclosure 3 by bonding, etc., to achieve communication with the air supply chamber.
[0042] In this embodiment, the air inside the isolation enclosure 3 flows out through the gap between the isolation enclosure 3 and the bedding 1. The purified air is then sent into the isolation enclosure 3 through the air supply chamber, the air distribution chamber 5, and the air supply channel 6, thereby achieving a high degree of cleanliness and freshness of the air in the sleeping area and greatly reducing the burden of air purification. This embodiment can be operated with the window open to maintain indoor air circulation and further reduce indoor carbon dioxide. Moreover, this application has a simple structure, can be disassembled and stored, and does not require professional personnel for installation and disassembly. It occupies little space and can be applied to every family in need, making it widely applicable. Furthermore, this application adopts laminar flow organization for the airflow inside the isolation enclosure 3, which can effectively avoid cross-infection of viruses after they are exhaled through airflow. Example
[0043] This embodiment specifically defines filter 8, specifically: The filter 8 includes a housing 10, with an air outlet at the top. A bent pipe 9 extends through the air outlet to the outside of the housing 10, communicating with its lower upper air chamber 11. A high-efficiency filter 12 is installed at the lower part of the upper air chamber 11, and a lower air chamber 13 is located below the high-efficiency filter 12. A fan (not shown in the figure) is installed in the lower air chamber 13. The fan is connected to a power supply 19 and a controller. The power supply 19 supplies power to the fan, and the controller controls the fan's start and stop. The fan is mounted in a fan mounting bracket 14, which is fixed to the lower air chamber 13 by screws, etc. The lower air chamber 13... The lower part of the casing has an air inlet 15, and the lower part of the lower air cavity 13 is a shell bottom plate 16. The shell bottom plate 16 is provided with a shell air inlet, and a primary filter 17 is installed at the shell air inlet. Preferably, a buckle 18 is provided on the shell bottom plate 16 at a position corresponding to the shell air inlet, and the primary filter 17 is inserted into the buckle 18 to facilitate the replacement of the primary filter 17. Under the action of the fan, the air is purified by passing through the primary filter 17 and the high-efficiency filter 12. The purified air is sent into the air supply cavity through the upper air cavity 11, the elbow pipe 9, and the air supply pipe 7, and then sent into the isolation cover 3 through the air distribution cavity 5 and the air supply slot 6.
[0044] A power supply 19 is installed inside the housing 10. The power supply 19 is powered through a 220V AC interface 37. The power supply 19 is installed inside the power supply housing 20, and the power supply housing 20 is fixed to the housing 10 by screws or the like. A detachable mounting plate 38 is provided on the housing 10 corresponding to the power supply 19. The mounting plate 38 is connected to the housing 10 by screws or the like. The power supply 19 is connected to a charging port 28 through a charging connection device. The charging port 28 extends to the outside of the housing 10, and the user's electronic devices can be charged through the charging port 28. The power supply 19 is connected to a fan.
[0045] In this embodiment, the filter 8, in conjunction with the isolation enclosure 3, is turned on 30 minutes before sleep and runs in high-speed mode (noise 60dB). After 30 minutes, the cleanliness level inside the sleep chamber can reach Class 100,000. When in sleep mode, the noise level is reduced to 35dB, and the cleanliness level inside the chamber can be maintained at Class 10,000. Since the air flow in the bedroom is not restricted, the air inside the chamber can always be kept fresh, and the carbon dioxide concentration will not increase.
[0046] Furthermore, to prevent accidental injury from hands entering the filter 8, a metal mesh 21 is fixed at the air inlet 15; the metal mesh 21 is connected to the bottom of the lower air chamber 13 by screws or the like. Example
[0047] The filter 8 in this embodiment has functions such as charging, speaker, lighting, and sensor light, and can replace ordinary bedside tables, further saving users' space.
[0048] A touch screen 22 is provided on the outside of the housing 10. The touch screen 22 is connected to the power supply 19. The touch screen 22 is connected to the controller (not shown in the figure) via wired or wireless means. The controller is installed inside the housing 10. The controller adopts existing technology such as PLC controller. The specific model is not limited as long as it can realize the corresponding functions. The touch screen 22 transmits the user's operation signals to the controller.
[0049] A Bluetooth speaker is installed inside the housing 10 and is connected to the controller. The outer side of the housing 10 is provided with a Bluetooth speaker output port 23 corresponding to the Bluetooth speaker. The Bluetooth speaker is connected to the power supply 19. The power supply 19 provides power to the Bluetooth speaker. The Bluetooth speaker can be turned on or off via the touch screen 22, and the signal is transmitted to the controller. The controller controls the Bluetooth speaker to turn on or off.
[0050] The housing 10 is provided with a lighting slot 24, and a lighting lamp is installed in the lighting slot 24. The lighting lamp is connected to the power supply 19 and the controller respectively. The lighting lamp can be turned on or off via the touch screen 22, and the signal is transmitted to the controller, which controls the lighting lamp to turn on or off.
[0051] The housing 10 is also provided with a sensor light slot 25, in which a sensor light 26 is installed. The sensor light 26 is connected to the power supply 19 and the controller. The housing 10 is also provided with a human body sensor 27, which is connected to the power supply 19 and the controller. When the human body sensor 27 receives a signal, it transmits the corresponding signal to the controller, and the controller controls the sensor light 26 to light up, making it convenient for the user to get up at night. Example
[0052] In this embodiment, the high-efficiency filter 12 is compressed to better filter the air and facilitate the replacement of the high-efficiency filter 12. Specifically: The housing 10 is provided with a filter replacement side plate 29 on at least one side. After the filter replacement side plate 29 is opened, the internal high-efficiency filter 12 can be directly seen, which facilitates the replacement operation.
[0053] Locking seats 30 are fixed on both sides of the upper air chamber 11, and locking hooks 31 that cooperate with the locking seats 30 are fixed on both sides of the lower air chamber 13; or locking hooks 31 are fixed on both sides of the upper air chamber 11, and locking seats 30 that cooperate with the locking hooks 31 are fixed on both sides of the lower air chamber 13; the cooperation of the locking seats 30 and the locking hooks 31 can press the high-efficiency filter 12, and the high-efficiency filter 12 can be replaced after being loosened.
[0054] The locking seat 30 or locking hook 31 installed on the upper air cavity 11 is fixed to the upper mounting strip 32, which is fixed to both sides of the upper air cavity 11. The upper mounting strip 32 is connected to the side wall of the housing 10 through the connector 33. The locking hook 31 or locking seat 30 installed on the lower air cavity 13 is fixed to the lower mounting strip 39, which is fixed to both sides of the lower air cavity 13. The fixing method adopts the existing technology of bonding, welding, screw connection, etc., and there is no specific limitation. The technicians can make the appropriate selection according to the specific situation.
[0055] In this embodiment, the high-efficiency filter 12 is compressed to ensure that there are no gaps between it and the upper air chamber 11 and the lower air chamber 13, so as to prevent dust, pollen, smoke and other impurities from directly entering the filtered air through the gaps. This can effectively block particulate matter in the air and ensure the filtration effect. Example
[0056] To improve user safety and prevent excessive carbon dioxide buildup inside the isolation enclosure 3 after a sudden power outage, a ventilation window 34 is provided on the isolation enclosure 3. The top of the ventilation window 34 is connected to the isolation enclosure 3 by an electromagnet, which is connected to the power supply 19 and the controller. When the filter is de-energized or malfunctions, the electromagnet is de-energized, and the ventilation window 34 opens under the action of gravity, preventing excessive carbon dioxide buildup inside the isolation enclosure 3 and ensuring safety.
[0057] This embodiment features an innovative design with a magnetically attached ventilation window 34 for emergency ventilation in case of system malfunction or equipment power failure. Example
[0058] The difference between this embodiment and embodiment one is that this embodiment uses a combination of a rocker arm and an air outlet duct to replace the isolation cover. Specifically: This embodiment provides a home sleep device, including a bracket 2 mounted on the upper part of a bedding unit 1. In this embodiment, the bracket 2 can be a fixed rod or similar structure. The bracket 2 can be connected to the bedding unit 1 or fixed to a wall, depending on the user's specific needs. A rocker arm 35 is fixedly mounted on the bracket 2. The rocker arm 35 is a conventional rocker arm, and this application does not make any modifications to it. Technicians can choose the appropriate method based on specific needs. The rocker arm 35 is connected to an air outlet duct 36. The rocker arm 35 is connected to the bracket 2 and the air outlet duct 36 by welding, bonding, or other methods. The rocker arm 35 is powered indoors and has corresponding buttons or remote controls, all of which are existing technologies. This application does not make any modifications to it; the goal is simply to achieve the movement of the rocker arm 35. The air outlet duct 36 is connected to an air supply duct 7, and the air supply duct 7 is connected to a filter 8. The structure of the filter 8 is the same as in the previous embodiment, and will not be described in detail here.
[0059] When in use, adjust the air outlet duct 36 to the position of the user's head. The purified air is then sprayed out through the air outlet duct 36, ensuring that the user inhales relatively fresh air.
[0060] In summary, due to the adoption of the above technical solution, this application has the following advantages: 1. The isolation enclosure effectively isolates the sleeping space, greatly reducing the burden on air purification, thus achieving extremely high purification effect under low filtration air volume conditions; or the air supply duct is placed at the user's head, so the user can directly inhale the purified air; 2. It requires minimal home renovation and can be easily implemented by ordinary families; it is lightweight, foldable for storage, and requires no professional installation. 3. The filter can replace a regular bedside table and also functions as a mobile phone charger, Bluetooth speaker, reading light, and sensor light; 4. Air is discharged from the top, and the air outlet area is dozens of times larger than that of ordinary air purifiers, resulting in better purification effect; 5. The isolation enclosure is equipped with magnetic ventilation windows for emergency ventilation in case of system malfunction or power failure, preventing carbon dioxide poisoning and ensuring user safety.
[0061] The structures and connections not described in detail in this invention are all prior art, and will not be described in detail here. The connections between the above-mentioned components are preferably fixed by methods well known in the prior art, such as bonding, welding, or integral molding.
[0062] The preferred embodiments of this application have been described in detail above with reference to the accompanying drawings. However, this application is not limited to the specific details of the above embodiments. Within the scope of the technical concept of this application, various simple modifications can be made to the technical solution of this application, and these simple modifications all fall within the protection scope of this application.
[0063] It should also be noted that the various specific technical features described in the above specific embodiments can be combined in any suitable way without contradiction. In order to avoid unnecessary repetition, the various possible combinations in this application will not be described separately.
[0064] Furthermore, various different implementations of this application can be combined in any way, as long as they do not violate the spirit of this application, and such combinations should also be regarded as the content disclosed in this application.
Claims
1. A home sleep device, characterized in that, It includes a support (2) set around the bedding (1), and an isolation cover (3) covering the support (2). The top of the isolation cover (3) is double-layered, and the space between the two layers is a ventilation cavity (5). The ventilation cavity (5) is connected to the air supply channel (6) set in the inner layer of the top of the isolation cover (3). At least one side of the isolation cover (3) is double-layered, and the air supply cavity is between the two layers. The air supply cavity is connected to the ventilation cavity (5). The air supply cavity is connected to the filter (8) through the air supply pipe (7).
2. A home sleep device according to claim 1, characterized in that, The isolation cover (3) is a flexible isolation cover.
3. A home sleep device according to claim 1, characterized in that, The isolation cover (3) is provided with a ventilation window (34). The top of the ventilation window (34) is connected to the isolation cover (3) by an electromagnet. The electromagnet is connected to the power supply (19) and the controller respectively.
4. A home sleep device according to claim 1, characterized in that, The filter (8) includes a housing (10), with an air outlet at the top of the housing (10). A bend pipe (9) inside the housing (10) extends to the outside of the housing (10) through the air outlet. The bend pipe (9) is connected to the upper air chamber (11) below it. A high-efficiency filter (12) is provided at the lower part of the upper air chamber (11). The lower part of the high-efficiency filter (12) is the lower air chamber (13). A fan is provided in the lower air chamber (13). The fan is connected to a power supply (19) and a controller. An air inlet (15) is opened at the lower part of the lower air chamber (13). The lower part of the lower air chamber (13) is the housing bottom plate (16). A housing air inlet is provided on the housing bottom plate (16). A primary filter (17) is installed at the housing air inlet.
5. A home sleep device according to claim 4, characterized in that, A touch screen (22) is provided on the outside of the housing (10). The touch screen (22) is connected to the power supply (19) and the controller respectively. The controller is connected to at least one of the Bluetooth speaker, lighting lamp and sensor lamp (26).
6. A home sleep device according to claim 4, characterized in that, Lock seats (30) are fixed on both sides of the upper air chamber (11), and lock hooks (31) that cooperate with the lock seats (30) are fixed on both sides of the lower air chamber (13); or lock hooks (31) are fixed on both sides of the upper air chamber (11), and lock seats (30) that cooperate with the lock hooks (31) are fixed on both sides of the lower air chamber (13).
7. A home sleep device, characterized in that, It includes a bracket (2) set on the top of the bedding (1), a rocker arm (35) fixedly set on the bracket (2), the rocker arm (35) is connected to the air outlet pipe (36), the air outlet pipe (36) is connected to the air supply pipe (7), and the air supply pipe (7) is connected to the filter (8).
8. A home sleep device according to claim 7, characterized in that, The filter (8) includes a housing (10), with an air outlet at the top of the housing (10). A bend pipe (9) inside the housing (10) extends to the outside of the housing (10) through the air outlet. The bend pipe (9) is connected to the upper air chamber (11) below it. A high-efficiency filter (12) is provided at the lower part of the upper air chamber (11). The lower part of the high-efficiency filter (12) is the lower air chamber (13). A fan is provided in the lower air chamber (13). The fan is connected to a power supply (19) and a controller. An air inlet (15) is opened at the lower part of the lower air chamber (13). The lower part of the lower air chamber (13) is the housing bottom plate (16). A housing air inlet is provided on the housing bottom plate (16). A primary filter (17) is installed at the housing air inlet.
9. A home sleep device according to claim 8, characterized in that, A touch screen (22) is provided on the outside of the housing (10). The touch screen (22) is connected to the power supply (19) and the controller respectively. The controller is connected to at least one of the Bluetooth speaker, lighting lamp and sensor lamp (26).
10. A home sleep device according to claim 8, characterized in that, Lock seats (30) are fixed on both sides of the upper air chamber (11), and lock hooks (31) that cooperate with the lock seats (30) are fixed on both sides of the lower air chamber (13); or lock hooks (31) are fixed on both sides of the upper air chamber (11), and lock seats (30) that cooperate with the lock hooks (31) are fixed on both sides of the lower air chamber (13).