A domestic type intelligent health monitoring sauna room

Through modular design and intelligent control, home saunas that integrate multiple health monitoring and environmental regulation functions solve the problems of traditional saunas having limited functionality and complex installation, and achieve personalized family health management and a comfortable experience.

CN121162085BActive Publication Date: 2026-02-03FUAN TAIJIXIANG ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202511706788.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-11-20
Publication Date
2026-02-03
Estimated Expiration
2045-11-20

AI Technical Summary

Technical Problem

Traditional home saunas have limited functionality, lack health monitoring capabilities, are complex to install, and have low levels of intelligence, making them difficult to meet the needs of family health management.

Method used

A modular intelligent health monitoring sauna room was designed, which uses heated mica sheets for surround heating and integrates infrared laser probes, electronic scales, negative ion oxygen bar mechanisms, etc. It realizes intelligent control and data recording through a touch screen control box, and provides a variety of health monitoring and environmental adjustment functions.

Benefits of technology

It achieves comprehensive home health management by integrating deep heat therapy, air purification, health monitoring, and a comfortable experience. It features convenient installation and personalized physiotherapy plans, enhancing user experience and health management value.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application provides a household intelligent health monitoring sauna room, and belongs to the field of physiotherapy devices, which solves the problems of single function and low intelligent degree of the existing sauna room. The household intelligent health monitoring sauna room comprises a sauna room main body, a touch screen control box is arranged on the front side of the sauna room main body, an internal display screen is arranged on the inside of the front side of the sauna room main body, a plurality of heating mica sheets are arranged on the left side, the right side and the back side of the inside of the sauna room main body, a thermometer, an infrared laser probe and a sound control microphone are arranged on the left side and the right side of the inside of the sauna room main body, a plurality of beauty lamps and a plurality of cameras are arranged on the top of the inside of the sauna room main body, an air outlet mechanism is arranged on the top of the inside of the sauna room main body, a hot air mechanism and a negative ion oxygen bar mechanism are arranged in a seat, an air curtain machine and a plurality of illuminating lamps are arranged on the top of the outside of the sauna room main body, and a position adjusting massage mechanism is arranged on the back side of the inside of the sauna room main body. The application forms a household health management sauna room which integrates deep heat therapy and massage physiotherapy, air purification, health monitoring, data tracking and comfortable experience.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of physiotherapy devices, and relates to a physiotherapy sauna room, in particular to a household intelligent health monitoring sauna room. BACKGROUND

[0002] The sauna room is also called a steam room, and has multiple physiotherapy functions such as weight loss, detoxification and moisture removal. However, the traditional household sauna room has the following limitations:

[0003] Single function, difficult to meet the health management needs: most of the existing products only have basic heating and perspiration functions, and lack effective health monitoring means. Users cannot conveniently obtain key physiological indicators such as heart rate and body weight while enjoying the sauna, and the health management value is limited.

[0004] Fixed structure, inconvenient to install and enter the house: the traditional sauna room is mostly of an integral structure or is fixedly installed on site, and is bulky, difficult to pass through a conventional door, leading to difficulty in entering the house, a complex installation process and high cost, which limits its popularization in ordinary families.

[0005] Poor experience, low degree of intelligence: the environmental control often relies on manual operation, and is not accurate and comfortable. At the same time, the intelligent interaction and data recording function are lacking, and it is impossible to form a personalized health physiotherapy scheme, and the user experience is relatively primitive and single.

[0006] Therefore, there is an urgent need for a household intelligent health monitoring sauna room that integrates health monitoring, modular structure, intelligent environmental control, physiotherapy and massage into a comprehensive household sauna solution. SUMMARY

[0007] The application aims to solve the above problems of the existing technology, and provides a household intelligent health monitoring sauna room. The application aims to solve the technical problem of how to realize the cooperative work of the heat therapy, ventilation, light therapy and monitoring system to construct a comprehensive and personalized family health management sauna scheme that integrates deep heat therapy and massage physiotherapy, air purification, health monitoring, data tracking and comfortable experience.

[0008] The application can be realized by the following technical scheme:

[0009] The utility model provides a kind of domestic intelligent health monitoring sauna room, including sauna room main body, the front side of sauna room main body is hinged with sealed door, the front side outside sauna room main body is equipped with touch screen control box, the front side inside sauna room main body is equipped with built-in display screen, built-in display screen and the position of touch screen control box are opposite, the inside left and right sides and rear side of sauna room main body are equipped with a plurality of heating mica sheet, the inside left and right sides of sauna room main body are equipped with thermometer, infrared laser probe and sound control microphone, the inside top of sauna room main body is equipped with a plurality of beauty lamp and a plurality of camera, the top inside sauna room main body is equipped with air outlet mechanism, the inside bottom of sauna room main body is equipped with seat, the inside of seat is equipped with hot air mechanism and negative ion oxygen bar mechanism, infrared laser probe is opposite above seat, the bottom of sauna room main body is slidably equipped with pullable body weight electronic scale, the top outside sauna room main body is equipped with air curtain machine and a plurality of illuminating lamp, air curtain machine is located directly above sealed door, the air inlet end of air curtain machine is connected with the inside of sauna room main body;The main control board of touch screen control box is integrated with WiFi module, and the WiFi module is wirelessly connected with external mobile terminal device;The main control board of touch screen control box is electrically connected between body weight electronic scale, air curtain machine, illuminating lamp, beauty lamp, camera, heating mica sheet, thermometer, infrared laser probe, sound control microphone and built-in display screen.

[0010] The working principle of the present application is as follows:

[0011] Environment creation and heat therapy core: through the touch screen control box to receive user instructions, start, the heating mica sheet distributed in the left, right and rear side of the sauna room starts to work, generates uniform, stable far-infrared radiation heat, and improves the indoor temperature; the thermometers on both sides monitor the environmental temperature in real time and feed back the data to the control system, forming a closed-loop temperature control to ensure accurate and safe temperature;

[0012] Air quality management: the hot air mechanism is located below the seat, which can blow warm air to promote air circulation, avoid cold feet and provide another form of hot air sauna. The negative ion oxygen bar mechanism is also located in the seat, which releases high-concentration negative oxygen ions during the sauna process, effectively purifying dust and odors in the air, making people feel like they are in a forest, breathing more comfortably and relieving the stuffy feeling during the sauna process.

[0013] Non-invasive health data monitoring: before or after entering the sauna room, the user can pull out the body weight electronic scale at the bottom to measure the body weight data; this data can be directly displayed on the screen and recorded by the system for long-term health trend analysis.

[0014] Vital sign monitoring: the infrared laser probe is opposite above the seat, which can monitor heart rate, respiratory rate, body temperature and other key vital signs in a non-contact manner when the user is sitting; the camera combined with AI visual analysis algorithm can assist in analyzing user posture and complexion.

[0015] In addition to receiving voice commands, voice-activated microphones can provide additional health insights in the future by analyzing users' vocal characteristics such as coughing and breathing sounds.

[0016] User experience and comfort assurance: Visuals and atmosphere: The beauty lights on the ceiling provide different spectrums of illumination, achieving beauty and skin care effects while enjoying the sauna; the outdoor lighting and the built-in display screen inside the room provide basic lighting and information display;

[0017] The air curtain machine located above the sealed door starts when the user opens the door to enter or exit, drawing out the air inside the sauna and forming an air wall to effectively prevent a large amount of hot air from leaking out of the room and cold air from entering from outside, thus improving energy efficiency and comfort.

[0018] The top air vent is used to ventilate after the sauna or when needed, keeping the air fresh.

[0019] Intelligent control hub: All sensor data is collected by the main controller; after processing the data, the controller drives the corresponding actuators to work and feeds back key information to the user through the built-in display screen or touch screen control box; and the user can remotely control and set the sauna room by wirelessly connecting to the WiFi module through an external mobile terminal device.

[0020] The sauna room consists of a base assembly and a top assembly directly above the base assembly. Between the base assembly and the top assembly are a front assembly panel, a rear assembly panel, and symmetrically arranged side assembly panels. Several locking buckles are provided between the side assembly panels and the front and rear assembly panels, between the side assembly panels and the base assembly and the top assembly panel, and between the rear assembly panel and the top assembly panel. Several corresponding heating mica sheets are fixedly installed on the inner sides of the side assembly panels and the rear assembly panel. A thermometer, an infrared laser probe, and a voice-activated microphone are fixedly installed on the inner side of the side assembly panels. Several beauty lights and several cameras are fixedly installed below the top assembly panel. A seat is positioned above the base assembly and rests against the inner side of the rear assembly panel.

[0021] Using the above structure, the sauna room's main body consists of six core modules: a modular base, a modular top panel, a modular front panel, a modular rear panel, and two modular side panels. These modules are securely and tightly connected via interlocking buckles, requiring no specialized tools or complex processes. Users can easily assemble the entire structure, much like assembling high-end furniture, greatly enhancing the product's portability and ease of installation. All functional components are integrated into their corresponding modules, achieving a unity of structure and function.

[0022] Thermotherapy system integration: The heating core—the heating mica sheet—is pre-fixed to the inside of the assembled side and rear panels; this layout ensures that heat is evenly radiated to the user from multiple directions, achieving surround heating;

[0023] Sensing system integration: Key monitoring sensors are embedded in the assembled side panels, the wiring can be pre-arranged, the appearance is neat and the sensing angle is optimized, facing the seating area;

[0024] Top system integration: As a functionally dense area, the modular top panel integrates beauty lights and cameras, realizing the integration of top lighting, beauty care and visual monitoring;

[0025] The assembly base serves as the load-bearing foundation, on which the seat is fixed; the seat not only provides comfort, but also integrates a hot air mechanism and a negative ion oxygen bar mechanism, realizing the functions of airflow circulation underfoot and air purification;

[0026] Intelligent workflow:

[0027] After the user sets the program via the touchscreen control box on the front panel or the built-in display screen inside the room, the system starts.

[0028] Environmental conditions: Heating mica sheets and hot air mechanism work together to rapidly raise the temperature; thermometers provide real-time data feedback to achieve precise temperature control;

[0029] Health monitoring: After the user is seated, the infrared laser probe on the side panel and the camera on the top panel automatically and non-intrusively monitor vital signs; the electronic scale can be pulled out and used at any time;

[0030] Therapeutic and Comfort Guaranteed: The negative ion oxygen bar continuously purifies the air, the beauty lamp provides light therapy, and the air curtain blocks airflow when the door is open.

[0031] The upper part of the assembly base is provided with a square-shaped annular slot 1. Each of the front, back, left and right parts of the annular slot 1 is provided with a plate slot 1. The plate slot 1 is connected to the annular slot 1. The lower side of the assembly base is provided with a storage cavity. The electronic scale is slidably stored inside the storage cavity.

[0032] With the above structure, the annular slot 1 and the insert slot 1 at the top of the assembly base provide a precise installation positioning benchmark for all the uprights; the components are firmly connected by locking buckles, ensuring the stability of the structure and the airtightness of the cabin, and enabling users to quickly install and disassemble it themselves; the storage cavity on the side of the lower end of the assembly base cleverly stores the electronic scale, keeping the appearance neat and easy to pull out when in use, reflecting the humanized design considerations.

[0033] The top of the assembled roof panel is provided with a square-shaped annular slot 2 around its upper perimeter. Each of the front, back, left, and right sides of the annular slot 2 is provided with a plate slot 2 at its center, and the plate slot 2 is connected to the annular slot 2. The front side of the assembled roof panel is provided with a roof panel eaves. An air curtain machine and several lighting lamps are fixedly installed below the roof panel eaves. The interior of the assembled roof panel is provided with a ventilation chamber, which is connected to the main body of the sauna room.

[0034] Using the above structure, the second annular slot and the second insert slot at the lower end of the assembled top panel fasten all the upright panels from above, forming a complete frame; the components are firmly connected by locking buckles, ensuring the stability, sealing, and ease of installation by the user; the top panel eaves integrate the air curtain machine and lighting in the optimal position directly above the sealed door, which does not occupy internal space and achieves the optimal layout of functions; the ventilation chamber is connected to the main body of the sauna room, forming an effective air circulation or exhaust channel, which works with the air intake mechanism to keep the air fresh.

[0035] The front panel of the assembly is provided with sealing protrusions at both the top and bottom, and a plate is provided in the middle of each sealing protrusion. The side of the front panel of the assembly is provided with mounting holes. The touch screen control box and the built-in display screen are installed inside the mounting holes. A doorway is provided in the middle of the front panel of the assembly, and a sealing ring is provided on the inside of the doorway.

[0036] With the above structure, the sealing protrusions three and the insert plate three at the top and bottom ends correspond precisely to the insert plate slot one of the assembly base and the insert plate slot two of the assembly top plate; this design ensures the precise positioning and initial fixation of the assembly front plate in the overall frame;

[0037] The insert plate three is locked to the adjacent assembled side plate, base, and top plate by locking the latches; this process will squeeze the sealing protrusion three, causing it to deform, thereby forming a physical sealing barrier at the joint of the plates, effectively preventing heat from leaking from the front joint.

[0038] The touchscreen control box and built-in display screen inside the mounting hole serve as the central channel for system information input and output, enabling users to interact with all sensors and actuators inside the sauna.

[0039] The doorway is used to install a sealing door. The sealing ring on its inner side fits tightly with the sealing door, forming a highly elastic annular seal when the door is closed. This seal is a key structure for maintaining the high-temperature environment inside the sauna and preventing energy loss.

[0040] The sealed door includes a sealed door body, which is hinged to the door opening. When the sealed door body is locked, it abuts against the sealing ring. The sealed door body is provided with a tempered glass window and a door lock handle, with the door lock handle located on the side of the tempered glass window.

[0041] With the above structure, the main body of the sealed door is installed at the door opening via hinges, allowing the main body of the sealed door to rotate smoothly around its axis, thus enabling the sauna room to open and close.

[0042] When the main body of the sealing door is closed, the inner surface of the main body of the sealing door tightly abuts against the sealing ring; by operating the door lock handle to lock, the pressure generated by the locking mechanism causes the soft and elastic sealing ring to undergo controllable deformation, thereby forming a uniform and reliable pressure sealing band around the entire circumference of the door opening; it is the core sealing mechanism to prevent internal heat loss and maintain the high-temperature and efficient operation of the sauna room.

[0043] The tempered glass window embedded in the main body of the sealed door enables visual connection. It uses tempered glass that can withstand severe temperature differences and pressure, allowing users to observe the external environment without opening the door while enjoying the sauna. This satisfies their psychological sense of security and avoids heat loss caused by frequent door opening.

[0044] The door lock handle controls the opening and closing of the sealed door body.

[0045] The assembly side plate is provided with a sealing protrusion at both the top and bottom ends, and an insert plate is provided at the middle of the sealing protrusion.

[0046] With the above structure, the first insert plate serves as a rigid positioning component, and its dimensions are precisely matched with the first insert plate slot on the base and the second insert plate slot on the top plate. During installation, the first insert plate is first inserted into the corresponding slot to provide initial lateral positioning and vertical guidance for the entire assembled side panel, ensuring quick alignment between the panels, which is the basis for achieving fast and accurate assembly.

[0047] The sealing protrusion is typically made of elastic sealing material and surrounds the base of the insert plate. When the latch is engaged and tightened, forcing the insert plate into full position, it simultaneously compresses the sealing protrusions on both sides, causing them to deform and tightly fill all the assembly gaps between the insert plate and the slot.

[0048] The assembled rear plate has sealing protrusions at both the top and bottom, and insert plates at the middle of the sealing protrusions. The assembled rear plate has filter air inlets, which are directly opposite the negative ion oxygen bar mechanism.

[0049] Using the above structure, the insertion plates at its upper and lower ends are inserted into the slots of the base and top plate to achieve positioning and locking. The sealing protrusions are deformed under pressure during locking to achieve sealing with adjacent plates. The principle is the same as that of assembling side plates and assembling front plates.

[0050] The air inlet of the filter screen on the panel is directly opposite the negative ion oxygen bar mechanism inside the seat. This hole serves as a directional inlet for fresh air from outside, and the internal filter can block dust and other pollutants from entering, ensuring that the air supplied to the sauna is clean.

[0051] The assembly base, assembly top plate, assembly front plate, assembly side plate, and sealing door are all made of Canadian hemlock wood;

[0052] The sealing protrusions 1, 2, and 3 located below are respectively inserted into the interior of the annular slot 1, and the insert plates 1, 2, and 3 located below are respectively inserted into the interior of the insert plate slot 1 at the corresponding positions.

[0053] The sealing protrusions 1, 2, and 3 located at the top are respectively inserted into the interior of the annular slot 2, and the insert plates 1, 2, and 3 located at the top are respectively inserted into the interior of the insert plate slot 2 at the corresponding positions.

[0054] With the above structure, Canadian hemlock wood is stable, heat-resistant, and moisture-resistant, ensuring the durability, heat insulation, and natural beauty of the structure from the material level.

[0055] Bottom connection: All the bottom plates of the uprights are inserted into the plate slot 1 of the assembly base to achieve positioning and rigid connection; at the same time, the sealing protrusions 1, 2, and 3 at their bottom ends are embedded into the annular slot 1 of the base to achieve continuous circumferential sealing at the bottom.

[0056] Top connection: The insert plates and sealing protrusions at the top of all uprights are connected to the insert plate slot two and the ring slot two of the assembled top plate in the same way;

[0057] Systematic sealing and stability: The principle of "insertion plate positioning and locking + sealing protrusion ring compression sealing" is uniformly applied at all boundaries, forming a complete, continuous, and highly airtight frame system, which is the basis for the overall structural stability and efficient heat preservation of the sauna room.

[0058] The air outlet mechanism includes a filter cartridge and an exhaust fan. Both the filter cartridge and the exhaust fan are installed inside the ventilation cavity. The air outlet of the exhaust fan is connected to the filter cartridge, and the filter cartridge is connected to the external space.

[0059] Using the above structure, forced ventilation is achieved: when the exhaust fan is activated, negative pressure is generated inside the sauna room, actively drawing out the accumulated hot, humid, and polluted air.

[0060] Air purification: The extracted air must pass through a filter cartridge, where the filter material can effectively absorb odors, grease, or dust from the air;

[0061] Directional exhaust: The purified air is systematically exhausted to the outside space through the outlet of the filter cartridge, thereby completing the renewal of indoor air and maintaining the air pressure balance inside the cabin.

[0062] Simply replace the filter media inside the filter cartridge periodically.

[0063] The hot air mechanism includes an air outlet baffle, which is fixed to the front end of the seat. An oxygen replenishment space is formed between the air outlet baffle, the seat, and the assembled rear panel. A heater and a blower are fixed on the air outlet baffle. The air outlet of the heater is directly opposite the ventilation hole on the air outlet baffle. The air outlet of the blower is connected to the air inlet of the heater. The air inlet of the blower is located inside the oxygen replenishment space.

[0064] With the above structure, the internal air circulation is as follows: the air duct draws air from the oxygen supply space to form an airflow; auxiliary heating: this airflow is sent to the heater for secondary heating; directional air delivery: the heated warm air is blown out from the air outlet baffle and directed directly to the user's feet and lower body; this not only provides comfortable foot warmth, but also promotes uniform airflow and temperature balance in the sauna room.

[0065] The negative ion oxygen bar mechanism includes a negative ion generator and a blower. Both the negative ion generator and the blower are fixed inside the seat. The air inlet of the blower is connected to the air inlet of the filter screen, and the air outlet of the blower is connected to the air inlet of the negative ion generator. The air outlet of the negative ion generator is located inside the oxygen replenishment space.

[0066] With the above structure, fresh air is introduced: the exhaust fan filters fresh external air through the air inlet holes of the rear panel and actively draws it into the system.

[0067] Air purification and activation: The inhaled air flows through the negative ion generator, and the device releases a large number of negative oxygen ions, which attach to pollutants such as dust and smoke in the air, causing them to settle, thereby purifying the air; at the same time, the negative ions themselves can create a fresh air feeling like a forest.

[0068] Delivering purified air: The purified and activated oxygen-rich fresh air is released from the air outlet of the negative ion generator into the oxygen replenishment space, continuously providing a source of fresh air for the area, and then it can be diffused throughout the sauna by the hot air mechanism.

[0069] The adjustment massage mechanism includes a lifting electric lead screw, which is fixed to the inner side of the assembled rear plate. A track adjustment assembly is provided on the movable seat of the lifting electric lead screw. A massage component is provided on the front side of the track adjustment assembly. The track adjustment assembly includes an adjustment plate and an arc-shaped adjustment track. The adjustment track is fixed on the movable seat of the lifting electric lead screw. Adjustment racks are fixed on both the left and right sides of the adjustment track. Limiting wheels are rotatably provided on both the left and right sides of the adjustment plate. The limiting wheels are engaged inside the adjustment track. Adjustment teeth are fixed on the rotating shaft of the upper limiting wheel. The adjustment gear meshes with the adjustment rack on the same side. An adjustment motor is fixed to the rear side of the adjustment plate. The adjustment motor is connected to the rotating shaft of the upper limit wheel. The massage assembly includes a mounting cover, which is fixed to the front side of the adjustment plate. A massage motor is fixed inside the mounting cover. Several adjusting ball hinges are hinged to the upper part of the mounting cover. The inner end of the rotating shaft of the adjusting ball hinge is connected to the output shaft of the massage motor through an eccentric wheel. A massage claw is fixed to the outer end of the rotating shaft of the adjusting ball hinge. Several claw tips of the massage claw are provided with massage balls integrally formed therewith.

[0070] Using the above structure, the moving seat of the lifting electric lead screw can drive the entire upper track adjustment assembly and massage assembly to move vertically up and down along the lead screw. This is used to adjust the initial vertical height of the massage according to the user's height and sitting posture, positioning it to the approximate area of ​​the back. The adjustment plate is engaged inside the adjustment track by limit wheels on both sides, ensuring that the entire assembly can slide stably along a predetermined arc trajectory. Drive and transmission: When the adjustment motor starts, it drives the adjustment gear to rotate through the rotating shaft. Since the adjustment gear meshes with the adjustment rack fixed on the track, the rotation of the gear will be converted into the movement of the adjustment plate along the adjustment track, allowing the massage head to cover the user from the spine to the back and head. When the massage motor starts, its output shaft is driven by an eccentric wheel, converting the motor's rotational motion into reciprocating cam motion. The reciprocating motion is transmitted to the massage claws through the adjusting ball hinge. The massage ball at the end of the massage claw serves as the final contact point with the user's body, providing a deep and soothing massage without sharp sensations.

[0071] When in use, the user sits in the chair with their back facing the adjustment massage mechanism. The infrared laser probe detects the user's body shape, especially the height of their head (the user can also move to cooperate). The adjustment massage mechanism automatically adjusts its position to provide therapeutic massage to the user's back, neck, and head.

[0072] Compared with existing technologies, this home-use intelligent health monitoring sauna has the following advantages: This invention is a highly collaborative intelligent closed loop: using a modular structure as a precision carrier and a central controller as the intelligent brain, it seamlessly senses the user's and environment's status through a distributed sensor network and precisely drives the coordinated operation of the heat therapy, ventilation, phototherapy, and monitoring systems. This invention is a comprehensive and personalized home health management solution integrating "deep heat therapy, air purification, health monitoring, data tracking, and a comfortable experience."

[0073] The sauna room is assembled from modular panels, which are quickly sealed and formed using slots and latches to create an insulated space. Once activated, heated mica sheets around the perimeter generate far-infrared rays for therapeutic heat. A heating system under the seat blows warm air to promote circulation, and a thermometer monitors the temperature in real time to ensure a constant temperature.

[0074] Air enters through the rear panel filter, is purified by the negative ion generator, and is then sent into the cabin. The top fan exhausts the exhaust gas. An infrared sensor monitors the user's heart rate and breathing without being detected, and a pull-out scale records weight, enabling the collection of health data.

[0075] The touchscreen control box is the central hub, processing all sensor data and directing the operation of each component. Users can view real-time data, set programs, and track long-term health trends via an in-cabin screen or a WiFi-connected mobile phone.

[0076] The overhead beauty lights provide light therapy, while the air curtain above the door creates a wall of air to prevent heat loss when the door is opened. This design ensures a comfortable and private experience while achieving high energy efficiency, creating an integrated healthy home space.

[0077] The adjustable massage mechanism automatically adjusts its position to provide therapeutic massage to the user's back, neck, and head. Attached Figure Description

[0078] Figure 1 This is a schematic diagram of the structure of Embodiment 1 of the present invention when it is completely closed.

[0079] Figure 2 This is a schematic diagram of the structure of Embodiment 1 of the present invention when the sealed door is opened.

[0080] Figure 3 This is a schematic diagram of the structure of Embodiment 1 of the present invention when partially cut open.

[0081] Figure 4 This is a three-dimensional structural diagram of Embodiment 1 of the present invention in the decomposed state.

[0082] Figure 5 This is a three-dimensional structural diagram of Embodiment 1 of the present invention in a decomposed state from another angle.

[0083] Figure 6This is a schematic diagram of the negative ion oxygen bar mechanism, seat, and hot air mechanism in Embodiment 1 of the present invention.

[0084] Figure 7 This is a system control block diagram of Embodiment 1 of the present invention.

[0085] Figure 8 This is a schematic diagram of the installation state in Embodiment 2 of the present invention.

[0086] Figure 9 This is a schematic diagram of the position adjustment massage mechanism in Embodiment 2 of the present invention.

[0087] Figure 10 This is an exploded view of the position adjustment massage mechanism in Embodiment 2 of the present invention.

[0088] In the diagram: 1. Sauna main body; 2. Sealed door; 3. Touch screen control box; 4. Electronic scale; 5. Hot air mechanism; 6. Seat; 7. Heating mica sheet; 8. Locking buckle; 9. Thermometer; 10. Beauty lamp; 11. Camera; 12. Infrared laser probe; 13. Negative ion oxygen bar mechanism; 14. Air curtain machine; 15. Assembled base; 16. Storage cavity; 17. Circular slot one; 18. Insert plate slot one; 19. Sealing protrusion one; 20. Insert plate one; 21. Assembled side panel; 22. Sealing protrusion two; 23. Filter air inlet; 24. Assembled rear panel; 25. Assembled top panel; 26. Top panel eaves; 27. Filter cartridge; 28. Exhaust fan; 29. ​​Insert plate two; 30. Voice-activated microphone. 31. Insert plate three; 32. Door opening; 33. Sealing ring; 34. Assembled front panel; 35. Door lock handle; 36. Sealed door body; 37. Tempered glass window; 38. Sealing protrusion three; 39. Built-in display screen; 40. Ventilation chamber installation; 41. Air outlet baffle; 42. Air guide fan; 43. Heater; 44. Negative ion generator; 45. Exhaust fan; 46. Adjustable massage mechanism; 47. Massage component; 48. Track adjustment component; 49. Lifting electric screw component; 50. Adjustable track; 51. Adjustable plate; 52. Mounting cover; 53. Adjustable ball hinge; 54. Massage claw; 55. Massage ball; 56. Limit wheel; 57. Adjustable gear; 58. Adjustable motor; 59. Adjustable rack. Detailed Implementation

[0089] The following are specific embodiments of the present invention, which are described in conjunction with the accompanying drawings. However, the present invention is not limited to these embodiments.

[0090] Example 1

[0091] like Figures 1-7As shown, this embodiment provides a home-use intelligent health monitoring sauna, including a sauna body 1. A sealed door 2 is hinged to the front of the sauna body 1. A touch screen control box 3 is located on the exterior of the front of the sauna body 1. An internal display screen 39 is located inside the front of the sauna body 1, with the internal display screen 39 facing the touch screen control box 3. Several heating mica sheets 7 are provided on the left, right, and rear sides of the interior of the sauna body 1. A thermometer 9, an infrared laser probe 12, and a voice-activated microphone 30 are provided on the left and right sides of the interior of the sauna body 1. Several beauty lights 10 and several cameras 11 are provided on the inner top of the sauna body 1. An air outlet mechanism is provided inside the top of the sauna body 1. A seat 6 is provided at the inner bottom of the sauna body 1. The interior of the seat 6 is equipped with... The hot air mechanism 5 and the negative ion oxygen bar mechanism 13 are located above the seat 6. The bottom of the sauna body 1 is equipped with a pull-out electronic scale 4. The top of the sauna body 1 is equipped with an air curtain machine 14 and several lights. The air curtain machine 14 is located directly above the sealed door 2. The air inlet of the air curtain machine 14 is connected to the interior of the sauna body 1. The main control board of the touch screen control box 3 integrates a WiFi module. The WiFi module is wirelessly connected to the external mobile terminal device. The main control board of the touch screen control box 3 is electrically connected to the electronic scale 4, the air curtain machine 14, the lights, the beauty light 10, the camera 11, the heating mica sheet 7, the thermometer 9, the infrared laser probe 12, the voice-activated microphone 30, and the built-in display screen 39.

[0092] 1. Environment Creation and Hyperthermia Core: The touch screen control box 3 receives user commands (such as setting temperature and mode). After activation, the heating mica sheets 7 distributed on the left, right, and rear sides of the sauna room start working, generating uniform and stable far-infrared radiant heat to raise the indoor temperature. The thermometers 9 on both sides monitor the ambient temperature in real time and feed the data back to the control system, forming a closed-loop temperature control to ensure accurate and safe temperature control.

[0093] Air quality management: The hot air mechanism 5 is located under the seat 6. It can blow out warm air, promote air circulation, prevent users' feet from getting cold, and provide another form of hot air sauna. The negative ion oxygen bar mechanism 13 is also located inside the seat 6. During the sauna, it releases a high concentration of negative oxygen ions, effectively purifying dust and odors in the air, making people feel as if they are in a forest, breathing more comfortably, and relieving the stuffiness during the sauna.

[0094] 2. Seamless Health Data Monitoring: Before or after entering the sauna, users can pull out the electronic scale 4 at the bottom to measure their weight. This data can be directly displayed on the screen and recorded by the system for long-term health trend analysis.

[0095] Vital signs monitoring: The infrared laser probe 12 is positioned directly above the seat 6, enabling non-contact monitoring of key vital signs such as heart rate, respiratory rate, body temperature, and body shape when the user is seated; the camera 11, combined with AI visual analysis algorithms, can assist in analyzing the user's posture, facial color, etc. (software support required).

[0096] In addition to receiving voice commands, the voice-activated microphone 30 can provide additional health insights in the future by analyzing the user's cough, breathing sounds, and other sound characteristics (requires advanced algorithm support).

[0097] 3. User Experience and Comfort Guarantee: Visuals and Atmosphere: The beauty lamp 10 at the top can provide lighting of different spectra (such as red light and blue light) to achieve beauty and skin care effects while enjoying the sauna; the outdoor lighting and the built-in display screen 39 inside the room provide basic lighting and information display;

[0098] The air curtain machine 14 located above the sealed door 2 is activated when the user opens the door to enter or exit, drawing out the air inside the sauna body 1 and forming an air wall to effectively block the large-scale leakage of hot air from the room and the intrusion of cold air from outside, thereby improving energy efficiency and user comfort.

[0099] The top air vent is used to ventilate after the sauna or when needed, keeping the air fresh.

[0100] 4. Intelligent Control Center: All sensor data (temperature, weight, heart rate, etc.) and user-input voice commands are collected in the main controller (usually located in the touch screen control box 3). After processing the data, the controller drives the corresponding actuators (heated mica sheet 7, air curtain machine 14, negative ion oxygen bar mechanism 13, etc.) to work, and feeds back key information (such as real-time heart rate, current temperature, and remaining time) to the user through the built-in display screen or touch screen control box. Users can also remotely control and set the sauna room by wirelessly connecting to the WiFi module via an external mobile terminal device.

[0101] The main body 1 of the sauna room includes a base 15 and a top plate 25 located directly above the base 15. Between the base 15 and the top plate 25 are a front panel 34 and a rear panel 24, and symmetrically arranged side panels 21 on the left and right sides. The side panels 21 are positioned between themselves and the front and rear panels 34, between themselves and the base 15 and the top plate 25, and between themselves and the top plate 25. Several locking buckles 8 are provided between 25, and several heating mica sheets 7 at corresponding positions are fixedly installed on the inner side of the assembly side plate 21 and the assembly rear plate 24 respectively. Thermometer 9, infrared laser probe 12 and voice-activated microphone 30 are fixedly installed on the inner side of the assembly side plate 21. Several beauty lights 10 and several cameras 11 are fixedly installed below the assembly top plate 25. Seat 6 is installed above the assembly base 15, and seat 6 abuts against the inner side of the assembly rear plate 24.

[0102] The sauna room's main body 1 consists of six core modules: a base assembly 15, a top assembly 25, a front assembly 34, a rear assembly 24, and two side assembly panels 21. These modules are securely and tightly connected via locking buckles 8. No professional tools or complex processes are required; users can easily assemble the entire structure, much like assembling high-end furniture, greatly enhancing the product's portability and ease of installation. All functional components are integrated into their corresponding modules, achieving a unity of structure and function.

[0103] Thermotherapy system integration: The heating core—the heating mica sheet 7—is pre-fixed to the inside of the assembled side plate 21 and the assembled rear plate 24; this layout ensures that heat is evenly radiated to the user from multiple directions, achieving surround heating;

[0104] The sensing system integration includes: thermometer 9, infrared laser probe 12, and voice microphone 30, all embedded in the assembly side panel 21. The wiring can be pre-arranged, the appearance is neat, and the sensing angle is optimized, facing the seat 6 area.

[0105] Top system integration: As a functionally dense area, the assembled top panel 25 integrates beauty lights 10 and cameras 11, realizing the integration of top lighting, beauty care and visual monitoring;

[0106] The assembly base 15 serves as the load-bearing foundation, on which the seat 6 is fixed; the seat 6 not only provides comfort, but also integrates a hot air mechanism 5 and a negative ion oxygen bar mechanism 13, realizing the functions of airflow circulation underfoot and air purification.

[0107] Intelligent workflow:

[0108] After the user sets the program via the touchscreen control box 3 on the front panel 34 or the built-in display screen 39 in the room, the system starts.

[0109] Environmental conditions: The heating mica sheet 7 and the hot air mechanism 5 work together to rapidly raise the temperature; the thermometer 9 provides real-time data feedback to achieve precise temperature control;

[0110] Health monitoring: After the user is seated, the infrared laser probe 12 on the assembled side panel 21 and the camera 11 on the top panel automatically perform non-intrusive vital sign monitoring; the electronic scale 4 can be pulled out and used at any time;

[0111] Physiotherapy and comfort guarantee: The negative ion oxygen bar 13 continuously purifies the air, the beauty lamp 10 provides light therapy, and the air curtain 14 blocks airflow when the door is opened.

[0112] The upper part of the assembly base 15 is provided with a square-shaped annular slot 17. The middle of each part of the front, back, left and right of the annular slot 17 is provided with a plate slot 18. The plate slot 18 is connected to the annular slot 17. The lower side of the assembly base 15 is provided with a storage cavity 16. The weight scale 4 is slidably stored inside the storage cavity 16.

[0113] With the above structure, the annular slot 17 and insert slot 18 at the upper end of the assembly base 15 provide a precise installation positioning benchmark for all the uprights (assembly front plate 34, assembly rear plate 24, and assembly side plate 21); the components are firmly connected by locking buckles 8, ensuring the stability of the structure and the airtightness of the cabin, and enabling users to quickly install and disassemble them themselves; the storage cavity on the lower side of the assembly base 15 cleverly stores the electronic scale 4, keeping the appearance neat and easy to pull out when in use, reflecting the humanized design considerations.

[0114] The top of the assembled top plate 25 is provided with a square-shaped annular slot 2 around its upper perimeter. The middle of each part of the front, back, left and right sides of the annular slot 2 is provided with a plate slot 2, which is connected to the annular slot 2. The front side of the assembled top plate 25 is provided with a top plate eave 26. The air curtain machine 14 and several lighting lamps are fixedly installed below the top plate eave 26. The interior of the assembled top plate 25 is provided with a ventilation chamber 40, which is connected to the sauna room main body 1.

[0115] The annular slot 2 and the insert slot 2 at the lower end of the assembled top plate 25 fasten all the upright plates (assembled front plate 34, assembled rear plate 24, assembled side plate 21) from above, forming a complete frame; the components are firmly connected by locking buckles 8, ensuring the stability, sealing and ease of installation by the user; the top plate eaves 26 integrate the air curtain machine and lighting in the optimal position directly above the sealed door 2, which does not occupy the internal space and achieves the optimal layout of functions; the ventilation cavity 40 is connected to the sauna body 1, forming an effective air circulation or exhaust channel, which works with the air intake mechanism to keep the air fresh.

[0116] The front panel 34 has sealing protrusions 38 at both the top and bottom, and insert plates 31 in the middle of the sealing protrusions 38. The front panel 34 has mounting holes on its side. The touch screen control box 3 and the built-in display screen 39 are installed inside the mounting holes. The front panel 34 has a doorway 32 in the middle, and a sealing ring 33 is provided on the inside of the doorway 32.

[0117] The sealing protrusions 38 and insert plates 31 at the top and bottom ends correspond precisely to the insert plate slots 18 and 2 of the top plate 25 of the assembly base 15; this design ensures the precise positioning and initial fixation of the front plate 34 in the overall frame.

[0118] The insert plate 31 is locked to the adjacent assembly side plate 21, assembly base 15, and assembly top plate 25 by locking the latch 8; this process will squeeze the sealing protrusion 38, deform it, and thus form a physical sealing barrier at the joint of the plate, effectively preventing heat from leaking from the front joint.

[0119] The touch screen control box 3 and the built-in display screen 39 inside the mounting hole are the centralized channels for system information input (user commands) and output (status display), enabling the user to interact with all sensors and actuators inside the sauna.

[0120] The door opening 32 is used to install the sealing door 2. The sealing ring 33 on its inner side fits tightly with the sealing door 2, forming a highly elastic annular sealing ring when the door is closed. This sealing ring is a key structure for maintaining the high temperature environment inside the sauna and preventing energy loss.

[0121] The sealed door 2 includes a sealed door body 36, which is hinged to the door opening 32. When the sealed door body 36 is locked, it abuts against the sealing ring 33. The sealed door body 36 is provided with a tempered glass window 37 and a door lock handle 35, which is located on the side of the tempered glass window 37.

[0122] The sealed door body 36 is installed at the door opening 32 by a hinge, so that the sealed door body 36 can rotate smoothly around its axis to realize the opening and closing of the sauna room;

[0123] When the sealing door body 36 is closed, the inner surface of the sealing door body 36 tightly abuts against the sealing ring 33; by operating the door lock handle 35 to lock, the pressure generated by the locking mechanism causes the soft and elastic sealing ring 33 to undergo controllable deformation, thereby forming a uniform and reliable pressure sealing band around the entire circumference of the door opening; it is the core sealing mechanism to prevent internal heat loss and maintain the high-temperature and efficient operation of the sauna room;

[0124] The tempered glass window 37 embedded in the sealed door body 36 enables visual communication. It uses tempered glass that can withstand severe temperature differences and pressure, allowing users to observe the external environment without opening the door while enjoying the sauna. This satisfies their psychological sense of security and avoids heat loss caused by frequent door opening.

[0125] The door lock handle 35 controls the opening and closing of the sealed door body 36.

[0126] The upper and lower ends of the assembly side plate 21 are provided with sealing protrusions 19, and the middle of the sealing protrusions 19 is provided with insert plates 20.

[0127] Insert plate 20 serves as a rigid positioning component, with its dimensions precisely matching those of base insert plate slot 18 and top plate insert plate slot 2. During installation, insert plate 20 is first inserted into the corresponding slot, providing initial lateral positioning and vertical guidance for the entire assembled side plate 21, ensuring rapid alignment between the various plates, which is the foundation for achieving fast and accurate assembly. Sealing protrusions 19 are typically made of elastic sealing material (such as rubber) and surround the base of insert plate 20. When the locking latch 8 is tightened, forcing insert plate 20 into full position, it simultaneously squeezes the sealing protrusions 19 on both sides, causing them to deform and tightly fill all assembly gaps between insert plate 20 and the slot.

[0128] The upper and lower ends of the assembled rear plate 24 are provided with sealing protrusions 22, and the middle of the sealing protrusions 22 is provided with insert plates 29. The assembled rear plate 24 is provided with filter air inlet holes 23, which are directly opposite the negative ion oxygen bar mechanism 13.

[0129] Positioning and locking are achieved by inserting the two insert plates 29 at its upper and lower ends into the slots of the base and the top plate. The sealing protrusion 22 is deformed under pressure during locking to achieve sealing with the adjacent plates. The principle is the same as that of assembling the side plate 21 and assembling the front plate 34.

[0130] The air inlet 23 of the filter screen on the panel is directly opposite the negative ion oxygen bar mechanism 13 inside the seat 6. This hole serves as a directional inlet for fresh air from outside, and the internal filter screen can block dust and other pollutants from entering, ensuring that the air supplied to the sauna room is clean.

[0131] The assembly base 15, assembly top plate 25, assembly front plate 34, assembly side plate 21 and sealing door 2 are all made of Canadian hemlock wood;

[0132] The sealing protrusions 19, 22 and 38 located below are respectively inserted into the annular slot 17, and the insert plates 20, 29 and 31 located below are respectively inserted into the corresponding insert plate slots 18.

[0133] The sealing protrusions 19, 22, and 38 located at the top are respectively inserted into the interior of the annular slot 2, and the insert plates 20, 29, and 31 located at the top are respectively inserted into the interior of the insert plate slot 2 at the corresponding positions.

[0134] Canadian hemlock is stable, heat-resistant, and moisture-resistant, ensuring the durability, insulation, and natural beauty of the structure from a material perspective.

[0135] Bottom connection: All the insert plates 1-20 / 2-29 / 3-31 at the bottom of the uprights are uniformly inserted into the insert plate slot 18 of the assembly base 15 to achieve positioning and rigid connection; at the same time, the sealing protrusions 1-19 / 2-22 / 3-38 at their bottom ends are uniformly embedded into the annular slot 17 of the base to achieve continuous circumferential sealing at the bottom.

[0136] Top connection: The insert plates and sealing protrusions at the top of all uprights are connected to the insert plate slot two and the annular slot two of the assembled top plate 25 in the same manner.

[0137] Systematic sealing and stability: The principle of "insertion plate positioning and locking + sealing protrusion ring compression sealing" is uniformly applied at all boundaries, forming a complete, continuous, and highly airtight frame system, which is the basis for the overall structural stability and efficient heat preservation of the sauna room.

[0138] The air outlet mechanism includes a filter cartridge 27 and an exhaust fan 28. Both the filter cartridge 27 and the exhaust fan 28 are installed inside the ventilation chamber 40. The air outlet of the exhaust fan 28 is connected to the filter cartridge 27, and the filter cartridge 27 is connected to the external space.

[0139] Forced ventilation: When the exhaust fan 28 is started, it draws air from inside the sauna room through the ventilation chamber 40 to create negative pressure and actively draw out the hot, humid and polluted air that has accumulated inside.

[0140] Air purification: The extracted air must pass through filter cartridge 27, where the filter material can effectively adsorb odors, grease or dust in the air;

[0141] Directional exhaust: The purified air is systematically exhausted to the outside space through the outlet of filter cartridge 27, thereby completing the renewal of indoor air and maintaining the air pressure balance inside the cabin.

[0142] Simply replace the filter material inside filter cartridge 27 periodically.

[0143] The hot air mechanism 5 includes an air outlet baffle 41, which is fixed to the front end of the seat 6. An oxygen replenishment space is formed between the air outlet baffle 41, the seat 6, and the assembled rear panel 24. A heater 43 and a blower 42 are fixed on the air outlet baffle 41. The air outlet of the heater 43 is directly opposite the ventilation hole of the air outlet baffle 41. The air outlet of the blower 42 is connected to the air inlet of the heater 43. The air inlet of the blower 42 is located inside the oxygen replenishment space.

[0144] Internal air circulation: The air guide fan 42 draws air from the oxygen replenishment space (an area that gathers negative ions to purify the air) to form an airflow; Auxiliary heating: This airflow is sent to the heater 43 for secondary heating; Directional air supply: The heated warm air is blown out from the air outlet baffle 41 and directed directly to the user's feet and lower body; This not only provides comfortable foot warmth, but also promotes uniform airflow and temperature balance in the sauna room.

[0145] The negative ion oxygen bar mechanism 13 includes a negative ion generator 44 and a blower 45. Both the negative ion generator 44 and the blower 45 are fixed inside the seat 6. The air inlet of the blower 45 is connected to the air inlet 23 of the filter screen, and the air outlet of the blower 45 is connected to the air inlet of the negative ion generator 44. The air outlet of the negative ion generator 44 is located inside the oxygen replenishment space.

[0146] Introducing fresh air: The exhaust fan 45 actively draws in fresh external air through the filter inlet 23 of the assembled rear plate 24.

[0147] Air purification and activation: The inhaled air flows through the negative ion generator 44, and the device releases a large number of negative oxygen ions, which attach to pollutants such as dust and smoke in the air, causing them to settle, thereby purifying the air; at the same time, the negative ions themselves can create a fresh air feeling like a forest.

[0148] Delivering purified air: The purified and activated oxygen-rich fresh air is released from the air outlet of the negative ion generator 44 into the oxygen replenishment space, continuously providing a source of fresh air for the area, and can then be diffused throughout the sauna by the hot air mechanism.

[0149] Example 2

[0150] like Figures 8-10 As shown, this embodiment adds a position adjustment massage mechanism 46 compared to embodiment one. The position adjustment massage mechanism 46 is located inside the rear side of the sauna room body 1. In order to install and use the position adjustment massage mechanism 46, the structure and style of the assembled rear plate 24 are adjusted. At the same time, a slot is opened on the rear side of the seat 6 to facilitate the installation and use of the position adjustment massage mechanism 46 and to prevent interference.

[0151] Specifically, the adjustment massage mechanism 46 includes a lifting electric lead screw 49, which is fixed to the inner side of the assembled rear plate 24. A track adjustment assembly 48 is mounted on the movable seat of the lifting electric lead screw 49. A massage assembly 47 is located on the front side of the track adjustment assembly 48. The track adjustment assembly 48 includes an adjustment plate 51 and an arc-shaped adjustment track 50. The adjustment track 50 is fixed to the movable seat of the lifting electric lead screw 49. Adjustment racks 59 are fixed on both the left and right sides of the adjustment track 50. Limiting wheels 56 are rotatably mounted on both the left and right sides of the adjustment plate 51. The limiting wheels 56 are engaged inside the adjustment track 50. Adjustment racks 59 are fixed on the rotating shafts of the upper limiting wheels 56. Positioning gear 57 meshes with positioning rack 59 on the same side. Positioning motor 58 is fixed to the rear side of positioning plate 51. Positioning motor 58 is connected to the shaft of upper limit wheel 56. Massage assembly 47 includes mounting cover 52, which is fixed to the front side of positioning plate 51. Massage motor is fixed inside mounting cover 52. Several adjusting ball hinges 53 are hinged to the upper part of mounting cover 52. The inner end of the rotating shaft of adjusting ball hinge 53 is connected to the output shaft of massage motor through eccentric wheel transmission. The outer end of the rotating shaft of adjusting ball hinge 53 is fixed with massage claw 54. Massage ball beads 55 are integrally formed at the tips of several claws of massage claw 54.

[0152] The moving seat of the lifting electric lead screw 49 can drive the entire upper track adjustment assembly 48 and massage assembly 47 to move up and down linearly along the lead screw, which is used to adjust the initial vertical height of the massage according to the user's height and sitting posture, and to position it to the approximate area of ​​the back (such as the shoulders, back or lower back); the adjustment plate 51 is engaged inside the adjustment track 50 by the limit wheels 56 on both sides, ensuring that the entire assembly can slide stably along the predetermined arc trajectory; drive and transmission: when the adjustment motor 58 starts, it drives the adjustment gear 57 to rotate through the rotating shaft; since the adjustment gear 57 meshes with the adjustment rack 59 fixed on the track, the rotation of the gear will be converted into the movement of the adjustment plate along the adjustment track 50; so that the massage head can cover the user from the spine to the side back and head. When the massage motor is started, its output shaft is driven by an eccentric wheel, which converts the motor's rotational motion into reciprocating cam motion. The reciprocating motion is transmitted to the massage claw 54 through the adjusting ball hinge 53. The massage ball 55 at the end of the massage claw 54 serves as the final contact point with the user's body, providing a deep and soothing massage and avoiding a sharp sensation.

[0153] When in use, the user sits on the seat 6 with their back facing the adjustment massage mechanism 46. The infrared laser probe 12 detects the user's body shape, especially the height of their head (the user can also move to cooperate). The adjustment massage mechanism 46 automatically adjusts its position to provide physiotherapy massage to the user's back, neck and head.

[0154] Working principle of the invention:

[0155] I. Modular Structure and Airtightness Guarantee Principle

[0156] The sauna's physical foundation lies in its innovative modular assembly structure, which serves not only as a container but also as a platform for integrated functions.

[0157] Standardized interfaces and rapid assembly:

[0158] The main body consists of six modules: the assembled base 15, the assembled top plate 25, the assembled front plate 34, the assembled rear plate 24, and the assembled side plate 21.

[0159] The front panel 34, rear panel 24, and side panel 21 are equipped with insert plates 1 20, 29, and 31, as well as sealing protrusions 19, 22, and 38 at their upper and lower ends. During installation, the insert plates are precisely inserted into the insert plate slots of the base and top panel to achieve rigid positioning and initial fixation.

[0160] Subsequently, locking force is applied by engaging the latch 8, compressing the elastic sealing protrusion, deforming it, and filling all assembly gaps to form a continuous and reliable physical seal at the panel joint. This unified interface design of "insertion plate positioning and sealing protrusion compression" allows even non-professional users to quickly and accurately assemble a high-airtightness enclosure.

[0161] Unity of materials and functions:

[0162] All panels and sealing doors 2 are made of Canadian hemlock (an imported timber available on the market). This timber is characterized by its high temperature resistance, moisture resistance, and dimensional stability, ensuring the durability, insulation, and natural aesthetics of the structure from a material perspective.

[0163] The sealing door system is opened and closed by hinges. When closed, the sealing door body 36 is tightly pressed against the sealing ring 33 inside the door opening 32 by the door lock handle 35, forming the most critical high-pressure sealing ring, which together with the seal between the panels constitutes a complete thermal insulation barrier.

[0164] II. Intelligent Environment Creation and Thermotherapy Principles

[0165] The system uses the touch screen control box 3 as the command center, coordinating multiple actuators to create the best physiotherapy environment.

[0166] Surround far-infrared heat therapy:

[0167] After the user sets the program via the touchscreen control box 3 or the built-in display screen 39, the heating mica sheet 7, which is pre-fixed inside the assembly side panel 21 and the assembly rear panel 24, starts working and emits far-infrared rays towards the user from multiple directions. This radiant heat can penetrate the skin for deep heating, promoting blood circulation and metabolism.

[0168] The thermometer 9, installed on the assembled side panel 21, monitors the cabin temperature in real time and feeds the data back to the controller, forming a closed-loop temperature control system to ensure that the temperature remains constant at the set value, ensuring safety and comfort.

[0169] Dynamic air quality management and circulation:

[0170] Fresh air intake and purification: The exhaust fan 45 of the negative ion oxygen bar mechanism 13 actively draws in fresh outside air through the filter air inlet 23 on the assembled rear panel 24. When the air flows through the negative ion generator 44, it is endowed with a high concentration of negative oxygen ions, which can effectively settle dust, eliminate odors, and create fresh air like a "forest oxygen bar". The purified oxygen-rich air is delivered to the oxygen replenishment space under the seat 6.

[0171] Internal circulation and auxiliary heating: The air guide fan 42 of the hot air mechanism 5 draws purified air from the oxygen replenishment space, which is then reheated by the heater 43 before being blown towards the user's feet and lower limbs from the air outlet baffle 41. This design not only solves the problem of "cold feet" but also achieves forced air circulation and temperature balance in the cabin, complementing the radiant heat from the mica sheet.

[0172] Exhaust gas exhaust and ventilation: The air outlet mechanism (composed of an exhaust fan 28 and a filter cartridge 27) located in the ventilation cavity 40 of the assembled top plate 25 is responsible for actively extracting the humid, hot, and polluted air accumulated in the cabin. The air is purified by the filter cartridge 27 before being discharged to avoid environmental pollution, thus completing a complete closed loop of air treatment: "external fresh air introduction → internal purification and heating → cabin circulation → exhaust gas filtration and discharge".

[0173] III. Principles of Non-Intrusive Health Monitoring and Data Fusion

[0174] Without user interference, the system collects comprehensive health data using multi-sensor fusion technology.

[0175] Non-contact vital sign monitoring:

[0176] The infrared laser probe 12, located on the assembled side panel 21 and directly above the seat 6, uses optical principles to non-contactly monitor key vital signs such as heart rate, respiratory rate, and body temperature in real time when the user is sitting still.

[0177] With the support of software algorithms, the top camera 11 can assist in user posture recognition and facial color analysis.

[0178] In addition to receiving voice commands, the voice-activated microphone 30 on the assembled side panel 21 can provide additional health insights in the future by analyzing cough sounds, breathing sounds, etc.

[0179] Proactive health data recording:

[0180] Users can pull out the electronic scale 4 from the storage cavity 16 in the base before and after using the sauna to weigh themselves. The data is automatically recorded by the system and compared with historical data for long-term health trend analysis.

[0181] Data integration and remote interaction:

[0182] All monitoring data (body temperature, heart rate, weight, ambient temperature, etc.) are collected by the main controller.

[0183] Users can view this data in real time on the built-in display screen 39. At the same time, thanks to the WiFi module integrated in the touch screen control box 3, all data can be synchronized to the user's peripheral mobile terminal (such as a mobile phone), enabling remote monitoring, data history query, and program settings, truly achieving healthy digital management.

[0184] IV. User Experience and Energy Saving Principles

[0185] Through meticulous design, the system comprehensively enhances comfort and energy efficiency.

[0186] Visual and phototherapy atmosphere: The beauty lamps 10 below the modular ceiling panel 25 can provide different spectra (such as red light and blue light) to achieve phototherapy beauty while enjoying the sauna. The indoor and outdoor lighting provides basic illumination.

[0187] Energy-saving air curtain isolation: The air curtain machine 14, integrated under the eaves 26 of the roof panel, has its air inlet connected to the interior of the sauna. It starts the moment the user opens the door, blowing the hot air inside downwards to form an invisible "air door" that effectively blocks the leakage of hot air from the inside and the intrusion of cold air from the outside, greatly reducing energy loss and improving the comfort of entering and exiting.

[0188] In summary, this invention is a highly collaborative intelligent closed loop: using a modular structure as a precision carrier and a central controller as the intelligent brain, it seamlessly senses the user's and environment's status through a distributed sensor network and precisely drives the coordinated operation of the thermotherapy, ventilation, phototherapy, and monitoring systems. This invention is a comprehensive and personalized home health management solution integrating "deep thermotherapy, air purification, health monitoring, data tracking, and a comfortable experience." The sauna room uses modular panels assembled together, quickly sealed and formed through slots and latches to create an insulated space. Upon activation, heating mica sheets around the perimeter generate far-infrared rays for thermotherapy. A hot air mechanism under the seat blows out warm air to promote circulation, and a thermometer monitors in real time to ensure a constant temperature. Air enters through a filter in the assembled rear panel, is purified by a negative ion generator, and then sent into the cabin; a top fan exhausts waste gas. Infrared probes seamlessly monitor the user's heart rate and respiration, and a pull-out scale records weight, enabling health data collection. The touchscreen control box is the central hub, processing all sensor data and directing the operation of each component. Users can view real-time data, set programs, and track long-term health trends via an in-cabin screen or a WiFi-connected mobile phone. A ceiling-mounted beauty light provides phototherapy, while an air curtain above the door creates a wall of air to prevent heat loss when the door is opened. This design ensures a comfortable and private experience while achieving high energy efficiency, creating an integrated home health space.

[0189] The specific embodiments described herein are merely illustrative of the spirit of the invention. Those skilled in the art to which this invention pertains may make various modifications or additions to the described specific embodiments or use similar methods to substitute them, without departing from the spirit of the invention or exceeding the scope defined by the appended claims.

Claims

1. A home-use intelligent health monitoring sauna, comprising a sauna main body (1), characterized in that, The sauna main body (1) is hinged to a sealed door (2) on the front side. A touch screen control box (3) is provided on the exterior of the front side of the sauna main body (1). An internal display screen (39) is provided inside the front side of the sauna main body (1). The internal display screen (39) and the touch screen control box (3) are directly opposite each other. Several heating mica sheets (7) are provided on the left, right and rear sides of the sauna main body (1). A thermometer (9), an infrared laser probe (12) and a voice-activated microphone (30) are provided on the left and right sides of the sauna main body (1). Several beauty lamps (10) and several cameras (11) are provided on the top of the sauna main body (1). An air outlet mechanism is provided inside the top of the sauna main body (1). A seat (6) is provided at the bottom of the sauna main body (1). A hot air mechanism (5) and a negative ion oxygen bar mechanism (13) are provided inside the seat (6). The infrared laser probe (12) is directly opposite the door. Above the seat (6), a pull-out electronic scale (4) is slidably installed at the bottom of the sauna body (1). An air curtain (14) and several lights are installed on the top of the sauna body (1). The air curtain (14) is located directly above the sealed door (2). The air inlet of the air curtain (14) is connected to the interior of the sauna body (1). An adjustable massage mechanism (46) is installed on the rear side of the interior of the sauna body (1). The main control board of the touch screen control box (3) is equipped with a WiFi module. The WiFi module is wirelessly connected to the peripheral mobile terminal device. The main control board of the touch screen control box (3) is electrically connected to the electronic scale (4), the air curtain (14), the lights, the beauty lamp (10), the camera (11), the heating mica sheet (7), the thermometer (9), the infrared laser probe (12), the voice microphone (30), and the built-in display screen (39). The main body (1) of the sauna room includes a prefabricated base (15) and a prefabricated top plate (25) located directly above the prefabricated base (15). Between the prefabricated base (15) and the prefabricated top plate (25) are a prefabricated front plate (34) located on the front side and a prefabricated rear plate (24) located on the rear side, as well as prefabricated side plates (21) symmetrically arranged on the left and right sides. The prefabricated side plates (21) are connected to the prefabricated front plate (34) and the prefabricated rear plate (24), the prefabricated side plates (21) are connected to the prefabricated base (15) and the prefabricated top plate (25), and the prefabricated rear plate (24) is connected to the prefabricated top plate (25). Several locking buckles (8) are provided between the plates (25). Several heating mica sheets (7) at corresponding positions are fixedly installed on the inner side of the assembly side plate (21) and the assembly rear plate (24). The thermometer (9), infrared laser probe (12) and voice-activated microphone (30) are fixedly installed on the inner side of the assembly side plate (21). Several beauty lamps (10) and several cameras (11) are fixedly installed below the assembly top plate (25). The seat (6) is installed above the assembly base (15) and the seat (6) abuts against the inner side of the assembly rear plate (24).

2. The home-use intelligent health monitoring sauna according to claim 1, characterized in that, The upper part of the assembly base (15) is provided with a square-shaped annular slot 1 (17). The middle part of the front, back, left and right parts of the annular slot 1 (17) is provided with a plate slot 1 (18). The plate slot 1 (18) is connected to the annular slot 1 (17). The lower side of the assembly base (15) is provided with a storage cavity (16). The weight scale (4) is slidably stored inside the storage cavity (16).

3. A home-use intelligent health monitoring sauna according to claim 2, characterized in that, The top of the assembled top plate (25) is provided with a square-shaped annular slot 2 around its upper end. The middle of each part of the front, back, left and right of the annular slot 2 is provided with a plate slot 2. The plate slot 2 is connected to the annular slot 2. The front side of the assembled top plate (25) is provided with a top plate eave (26). The air curtain machine (14) and several lighting lamps are fixedly installed below the top plate eave (26). The interior of the assembled top plate (25) is provided with a ventilation cavity (40). The ventilation cavity (40) is connected to the sauna room body (1).

4. A home-use intelligent health monitoring sauna according to claim 3, characterized in that, The front panel (34) has sealing protrusions (38) at both the top and bottom ends, and insert plates (31) at the middle of the sealing protrusions (38). The front panel (34) has mounting holes on its side. The touch screen control box (3) and the built-in display screen (39) are installed inside the mounting holes. The front panel (34) has a door opening (32) in the middle. The door opening (32) has a sealing ring (33) on its inner side. The sealing door (2) includes a sealing door body (36). The sealing door body (36) is hinged to the door opening (32). When the sealing door body (36) is locked, it abuts against the sealing ring (33). The sealing door body (36) has a tempered glass window (37) and a door lock handle (35). The door lock handle (35) is located on the side of the tempered glass window (37).

5. A home-use intelligent health monitoring sauna according to claim 4, characterized in that, The upper and lower ends of the assembled side plate (21) are provided with sealing protrusion 1 (19), and the middle position of the sealing protrusion 1 (19) is provided with insert plate 1 (20); the upper and lower ends of the assembled rear plate (24) are provided with sealing protrusion 2 (22), the middle position of the sealing protrusion 2 (22) is provided with insert plate 2 (29), and the assembled rear plate (24) is provided with filter air inlet hole (23), which is directly opposite the negative ion oxygen bar mechanism (13).

6. A home-use intelligent health monitoring sauna according to claim 5, characterized in that, The assembled base (15), assembled top plate (25), assembled front plate (34), assembled side plate (21) and sealing door (2) are all made of Canadian hemlock wood; The sealing protrusions 1 (19), 2 (22) and 3 (38) located below are respectively inserted into the interior of the annular slot 1 (17), and the insert plates 1 (20), 2 (29) and 3 (31) located below are respectively inserted into the interior of the corresponding insert plate slot 1 (18). The sealing protrusions 1 (19), 2 (22) and 3 (38) located above are respectively inserted into the interior of the annular slot 2, and the insert plates 1 (20), 2 (29) and 3 (31) located above are respectively inserted into the interior of the corresponding insert plate slot 2.

7. A home-use intelligent health monitoring sauna according to claim 6, characterized in that, The air outlet mechanism includes a filter cylinder (27) and an exhaust fan (28). Both the filter cylinder (27) and the exhaust fan (28) are installed inside the ventilation chamber (40). The air outlet of the exhaust fan (28) is connected to the filter cylinder (27), and the filter cylinder (27) is connected to the external space.

8. A home-use intelligent health monitoring sauna according to claim 7, characterized in that, The hot air mechanism (5) includes an air outlet baffle (41), which is fixed to the front end of the seat (6). An oxygen replenishment space is formed between the air outlet baffle (41), the seat (6), and the assembled rear panel (24). A heater (43) and a blower (42) are fixed on the air outlet baffle (41). The air outlet of the heater (43) is directly opposite the ventilation hole of the air outlet baffle (41). The air outlet of the blower (42) is connected to the air inlet of the heater (43). The air inlet of the blower (42) is located inside the oxygen replenishment space. The negative ion oxygen bar mechanism (13) includes a negative ion generator (44) and a blower (45). Both the negative ion generator (44) and the blower (45) are fixed inside the seat (6). The air inlet of the blower (45) is connected to the air inlet hole (23) of the filter screen, and the air outlet of the blower (45) is connected to the air inlet of the negative ion generator (44). The air outlet of the negative ion generator (44) is located inside the oxygen replenishment space.

9. A home-use intelligent health monitoring sauna according to claim 8, characterized in that, The adjustment massage mechanism (46) includes a lifting electric screw (49), which is fixed on the inner side of the assembled rear plate (24). A track adjustment assembly (48) is provided on the movable seat of the lifting electric screw (49). A massage assembly (47) is provided on the front side of the track adjustment assembly (48). The track adjustment assembly (48) includes an adjustment plate (51) and an arc-shaped adjustment track (50). The adjustment track (50) is fixed on the movable seat of the lifting electric screw (49). Adjustment racks (59) are fixed on both the left and right sides of the adjustment track (50). Limiting wheels (56) are rotatably provided on both the left and right sides of the adjustment plate (51). The limiting wheels (56) are engaged inside the adjustment track (50). Adjustment racks (59) are fixed on the rotating shaft of the upper limiting wheel (56). Positioning gear (57), adjusting gear (57) meshes with adjusting rack (59) on the same side, adjusting motor (58) is fixed on the rear side of adjusting plate (51), adjusting motor (58) is connected to the shaft of the upper limiting wheel (56) through transmission, massage assembly (47) includes mounting cover (52), mounting cover (52) is fixed on the front side of adjusting plate (51), massage motor is fixed inside mounting cover (52), several adjusting ball hinges (53) are hinged on the upper side of mounting cover (52), one end of the rotating shaft of adjusting ball hinge (53) is connected to the output shaft of massage motor through eccentric wheel transmission, one end of the rotating shaft of adjusting ball hinge (53) is fixed with massage claw (54), and the ends of several claw tips of massage claw (54) are provided with massage ball beads (55) integrally formed with it.

Citation Information

Patent Citations

  • Health cabin based on photodynamic force

    CN114795756A

  • Khan steam room with air purification and negative ions

    CN212187137U