Smart mattress
The smart mattress addresses ventilation and heat distribution issues by using a PTC heater and blower fan, ensuring optimal sleep conditions and hygiene through modular design and environmental adaptability, enhancing sleep quality and health.
Patent Information
- Application Number
- PCT/KR2024/016706
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-01-09
- Filing Date
- 2024-10-29
- Publication Date
- 2025-07-17
AI Technical Summary
Conventional mattresses suffer from poor ventilation, direct heat conduction causing discomfort, noise disturbance, energy inefficiency, difficulty in cleaning, and lack of environmental adaptability, leading to disrupted sleep and health issues.
A smart mattress with modular components, including a PTC surface film heater, blower fan, and insulation layers, controlled by a master controller to regulate temperature and humidity, and featuring a carbon fiber reinforced frame for support, which allows for efficient heat distribution and easy cleaning.
The mattress provides optimal sleeping conditions by regulating temperature and humidity, reducing noise, and maintaining health through far infrared radiation and static electricity dissipation, enhancing sleep quality and hygiene.
Smart Images

Figure KR2024016706_17072025_PF_FP_ABST
Abstract
Description
Smart Mattress
[0001] The present invention relates to a smart mattress that can control the surface temperature of a mattress using a blower and a heater installed in the mattress according to the sleeping environment and sleeping pattern of a user sleeping on the mattress of the present invention. In the summer, the temperature of an air conditioner installed in the room and the blower speed are controlled by using a forced convection phenomenon, and in the winter, the temperature of the heater is controlled by using natural convection to provide an optimal temperature and other environment according to humidity suitable for the user's sleep, and at the same time, it is related to an app or artificial intelligence, etc., that can maintain and manage the health of the user by ensuring a good night's sleep and sufficient sleeping time for the user sleeping on the mattress.
[0002] There are various types of mattresses with similar functions on the market. However, as described in the prior art document below, conventional functional mattresses have poor ventilation because the heating plate (11) blocks the circulation of air, and not only cannot dissipate heat from body temperature, but also the heat from the heating plate (11) reaches the user's body directly through heat conduction, causing a local heat difference and making the user feel stuffy, which interferes with the user's deep sleep and shortens the time spent in bed.
[0003] A mattress user's body temperature constantly changes during sleep. However, conventional mattresses cannot respond to changes in the user's body temperature because the hot air supply device (7) continuously supplies hot air at an initially set temperature while the user sleeps, thus disturbing the user's sleep. In addition, the noise from the air pump (16) also disturbs the user's sleep and shortens the time spent sleeping.
[0004] In addition, conventional mattresses cannot dissipate heat from body temperature in the summer, so the user continues to toss and turn while sleeping, which disturbs the user's deep sleep and shortens the time spent sleeping.
[0005] In addition, the heat supplied from the hot air supply device (7) of the conventional invention mattress is radiated to the outside through the uninsulated side, consuming a lot of heat energy, which incurs a lot of electricity bills in the winter, and in particular, the use of a lot of electricity and heat energy acts as a factor accelerating global warming.
[0006] Furthermore, as described in the prior art literature below, conventional functional mattresses are manufactured with a heating plate (11) and support spring (10) as an integrated unit, making them inseparable and difficult to clean. Consequently, prolonged use can lead to the proliferation of harmful bacteria and dust mites within the mattress, potentially harming the health of the mattress user.
[0007] In addition, the conventional invention of the above prior art document has a simple form in which a heating plate (11) and a spring (10) are wrapped in an outer cover, and there is also a problem in that when the mattress is used for a long period of time, the restoring force of the mattress support spring (10) weakens, causing the upper surface of the mattress to sink downward.
[0008] In addition, the prior art invention does not specify any means for maintaining or managing the user's health with environmentally friendly elements.
[0009] In addition, the conventional invention has a problem in that it does not have a means to create an optimal sleeping environment by controlling the mattress temperature, air blowing power, and indoor air conditioner temperature according to environmental factors such as indoor and outdoor temperature and humidity of the place where the mattress is used and the sleeping condition of the mattress user.
[0010] In addition, conventional inventions have a problem in that when two users sleep on a two-person mattress, each user's sleep pattern is different, which disturbs the other's sleep, and in particular, when a male and female user sleep together on the same mattress, the difference in sleeping temperature between the male and female users disturbs the other's sleep.
[0011] The mattress of the present invention has sides made of sponge with excellent insulation, and the lower part is made of sponge with excellent insulation and an insulation sheet.
[0012] In addition, an air flow separation plate (131) with excellent insulation is installed inside the sponge base to divide the inside of the sponge base in half in the longitudinal direction, so that an air flow path that smoothly guides the flow of air is formed along the longitudinal direction of the inside of the mattress, and the air flows smoothly along the air flow path, thereby sucking in the air on the surface of the mattress, thereby enabling the temperature of the surface of the mattress to be controlled.
[0013] And, the air flow path formed in the above sponge base is filled with springs, and the air net mat is positioned on top of the air flow path, and the air heated by the PTC surface film heater located at the bottom of the mattress - PTC graphene surface film heater, PTC carbon surface film heater, carbon fiber heater, etc. - is intended to be transferred to the upper air net mat from the wide space inside by natural convection without leaking due to the excellent insulation of the sponge.
[0014] This mattress uses the pressure difference of Bernoulli's principle to move the outside air at high speed under the airnet mattress by installing a low-noise blower, so that the air inside the airnet mattress is forcibly circulated to create forced convection, and we propose an excellent mattress that can control the indoor temperature by controlling the air conditioner installed in the sleeping area according to time and temperature changes.
[0015] And the present invention is to construct an air net mat with a porosity of 30% or more using petrochemical resins (POE, PE, PP, etc.) so that air can circulate freely, and the air net mat can be washed with water and easily dried.
[0016] In addition, the mattress of the present invention is designed so that all parts are modularized and standardized, so that if a specific module breaks down, it can be easily replaced.
[0017] In addition, the mattress of the present invention is designed to enable easy assembly or disassembly of the mattress by inserting or removing parts of the mattress of the present invention without the need for auxiliary devices such as bolts, nuts, and assembly tools during the assembly process.
[0018] In addition, the present invention aims to prevent the phenomenon of the air net mat sinking and the phenomenon of weakening the spring restoring force, which were major problems in the existing invention, by supporting the lower part of the air net mat by arranging a very lightweight grid mesh sheet or a bridge-type carbon fiber reinforced frame that is less than 1 / 4 the weight of steel but has a strength more than twice that of steel.
[0019] As described above, the present invention is designed to be very simple and easy to disassemble and assemble, so that after easy disassembly, standardized unit parts can be washed in water, thereby keeping the mattress clean, and thus contributing to maintaining and managing the health of users of the mattress.
[0020] And the present invention, when the yellow clay of the yellow clay sheet and yellow clay bar is heated by the heat generated by the PTC surface film heater - PTC graphene surface film heater, PTC carbon surface film heater, carbon fiber heater, etc. - as described above, far infrared rays are generated, and this far infrared rays activate the physiological function of the user's cells, generate heat energy, have a photoelectric effect that releases harmful substances in the body, and relaxes the blood vessels of the sleeper, thereby contributing to maintaining and managing the health of the user who sleeps on the mattress of the present invention.
[0021] Additionally, the scent of trees such as pine trees from the yellow clay sheet and yellow clay bar is intended to provide the effect of forest bathing to users who are taking a nap.
[0022] The present invention aims to add a function that can ground and remove static electricity generated by a mattress user tossing and turning while sleeping by placing a conductive line on the top cover of the mattress, thereby minimizing health damage caused by static electricity generated while the mattress user is sleeping.
[0023] The present invention provides a separate PTC surface heater, a separate blower fan, a separate spring, and a separate air flow path so that two people can control their respective sleeping temperatures when sleeping on the same two-person mattress, and uses two auxiliary controllers and two master controllers to enable each of the two users to have a good night's sleep.
[0024] To solve the above problem, the smart mattress of the present invention is equipped with a master controller (300) that detects the temperature, humidity, lighting, and noise around the mattress user who is sleeping, and detects the movement of the mattress user who is sleeping;
[0025] The above temperature is measured by a temperature sensor, the above humidity by a humidity sensor, the above lighting by a light sensor, the above noise by a noise sensor, and the above mattress user's movement by a radar sensor, and the master controller (300) collects the primary data;
[0026] The master controller (300) analyzes the primary data and transmits the primary data to the mobile phone's app and the app server, so that the user's sleep pattern graph can be checked in the app;
[0027] The above master controller (300) is installed at the head of the mattress (100) user or on the wall of the room where the mattress is located;
[0028] The above mattress (100) is provided with a bottom cover (102) and an upper cover (101) in which a conductive line is arranged;
[0029] A sponge base (170) is provided that is inserted into the upper part of the lower cover (102) and is seated inside the lower cover (102), and the material of the sponge base (170) is sponge;
[0030] A seating space (100MU-SP) is formed in the above sponge base (170), and an upright protruding convex frame (170-FM) is formed surrounding the periphery of the seating space (100MU-SP);
[0031] The above-mentioned settling space (100MU-SP) is characterized in that a settling space stacking unit (100MU) can be inserted and settled.
[0032] And, the upper part of the convex frame (170-FM) is a horizontal plane;
[0033] An auxiliary controller (200) is provided that communicates with the master controller (300) and controls the temperature of the PTC surface film heater (150) provided in the seating space stacking unit (100MU) according to the optimal sleep pattern graph of the mattress user on the app;
[0034] In addition, the auxiliary controller (200) communicates with the master controller (300) and, according to the optimal sleeping pattern graph of the mattress user on the app, is inserted into the convex frame (170-FM) of the sponge base (170) and is characterized by controlling the rotation speed of the blower fan (181) capable of supplying air into the interior of the mattress.
[0035] And the above, the settling space stacking unit (100MU) is;
[0036] It is characterized by a structure in which a PTC surface heater (150), specifically, one of a PTC surface film heater (150), a PTC carbon surface film heater, and a carbon fiber heater, is laminated on the upper part of an insulation sheet (160), a yellow clay sheet (140) is laminated on the upper part of the PTC surface film heater (150), and a spring unit (130-SU) is laminated on the upper part of the yellow clay sheet (140).
[0037] Meanwhile, a wire mesh sheet (120) is laminated on the upper part of the spring unit (130-SU), and the outer surface of the wire mesh sheet (120) is supported by being placed on the upper horizontal surface of the convex frame (170-FM);
[0038] On the upper part of the above wire mesh sheet (120), a mesh made of one of POE resin, PP resin, and PE resin is formed, and an air net mat (110) that allows free air flow is laminated;
[0039] An upper cover (101) is laminated on the upper part of the above air net mat (110);
[0040] A plurality of temperature sensors are further installed inside the above air net mat (110) to detect the temperature, and based on the detected temperature of the air net mat (110), the master controller (300) can control the temperature of the PTC surface film heater (150) through the auxiliary controller (200);
[0041] In the above spring unit (130-SU);
[0042] A plurality of long unit springs (130-SPR) are arranged upright on the same virtual horizontal plane;
[0043] A number of fastening lines (130-FWR) are installed inside the spring unit (130-SU);
[0044] The above-mentioned long-sleeved unit spring (130-SPR) is interconnected with an adjacent long-sleeved unit spring (130-SPR) by a fastening line (130-FWR), and at the same time, a plurality of long-sleeved unit springs (130-SPR) are each connected to a fastening line (130-FWR);
[0045] An upper guide wire (130-UGW) is provided to guide and support the upper outer surface of a group of a plurality of long unit springs (130-SPR) arranged on the above virtual horizontal plane;
[0046] The upper side of a plurality of long unit springs (130-SPR) is respectively connected to the upper guide wire (130-UGW) by a fastening means (130-FIX);
[0047] It further comprises a lower guide wire (130-BGW) that guides and supports the lower outer surface of a group of a plurality of long unit springs (130-SPR) listed on the above virtual horizontal plane;
[0048] It is characterized in that it includes a structure in which the lower side of a plurality of long unit springs (130-SPR) are each connected to the lower guide wire (130-BGW) by a fastening means.
[0049] And, the spring unit (130-SU) is formed with an air flow separation plate (131) that is installed upright in the center of the inside of the spring unit (130-SU) by dividing the spring unit (130-SU) in the longitudinal direction;
[0050] The length (SL) of the air flow separator (131) is shorter than the length (LLL) of the spring unit (130-SU),
[0051] One side of the above air flow separation plate (131) is installed in close contact with the inner surface of the widthwise convex frame (170-WFM) on which the auxiliary controller (200) is installed.
[0052] On the plane where the settling space stacking unit (100MU) is stacked in the settling space (100MU-SP) of the sponge base (170),
[0053] A plurality of longitudinal air flow paths are formed through which air can flow in the longitudinal direction of the spring unit;
[0054] The above longitudinal air flow path is composed of an air inlet flow path (L-APR) and an air discharge flow path (L-APB);
[0055] An air flow passage (APR) is provided that connects the outlet of the air inlet flow passage (L-APR) and the inlet of the air discharge flow passage (L-APB);
[0056] The above air flow passage (APR) is characterized by being an air flow passage through which air can flow in the width direction of the spring unit.
[0057] And, the sponge base (170) is provided with a rectangular floor sheet (170-BS) on a flat surface;
[0058] A convex frame (170-FM) protruding upward is formed along the outer edge of the above-mentioned floor sheet (170-BS);
[0059] The above convex frame (170-FM) includes a pair of longitudinal convex frames (170-LFM) formed in the longitudinal direction (170-LD) of the sponge base, and a pair of widthwise convex frames (170-WFM) formed in the widthwise direction (170-WD) of the sponge base;
[0060] Among a pair of width-wise convex frames (170-WFM), in one width-wise convex frame (170-WFM), an installation passage (170-PUR) of a blower unit (180-UNT) and an installation passage (170-FCR) of a second fixed case (180-2) are formed by penetrating the width-wise convex frame;
[0061] It is characterized in that a widthwise convex frame (170-WFM) in which an installation groove (170-BCH) of an auxiliary controller (200) is formed is formed between the installation passage (170-PUR) of the blower unit (180-UNT) and the installation passage (170-FCR) of the second fixed case (180-2).
[0062] The smart mattress of the present invention for solving the above problems is:
[0063] A convex frame (170-FM) protruding upward along the outer edge of a rectangular sheet on a flat surface is provided, and a blower fan (181) is installed in the convex frame (170-FM);
[0064] It is characterized by having a number of springs installed inside a space formed by being surrounded by a protruding convex frame (170-FM).
[0065] The smart mattress of the present invention for solving the above problems is:
[0066] A bridge-shaped carbon fiber reinforced frame (700) is inserted into the lower part of the air net mat (110) and installed in the longitudinal direction of the air net mat (110);
[0067] On the upper part of the carbon fiber reinforced mold (700), a number of air circulation holes (700-AP) are formed that penetrate between the inside and outside of the carbon fiber reinforced mold (700);
[0068] A yellow clay powder bar (700GBT) is inserted and installed inside the carbon fiber reinforced mold (700);
[0069] The above yellow clay powder bar (700GBT) is a yellow clay stick (700G) coated with wood powder (700T) on the outer periphery;
[0070] The above wood powder (700T) is characterized by being a mixture of powders of oak, pine, cypress, and thuja.
[0071] And, the above blower unit (180-UNT) is composed of a first fixed case (180-1), an air filter (183), and a blower fan (181);
[0072] The above first fixed case (180-1) is a pipe having a rectangular cross-section and a continuous hollow space formed inside so that air can pass through it in the horizontal direction;
[0073] The above first fixed case (180-1) is a wide fixed case (180-1LR) and a narrow fixed case (180-1SM) that are connected in series on the same horizontal plane in the horizontal direction;
[0074] The width (BB) of the wide fixed case (180-1LR) is larger than the width (bb) of the narrow fixed case (180-1SM) (BB 〉bb);
[0075] The height (h1) of the wide fixed case (180-1LR) and the height (h2) of the narrow fixed case (180-1SM) are the same (h1=h2);
[0076] The length (LL) of the wide fixed case (180-1LR) and the length (SS) of the narrow fixed case (180-1SM) are also the same (LL=SS);
[0077] When the wide fixed case (180-1LR) and the narrow fixed case (180-1SM) are connected to each other, steps (180-Step) are formed on the left and right sides of the contact surface;
[0078] The blower fan (181) is fixed by being forcibly fitted inside the small fixed case (180-1SM).
[0079] The air filter (183) is inserted into the interior of the large fixed case (180-1LR), and the outer surface of the air filter (183) is fixed in contact with the steps (180-Step) on the left and right;
[0080] The technical feature is that a second step (170-Step) corresponding to the step (180-Step) formed on the left and right of the first fixed case (180-1) is formed on the installation passage (170-PUR) of the blower unit (180-UNT) formed on the sponge base (170) into which the first fixed case (180-1) is inserted and installed, and is formed on the widthwise convex frame (170-WFM) formed on the left and right of the installation passage (170-PUR) of the blower unit (180-UNT).
[0081] The present invention has excellent thermal efficiency because the heat generated from the PTC surface film heater is transmitted directly to the upper cover of the mattress without leaking to the outside due to the structure of a compact sponge base in which a settling space is formed.
[0082] By adjusting the surface temperature of the mattress according to the sleeping environment and sleeping pattern of the mattress user, the user can get a good night's sleep, thereby maintaining and managing the health of the mattress user.
[0083] The conductive wire placed on the top cover of the mattress can ground and eliminate static electricity generated by the mattress user's body tossing and turning while sleeping in real time, thereby minimizing health problems caused by static electricity generated while the mattress user sleeps.
[0084] Additionally, all parts of the mattress are modularized and standardized, making it easy to replace if a specific part breaks down.
[0085] In addition, there is an effect that the assembly of the mattress is completed by stacking or fitting all the parts of the mattress together without the need for auxiliary parts such as bolts or nuts during the assembly process.
[0086] In addition, the present invention can prevent the sinking phenomenon of the air net mat (110), which was a major problem in the existing invention, by supporting the lower part of the air net mat (110) by arranging a very lightweight grid-type wire mesh sheet or a bridge-type carbon fiber reinforced frame that is less than 1 / 4 the weight of steel but has a strength more than twice that of steel.
[0087] And since it is very simple and easy to disassemble and assemble, it is designed to be easily disassembled and the standardized unit parts can be washed with water, making it easy to maintain the cleanliness of the mattress, and thus helping to maintain and manage the health of mattress users.
[0088] Specifically, by heating the yellow clay inside the yellow clay sheet or yellow clay bar by the heat generated from the surface film heater, far infrared rays are emitted. These far infrared rays activate the physiological functions of the mattress user's cells, generate heat energy, have a photoelectric effect that releases harmful substances, and have the effect of relaxing the mattress user's blood vessels.
[0089] Additionally, the scent from the wood powder can give the mattress user a forest bathing effect while sleeping.
[0090] Figure 1 is a perspective view of the exterior of the smart mattress of the present invention.
[0091] Figure 2 is an exploded perspective view of the single-person smart mattress of the present invention.
[0092] FIG. 3a is a plan view of the smart mattress of the present invention, as viewed from above, with the upper cover, etc. removed so that the spring unit (130-SU) inside the smart mattress of the present invention can be seen.
[0093] Fig. 3b is a conceptual diagram illustrating that the heat generated from the PTC surface film heater (150) in Fig. 3a moves upward without heat loss within the sponge-based settling space (100MU-SP).
[0094] Figure 3c is an enlarged view of part “A” in Figure 3b.
[0095] Figure 4 is a conceptual diagram showing the control structure of the smart mattress of the present invention.
[0096] FIG. 5 is an enlarged view of a portion of the structure of the lower cover and sponge base (170) of the present invention, showing a structure in which the first and second fixed cases are mounted on the sponge base (170).
[0097] Figure 6a is a plan view of the spring unit (130-SU) of the present invention.
[0098] Figure 6b is a perspective view of a long unit spring (130-SPR) of the present invention.
[0099] Fig. 7 is an example graph of a sleep pattern of a user sleeping on a smart mattress of the present invention.
[0100] Fig. 8 is a cross-sectional view showing the internal joint structure of the blower unit (180-UNT) of the present invention, in which an air filter (183) and a blower fan (181) are installed in the first fixed case (180-1).
[0101] FIG. 9a is a cross-sectional view showing another embodiment of the present invention in which a bridge-type carbon fiber reinforced mold (700) is inserted into the lower part of an air net mat (110) and a yellow earth powder bar (700GBT) is inserted into the inside of the carbon fiber reinforced mold (700).
[0102] Figure 9b is a perspective view showing the lower structure of the airnet mat.
[0103] Figure 9c is a perspective view of a yellow earth powder (700GBT).
[0104] Figure 9d is a perspective view of a carbon fiber reinforced mold (700).
[0105] Figure 10 illustrates the shape of the smart mattress of the present invention when manufactured as a mattress for two people.
[0106] [Explanation of symbols]
[0107] 100: Mattress 101: Top Cover
[0108] 102: Bottom cover 110: Airnet mat
[0109] 120: Wire mesh sheet 130-SPR: Long unit spring
[0110] 131: Air flow separator 140: Yellow clay sheet
[0111] 150: PTC surface film heater. 151: Power cable.
[0112] 160: Insulation sheet 170: Sponge base
[0113] 180-1: First fixed case 181: Blower fan
[0114] 182: Connector cable 183: Air filter
[0115] 200: Auxiliary controller 201: Power cable
[0116] 300: Master controller 301: Power cable
[0117] We spend a third of our lives sleeping. Sleep isn't simply a matter of rest; it's a vitally important process that directly impacts our physical and mental health. Sleep offers countless health benefits and, as it repeats itself every 24 hours, it's a prescription for our recovery.
[0118] Sufficient sleep energizes various brain functions, including learning, memory, and logical judgment and choice. It also re-energizes our immune system to fight cancer, ward off infections, and ward off various disease factors. It fine-tunes the balance between insulin and sugar levels to restore the body's metabolic state. It also regulates appetite, encourages healthy eating habits to aid weight management, and, from a nutritional perspective, promotes the flourishing of gut microbes, which are the starting point of our health. It also lowers blood pressure, maintaining heart health and strengthening the cardiovascular system. Conversely, lack of sufficient sleep leaves our bodies vulnerable to external factors, making us susceptible to various metabolic diseases. It can also lead to frequent mistakes and decreased work efficiency, leading to numerous disruptions in daily life.
[0119] The present invention was developed to improve the quality of sleep of users of the mattress, thereby minimizing social problems and personal health deterioration caused by illness. There are numerous factors that determine sleep quality. External factors include temperature, humidity, noise, lighting, and wind, while internal factors include the user's current medical condition, daily changes in physical condition, and stress. Among these factors, temperature and humidity are among those that can be addressed with a mattress. Many people have experienced the experience of having to kick off the blanket and then warm up again repeatedly in the winter due to direct heat transfer to the user while sleeping. In the summer, many people have experienced the feeling of heat on their backs, causing them to toss and turn repeatedly while trying to sleep. By measuring the sleeping environment, it automatically provides optimal sleeping conditions based on the correlation between humidity and temperature, and instead of direct heat transfer through heat conduction, the air containing heat wraps the user's body warmly through natural convection, and the blower generates forced convection to dissipate heat from body temperature. It is expected to be very effective in maintaining the quality of sleep of mattress users - deep sleep and sufficient sleep time.
[0120] Referring to the drawings shown in FIGS. 1 to 8, the first embodiment of the present invention will be described in detail.
[0121] As illustrated in FIG. 1, the present invention is provided with a master controller (300) that can detect temperature, humidity, lighting, and noise around a sleeping mattress user and can detect the movement of the sleeping mattress user.
[0122] The master controller (300) can collect primary data by measuring the temperature around the mattress user taking a nap with a temperature sensor, the humidity with a humidity sensor, the lighting with a light sensor, the noise with a noise sensor, and the movement of the mattress user with a radar sensor.
[0123] With the information collected as described above, the master controller (300) analyzes the primary data and transmits the primary data to an app installed on a mobile phone, etc., and a web server, so that a customized sleep pattern graph (see FIG. 7) of a user sleeping on the mattress can be checked on the app.
[0124] The above master controller (300) can be installed at the head of the mattress (100) user or on the wall of the room where the mattress is located.
[0125] Additionally, the master controller (300) has a function of controlling the temperature of the PTC surface film heater (150) installed on the mattress and the air conditioner installed indoors in response to the sleep pattern graph of the user sleeping on the mattress.
[0126] Meanwhile, the mattress (100) is provided with a bottom cover (102) and an upper cover (101) in which a conductive line is arranged.
[0127] The conductive wire of the top cover is connected to the ground wire, thereby removing static electricity generated in the top cover.
[0128] The lower cover (102) and upper cover (101) shown in Fig. 2 can be made of cloth.
[0129] The sponge base (170) can be fitted into the upper part of the lower cover (102) to connect the sponge base to the lower cover.
[0130] Before attaching the sponge base (170) to the lower cover (102), it is preferable to install the blower unit (180-UNT) in the installation passage (170-PUR) of the blower unit (180-UNT) formed in the sponge base (170), and also to install the second fixed case (180-2) in the installation passage (170-FCR) of the second fixed case (180-2), and also to attach the auxiliary controller (200) in advance to the installation groove (170-BCH) of the auxiliary controller (200) of the widthwise convex frame (170-WFM).
[0131] Meanwhile, in the installation passage (170-FCR) of the second fixed case (180-2), only the second fixed case (180-2) can be installed without installing the air filter (183) and the blower fan (181) inside the second fixed case (180-2).
[0132] Alternatively, the air filter (183) may not be installed inside the second fixed case (180-2), but may be installed in the installation passage (170-FCR) of the second fixed case (180-2) by inserting a blower fan (181).
[0133] As shown in Fig. 3a, the blower fan (181) inserted into the first fixed case (180-1) is installed to suck air from the outside of the mattress to the inside.
[0134] The blower fan (181) inserted into the second fixed case (180-2) can be installed to discharge air from the inside of the mattress to the outside.
[0135] Meanwhile, when the sponge base (170) is connected to the lower cover (102), a first mesh net (102-AMN) and a second mesh net (102-BMN) are formed on the lower cover (102) facing the blower unit (180-UNT) and the second fixed case (180-2) installed on the sponge base (170).
[0136] As shown in Fig. 3 a, external air can be introduced through the first mesh (102-AMN) and pass through the blower unit (180-UNT) into the sponge base (170).
[0137] Air circulating inside the sponge base (170) can pass through the second fixed case (180-2) and the second mesh net (102-BMN) to be discharged to the outside.
[0138] The blower unit (180-UNT) illustrated in FIG. 8 and FIG. 5 may be composed of a first fixed case (180-1), an air filter (183), and a blower fan (181).
[0139] The above first fixed case (180-1) is a pipe having a rectangular cross-section and a continuous hollow space formed inside, through which air can pass in the transverse direction. In addition, the longitudinal cross-section shape of the hollow space inside is also rectangular.
[0140] As shown in Fig. 8, the first fixed case (180-1) is composed of a wide fixed case (180-1LR) and a narrow fixed case (180-1SM) that are connected in series on the same horizontal plane in the horizontal direction.
[0141] The width (BB) of the wide fixed case (180-1LR) is larger than the width (bb) of the narrow fixed case (180-1SM) (BB 〉bb);
[0142] The height (h1) of the wide fixed case (180-1LR) and the height (h2) of the narrow fixed case (180-1SM) are the same (h1=h2).
[0143] Additionally, the length (LL) of the wide fixed case (180-1LR) and the length (SS) of the narrow fixed case (180-1SM) are the same (LL=SS).
[0144] When the wide fixed case (180-1LR) and the narrow fixed case (180-1SM) are connected to each other, steps (180-Step) are formed on the left and right sides of the contact surface.
[0145] The blower fan (181) is fixed by being forcibly fitted inside the small fixed case (180-1SM).
[0146] The air filter (183) is inserted into the interior of the large fixed case (180-1LR), and the outer surface of the air filter (183) can be fixed by coming into contact with the steps (180-Step) on the left and right.
[0147] Meanwhile, as illustrated in FIG. 5, in the installation passage (170-PUR) of the blower unit (180-UNT) formed in the sponge base (170) into which the first fixed case (180-1) is inserted and installed, a second step (170-Step) corresponding to the step (180-Step) formed on the left and right of the first fixed case (180-1) is formed on the widthwise convex frame (170-WFM) formed on the left and right of the installation passage (170-PUR) of the blower unit (180-UNT).
[0148] When assembling the mattress, the air filter (183) and the blower fan (181) are pushed into the first fixed case (180-1) and then the first fixed case (180-1) with the air filter (183) and the blower fan (181) assembled is pushed from the outside to the inside of the installation passage (170-PUR) of the blower unit (180-UNT) to complete the assembly. When disassembling, the assembly is performed in the reverse order so that washing or cleaning can be done after disassembly.
[0149] Meanwhile, nothing is installed inside the second fixed case (180-2) as shown in FIG. 5, and only the second fixed case (180-2) can be installed in the installation passage (170-FCR) of the second fixed case (180-2) of the sponge base, and depending on the situation, a blower fan (181) can be installed inside the second fixed case (180-2).
[0150] In addition, the exterior, internal structure, and specifications of the first fixed case and the second fixed case (180-2) are identical.
[0151] Meanwhile, a sponge base (170) is provided that is inserted into the upper part of the lower cover (102) and is seated inside the lower cover (102), and the material of the sponge base (170) is sponge.
[0152] In addition, the above sponge is not a high-elasticity sponge, but a high-hardness sponge, so that ease of design and durability can be secured.
[0153] And, as shown in Fig. 2, a seating space (100MU-SP) is formed in the sponge base (170), and an upright protruding convex frame (170-FM) is formed surrounding the periphery of the seating space (100MU-SP); a seating space stacking unit (100MU) can be inserted and seated in the seating space (100MU-SP).
[0154] As shown in Fig. 2, a mounting space (100MU-SP) is formed in the sponge base (170), and a PTC surface film heater (150) or the like is mounted and mounted in the mounting space (100MU-SP).
[0155] Accordingly, as illustrated in FIG. 3b, the heat generated from the PTC surface film heater (150) is not leaked out from the seating space (100MU-SP), which is an internal space surrounded by a convex frame (170-FM), but is emitted to the upper part of the mattress, thereby enabling heating of the mattress very efficiently, and ultimately enabling the production of an excellent mattress that is energy efficient and very lightweight.
[0156] Meanwhile, as shown in FIG. 2, the upper part of the convex frame (170-FM) is a horizontal surface, so that the wire mesh sheet (120) that is mounted on the upper horizontal surface of the convex frame (170-FM) can be stably mounted.
[0157] The wire mesh sheet (120) is a sheet in the form of a net (wire mesh) woven with wires, allowing free air circulation.
[0158] The control method of the present invention is described with reference to FIG. 4.
[0159] The present invention provides a master controller (300) that can detect temperature, humidity, lighting, and noise around a sleeping mattress user and can detect the movement of the sleeping mattress user.
[0160] The above temperature can be measured by a temperature sensor, the above humidity by a humidity sensor, the above lighting by a light sensor, the above noise by a noise sensor, and the above mattress user's movement by a radar sensor, so that the master controller (300) can collect primary data.
[0161] The above master controller (300) may be installed in a location close to a mattress user who is sleeping. That is, the master controller (300) may be installed on a wall in a room where a mattress (100) is placed or at the head of the mattress user.
[0162] The master controller (300) analyzes the primary data and transmits the primary data to an app on a mobile phone or personal PC and a web server, and the user's sleep pattern graph (see Fig. 7) can be checked in the app.
[0163] Sleep pattern graphs can be created and stored by referencing information from long-term analysis of specific mattress users' sleep patterns.
[0164] In addition, an auxiliary controller (200) that controls the temperature of the PTC surface film heater (150) provided in the seating space stacking unit (100MU) according to the optimal sleep pattern graph of the mattress user on the app by communicating with the master controller (300) may be provided.
[0165] In addition, the auxiliary controller (200) communicates with the master controller (300) and, according to the optimal sleeping pattern graph of the mattress user on the app, is inserted into the convex frame (170-FM) of the sponge base (170) and can control the rotation speed of the blower fan (181) that can supply air into the inside of the mattress.
[0166] The settling space stacking unit (100MU) illustrated in Fig. 2 is configured as follows.
[0167] The settling space laminated unit (100MU) has a structure in which a PTC surface film heater (150) is laminated on top of an insulating sheet (160), a yellow clay sheet (140) is laminated on top of the PTC surface film heater (150), and a spring unit (130-SU) is laminated on top of the yellow clay sheet (140).
[0168] The above yellow clay sheet (140) can be manufactured in the form of a sheet by mixing yellow clay containing a certain amount of moisture with fibers and powder of oak, pine, cypress, and thuja, putting it into a mold, and then pressing it under high pressure.
[0169] The above insulation sheet (160) can be formed of a material with excellent insulation properties, and is placed on the upper surface of the bottom sheet (170-BS) of the sponge base (170) to prevent heat generated from the PTC surface film heater (150) from leaking to the outside.
[0170] The above PTC is an abbreviation for Positive Temperature Coefficient, and refers to a heater product in which the heating element controls its own temperature.
[0171] PTC film heaters are energy-efficient, ultra-low-energy heaters that utilize far-infrared radiation heating, where carbon semiconductors generate heat and emit far-infrared rays and negative ions. Carbon is coated across both sides of the film, ensuring excellent thermal conductivity. The PTC function automatically prevents overheating by slowing thermal conductivity once the film reaches 50% of its overheating level. Furthermore, the carbon itself boasts excellent durability, ensuring stability.
[0172] The yellow clay and wood powder sheet (140) can be manufactured by adding yellow clay and wood powder so that the heat generated from the PTC surface film heater (150) can be well transferred upward and so that it has excellent thermal conductivity and can withstand high temperatures, and its outer shape is formed into a rectangle on a flat surface.
[0173] Additionally, the above yellow clay and wood powder sheet (140) can be manufactured by adding a heat-resistant material to yellow clay and wood powder.
[0174] Alternatively, the present invention may be manufactured, in some cases, by using a heater top board instead of using a yellow clay sheet (140).
[0175] The above heater top board can be manufactured from a material that has excellent thermal conductivity, can withstand high temperatures, and can distribute the load of the spring unit (130-SU) so that the heat generated from the PTC surface film heater (150) can be well transferred to the upper part, and does not damage the PTC surface film heater (150). The outer shape is rectangular in plan view and formed in a board shape.
[0176] And, a spring unit (130-SU) is laminated on the upper part of the yellow clay sheet (140).
[0177] As shown in Fig. 2, a wire mesh sheet (120) is laminated on the upper part of the spring unit (130-SU), and the outer surface of the lower surface of the wire mesh sheet (120) is stably supported by being placed on the upper horizontal surface of the convex frame (170-FM).
[0178] On the upper part of the above wire mesh sheet (120), an air net mat (110) is laminated, which has a mesh formed with petrochemical resin (POE, PP, PE, etc.) and allows free air flow; an upper cover (101) is laminated on the upper part of the air net mat (110); a plurality of temperature sensors are further installed inside the air net mat (110) to detect the temperature, and based on the detected temperature of the air net mat (110), the power of the mast controller can be turned on / off.
[0179] The lower outer surface of the above wire mesh sheet (120) is stably supported by being secured to the upper horizontal surface of the convex frame (170-FM), thereby preventing the air net mat (110) laminated on the upper part of the wire mesh sheet (120) from sinking or bending up and down.
[0180] The airnet mat (110), as shown in Fig. 9b, is a hexahedral mat that can support the user's waist and is made of polyolefin elastomer (POE), PP, PE, etc., which are also used as baby bottle materials, by forming wires, weaving the wires, and thermally compressing adjacent wires.
[0181] The airnet mat (110) manufactured as described above has an interior with a mesh structure, so it has excellent breathability.
[0182] As shown in FIGS. 6a, 6b and 2, the spring unit (130-SU) has;
[0183] A plurality of long unit springs (130-SPR) are arranged upright on the same virtual horizontal plane;
[0184] A number of fastening lines (130-FWR) are installed inside the spring unit (130-SU).
[0185] As above, by making the shape of the spring, the waist part of the spring is concave, that is,
[0186] By forming a long-barreled spring, the spring has excellent elasticity and restoring force, and is also durable, which not only extends the life of the spring, but also makes it easy to connect long-barreled unit springs (130-SPR) to long-barreled unit springs (130-SPR), and also makes it easy to connect multiple connecting wires (130-FWR) to long-barreled unit springs (130-SPR), and also makes it easy to connect long-barreled unit springs (130-SPR) to upper guide wires (130-UGW) and lower guide wires (130-BGW), which ultimately makes it possible to manufacture a spring unit (130-SU) having a solid overall joint structure, excellent elasticity, and a compact structure, and has an excellent effect of minimizing damage to the spring unit (130-SU).
[0187] In addition, by making the shape of the long-sleeved unit spring (130-SPR) long-sleeved, that is, the waist of the upright spring becomes a concave long-sleeved shape, so that when two upright springs come into contact, the concave portion does not cause friction between the two springs, and ultimately, friction between the long-sleeved unit springs (130-SPR) is minimized, which has the excellent effect of minimizing noise generated from the mattress.
[0188] As described above, the long unit spring (130-SPR) is interconnected with the adjacent long unit spring (130-SPR) by a fastening line (130-FWR), and at the same time, a plurality of long unit springs (130-SPR) are each connected to a fastening line (130-FWR).
[0189] The above-mentioned fastening line (130-FWR) can be installed at both the upper and lower positions of a plurality of long unit springs (130-SPR).
[0190] It has an upper guide wire (130-UGW) that guides and supports the upper outer surface of a group of a plurality of long unit springs (130-SPR) listed on the above virtual horizontal plane;
[0191] The upper side of a plurality of long unit springs (130-SPR) can be respectively connected to the upper guide wire (130-UGW) by a fastening means (130-FIX).
[0192] It further includes a lower guide wire (130-BGW) that guides and supports the lower outer edge of a group of a plurality of long unit springs (130-SPR) listed on the above virtual horizontal plane (see Fig. 2);
[0193] We propose a smart mattress characterized by including a structure in which the lower ends of a plurality of long unit springs (130-SPR) are each connected to the lower guide wire (130-BGW) by a fastening means.
[0194] As shown in FIG. 2, FIG. 6a, and FIG. 6b, the spring unit (130-SU) includes a plurality of long unit springs (130-SPR), an air flow separation plate (131), an upper guide wire (130-UGW), a lower guide wire, a fastening wire (130-FWR), a fastening means (130-FIX), etc.
[0195] The spring unit (130-SU) shown in Fig. 2 and Fig. 6a is
[0196] The spring unit (130-SU) is divided into two parts in the longitudinal direction, and an air flow separation plate (131) is formed by being installed upright in the inner center of the spring unit (130-SU).
[0197] The above air flow separation plate (131) is installed in close contact with the inner surface of the widthwise convex frame (170-WFM) on which the auxiliary controller (200) is installed.
[0198] And, as shown in Fig. 3a, an air passage (APR) through which air can flow is formed between the inner wall of the convex frame (170-WFM) formed facing each other with the installation space (100MU-SP) between the width-wise convex frame (170-WFM) on which the auxiliary controller (200) is installed, and the end of the air flow separation plate (131).
[0199] That is, as shown in FIG. 3a and FIG. 6a, the spring unit (130-SU) is formed with an air flow separation plate (131) that is installed upright in the center of the inside of the spring unit (130-SU) by dividing the spring unit (130-SU) in the longitudinal direction;
[0200] The length (SL) of the air flow separator (131) is shorter than the length (LLL) of the spring unit (130-SU),
[0201] One side of the above air flow separation plate (131) is installed in close contact with the inner surface of the widthwise convex frame (170-WFM) on which the auxiliary controller (200) is installed.
[0202] The spring unit (130-SU) is equipped with an air flow passage (APR) through which air can flow in the width direction of the spring unit.
[0203] As shown in Fig. 3a, the air introduced into the blower fan (181) by the above structure moves along the air inflow path (L-APR) formed in the longitudinal direction of the spring unit (130-SU),
[0204] The air flow separation plate (131) turns right along the air flow passage (APR) where the air flow separation plate (131) is not installed, and the air that passes through the air flow passage (APR) turns right again and moves along the air discharge passage (L-APB) formed in the longitudinal direction of the spring unit (130-SU), passes through the second fixed case (180-2), and the air can be discharged to the outside of the mattress.
[0205] The above air flow passage (APR) is a passage through which air introduced by the blower fan (181) flows in the width direction of the spring unit (130-SU).
[0206] The air supplied by the blower fan along the plurality of arrows shown in Fig. 3a can take away the heat emitted from the body temperature of the mattress user on the upper part of the air net mat (110) and discharge it to the outside of the mattress through the phenomenon of forced convection.
[0207] As shown in Figures 2, 3 and 5,
[0208] The sponge base (170) is provided with a rectangular floor sheet (170-BS) on a flat surface;
[0209] A convex frame (170-FM) protruding upward is formed along the outer edge of the above-mentioned bottom sheet (170-BS); the convex frame (170-FM) includes a pair of longitudinal convex frames (170-LFM) formed in the longitudinal direction (170-LD) of the sponge base, and a pair of widthwise convex frames (170-WFM) formed in the widthwise direction (170-WD) of the sponge base.
[0210] Among a pair of width-wise convex frames (170-WFM), in one width-wise convex frame (170-WFM), an installation passage (170-PUR) of a blower unit (180-UNT) and an installation passage (170-FCR) of a second fixed case (180-2) are formed by penetrating the width-wise convex frame;
[0211] Between the installation passage (170-PUR) of the blower unit (180-UNT) and the installation passage (170-FCR) of the second fixed case (180-2), a width-wise convex frame (170-WFM) in which an installation groove (170-BCH) of the auxiliary controller (200) is formed is formed.
[0212] As described above, the structure of the sponge base (170) in which a convex frame (170-FM) protruding upward along the outer edge of the bottom sheet (170-BS) is formed prevents heat from being lost to the outside, and a mattress structure with high thermal efficiency can be completed.
[0213] That is, as shown in FIGS. 2 and 3, the heat generated from the PTC surface film heater (150) does not leak out from the seating space (100MU-SP), which is an internal space surrounded by a convex frame (170-FM), but is emitted to the upper part of the mattress, thereby enabling heating of the mattress very efficiently, and ultimately enabling the production of a mattress with excellent energy efficiency.
[0214] Meanwhile, the present invention constantly measures the movements of a mattress user taking a nap with a radar sensor, collects and analyzes the data by a master controller (300), and when no movements of the mattress user taking a nap are detected for a certain period of time, the master controller (300) transmits an emergency signal to an app on a mobile phone, so that emergency call voice and text messages recorded, recorded, and stored in advance in the app on the mobile phone can be automatically transmitted to an acquaintance or 119.
[0215] Meanwhile, as described above, the mattress (100) of the present invention is composed of a plurality of modularized parts; the modularized parts have the excellent features and advantages of being able to be compactly assembled into a mattress by simply fitting the modularized parts together or stacking other modularized parts on the upper surface of the modularized parts without assembling bolts or nuts, and being able to be easily disassembled by pulling or lifting, and being able to easily clean and wash each disassembled detailed part.
[0216] In addition, the present invention may be a smart mattress characterized in that, in another embodiment, a convex frame (170-FM) protruding upward along the outer edge of a rectangular sheet in a plan view is provided, a blower fan (181) is installed in the convex frame (170-FM), and a plurality of springs are placed inside a space formed by being surrounded by the protruding convex frame (170-FM).
[0217] And, as shown in Fig. 10, the present invention can be made into a two-person smart mattress by arranging sponge bases (170) in parallel.
[0218] If you use a smart mattress for two people, there will be two spring units (130-SU).
[0219] There are two yellow clay sheets (140), two PTC cotton film heaters (150), and two insulation sheets (160), and there are also two master controllers (300) and two auxiliary controllers (200).
[0220] In addition, the width of the upper cover (101), air net mat (110), wire mesh sheet (120), and lower cover (102) is widened to correspond to the width of the two-person sponge base.
[0221] And, the present invention can be implemented as follows in another embodiment, as shown in FIG. 9a.
[0222] A bridge-shaped carbon fiber reinforced frame (700) is inserted into the lower part of the air net mat (110) and installed in the longitudinal direction of the air net mat (110);
[0223] On the upper part of the carbon fiber reinforced mold (700), a number of air circulation holes (700-AP) are formed that penetrate between the inside and outside of the carbon fiber reinforced mold (700);
[0224] A yellow clay powder bar (700GBT) is inserted and installed inside the carbon fiber reinforced mold (700);
[0225] The above yellow clay powder bar (700GBT) is a yellow clay stick (700G) coated with wood powder (700T) on the outer periphery;
[0226] The above wood powder (700T) can be implemented as a smart mattress characterized by a mixture of powders of oak, pine, cypress, and thuja.
[0227] The above carbon fiber reinforced mold (700) is a composite material composed of high-strength carbon fiber and plastic matrix, and has the characteristic of having a density that is less than 1 / 4 of that of a general metal material, but a strength that is more than twice that of a general metal material.
[0228] The air net mat (110) has a wire mesh sheet (120) that supports the lower part of the air net mat (110). However, if the height (HA) of the air net mat (110) is formed high, a phenomenon may occur in which a specific part of the air net mat (110) is lowered by the weight of the mattress user.
[0229] In order to prevent the above-mentioned turning off phenomenon, a carbon fiber reinforced mold (700) is installed at the bottom of the air net mat (110) as described above, and at the same time, a yellow earth powder bar (700GBT) is installed inside the carbon fiber reinforced mold (700), which can help the health of the mattress user who is sleeping.
[0230] Meanwhile, since the yellow clay powder bar (700GBT) is inserted inside the carbon fiber reinforced mold (700), the lower part of the yellow clay powder bar (700GBT) can be supported by a wire mesh sheet (120) or a spring unit (130-SU).
[0231] According to an embodiment, the smart mattress of the present invention may be provided with only a yellow clay sheet (140) without a yellow clay powder bar (700GBT) and a carbon fiber reinforced mold (700), or may be provided with a yellow clay sheet (140), a yellow clay powder bar (700GBT), and a carbon fiber reinforced mold (700) together.
[0232] In addition, the present invention can install a carbon fiber reinforced mold (700) and a wire mesh sheet (120) together, or can select and install only one of the carbon fiber reinforced mold (700) or the wire mesh sheet (120).
[0233] And, by heating the yellow clay inside the yellow clay powder bar (700GBT) by the heat generated from the PTC surface film heater (150), far infrared rays are emitted, and the far infrared rays pass through the air circulation hole (700-AP) formed at the top of the carbon fiber reinforced mold (700) and move to the top of the mattress, and the far infrared rays activate the physiological function of the cells of the user sleeping on the mattress, generate heat energy, have a photoelectric effect that releases harmful substances, and have the effect of relaxing the user's blood vessels.
[0234] Additionally, the scent from the wood powder can give the mattress user a forest bathing effect while sleeping.
[0235]
Claims
1. A master controller (300) is provided that detects the temperature, humidity, lighting, and noise around the mattress user who is sleeping, and detects the movement of the mattress user who is sleeping; The above temperature is measured by a temperature sensor, the above humidity by a humidity sensor, the above lighting by a light sensor, the above noise by a noise sensor, and the above mattress user's movement by a radar sensor, and the master controller (300) collects the primary data; The master controller (300) analyzes the primary data, transmits the primary data to the mobile phone app and web server, and checks the user's sleep pattern graph in the app; The above master controller (300) is installed on the wall of the room where the mattress (100) is located or at the head of the mattress user; The above mattress (100) is provided with a bottom cover (102) and an upper cover (101) in which a conductive line is arranged; A sponge base (170) is provided that is inserted into the upper part of the lower cover (102) and is secured inside the lower cover (102), and the material of the sponge base (170) is sponge; A settling space (100MU-SP) is formed in the above sponge base (170), and an upright protruding convex frame (170-FM) is formed surrounding the periphery of the settling space (100MU-SP); In the above-mentioned settling space (100MU-SP), a settling space stacking unit (100MU) is inserted and settling; The upper part of the above convex frame (170-FM) is a horizontal plane; An auxiliary controller (200) is provided that controls the temperature of the PTC surface film heater (150) provided in the seating space lamination unit (100MU) according to the optimal sleep pattern graph of the mattress user on the app by communicating with the master controller (300); In addition, the auxiliary controller (200) communicates with the master controller (300) and controls the rotation speed of the blower fan (181) that can supply air into the inside of the mattress by being inserted into the convex frame (170-FM) of the sponge base (170) according to the optimal sleep pattern graph of the mattress user on the app; The above-mentioned settling space stacking unit (100MU) is; A PTC surface film heater (150) is laminated on top of an insulating sheet (160), a yellow clay sheet (140) is laminated on top of the PTC surface film heater (150), and a spring unit (130-SU) is laminated on top of the yellow clay sheet (140). A wire mesh sheet (120) is laminated on the upper part of the spring unit (130-SU), and the outer surface of the wire mesh sheet (120) is supported by being placed on the upper horizontal surface of the convex frame (170-FM); On the upper part of the above wire mesh sheet (120), an air net mat (110) is laminated with a POE resin mesh to allow free air flow; An upper cover (101) is laminated on the upper part of the above air net mat (110); A plurality of temperature sensors are further installed inside the above air net mat (110) to detect the temperature, and based on the detected temperature of the air net mat (110), the master controller (300) can control the temperature of the PTC surface film heater (150) through the auxiliary controller (200); In the above spring unit (130-SU); A plurality of long spherical unit springs (130-SPR) are arranged upright on the same virtual horizontal plane; A number of fastening lines (130-FWR) are installed inside the spring unit (130-SU); The above-mentioned long-sleeved unit spring (130-SPR) is interconnected with an adjacent long-sleeved unit spring (130-SPR) by a fastening line (130-FWR), and at the same time, a plurality of long-sleeved unit springs (130-SPR) are each connected to a fastening line (130-FWR); It has an upper guide wire (130-UGW) that guides and supports the upper outer surface of a group of a plurality of long unit springs (130-SPR) listed on the above virtual horizontal plane; The upper side of a plurality of long unit springs (130-SPR) is respectively connected to the upper guide wire (130-UGW) by a fastening means (130-FIX); It further comprises a lower guide wire (130-BGW) that guides and supports the lower outer surface of a group of a plurality of long unit springs (130-SPR) listed on the above virtual horizontal plane; The structure includes a lower end of a plurality of long unit springs (130-SPR) each connected to the lower guide wire (130-BGW) by a fastening means; The above sponge base (170) is provided with a rectangular floor sheet (170-BS) on a flat surface; A convex frame (170-FM) protruding upward is formed along the outer periphery of the above floor sheet (170-BS); The above convex frame (170-FM) includes a pair of longitudinal convex frames (170-LFM) formed in the longitudinal direction (170-LD) of the sponge base, and a pair of widthwise convex frames (170-WFM) formed in the widthwise direction (170-WD) of the sponge base; Among a pair of width-wise convex frames (170-WFM), in one width-wise convex frame (170-WFM), an installation passage (170-PUR) of a blower unit (180-UNT) and an installation passage (170-FCR) of a second fixed case (180-2) are formed by penetrating the width-wise convex frame; Between the installation passage (170-PUR) of the blower unit (180-UNT) and the installation passage (170-FCR) of the second fixed case (180-2), a width-wise convex frame (170-WFM) in which an installation groove (170-BCH) of the auxiliary controller (200) is formed is formed; The above blower unit (180-UNT) is composed of a first fixed case (180-1), an air filter (183), and a blower fan (181); The above first fixed case (180-1) is a pipe with a rectangular cross-section and a continuous hollow space formed inside to allow air to pass horizontally; The above first fixed case (180-1) is composed of a wide fixed case (180-1LR) and a narrow fixed case (180-1SM) that are connected in series on the same horizontal plane in the horizontal direction; The width (BB) of the wide fixed case (180-1LR) is larger than the width (bb) of the narrow fixed case (180-1SM) (BB 〉bb); The height (h1) of the wide fixed case (180-1LR) and the height (h2) of the narrow fixed case (180-1SM) are the same (h1=h2); The length (LL) of the wide fixed case (180-1LR) and the length (SS) of the narrow fixed case (180-1SM) are also the same (LL=SS); When the wide fixed case (180-1LR) and the narrow fixed case (180-1SM) are connected to each other, steps (180-Step) are formed on the left and right sides at the contact surface; The blower fan (181) is fixed by being forcibly fitted inside the small fixed case (180-1SM). The air filter (183) is inserted into the interior of a large fixed case (180-1LR), and the outer surface of the air filter (183) is fixed in contact with the steps (180-Step) on the left and right; A smart mattress characterized in that a second step (170-Step) corresponding to the step (180-Step) formed on the left and right of the first fixed case (180-1) is formed on the installation passage (170-PUR) of the blower unit (180-UNT) formed on the sponge base (170) into which the first fixed case (180-1) is inserted and installed, and also formed on the widthwise convex frame (170-WFM) formed on the left and right of the installation passage (170-PUR) of the blower unit (180-UNT).
2. In paragraph 1, The above spring unit (130-SU) is formed with an air flow separation plate (131) that is installed upright in the center of the inside of the spring unit (130-SU) by dividing the spring unit (130-SU) in the longitudinal direction; The length (SL) of the air flow separator (131) is shorter than the length (LLL) of the spring unit (130-SU). One side of the above air flow separation plate (131) is installed in close contact with the inner surface of the width-wise convex frame (170-WFM) on which the auxiliary controller (200) is installed. A smart mattress characterized in that the spring unit (130-SU) is equipped with an air flow passage (APR) through which air can flow in the width direction of the spring unit.
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