Flexible heating mattress

The flexible heating mattress with a multi-layer structure and integrated sensors addresses durability and temperature control issues, offering user-customized comfort and efficiency.

WO2026100831A1PCT designated stage Publication Date: 2026-05-15LIFE CAMA CO LTD
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Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
LIFE CAMA CO LTD
Filing Date
2024-12-13
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Conventional heated mattresses suffer from low durability due to fixed plate-shaped heating elements that are prone to damage, uneven temperature distribution causing discomfort, and lack user-customized temperature control.

Method used

A flexible heating wire and multi-layer structure with integrated sensors and a control unit for individual zone temperature control, sleep state monitoring, and user information collection.

Benefits of technology

Provides a durable, customizable thermal environment that adapts to individual user needs, enhancing sleep quality and energy efficiency while preventing damage from folding or bending.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a heating mattress and, more specifically, to a heating mattress having a multi-layered structure. The heating mattress comprises: an upper mattress; a lower mattress; a heater unit positioned between the upper mattress and the lower mattress and including a heating wire made of a flexible material and capable of being folded or rolled; a sensor unit for detecting the state of the heating wire; a communication unit for transmitting and receiving information related to the heating wire to and from a user terminal; and a control unit for controlling the temperature of the heating wire. The flexible heating mattress has a structure that is not damaged even when folded or bent by using a flexible heating wire and the multi-layer structure, provides user-customized temperature control and sleep state monitoring functions, collects user information through various sensors and the control unit, and controls the temperature of individual heater units on the basis of the collected user information, thereby providing an optimized sleep environment.
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Description

Flexible heated mattress

[0001] The present invention relates to a heating mattress, and more specifically, to a flexible heating mattress that utilizes a flexible heating wire and a multi-layer structure to have a structure that is not damaged even when folded or bent, provides user-customized temperature control and sleep state monitoring functions, collects user information through various sensors and a control unit, and controls the temperature of individual heater units based on this information to provide an optimized sleep environment.

[0002]

[0003] Generally, heated mattresses supplied heat using a fixed plate-shaped heating element structure, but this structure had the problem of low durability, making it unsuitable for folding or bending.

[0004] In particular, the heating wires were easily damaged, shortening the product's lifespan and potentially posing a safety risk in the event of a malfunction.

[0005] Existing products often use metal heating wires, and since these wires are configured in the form of fixed plates, there is a risk of damage during repeated use or movement.

[0006] In addition, the temperature distribution of the heating element is uneven, which can cause localized overheating, which causes discomfort to the user while sleeping and, in severe cases, carries a risk of fire.

[0007] Furthermore, existing technology simply regulates the temperature of the entire mattress, making customized temperature control difficult as it fails to reflect the user's individual sleep patterns, posture, and physical characteristics.

[0008] To solve this problem, prior art literature exists as follows.

[0009] Korean Registered Patent Publication No. 10-2270722 describes a cover body formed in a box shape with an open bottom to cover and wrap the top and edges of a foldable mattress, comprising an upper sheet portion covering the top of the foldable mattress and a side sheet portion integrally extended from the edge of the upper sheet portion to cover the edge of the foldable mattress, wherein each sheet portion is made of a double fabric consisting of an outer layer and an inner layer, and a fixing sheet portion having a heating wire arranged and fixed inside the upper sheet portion; heating wires arranged in parallel in multiple rows inside the upper sheet portion of the cover body to generate heat; and an electric wire provided on the inner side of the cover body and electrically connected to the heating wires to supply power. The present invention proposes a heating cover for a foldable bed mattress that includes a thermostat that controls the heating temperature and time of the heating wires and supplies power through a connector connected to the heating wires; and a specific part of the heating wire and the electric wire located at the part where the cover body is folded is loosely and elongated so that when the cover body is folded, the heating wire and the electric wire naturally extend and bend in the folding direction, thereby preventing sparks from occurring due to damage caused by repeated bending of the heating wire and the electric wire; and the thermostat includes a heating wave function that sequentially raises or lowers the temperature of the heating wires arranged in parallel in multiple stages to promote blood circulation and health for the user. The heating cover is wrapped around the top and edges of the mattress, and when the mattress is folded, it prevents damage to specific parts of the heating wire and the electric wire located at the folding part due to bending, and also allows for easy fixing of the heating wires.

[0010] Korean Registered Patent Publication No. 10-2367769 proposes a foldable heating mat using a planar heating element, comprising a pad having a groove formed on one side and foldable around the groove, a planar heating element laminated on the other side of the pad and having a heating element and an electrode connecting the heating elements arranged on each side of the groove, and a film coated on one or both sides of the planar heating element, wherein when the planar heating element is folded together with the pad, the folding angle of the electrode is 5 to 60 degrees.

[0011] While these prior technologies evolved to improve durability and safety, there were still limitations regarding the usability of foldable mattresses and user-customized control technology.

[0012] Furthermore, conventional heated mattresses caused discomfort to users due to unevenly distributed heating wires, resulting in localized temperature fluctuations and difficulty maintaining a constant temperature for extended periods. Additionally, temperature control was limited to simply adjusting the temperature of the entire mattress, failing to account for individual users' sleep patterns, physical characteristics, and sleeping postures.

[0013]

[0014] To solve the aforementioned problems, the present invention aims to propose a flexible heated mattress that utilizes a flexible heating wire and a multi-layer structure to have a structure that is not damaged even when folded or bent, provides user-customized temperature control and sleep state monitoring functions, collects user information through various sensors and a control unit, and controls the temperature of individual heater units based on this information to provide an optimized sleep environment.

[0015] The problems of the present invention are not limited to those mentioned above, and other unmentioned problems will be clearly understood by those skilled in the art from the description below.

[0016]

[0017] To achieve the above objective, the present invention proposes a flexible thermal matrix comprising: a thermal mattress having a plurality of layer structures, wherein the thermal mattress comprises: an upper mattress; a lower mattress; a heater unit positioned between the upper mattress and the lower mattress and including a heating wire made of a flexible material that can be folded or rolled; a sensor unit for detecting the state of the heating wire; a communication unit for transmitting and receiving information related to the heating wire to and from a user terminal; and a control unit for controlling the temperature of the heating wire.

[0018] Here, the heater unit further comprises a first surface sheet located between the heating wire and the upper mattress; and a second surface sheet located between the heating wire and the lower mattress, wherein the first surface sheet is characterized by comprising one or more components of loess, charcoal, jade, and illite.

[0019] At this time, the heating wire is composed of multiple bundles and is characterized by including a heating wire that emits heat; a covering that wraps the heating wire in a bundle; and a bundle of Teflon fibers that fills the space between the heating wire and the covering to prevent the heating wire from twisting.

[0020] Meanwhile, the sensor unit includes a temperature sensor that detects the temperature of the heating wire and a motion sensor that detects the movement of a user using the flexible heating mattress, and the control unit is characterized by monitoring the user's sleep state through the motion sensor and controlling the temperature of the heating wire using an AI module.

[0021] Here, a plurality of heater units are located in zones between an upper mattress and a lower mattress, and in a state including at least a first heater and a second heater, the control unit is characterized by controlling the temperature of a first heating wire included in the first heater or controlling the temperature of a second heating wire included in the second heater using an AI module.

[0022] At this time, with the first zone corresponding to the first heater located on the left and the second zone corresponding to the second heater located on the right, the control unit obtains user body information including gender or age from the user terminal through the communication unit, and is characterized by setting the temperature of the first heating wire and the temperature of the second heating wire differently based on the body information.

[0023]

[0024] By providing the present invention configured as described above, it has a structure that is not damaged even when folded or bent by utilizing a flexible heating wire and a multi-layer structure, provides user-customized temperature control and sleep state monitoring functions, and collects user information through various sensors and a control unit, and controls the temperature of individual heater units based on this, thereby providing an optimized sleep environment.

[0025] The effects of the present invention are not limited to those mentioned above, and other unmentioned effects will be clearly understood by those skilled in the art from the description in the claims.

[0026]

[0027] FIG. 1 is a conceptual diagram showing the configuration of a flexible thermal mattress according to the present invention.

[0028] FIG. 2 is a cross-sectional view showing a flexible thermal mattress according to the present invention.

[0029] FIG. 3 is a schematic diagram showing a heating wire applied to a flexible thermal mattress according to the present invention.

[0030] FIG. 4 is an exemplary diagram showing the application of a heating wire to a flexible heated mattress according to the present invention.

[0031]

[0032] The advantages and features of the present invention and the methods for achieving them will become clear by referring to the embodiments described below in detail together with the accompanying drawings. However, the present invention is not limited to the embodiments disclosed below but may be implemented in various different forms. These embodiments are provided merely to ensure that the disclosure of the present invention is complete and to fully inform those skilled in the art of the scope of the invention, and the present invention is defined only by the scope of the claims. Throughout the specification, the same reference numerals refer to the same components.

[0033] The embodiments described herein will be described with reference to cross-sectional and / or plan views, which are exemplary illustrations of the invention. In the drawings, the thicknesses of films and regions are exaggerated for effective description of the technical content. Accordingly, the regions illustrated in the drawings are schematic in nature, and the shapes of the regions illustrated in the drawings are intended to illustrate specific forms of regions of the device and are not intended to limit the scope of the invention. Although terms such as first, second, third, etc., have been used to describe various components in the various embodiments of this specification, these components should not be limited by such terms. These terms are used merely to distinguish one component from another. The embodiments described and illustrated herein also include their complementary embodiments.

[0034] The terms used herein are for describing the embodiments and are not intended to limit the invention. In this specification, the singular form includes the plural form unless specifically stated otherwise in the text. As used herein, "comprises" and / or "comprising" do not exclude the presence or addition of one or more other components, steps, actions, and / or elements to the mentioned components, steps, actions, and / or elements.

[0035]

[0036] Unless otherwise defined, all terms used in this specification (including technical and scientific terms) may be used in a meaning that is commonly understood by those skilled in the art to which the present invention pertains. Additionally, terms defined in commonly used dictionaries are not to be interpreted ideally or excessively unless explicitly and specifically defined otherwise.

[0037]

[0038] Hereinafter, preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings so that those skilled in the art can easily implement the invention.

[0039] As shown in FIG. 1 and FIG. 4, the flexible heating mattress (1) of the present invention is composed of a multi-layer structure and is configured with main components including an upper mattress (100), a lower mattress (200), a heater unit (400), a sensor unit (500), a control unit (600), and a communication unit (700). The heater unit (400) is configured around a heating wire (300), and a first surface sheet (110) and a second surface sheet (210) are provided between the upper mattress (100) and the lower mattress (200) that protect the heating wire (300) and come into contact with the user's body. The heating wire (300) may be composed of a heating wire (310), a covering (330), and a fiber bundle (320) for preventing twisting.

[0040] The flexible thermal mattress (1) of the present invention performs the function of providing a thermal environment customized to the user. The temperature sensor (510) of the sensor unit (500) monitors the temperature of the heating wire (300) in real time, and the motion sensor (520) detects the user's movement. The collected data is processed by the control unit (600). Additionally, the optimal temperature based on the user's sleep state and body information is automatically set through the AI ​​module (610), and manual operation and data transmission and reception can be performed by providing an interface to the user terminal (2) through the communication unit (700).

[0041] Therefore, the flexible thermal mattress can improve sleep quality and increase energy efficiency through user-customized temperature control, and allows for independent temperature control in each zone, providing a thermal environment tailored to the individual constitution and preferences of couples or families even when used together. Additionally, since the mattress can be folded or rolled using flexible materials, ease of storage and transport can be expected.

[0042] For example, in a mattress divided into two zones, the heater unit (400) corresponding to each zone (first zone (A), second zone (B)) can independently control the temperature, so that if the user's left side feels colder, it can operate by increasing the temperature of the first heating wire included in the first heater (410) and lowering the temperature of the second heating wire included in the second heater (420).

[0043] Meanwhile, if an audio module including a sleep music playback function is added, music tailored to the user's sleep patterns can be played to create a more comfortable sleep environment, and if an environmental sensor that detects air quality is added, the mattress temperature can be intelligently adjusted according to the indoor temperature, humidity, and air quality.

[0044]

[0045] According to FIG. 2, the flexible heating mattress (1) first comprises a heating mattress composed of a plurality of layers including an upper mattress (100) and a lower mattress (200).

[0046] The heater unit (400) is located between the upper mattress (100) and the lower mattress (200) and may include a heating wire (300) made of a flexible material that can be folded or rolled.

[0047] According to FIG. 1, the heater unit (400) further includes a first surface sheet (110) located between the heating wire (300) and the upper mattress (100); and a second surface sheet (210) located between the heating wire (300) and the lower mattress (200), and the first surface sheet (110) may include one or more components of loess, charcoal, jade, and illite.

[0048] According to FIG. 3, the heating wire (300) may comprise a plurality of bundles, a heating wire (310) that emits heat; a covering (330) that wraps the heating wire (310) in a bundle; and a fiber bundle (320) made of Teflon material that fills the space between the heating wire (310) and the covering (330) to prevent the heating wire (310) from twisting.

[0049] In other words, the heater section (400) is configured around a heating wire (300), which is a core element of the flexible heating mattress, and the heating wire (300) is composed of a heating wire (310), a covering (330), and a fiber bundle (320), the heating wire (310) emits heat, the covering (330) protects the heating wire (300) from the external environment, and the fiber bundle (320) prevents the heating wire (310) from twisting, thereby providing durability for folding or rolling.

[0050] In this way, the heater unit (400) emits heat according to the temperature set through the user terminal (2) or the automatic control signal of the control unit (600) to create a warm environment of the mattress, so that each heater unit (400) can operate independently, allowing for temperature control in each zone of the mattress, and can contribute to warming only specific parts of the user or uniformly adjusting the perceived temperature.

[0051] Therefore, individual and precise control of the heater unit (400) improves the quality of sleep and maximizes energy efficiency by concentrating heat only in the necessary areas, thereby reducing unnecessary energy waste, and the heater unit (400) is designed to be flexible so that durability can be ensured while maintaining the flexibility of the mattress.

[0052]

[0053] According to FIG. 1, the sensor unit (500) can detect the state of the heating wire (300).

[0054] The sensor unit (500) includes a temperature sensor (510) that detects the temperature of the heating wire (300) and a motion sensor (520) that detects the movement of a user (or the movement of the mattress) using the flexible heating mattress, and the control unit (600) can monitor the user's sleep state through the motion sensor (520) and control the temperature of the heating wire (300) using the AI ​​module (610).

[0055] In other words, the sensor unit (500) is a key component for detecting the condition of the flexible heating mattress and includes a temperature sensor (510) and a motion sensor (520) to measure the temperature of the heating wire (300) in real time and to detect the user's movement or sleep state, so these two sensors can be integrated with other components inside the mattress to provide data to the control unit (600).

[0056] That is, the sensor unit (500) provides essential information for efficiently managing the temperature of the mattress and creating a user-customized sleep environment. The temperature sensor (510) monitors the heating state of the heating wire (300) and can send a signal to the control unit (600) to maintain a set temperature range, and the motion sensor (520) detects the user's movement and can adjust the mattress temperature when activity increases or create an optimal thermal environment according to the deep and shallow stages during sleep.

[0057] According to one embodiment of the present invention, the control unit (600) can determine whether the user is in a sleep state through the motion sensor (520) and the AI ​​module (610). For example, if there is no movement of the user or the mattress for a certain period of time (e.g., 1 hour) or if it is determined that the user moves in a general pattern of sleep (e.g., tossing and turning), the user may be recognized as being in a sleep state. At this time, the control unit (600) monitoring the sleep state can automatically adjust the temperature of the heating wire (300) to an appropriate temperature for the sleep state (e.g., 25 degrees).

[0058] In addition, according to one embodiment of the present invention, the control unit (600) can obtain the time of falling asleep, the time of waking up, etc. by analyzing the user's sleep pattern, the time from lying down in bed until falling asleep, and the time of falling asleep through the motion sensor (520) and the AI ​​module (610).

[0059] For example, if it is confirmed that the user has fallen asleep at 11:00 PM while the temperature of the heating element is set to be lower than the appropriate temperature for the sleep state, the control unit (600) can adjust the temperature of the heating element (300) to a first temperature (e.g., 23 degrees) by adjusting it only below a certain level from the current temperature (e.g., 20 degrees) during the time corresponding to the REM sleep state (11:00 PM to 1:00 AM), and then adjust it to the appropriate temperature for the sleep state (e.g., 25 degrees) after the time following the REM sleep state (after 1:00 AM) (2:00 AM).

[0060] Additionally, according to one embodiment of the present invention, the control unit (600) may turn off peripheral devices through the communication unit (700) when it is confirmed that the user has fallen asleep. For example, the flexible heating mattress (1) may be connected to a TV, lighting, etc. through the communication unit (700), and the control unit (600) may turn off peripheral devices (e.g., TV, lighting) when it is determined that the user has fallen asleep. In some cases, the peripheral devices may be kept on while maintaining the current state during the time corresponding to the REM sleep state (e.g., 2 hours after falling asleep) (in the case of lighting, the brightness may be slightly lowered (e.g., 50% or less) by adjusting the dimming state), and the peripheral devices may be turned off after the REM sleep state (e.g., 2 hours after falling asleep).

[0061] Meanwhile, the flexible heating matrices (1) can be divided into zones, and the heating wires can also be separated and arranged accordingly. For example, as shown in FIG. 4 which will be described later, it can be divided into a left zone and a right zone, but it can also be divided into an upper zone and a lower zone, and the heating wires can also be divided into an upper heating wire and a lower heating wire. That is, the user's upper body can be located in the upper zone, and the lower body can be located in the lower zone.

[0062] In this case, when it is confirmed that the user has fallen asleep, the control unit (600) can first adjust the temperature of the upper heating element placed in the upper section to an appropriate temperature for the sleep state (e.g., 25 degrees) during the time corresponding to the REM sleep state (e.g., 2 hours after falling asleep), and then adjust the temperature of the lower heating element to an appropriate temperature for the sleep state (e.g., 25 degrees) during the time after the REM sleep state (e.g., 2 hours after falling asleep).

[0063] Therefore, data collected in real time through the sensor unit (500) can enhance the automation and smart functions of the mattress, enabling an immediate response to changes in the user's body temperature or movements, thereby providing a comfortable sleeping environment, which can improve the quality of sleep and increase energy efficiency while simultaneously enhancing user satisfaction.

[0064]

[0065] According to FIG. 1, the control unit (600) can control the temperature of the heating wire (300).

[0066] The control unit (600) can control the temperature of the first heating wire (300a) included in the first heater (410) or the temperature of the second heating wire (300b) included in the second heater (420) by using the AI ​​module (610), in a state where a plurality of heater units (400) are located in zones between the upper mattress (100) and the lower mattress (200) and include at least the first heater (410) and the second heater (420).

[0067] In other words, the control unit (600) is a core control device of the flexible heating mattress and includes an AI module (610), receives data from the sensor unit (500), analyzes it, and controls the heating wire (300) of the heater unit (400), thereby enabling the execution of commands set by the user or automatically calculated settings through the transmission and reception of information with the user terminal (2) in conjunction with the communication unit (700).

[0068] That is, the control unit (600) performs the function of adjusting the thermal environment of the mattress to suit the user by analyzing data such as temperature, movement, and sleep patterns collected from the sensor unit (500) through the AI ​​module (610) to calculate the optimal temperature and transmit commands to the heater unit (400) of each zone, as well as interacting with the user in real time through the communication unit (700) and suggesting manual operation and setting changes.

[0069] Therefore, the control unit (600) enables intelligent operation of the mattress, thereby helping the user experience an optimal sleep environment, as well as energy consumption efficiency and the ability to respond quickly to changes in the user's physical condition and environment, and the automation using the AI ​​module (610) has room for continuous improvement of customized settings according to the user's sleep pattern.

[0070]

[0071] According to FIG. 1, the communication unit (700) can transmit and receive information related to the heating wire (300) to and from the user terminal (2).

[0072] As illustrated in FIG. 4, the control unit (600) obtains user body information including gender or age from the user terminal (2) through the communication unit (700) while the first zone (A) corresponding to the first heater (410) is located on the left and the second zone (B) corresponding to the second heater (420) is located on the right, and can set the temperature of the first heating wire (300a) and the temperature of the second heating wire (300b) differently based on the body information.

[0073] In other words, the communication unit (700) is a module responsible for transmitting and receiving data between the flexible heated mattress and an external device, and basically includes communication technologies such as Bluetooth, Wi-Fi, or Zigbee for wireless communication, and the communication unit (700) is connected to the control unit (600) and is capable of interoperability with various devices such as the user's smartphone, tablet, etc.

[0074] That is, the communication unit (700) can monitor the condition of the mattress through the user terminal (2) and remotely operate the settings, thereby receiving temperature setting and zone temperature adjustment commands from the user terminal (2), and providing data collected from the sensor unit (500) and the control unit (600) to the user in real time, as well as providing detailed information such as sleep quality reports and energy usage.

[0075] Therefore, real-time interaction between the user and the mattress is made possible through the communication unit (700), and the user experience is greatly improved. The remote control function allows the user to set up the mattress even when not lying in bed, and can provide a customized sleep environment by analyzing mattress usage patterns through data collection and feedback.

[0076] In addition, according to one embodiment of the present invention, the control unit (600) can determine whether the first heating wire (300a) and the second heating wire (300b) are operating normally through a plurality of temperature sensors placed on the first heating wire (300a) and the second heating wire (300b).

[0077] Specifically, a temperature sensor (not shown) may be placed at each of the first and other ends of the first heating wire (300a) and the second heating wire (300b). That is, two or more temperature sensors may be placed on each of the first heating wire (300a) and the second heating wire (300b), and these may be placed at a certain distance apart.

[0078] When each heating wire (300a, 300b) operates normally, the temperature can be maintained at nearly the same level, and when an abnormality (or abnormality) occurs at any point, the temperatures detected by the temperature sensors installed at both ends may differ from each other. Accordingly, the control unit (600) obtains temperature information from two or more first and second temperature sensors placed on the first heating wire (300a) (or the second heating wire (300b)), and if the temperature detected by the first temperature sensor and the temperature detected by the second temperature sensor differ by more than a preset temperature (e.g., 3 degrees), it determines that an abnormality has occurred in the first heating wire (300a) (or the second heating wire (300b)) and can transmit this to the user terminal (2).

[0079]

[0080] By providing the present invention configured as described above, it has the effect of providing an optimized sleep environment by utilizing a flexible heating wire (300) and a multi-layer structure so that it is not damaged even when folded or bent, providing user-customized temperature control and sleep state monitoring functions, collecting user information through various sensors and a control unit (600), and controlling the temperature of individual heater units (400) based on this information.

[0081]

[0082] The terms and words used in the specification and claims described above should not be interpreted as being limited to their ordinary or dictionary meanings, and should be interpreted in a meaning and concept consistent with the technical spirit of the invention, based on the principle that the inventor can appropriately define the concept of the terms to best describe his invention.

[0083] Therefore, the configurations illustrated in the drawings and embodiments described in this specification are merely one preferred embodiment of the present invention and do not represent all technical ideas of the present invention; thus, it should be understood that various equivalents and modifications that can replace them may exist at the time of filing this application.

[0084] Explanation of the * symbol

[0085] 1: Flexible Heated Mattress

[0086] 2: User terminal

[0087] 100: Top mattress

[0088] 110: First surface

[0089] 200: Bottom mattress

[0090] 210: Second surface

[0091] 300: Heating element

[0092] 300a: 1st heating element

[0093] 300b: 2nd heating wire

[0094] 310: Heating wire

[0095] 320: Fiber bundle

[0096] 330: Coating

[0097] 400: Heater section

[0098] 410: 1st heater

[0099] 420: 2nd heater

[0100] 500: Sensor section

[0101] 510: Temperature sensor

[0102] 520: Motion sensor

[0103] 600: Control unit

[0104] 610: AI Module

[0105] 700: Communications Department

Claims

1. In a thermal mattress composed of multiple layers, Upper mattress (100) and; Lower mattress (200) and; A heater unit (400) including a heating wire (300) that is made of a flexible material and is foldable or rollable, positioned between the upper mattress (100) and the lower mattress (200); A sensor unit (500) for detecting the state of the heating wire (300); A communication unit (700) that transmits and receives information related to the above heating wire (300) to and from a user terminal (2); A control unit (600) for controlling the temperature of the heating wire (300); A flexible thermal matrix characterized by including 2. In Claim 1, The heater unit (400) above is, A first surface sheet (110) located between the heating wire (300) and the upper mattress (100); and It further includes a second surface sheet (210) located between the heating wire (300) and the lower mattress (200), and The above-mentioned first surface sheet (110) is a flexible thermal matrix characterized by including one or more components of loess, charcoal, jade, and illite.

3. In Claim 2, The above heating wire (300) is, A heating wire (310) that emits heat and is composed of multiple bundles; A covering (330) that wraps the heating wire (310) in a bundle; A bundle of fibers (320) made of Teflon material that fills the space between the heating wire (310) and the covering (330) to prevent the heating wire (310) from twisting; A flexible heated mattress characterized by including 4. In Claim 1, The sensor unit (500) comprises a temperature sensor (510) that detects the temperature of the heating wire (300) and a motion sensor (520) that detects the movement of a user using the flexible heating mattress (1) of the present invention, A flexible heated mattress characterized in that the control unit (600) monitors the user's sleep state through the motion sensor (520) and controls the temperature of the heating wire (300) using the AI ​​module (610).

5. In Claim 4, A plurality of heater units (400) are positioned in zones between the upper mattress (100) and the lower mattress (200), and include at least a first heater (410) and a second heater (420). A flexible heating mattress characterized in that the control unit (600) controls the temperature of the first heating wire (300a) included in the first heater (410) or controls the temperature of the second heating wire (300b) included in the second heater (420) using the AI ​​module (610).

6. In Claim 5, With the first zone (A) corresponding to the first heater (410) located on the left and the second zone (B) corresponding to the second heater (420) located on the right, The above control unit (600) is, The user's physical information, including gender or age, is obtained from the user terminal (2) through the communication unit (700), and A flexible heating mattress characterized by setting the temperature of the first heating wire (300a) and the temperature of the second heating wire (300b) differently based on the above body information.