Portable intelligent temperature control sleeping bag
By integrating control components, current emission and heating components in the sleeping bag, the physiotherapy function of the portable intelligent temperature-controlled sleeping bag is realized, solving the problem that traditional sleeping bags cannot relieve muscle fatigue and joint stiffness, and improving sleep quality.
Patent Information
- Application Number
- CN202510719096.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-30
- Publication Date
- 2025-08-29
AI Technical Summary
Existing sleeping bags do not provide physical therapy, especially after high-intensity exercise, which cannot instantly relieve muscle fatigue and joint stiffness.
A portable intelligent temperature-controlled sleeping bag is designed with built-in control components, current emission components and heating components, which can achieve physical therapy effects through micro current and heating functions, including micro current generators, graphene heating films and temperature sensors, and supports buttons, mobile phone APPs and AI intelligent control.
Through microcurrent and heating functions, local blood circulation is promoted, muscle fatigue and joint stiffness are relieved, sleep quality is improved, and a variety of physiotherapy modes and time parameters are adjusted.
Smart Images

Figure CN120549346A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of sleeping bags, in particular to a portable intelligent temperature-controlled sleeping bag. Background Art
[0002] A sleeping bag is a bag used for sleeping. It is a must-have for explorers and mountaineers. It provides people with a good sleeping space when resting outdoors or indoors. However, the sleeping bags currently on the market mainly meet basic needs such as warmth, windproof, and moisture-proof. They are designed around adaptability to extreme environments and have significant single functions, and are unable to achieve the functional effects of physical therapy. Users suffer from muscle fatigue and joint stiffness after high-intensity exercise. Traditional sleeping bags cannot provide immediate relief, and the effect of use is poor. Summary of the Invention
[0003] In order to overcome the deficiencies of the existing technical solutions, the present invention provides a portable intelligent temperature-controlled sleeping bag, which can effectively solve the technical problem that sleeping bags cannot achieve therapeutic functional effects.
[0004] The technical solution adopted by the present invention to solve its technical problems is: a portable intelligent temperature-controlled sleeping bag, including a sleeping bag body, the sleeping bag body including an upper covering part and a lower load-bearing part, the lower load-bearing part is equipped with a control component, a current emitting component and at least one heating component, the current emitting component is used to emit microcurrent, the control component is electrically connected to the current emitting component to control the intensity, frequency and duration of the microcurrent released by the current emitting component, the heating component is used to heat the inside of the sleeping bag body, and the control component is electrically connected to the heating component to control the temperature inside the sleeping bag body.
[0005] Furthermore, one side edge of the upper covering portion and the corresponding side edge of the lower supporting portion are sewn together to form a closed side edge of the sleeping bag body, and the other side edge of the upper covering portion and the corresponding other side edge of the lower supporting portion are provided with a first zipper for opening and closing.
[0006] Furthermore, the inner lining of the upper covering part is sewn with multiple rod sleeves, and a support rod detachably connected to the rod sleeve is inserted inside the rod sleeve. The side of the lower load-bearing part is equipped with a locking assembly for fixing the support rod. The support rod is inserted into the rod sleeve, and the support rod is bent to make the upper covering part arc-shaped. The other end of the support rod is interconnected with the locking assembly to ensure that the support rod remains stable after bending.
[0007] Furthermore, a first extension portion and a second extension portion are respectively provided on both sides of the lower load-bearing portion, and a cavity is formed between the upper covering portion and the lower load-bearing portion. Both sides of the cavity have openings, and the edges of the second extension portion and the edges of the upper covering portion are provided with a second zipper for opening and closing to adjust the opening and closing degree of the rear part of the sleeping bag body.
[0008] Furthermore, the lower load-bearing part is provided with a foot load-bearing area and a torso support area, and the current emission component is installed in the foot load-bearing area, so that the microcurrent emitted by the current emitter can be conducted in an orderly manner along the muscles, bones, blood vessels and other tissues of the lower limbs of the human body to the upper part of the body, and multiple heating components are distributed side by side along the torso support area, so that the lower load-bearing part has multiple temperature control areas.
[0009] Furthermore, the current emitting component includes a microcurrent generator and a plurality of electrodes distributed according to the acupuncture points on the human foot. The microcurrent generator is equipped with a low-voltage, low-current microcurrent chip. The microcurrent chip is integrated with a potentiometer for adjusting the intensity, frequency and duration of the microcurrent. The microcurrent generator is connected to the electrodes through wires to form an electrical path, so that when the human body contacts the electrodes, the microcurrent generator transmits the microcurrent to the human body through the electrodes.
[0010] Furthermore, the heating component includes a graphene heating film, a temperature sensor and a control chip. The structural shape of the graphene heating film corresponds to the torso support area. The temperature sensor is used to monitor the temperature in real time. The control chip adjusts the power supply of the graphene heating film according to the signal feedback from the temperature sensor to maintain the set temperature.
[0011] Furthermore, the control component includes a microcontroller, a human-computer interaction AI intelligent module and a communication module. The microcontroller is wirelessly connected to the mobile phone through the communication module, and enables the microcontroller to support remote control of the current emission component and the heating component through the operation interface of the mobile phone APP, and the lower carrier part is provided with a button electrically connected to the microcontroller.
[0012] Furthermore, the interior of the lower carrying portion is equipped with a plurality of biomagnets capable of releasing negative oxygen ions, so that the lower carrying portion has a plurality of magnetic field areas acting on the human body.
[0013] Compared with the prior art, the present invention has the following beneficial effects:
[0014] By installing a control component, a current emission component, and multiple heating components inside the sleeping bag, the setting of the control component enables the sleeping bag to have three independent control modes. Users can directly control the current emission component and heating component through buttons, the operation interface of the mobile phone APP, or the human-computer interactive AI intelligent control, thereby controlling the physical therapy mode and time parameters to adjust different physical therapy plans;
[0015] The microcurrent generator is connected to the electrodes via wires to form an electrical pathway. When the human body comes into contact with the electrodes, the microcurrent generator transmits microcurrent to the human body through the electrodes. The microcurrent can stimulate the muscles, bones, and blood vessels of the lower limbs, promote local blood circulation, and accelerate metabolism. This helps alleviate poor blood circulation in the lower limbs caused by maintaining the same posture for a long time or lack of exercise. Microcurrent can also regulate the nervous system, helping to relieve insomnia and anxiety caused by nervous tension or stress, and improve sleep quality.
[0016] On the one hand, the heating component is used to heat the inside of the sleeping bag body, and the control component is electrically connected to the heating component to control the temperature inside the sleeping bag body. On the other hand, the heating component is also used for thermal effect therapy. Depending on different parts of the body, the power and temperature adjustment range of the heating component are also different to meet the warmth and thermal effect therapy needs of different parts of the human body. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 A perspective view of a portable intelligent temperature-controlled sleeping bag from the front;
[0018] Figure 2 A perspective view of a portable intelligent temperature-controlled sleeping bag from a rear perspective;
[0019] Figure 3 This is a planar expansion diagram of a portable intelligent temperature-controlled sleeping bag.
[0020] Numbers in the figure:
[0021] 1. Upper covering part; 2. Lower bearing part; 3. Heating component; 4. Locking component; 5. Current emission component; 6. First extension part; 7. Second extension part; 8. Support rod; 9. Rod sleeve; 10. First zipper; 11. Second zipper. DETAILED DESCRIPTION
[0022] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0023] like Figure 1-3As shown, the present invention provides a portable intelligent temperature-controlled sleeping bag, comprising a sleeping bag body, wherein the sleeping bag body comprises an upper covering portion 1 and a lower bearing portion 2, wherein one side edge of the upper covering portion 1 and the corresponding side edge of the lower bearing portion 2 are sewn together to form a closed side edge of the sleeping bag body, and the other side edge of the upper covering portion 1 and the corresponding other side edge of the lower bearing portion 2 are provided with a first zipper 10 for opening and closing, a plurality of rod sleeves 9 are sewn on the inner lining of the upper covering portion 1, and a support rod 8 detachably connected to the rod sleeve 9 is inserted inside the rod sleeve 9, and a locking assembly 4 for fixing the support rod 8 is installed on the side of the lower bearing portion 2, and the locking assembly 4 is conventional technology, and the locking assembly 4 is locked. Component 4 is a quick lock or magnetic connector. The support rod 8 is inserted into the rod sleeve 9. The support rod 8 is bent to make the upper cover 1 into an arc shape. The other end of the support rod 8 is connected to the locking component 4 to ensure that the support rod 8 remains stable after bending. The lower load-bearing part 2 is provided with a foot load-bearing area and a torso support area. A first extension 6 and a second extension 7 are respectively provided on both sides of the lower load-bearing part 2. A cavity is enclosed between the upper cover 1 and the lower load-bearing part 2. Both sides of the cavity have openings. The edge of the second extension 7 and the edge of the upper cover 1 are provided with a second zipper 11 for opening and closing to adjust the degree of opening and closing of the rear part of the sleeping bag body.
[0024] The lower bearing portion 2 is equipped with a control component, an electromagnetic wave emitting component 5 and at least one heating component. The electromagnetic wave emitting component 5 is installed in the foot bearing area. The electromagnetic wave emitting component 5 is used to emit high-frequency electromagnetic waves, so that the high-frequency electromagnetic waves emitted by the electromagnetic wave transmitter can be transmitted to the sole of the human foot. The control component is electrically connected to the electromagnetic wave emitting component 5 to control the intensity, frequency and duration of the high-frequency electromagnetic waves released by the electromagnetic wave emitting component 5. In this embodiment, there are two electromagnetic wave emitting components 5, and the electromagnetic wave emitting components 5 are arranged at intervals. The electromagnetic wave emitting component 5 is conventional technology. The electromagnetic wave emitting component 5 includes a high-frequency electromagnetic wave generator and a high-frequency electromagnetic wave chip. The high-frequency electromagnetic wave chip is integrated with A control unit for adjusting the intensity, frequency, and duration of high-frequency electromagnetic waves. The high-frequency electromagnetic wave generator transmits high-frequency electromagnetic waves to the human body. High-frequency electromagnetic waves can stimulate the muscles, bones, and blood vessels of the lower limbs, promote local blood circulation, accelerate metabolism, and help alleviate the problem of poor blood circulation in the lower limbs caused by maintaining the same posture for a long time or lack of exercise. High-frequency electromagnetic waves can also regulate the nervous system, helping to alleviate insomnia, anxiety, and other problems caused by nervous tension or stress, and improve sleep quality. The lower carrier part 2 is equipped with a multi-band frequency transmitter. The multi-band frequency transmitter outputs the "dominant frequency" corresponding to the internal organs at specific time periods according to the time pattern of the meridian flow, aiming to regulate the human body's biological rhythm;
[0025] Multiple heating components are arranged side by side along the torso support area, so that the lower load-bearing part 2 has multiple temperature control areas. The heating components are used to heat the inside of the sleeping bag body. The control component is electrically connected to the heating components to control the temperature inside the sleeping bag body. The heating component 3 is conventional technology. The heating component 3 includes a graphene heating layer, a heat insulation layer, a temperature sensor and a control chip. The structural shape of the graphene heating layer corresponds to the torso support area. The temperature sensor is used to monitor the temperature in real time. The control chip adjusts the power supply of the graphene heating layer according to the signal feedback from the temperature sensor to maintain the set temperature. In addition, the heating components are also used for thermal effect therapy. Depending on different parts of the body, the power and temperature adjustment range of the heating components are also different to meet the warmth and thermal effect therapy needs of different parts of the human body. The thermal effect can dilate blood vessels and accelerate blood circulation, which helps to alleviate the problem of poor blood circulation caused by cold or maintaining the same posture for a long time. The heating components for different parts can more accurately promote local blood circulation and improve the therapeutic effect.
[0026] The control component includes a microcontroller, a human-computer interaction AI intelligent module and a communication module. The microcontroller is wirelessly connected to the mobile phone through the communication module, and the microcontroller supports remote control of the electromagnetic wave emission component 5 and the heating component 3 through the operation interface of the mobile phone APP, and the lower carrier 2 is provided with a button electrically connected to the microcontroller. The lower carrier 2 is equipped with a display screen for displaying the operation interface, and has three independent control modes. The user can directly control the electromagnetic wave emission component 5 and the heating component 3 through the button or the operation interface of the mobile phone APP or the human-computer interaction AI intelligent control, thereby controlling the physical therapy mode and time parameters to adjust different physical therapy plans;
[0027] The lower carrier part 2 is equipped with a biomagnetic functional layer and a shielding layer. The shielding layer is used to shield external electromagnetic waves and electromagnetic fields. The biomagnetic functional layer can release a magnetic field of tens to one hundred gauss, so that the lower carrier part 2 has a magnetic field acting on the human body. The magnetic field has the effects of promoting blood circulation and relieving muscle tension on the human body. The biomagnetic functional layer can ionize the air under weak radiation or the bioelectric field naturally generated by the human body, releasing negative oxygen ions, which can disinfect pathogens and microorganisms.
[0028] Compared with traditional technologies: by installing a control component, an electromagnetic wave emitting component 5 and multiple heating components inside the sleeping bag, the setting of the control component enables the sleeping bag to have three independent control modes. The user can directly control the electromagnetic wave emitting component 5 and the heating component 3 through buttons, the operation interface of the mobile phone APP, or the human-computer interaction AI intelligent control, thereby controlling the physical therapy mode and time parameters to adjust different physical therapy plans;
[0029] The high-frequency electromagnetic wave generator is connected to the electrodes through wires to form an electrical pathway. When the human body comes into contact with the electrodes, the high-frequency electromagnetic wave generator transmits high-frequency electromagnetic waves to the human body. High-frequency electromagnetic waves can stimulate the muscles, bones, and blood vessels of the lower limbs, promote local blood circulation, accelerate metabolism, and help alleviate the problem of poor blood circulation in the lower limbs caused by maintaining the same posture for a long time or lack of exercise. High-frequency electromagnetic waves can also regulate the nervous system, helping to relieve insomnia and anxiety caused by nervous tension or stress, and improve sleep quality.
[0030] On the one hand, the heating component is used to heat the inside of the sleeping bag body, and the control component is electrically connected to the heating component to control the temperature inside the sleeping bag body. On the other hand, the heating component is also used for thermal effect therapy. Depending on different parts of the body, the power and temperature adjustment range of the heating component are also different to meet the warmth and thermal effect therapy needs of different parts of the human body.
[0031] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the invention can be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be included therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.
Claims
1. A portable intelligent temperature-controlled sleeping bag, comprising a sleeping bag body, wherein the sleeping bag body comprises an upper covering portion and a lower bearing portion, characterized in that: The lower load-bearing portion is equipped with a control component, a current emitting component and at least one heating component. The current emitting component is used to emit microcurrent. The control component is electrically connected to the current emitting component to control the intensity, frequency and duration of the microcurrent released by the current emitting component. The heating component is used to heat and increase the temperature inside the sleeping bag body. The control component is electrically connected to the heating component to control the temperature inside the sleeping bag body.
2. A portable intelligent temperature-controlled sleeping bag according to claim 1, characterized in that: One side edge of the upper covering part and the corresponding side edge of the lower supporting part are sewn together to form a closed side edge of the sleeping bag body. The other side edge of the upper covering part and the corresponding other side edge of the lower supporting part are provided with a first zipper for opening and closing.
3. The portable intelligent temperature-controlled sleeping bag according to claim 2, characterized in that: The inner lining of the upper covering part is sewn with multiple rod sleeves, and a support rod detachably connected to the rod sleeve is inserted inside the rod sleeve. The side of the lower load-bearing part is equipped with a locking assembly for fixing the support rod. The support rod is inserted into the rod sleeve, and the support rod is bent to make the upper covering part arc-shaped. The other end of the support rod is connected to the locking assembly to ensure that the support rod remains stable after bending.
4. The portable intelligent temperature-controlled sleeping bag according to claim 3, characterized in that: A first extension portion and a second extension portion are respectively provided on both sides of the lower load-bearing portion, and a cavity is formed between the upper covering portion and the lower load-bearing portion. Both sides of the cavity have openings, and the edge of the second extension portion and the edge of the upper covering portion are provided with a second zipper for opening and closing to adjust the opening and closing degree of the rear part of the sleeping bag body.
5. The portable intelligent temperature-controlled sleeping bag according to claim 1, characterized in that: The lower load-bearing part is provided with a foot load-bearing area and a torso support area. The current emission component is installed in the foot load-bearing area, so that the microcurrent emitted by the current emitter can be conducted in an orderly manner along the muscles, bones, blood vessels and other tissues of the lower limbs of the human body to the upper part of the body. Multiple heating components are distributed side by side along the torso support area, so that the lower load-bearing part has multiple temperature control areas.
6. The portable intelligent temperature-controlled sleeping bag according to claim 5, characterized in that: The current emitting component includes a microcurrent generator and a plurality of electrodes distributed according to the acupuncture points on the human foot. The microcurrent generator is equipped with a low-voltage, low-current microcurrent chip. The microcurrent chip is integrated with a potentiometer for adjusting the intensity, frequency and duration of the microcurrent. The microcurrent generator is connected to the electrodes through wires to form an electrical path, so that when the human body comes into contact with the electrodes, the microcurrent generator transmits the microcurrent to the human body through the electrodes.
7. The portable intelligent temperature-controlled sleeping bag according to claim 5, characterized in that: The heating component includes a graphene heating film, a temperature sensor and a control chip. The structural shape of the graphene heating film corresponds to the torso support area. The temperature sensor is used to monitor the temperature in real time. The control chip adjusts the power supply of the graphene heating film according to the signal feedback from the temperature sensor to maintain the set temperature.
8. The portable intelligent temperature-controlled sleeping bag according to claim 1, characterized in that: The control component includes a microcontroller, a human-computer interaction AI intelligent module and a communication module. The microcontroller is wirelessly connected to the mobile phone through the communication module, and enables the microcontroller to support remote control of the current emission component and the heating component through the operation interface of the mobile phone APP, and the lower carrier part is provided with a button electrically connected to the microcontroller.
9. The portable intelligent temperature-controlled sleeping bag according to claim 1, characterized in that: The interior of the lower layer bearing part is equipped with a plurality of biomagnets capable of releasing negative oxygen ions, so that the lower layer bearing part has a plurality of magnetic field areas acting on the human body.
Citation Information
Cited By
Portable intelligent temperature control sleeping bag
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