Adjustable multifunctional pillow
By designing adjustable multi-function pillows, the pillow core height and airbag size are automatically adjusted using remote control and voice-controlled sensors, the problem of difficult adjustment of existing pillows is solved, improving sleep quality and reducing snoring time.
Patent Information
- Application Number
- CN202422019090.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-08-20
AI Technical Summary
Existing pillows are difficult to adjust according to personal sleep habits and body shape, resulting in poor sleep quality, especially snoring problems that are difficult to effectively solve.
An adjustable multi-function pillow is designed to adjust the height of the pillow core through a manual remote control, and to detect snoring using a sound-controlled sensor, automatically adjusting the size of the airbag to adjust the neck support area of the pillow core.
It realizes automatic adjustment of the neck support height during sleep, improves sleep quality, reduces snoring time, and provides a more comfortable sleep environment through intelligent temperature monitoring and constant temperature heating.
Smart Images

Figure CN222968274U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an adjustable multifunctional pillow, which can adjust the height of the pillow core through a manual remote control and control the size of an airbag to adjust the neck support area of the pillow core by collecting snoring sounds, automatically adjusting the neck support height during sleep, enabling people to have a comfortable and stable sleep, and reducing the snoring time during sleep. Background Art
[0002] In daily life, since everyone's body type and sleeping habits are different, it is difficult to find a suitable pillow. Generally, the height of the pillow is either too high or too low, seriously affecting human sleep and often causing insomnia. The utility model can arbitrarily adjust the height of the pillow according to everyone's sleeping habits or for snoring people, enabling people to have a comfortable and stable sleep in life. At present, memory foam pillow cores on the market can alleviate the impact of inappropriate pillow height on sleep quality, but after long-term use, the effect of the pillow core will decrease, thus affecting human sleep, and memory foam pillow cores lack an active adjustment function. Summary of the Utility Model
[0003] The purpose of the utility model is to provide an adjustable multifunctional pillow, which can adjust the height of the pillow core suitable for itself through a manual remote control and control the size of an airbag to adjust the neck support area of the pillow core by collecting snoring sounds, automatically adjusting the neck support height during sleep, enabling people to have a comfortable and stable sleep, and reducing the snoring time during sleep.
[0004] It can detect the sound signal when a person is in a snoring state during sleep through a voice control sensor. After being processed by a controller, the airbag is adjusted to slowly raise or lower the height of the neck support area of the pillow core. When the snoring sound decreases to disappearance, the airbag of the pillow core is automatically positioned through the controller, thereby reducing the snoring time of people.
[0005] The technical solution of the utility model is based on a pillowcase, a pillow core, a controller, an airbag, a graphene heating sheet, a pressure sensor, a power input port, a voice control sensor, and a remote control. The feature is that the graphene heating sheet is arranged in the middle of the front edge of the top of the pillow core. A cavity is arranged below the graphene heating sheet in the pillow core. The airbag is installed in the cavity. A pressure sensor is arranged in the middle of the top of the airbag. The power input port and the voice control sensor are arranged on one side of the pillow.
[0006] The heat source of the graphene heating sheet of the utility model is S-shaped and wound in the graphene heating sheet to heat evenly. The heating temperature of the graphene heating sheet is not higher than 55°C.
[0007] The width of the airbag of the utility model is not less than one-third of the width of the pillow core.
[0008] The controller of the present utility model is arranged at the bottom on one side of the pillow core. The graphene heating sheet is internally provided with a temperature sensor, and the temperature information output end of the temperature sensor is connected to the temperature control end of the controller; the airbag is internally provided with a pressure pump, and the control end of the pressure pump is connected to the pressure control end of the controller. The gas output and input ends of the pressure pump are connected to the outside through an air pipe.
[0009] The airbag of the present utility model is circular or oval. The controller can control the pressure pump according to the value of the pressure sensor to adjust the size of the airbag, so as to raise or lower the neck support area of the pillow core.
[0010] The voice control signal output end of the voice control sensor of the present utility model is connected to the voice control signal input end of the controller. The controller can automatically adjust the size of the airbag according to the snoring decibel signal collected by the voice control sensor.
[0011] The working principle of the present utility model is that the controller receives instructions such as heating, lifting, and lowering from the remote control to adjust the height of the pillow core to a suitable state for the user before sleep. During sleep, the controller can also control the pressure pump to adjust the size of the airbag according to the snoring sound decibel value received by the sound sensor, so as to adjust the height, raise or lower the neck support area of the pillow core. When the snoring sound decibel decreases to disappearance, the airbag of the pillow core is automatically positioned through the controller to achieve the best sleep effect, reduce the snoring time of the user during sleep, and perform constant temperature heating through intelligent temperature monitoring by the temperature sensor.
[0012] The advantages of the present utility model are that it can adjust the height of the pillow core through a manual remote control and control the size of the airbag to adjust the neck support area of the pillow core by collecting snoring sounds through a voice control sensor, automatically adjusting the height of the neck support area during sleep, enabling people to have a comfortable and stable sleep, and reducing the snoring time during sleep. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 is the overall structural schematic diagram of the present utility model;
[0014] Figure 2 is the structural schematic diagram of the pillow core of the present utility model;
[0015] Figure 3 is the internal structural schematic diagram of the cross-section of the pillow core of the present utility model;
[0016] Figure 4 is the structural schematic diagram of the remote control of the present utility model. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0017] According to Figure 1 、 Figure 2 、 Figure 3As shown, based on the pillowcase 2, the pillow core 4, the controller 3, the airbag 6, the graphene heating sheet 5, the pressure sensor 7, the power input port 1, the voice control sensor 8, and the remote control, the feature of the present utility model is that the graphene heating sheet 5 is arranged in the middle of the front edge at the top of the pillow core 4. A cavity is provided inside the pillow core 4 below the graphene heating sheet 5. The airbag 6 is installed in the cavity. A pressure sensor 7 is arranged in the middle of the top of the airbag 6. The power input port 1 and the voice control sensor 8 are arranged on the left side of the pillow. The heat source of the graphene heating sheet 5 is coiled in an S shape inside the graphene heating sheet 5 to heat evenly, and the heating temperature of the graphene heating sheet 5 is not greater than 55 °C. The width of the airbag 6 is one-third of the width of the pillow core 4. The controller 3 is arranged at the bottom on the left side of the pillow core 4 inside the pillow core 4. The graphene heating sheet 5 is internally provided with a temperature sensor, and the temperature information output end of the temperature sensor is connected to the temperature control end of the controller 3; the airbag 6 is internally provided with a pressure pump, and the control end of the pressure pump is connected to the pressure control end of the controller 3. The gas output and input ends of the pressure pump are connected to the outside through an air pipe. The airbag 6 is circular or oval. The controller 3 can control the pressure pump according to the value of the pressure sensor to adjust the size of the airbag, so as to raise or lower the neck support area of the pillow core 4. The voice control signal output end of the voice control sensor 8 is connected to the voice control signal input end of the controller 3, and the controller 3 can automatically adjust the size of the airbag according to the decibel signal of snoring collected by the voice control sensor.
Claims
1. An adjustable multifunctional pillow, comprising a pillowcase, a pillow core, a controller, an airbag, a graphene heating sheet, a pressure sensor, a power input port, a voice control sensor, and a remote controller, characterized in that The graphene heating sheet is arranged in the middle of the front edge of the top of the pillow core, a cavity is arranged in the pillow core below the graphene heating sheet, an airbag is installed in the cavity, a pressure sensor is arranged in the middle of the top of the airbag, and a power input port and a voice control sensor are arranged on one side of the pillow.
2. An adjustable multifunctional pillow according to claim 1, characterized in that The heat source of the graphene heating sheet is S-shaped and coiled inside the graphene heating sheet to generate heat evenly. The heating temperature of the graphene heating sheet is no more than 55°C.
3. The adjustable multifunctional pillow according to claim 1, characterized in that The width of the airbag is not less than one third of the width of the pillow core.
4. The adjustable multifunctional pillow according to claim 1, characterized in that The controller is arranged at the bottom of one side of the pillow core in the pillow core, the graphene heating sheet is equipped with a temperature sensor, the temperature information output end of the temperature sensor is connected to the temperature control end of the controller; the airbag is equipped with a pressure pump, the control end of the pressure pump is connected to the pressure control end of the controller, and the gas output and input ends of the pressure pump are connected to the outside world through an air pipe.
5. The adjustable multifunctional pillow according to claim 1, characterized in that The airbag is circular or elliptical, and the controller can control the pressure pump to adjust the size of the airbag according to the numerical value of the pressure sensor, so as to lift or lower the neck supporting area of the pillow core.
6. The adjustable multifunctional pillow according to claim 1, characterized in that The sound control signal output end of the sound control sensor is connected to the sound control signal input end of the controller, and the controller can automatically adjust the size of the airbag according to the decibel signal of snoring collected by the sound control sensor.