Intelligent adjustment pillow inner, pillow and control method for pillow
A pillow core and controller technology, applied in pillows, program control, computer control, etc., can solve the problems of poor support force and stability, shaking feeling, not suitable for all people, etc., so as to reduce the support force and make it comfortable to use. sense of effect
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Embodiment 1
[0058] A kind of intelligent adjustment pillow, which can automatically adjust the multiple airbags according to the curvature of the human cervical spine, using electronics and sensor technology, to achieve the normal curvature support state of the head in the natural state, thereby reducing the support of the neck to the head and changing from a person-fit-pillow to a pillow-fit-everyone posture, such as Figure 1-Figure 8 As shown, specifically set to the following structure:
[0059] In this embodiment, the smart pillow includes a main airbag 1 and an inflation and deflation control device 4 . The intelligent adjustment pillow is an airbag pillow, and its overall appearance structure can be a circular pillow or a square pillow. Direction, and specify the neck as the front and the head as the rear.
[0060] The main airbag 1 is divided into two main parts, the neck airbag and the head airbag. These two parts are independent of each other. The outer layer airbag 11 and th...
Embodiment 2
[0065] This embodiment is further optimized on the basis of the above-mentioned embodiments, further to better realize the present invention, especially adopt the following configuration structure:
[0066]The head airbag in this embodiment is set as a multi-layer airbag structure, which includes a head outer layer airbag 13 and a head inner layer airbag 14, and the head inner layer airbag 14 is integrally arranged inside the head outer layer airbag 13 , and they are independent of each other, there is a horizontal gap between the airbag boundary of the head inner layer airbag 14 and the airbag boundary of the head outer layer airbag 13, the gap serves as the inflation space of the head outer layer airbag 13 and the head inner layer airbag 14 deformable spaces. The head inner layer airbag 14 is provided with a fourth inflation and deflation port 140, the head inner layer airbag 14 is connected with a fourth air pressure sensor through the trachea, and the fourth air pressure s...
Embodiment 3
[0069] This embodiment is further optimized on the basis of above-mentioned embodiment 1 or 2, and further for better realization of the present invention, adopts following setting structure especially:
[0070] The neck airbag in this embodiment is set as a multi-layer airbag structure, which includes an outer neck airbag 11 and an inner neck airbag 12, and the inner neck airbag 12 is integrally arranged inside the outer neck airbag 11 , and they are independent of each other, there is a horizontal gap between the airbag boundary of the inner neck airbag 12 and the airbag boundary of the outer neck airbag 11, which serves as the inflation space of the outer neck airbag 11 and the inner neck inner layer The deformable space of the airbag 12. The neck inner layer airbag 12 is provided with a second inflation and deflation port 120 , and the neck inner layer airbag 12 is connected with a second air pressure sensor through a trachea, and the second air pressure sensor is used to ...
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