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KR-102960936-B1 - Smart Bed for Restoration of the Original State Style

KR102960936B1KR 102960936 B1KR102960936 B1KR 102960936B1KR-102960936-B1

Abstract

The original restoration type smart bed of the present invention comprises a bed frame (1) comprising a leg portion (2) having an incline at the end of the bed and a head portion (3) formed in a long rectangular shape in the opposite direction of the leg portion (2), positioned higher than the leg portion (2), and having a curved incline. A weight (4) embedded in the lower part of the head portion (3) and serving as a central weight, It is characterized by including a rubber pad (5) formed at the end of the head portion (3) to prevent slipping, and an electric heating pad or electric blanket that can be attached to and detached from the bed frame (1) and can provide warmth. According to the present invention, the bed has a weight embedded inside, so that when the user sets it up and then lays it down, the bed becomes horizontal, allowing the user to lie down comfortably and sleep.

Inventors

  • 이창주

Assignees

  • 주식회사 아이테크

Dates

Publication Date
20260507
Application Date
20251013

Claims (10)

  1. A known bed that can be set up and laid down comprises a bed frame (1) composed of a leg portion (2) having an incline at the end of the bed and a head portion (3) formed in a long rectangular shape opposite to the leg portion (2), positioned higher than the leg portion (2), and having a curved incline; a body sensor portion (6) embedded at a certain position at the bottom of the head portion (3); and an electronic circuit (10) embedded at the bottom of the head portion (3). A weight (4) embedded in the lower part of the head portion (3) and serving as a central weight; The weight (4) is made of metal, and the weight (4) has a weight of 10 kg to 20 kg; and a rubber pad (5) formed at the end of the head portion (3) to prevent slipping; When the bed frame (1) is set up, the bed frame (1) can display commercial advertisements (16), weather information (17), body heart rate (18), and respiration rate (19). A smart bed with a restorable shape, characterized by including an advertising board (15) built into the center of the back.
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Description

Smart Bed for Restoration of the Original State Style The present invention relates to a restorative smart bed. More specifically, the present invention relates to a bed that can be easily used in narrow spaces such as airports, terminal waiting rooms, fire stations, or offices, and is a restorative smart bed in which the bed becomes horizontal when it is laid down after being set up. Modern people are unable to achieve proper, deep sleep due to various factors. Environmental factors can be cited as one of the causes that disrupt sleep. In other words, in modern society, the number of people suffering from sleep abnormalities or sleep disorders is increasing due to causes such as lighting and noise pollution. In particular, passengers waiting for transfers in airport waiting areas tend to lie down on chairs or wait in uncomfortable positions. Furthermore, passenger terminals, highway rest areas, or fire stations do not provide separate devices for users to sleep deeply when they wish to rest, sleep when feeling drowsy, or simply take a break. Therefore, there is a need for the development of technology for portable beds that can induce comfortable sleep by comprehensively considering not only the sleep environment but also the user's real-time health status. Additionally, there is a need for technology that measures physical indices such as blood pressure, heart rate, or respiratory rate while the user is lying on the bed, calculates a convenience index by synthesizing the user's health status and types of diseases, and then cares for the user based on artificial intelligence. As background technology for the present invention, Registered Patent No. 10-2026706 (Publication date: September 30, 2019) “Artificial Intelligence Patient Care Bed System and Method of Using the Same” is disclosed. The background technology is a patient care bed system (10), comprising: a biosignal detection device (100) for detecting a biosignal of a patient lying on the bed; a server (300) for analyzing a biocomfort index based on artificial intelligence through the biosignal detected by the biosignal detection device (100); and a patient care bed device (200) for transforming the bed into a predetermined shape or state according to the biocomfort index analyzed by the server (300). The biosignal detection device (100) is configured to include a non-contact biosignal detection unit (110) for detecting the biosignal in a non-contact manner and a contact biosignal detection unit (120) for detecting the biosignal in a manner that directly contacts the patient's body. The non-contact biosignal detection unit (110) includes a camera (111) for detecting visual signals and a sound detection sensor (112) for detecting sounds generated by the patient. The device is configured with at least one of an infrared temperature sensing sensor for measuring the patient's body temperature, and the contact-type biosignal sensing unit (120) is configured with at least one of a temperature sensing sensor (121) for measuring the patient's body temperature; an electromyography sensing sensor (122) for detecting the electromyography of the patient's body part; a pressure sensing sensor (123) for detecting pressure applied to the patient's body part; a pulse sensing sensor for measuring the patient's pulse; and a blood pressure sensing sensor for measuring the patient's blood pressure. The biosignal sensing device (100) further includes a robot arm (130) to which the non-contact-type biosignal sensing unit (110) is directly coupled. The server (300) is characterized by learning all disease information and body information of a patient lying in bed using artificial intelligence, analyzing a biocomfort index based on how comfortable the patient feels based on the biosignal detected by the biosignal sensing device (100), and functioning to change the shape or state of the bed so as to maintain the biocomfort index at a constant level based on the learned information. FIG. 1 is a front view of a bed frame according to Embodiment 1 of the present invention when erected. FIG. 2 is a drawing of a bed frame according to Embodiment 1 of the present invention when laid flat. FIG. 3 is a perspective view of a bed frame according to Embodiment 2 of the present invention when erected. FIG. 4 is a drawing of the bed frame according to Embodiment 2 of the present invention when laid flat. FIG. 5 is a configuration diagram of a body sensor unit according to Embodiment 2 of the present invention. FIG. 6 is a drawing showing an advertising board on the back when the bed frame is erected. FIG. 7 is an electronic circuit block diagram according to an embodiment of the present invention. Hereinafter, the description of the present invention will be explained in detail with reference to the attached drawings. FIG. 1 is a front view of a bed frame according to Embodiment 1 of the present invention when erected, and FIG. 2 is a drawing of a bed frame according to Embodiment 1 of