WO2017166824A1 - 采用磁传感器改善睡眠的智能枕头 - Google Patents

采用磁传感器改善睡眠的智能枕头 Download PDF

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Publication number
WO2017166824A1
WO2017166824A1 PCT/CN2016/105898 CN2016105898W WO2017166824A1 WO 2017166824 A1 WO2017166824 A1 WO 2017166824A1 CN 2016105898 W CN2016105898 W CN 2016105898W WO 2017166824 A1 WO2017166824 A1 WO 2017166824A1
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Prior art keywords
pillow
magnetic sensor
sleep
smart
sensor
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PCT/CN2016/105898
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English (en)
French (fr)
Inventor
张贯京
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Shenzhen Qianhai AnyCheck Information Technology Co Ltd
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Shenzhen Qianhai AnyCheck Information Technology Co Ltd
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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47GHOUSEHOLD OR TABLE EQUIPMENT
    • A47G9/00Bed-covers; Counterpanes; Travelling rugs; Sleeping rugs; Sleeping bags; Pillows
    • A47G9/10Pillows

Definitions

  • the present invention relates to the field of health care, and more particularly to an intelligent pillow that uses magnetic sensors to improve sleep.
  • a good pillow not only protects the cervical spine well, but also relates to the quality of work and life in another 2/3 of life.
  • the existing pillows basically improve the shape of the above pillows, so that they have better ergonomic effects.
  • the functions of these products are relatively simple and have limited effect. Therefore, it is necessary to design a smart pillow that improves the user's sleep by an electromagnetic field.
  • the main object of the present invention is to provide a smart pillow that uses a magnetic sensor to improve sleep, and aims to solve the problem that the existing pillow cannot improve the user's sleep through the electromagnetic field.
  • the present invention provides a smart pillow that uses a magnetic sensor to improve sleep
  • the smart pillow includes a pillow body
  • the smart pillow further includes a sleep improving device disposed on the pillow body.
  • the sleep improvement device includes a processing unit, a plurality of magnetic sensors and a plurality of pressure sensors, wherein the plurality of magnetic sensors and the plurality of pressure sensors are electrically connected to the processing unit;
  • the pillow surface of the pillow body is provided with a magnetic sensor and a pressure sensor at a preset distance, wherein a magnetic sensor and a pressure sensor are disposed at the same position;
  • the pressure sensor is configured to monitor a pressure value of a pressure applied to the pressure sensor by a user's head
  • the processing unit is configured to control the pressure when the pressure value on the pressure sensor exceeds a preset threshold
  • the magnetic sensor at the sensor location produces an electromagnetic field of a predetermined frequency that acts on the user's head.
  • the smart pillow further includes a setting button connected to the sleep improving device, and the setting button is disposed on an outer surface of the side wall of the pillow body for starting the sleep improving device.
  • the setting button is a touch-sensitive button or a physical button.
  • the magnetic sensor and the pressure sensor are disposed on the pillow surface of the pillow body in a movable structure.
  • the preset frequency is a value in a range of 4 Hz to 7 Hz.
  • the smart pillow comprises a battery, and the battery is electrically connected to the sleep improving device for supplying power to the sleep improving device.
  • the battery is connected with a charging port, and the charging port is used for charging the battery.
  • the pillow body comprises a power plug connected to the sleep improvement device for connecting to a power socket of the municipal power grid.
  • the pillow surface of the pillow body is a slope type structure or a wave type structure.
  • the smart pillow adopting the magnetic sensor to improve sleep adopts the above technical solution, and achieves the following technical effects: the utility model combines a magnetic sensor to generate an electromagnetic field of a preset frequency, The electromagnetic field of the preset frequency resonates with the brain, which in turn induces IPSP in the brain to suppress the excitability of the brain, reduce the complexity of the user's sleep and brain, and improve the user's sleep.
  • the utility model combines a magnetic sensor to generate an electromagnetic field of a preset frequency
  • the electromagnetic field of the preset frequency resonates with the brain, which in turn induces IPSP in the brain to suppress the excitability of the brain, reduce the complexity of the user's sleep and brain, and improve the user's sleep.
  • FIG. 1 is a schematic structural view of a preferred embodiment of a smart pillow using a magnetic sensor to improve sleep according to the present invention
  • FIG. 2 is a schematic diagram showing the internal structure of a preferred embodiment of a sleep improvement device for a smart pillow using a magnetic sensor to improve sleep according to the present invention
  • FIG. 3 is a schematic view showing the positional relationship between a magnetic sensor and a pressure sensor in a smart pillow using a magnetic sensor to improve sleep.
  • the utility model provides a smart pillow (hereinafter referred to as "smart pillow") which uses a magnetic sensor to improve sleep, and the smart pillow is placed on a mattress sleeping by a user, when the user's head and the smart
  • the pillow touches the cymbal, and the smart pillow generates a preset frequency electromagnetic field by the magnetic sensor to induce a change in the brain rhythm, causing the brain to resonate, thereby causing the brain to have a relatively obvious low-frequency event-related synchronization phenomenon, causing the brain to reduce electrical activity and complexity.
  • the degree is reduced, thereby improving the user's sleep.
  • the smart pillow 1 using a magnetic sensor to improve sleep includes, but is not limited to,
  • the sleep improving device 3 and the battery 4 are disposed on the pillow body 2.
  • the setting button 5 is disposed on an outer surface of a side wall of the pillow body 2.
  • the sleep improving device 3 is for improving the sleep of the user by an electromagnetic field of a preset frequency.
  • the internal structure of the sleep improving device 3 will be described in detail in Fig. 2.
  • the battery 4 is electrically connected to the sleep improving device 3 for supplying power to the sleep improving device 3. Further, the battery 4 is connected to the charging port 40 for charging the battery 4.
  • the battery 4 is a low-radiation, low-power rechargeable battery that does not affect the health of the user.
  • the charging port 40 can be, but is not limited to, a USB interface or other standard battery charging interface, and the charging port 40 can be directly inserted into an external power source (such as a computer USB interface or a low voltage regulator).
  • the battery 4 is charged on the upper side. When the battery is exhausted, the user can charge the battery 4 through the charging port 40.
  • the battery 4 and the charging port 40 may be omitted.
  • the pillow The head body 2 includes a power plug (not shown in FIG. 1), the power plug is connected to the sleep improving device 3, and the power plug is used for connecting to a power socket of a municipal power grid to pass the municipal power grid.
  • the sleep improving device 3 is powered.
  • the setting button 5 is connected to the sleep improving device 3 for activating the sleep improving device 3.
  • the setting button 5 may be, but not limited to, a touch-sensitive button or a physical button (i.e., a physical button composed of a button, a motion contact, a return spring, and a button box).
  • the pillow surface of the pillow body 2 is provided in a slope type structure. In other embodiments, the pillow surface of the pillow body 2 is provided in a wave-like configuration.
  • FIG. 2 is a schematic diagram showing the internal structure of a preferred embodiment of the sleep improving device in the smart pillow using the magnetic sensor to improve sleep.
  • the sleep improving device 3 includes, but is not limited to, a processing unit 30, a magnetic sensor 31, and a pressure sensor 3
  • the magnetic sensor 31 and the pressure sensor 32 are both electrically connected to the processing unit 30.
  • the processing unit 30 may be a micro control unit (MCU), a data processing chip, or an information processing unit having a data processing function.
  • the processing unit 30 is for controlling the magnetic sensor 31 and the pressure sensor 32.
  • the magnetic sensor 31 and the pressure sensor 32 are plural.
  • the pillow surface of the pillow body 2 is provided with a magnetic sensor 31 and a pressure sensor 32 every predetermined distance, wherein one magnetic sensor 31 and one pressure sensor 32 are disposed at the same position.
  • the magnetic sensor 31 is disposed on a pillow surface of the pillow body 2.
  • the magnetic sensor in the magnetic sensor 31 is used to generate an electromagnetic field of a preset frequency.
  • a magnetic sensor 31 (white circle in FIG. 3) is disposed on the pillow surface of the pillow body 2 at a predetermined distance to form a magnetic sensor array. In this way, regardless of the position of the user's head on the pillow surface of the pillow body 2, it is in contact with one or several of the magnetic sensors 31.
  • the magnetic sensor 31 When the user's head is located on the pillow body 2, the magnetic sensor 31 generates an electromagnetic field of a predetermined frequency and acts on the head of the user.
  • the magnetic sensor 31 is configured to generate a preset frequency when it is in contact with the user's head. Magnetic field.
  • the pressure sensor 32 is disposed on a pillow surface of the pillow body 2.
  • the pressure sensor 32 is used to monitor the pressure value at which the user's head applies pressure to the pressure sensor 32. When the pressure value on the pressure sensor 32 exceeds the preset threshold ⁇ , it indicates that the user's head is in contact with the pressure sensor 32.
  • a magnetic sensor 31 and a pressure sensor 32 are disposed at the same position.
  • a pressure sensor 32 is further disposed at a position of each magnetic sensor 31 on the pillow surface of the pillow body 2 ( Figure 3 is a black circle). In this way, regardless of the position of the user's head on the pillow surface of the pillow body 2, when the user's head comes into contact with the pressure sensor 32, the user's head is also in contact with the magnetic sensor 31.
  • the processing unit 30 is configured to control the pressure sensor 32 to monitor a pressure value of a pressure applied by the user's head to the pressure sensor 32.
  • the processing unit 30 is configured to control the magnetic sensor 31 at the position of the pressure sensor 32 to generate an electromagnetic field of a preset frequency to act on the user's head when the pressure value on the pressure sensor 32 exceeds a preset threshold ⁇ To improve the user's sleep.
  • the magnetic sensor 31 generates an electromagnetic field of a preset frequency.
  • the electromagnetic field of the preset frequency induces an inhibitory post-synaptic potential in the user's brain to improve the user's sleep.
  • EBP excitatory postsynaptic potential
  • ISP inhibitory postsynaptic potential
  • an electromagnetic field is generated by a magnetic sensor (a medical research indicates that a frequency is in a range of 4 Hz to 7 Hz), and an electromagnetic field of the predetermined frequency resonates with the brain to induce
  • the IPSP in the brain suppresses the excitability of the brain, reduces the complexity of the user's sleep and brain, and improves the user's sleep.
  • the electromagnetic field of the predetermined frequency resonates with the brain to induce IPSP in the brain as a prior art, and is not described herein.
  • the magnetic sensor 31 and the pressure sensor 32 are disposed on the pillow surface of the pillow body 2 in a movable structure, and the user can change the magnetic sensor 31 and the pressure sensor 32 on the pillow body as needed. 2 on the location.
  • the utility model combines a magnetic sensor to generate an electromagnetic field of a preset frequency,
  • the electromagnetic field of the preset frequency resonates with the brain, which in turn induces IPSP in the brain to suppress the excitability of the brain, reduce the complexity of the user's sleep and brain, and improve the user's sleep.

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Otolaryngology (AREA)
  • Pulmonology (AREA)
  • Bedding Items (AREA)
  • Magnetic Treatment Devices (AREA)

Abstract

一种采用磁传感器改善睡眠的智能枕头(1),包括枕头本体(2)和设置于枕头本体(2)内的睡眠改善装置(3),睡眠改善装置(3)包括处理单元(30)、磁传感器(31)及压力传感器(32);压力传感器(32)用于监测用户头部对枕头本体(2)施加压力的压力值;处理单元(30)用于当压力值超过预设阈值时,控制压力传感器(32)位置上的磁传感器(31)产生预设频率的电磁场作用于用户的头部,以改善用户的睡眠。智能枕头(1)结合磁传感器(31)产生预设频率的电磁场,预设频率的电磁场与大脑产生谐振,进而诱发大脑中的抑制性突触后电位,以抑制大脑的兴奋度,降低用户睡眠时大脑的复杂度,改善用户的睡眠。

Description

发明名称:釆用磁传感器改善睡眠的智能枕头 技术领域
[0001] 本实用新型涉及健康保健领域, 尤其涉及一种采用磁传感器改善睡眠的智能枕 头。
背景技术
[0002] 随着生活节奏的不断加快, 提高睡眠质量是大多数人都渴求的。 随着工作压力 的增大及办公室电脑的普及, 长期伏案工作者、 司机、 电脑工作者成为颈椎病 的常见人群, 且呈年轻化趋势, 故能够提供舒适睡眠的睡眠枕头越来越受到消 费者的喜爱。
[0003] 好的枕头不仅能够很好的保护颈椎, 而且关乎人生另外 2/3吋间工作与生活的 质量。 然而, 现有的枕头基本都是对上述枕头造型上进行改进, 使其具有更好 的人体工程效果。 这类产品的功能还是比较单一, 效果有限。 因此, 需要设计 一种通过电磁场改善用户睡眠的智能枕头。
技术问题
[0004] 本实用新型的主要目的在于提供一种采用磁传感器改善睡眠的智能枕头, 旨在 解决现有的枕头无法通过电磁场改善用户睡眠的产品问题。 问题的解决方案
技术解决方案
[0005] 为实现上述目的, 本实用新型提供了一种采用磁传感器改善睡眠的智能枕头, 该智能枕头包括枕头本体, 所述智能枕头还包括设置于所述枕头本体上的睡眠 改善装置, 所述睡眠改善装置包括处理单元、 多个磁传感器及多个压力传感器 , 所述多个磁传感器及多个压力传感器均电连接至所述处理单元;
[0006] 所述枕头本体的枕面每隔预设距离设置一个磁传感器及一个压力传感器, 其中 , 一个磁传感器与一个压力传感器设置于同一位置;
[0007] 所述压力传感器用于监测用户头部对该压力传感器施加压力的压力值; 及
[0008] 所述处理单元用于当所述压力传感器上的压力值超过预设阈值吋, 控制该压力 传感器位置上的磁传感器产生预设频率的电磁场作用于用户的头部。
[0009] 优选的, 所述智能枕头还包括连接至所述睡眠改善装置的设置按钮, 所述设置 按钮设置于所述枕头本体侧壁的外表面, 用于启动所述睡眠改善装置。
[0010] 优选的, 所述设置按钮是触摸感应式按钮或实体按钮。
[0011] 优选的, 所述磁传感器及压力传感器采用可移动式结构设置于在所述枕头本体 的枕面。
[0012] 优选的, 所述预设频率为 4赫兹至 7赫兹范围内的一个值。
[0013] 优选的, 所述智能枕头包括电池, 所述电池与所述睡眠改善装置电连接, 用于 为所述睡眠改善装置供电。
[0014] 优选的, 所述电池连接有充电端口, 所述充电端口用于对所述电池充电。
[0015] 优选的, 所述枕头本体包括连接至所述睡眠改善装置的电源插头, 用于与市政 电网的电源插座连接。
[0016] 优选的, 所述枕头本体的枕面为斜坡型结构或波浪型结构。
发明的有益效果
有益效果
[0017] 相较于现有技术, 本实用新型所述采用磁传感器改善睡眠的智能枕头采用了上 述技术方案, 达到了如下技术效果: 本实用新型结合磁传感器产生预设频率的 电磁场, 所述预设频率的电磁场与大脑产生谐振, 进而诱发大脑中的 IPSP, 以 抑制大脑的兴奋度, 降低了用户睡眠吋大脑的复杂度, 改善了用户的睡眠。 对附图的简要说明
附图说明
[0018] 图 1是本实用新型采用磁传感器改善睡眠的智能枕头的优选实施例的结构示意 图;
[0019] 图 2是本实用新型采用磁传感器改善睡眠的智能枕头中睡眠改善装置的优选实 施例的内部结构示意图;
[0020] 图 3是本实用新型采用磁传感器改善睡眠的智能枕头中磁传感器与压力传感器 位置关系的示意图。
[0021] 本实用新型目的的实现、 功能特点及优点将结合实施例, 参照附图做进一步说 明。
实施该发明的最佳实施例
本发明的最佳实施方式
[0022] 为更进一步阐述本实用新型为达成上述目的所采取的技术手段及功效, 以下结 合附图及优选实施例, 对本实用新型的具体实施方式、 结构、 特征及其功效进 行详细说明。 应当理解, 本实用新型所描述的具体实施例仅仅用以解释本实用 新型, 并不用于限定本实用新型。
[0023] 本实用新型提供了一种采用磁传感器改善睡眠的智能枕头 (以下简称为 "智能 枕头") , 所述智能枕头放置于用户睡觉的床垫上, 当用户的头部与所述智能枕 头接触吋, 所述智能枕头通过磁传感器产生预设频率的电磁场诱导大脑节律发 生改变, 使大脑产生谐振, 进而使得大脑发生较为明显的低频段事件相关同步 现象、 促使大脑的电活动减少、 复杂度降低, 从而改善了用户的睡眠。
[0024] 如图 1所示, 图 1是本实用新型采用磁传感器改善睡眠的智能枕头的优选实施例 的结构示意图。
[0025] 在本实施例中, 所述的采用磁传感器改善睡眠的智能枕头 1包括, 但不仅限于
, 枕头本体 2、 睡眠改善装置 3、 电池 4及设置按钮 5。
[0026] 所述睡眠改善装置 3及电池 4设置于枕头本体 2上。 所述设置按钮 5设置于所述枕 头本体 2侧壁的外表面。
[0027] 所述睡眠改善装置 3用于通过预设频率的电磁场改善用户的睡眠。 所述睡眠改 善装置 3的内部结构将在图 2中做详细描述。
[0028] 所述电池 4与所述睡眠改善装置 3电连接, 用于为所述睡眠改善装置 3供电。 此 夕卜, 所述电池 4上连接充电端口 40, 用于对电池 4充电。
[0029] 所述电池 4是一种低辐射、 低功耗的可充电电池, 其不会对用户的健康带来影 响。 所述充电端口 40可以是, 但不限于, 一种 USB接口或其它标准的电池充电接 口, 该充电端口 40可以直接插入外部电源 (例如电脑 USB接口或者低压稳压器等
) 上对所述电池 4进行充电。 当所述电池的电量用完吋, 用户可通过所述充电端 口 40对电池 4进行充电。
[0030] 在其它实施例中, 所述电池 4及充电端口 40可以省略。 在此种情形中, 所述枕 头本体 2包括一电源插头 (图 1中未示出) , 所述电源插头与所述睡眠改善装置 3 连接, 所述电源插头用于与市政电网的电源插座连接, 以通过市政电网为所述 睡眠改善装置 3供电。
[0031] 所述设置按钮 5与所述睡眠改善装置 3连接, 用于启动所述睡眠改善装置 3。 所 述设置按钮 5可以是, 但不限于, 触摸感应式按钮或实体按钮 (即由按键、 动作 触头、 复位弹簧及按钮盒组成的实体按钮) 。
[0032] 在本实施例中, 所述枕头本体 2的枕面设置成斜坡型结构。 在其它实施例中, 所述枕头本体 2的枕面设置成波浪型结构。
[0033] 如图 2所示, 图 2是本实用新型采用磁传感器改善睡眠的智能枕头中睡眠改善装 置的优选实施例的内部结构示意图。
[0034] 所述睡眠改善装置 3包括, 但不限于, 处理单元 30、 磁传感器 31及压力传感器 3
2。 所述磁传感器 31及压力传感器 32均电连接至所述处理单元 30。
[0035] 所述处理单元 30可以为一种微控制单元 (MCU) 、 数据处理芯片、 或者具有 数据处理功能的信息处理单元。 所述处理单元 30用于控制所述磁传感器 31及压 力传感器 32。
[0036] 在本实施例中, 在本实施例中, 所述磁传感器 31及压力传感器 32均为多个。 所 述枕头本体 2的枕面每隔预设距离设置一个磁传感器 31及一个压力传感器 32, 其 中, 一个磁传感器 31与一个压力传感器 32设置于同一位置。
[0037] 具体地说, 所述磁传感器 31设置于所述枕头本体 2的枕面。 所述磁传感器 31中 的磁传感器用于产生预设频率的电磁场。
[0038] 如图 3所示, 所述枕头本体 2的枕面每隔预设距离设置一个磁传感器 31 (图 3中 白色圆圈) , 形成磁传感器阵列。 如此一来, 无论用户的头部在所述枕头本体 2 枕面的哪个位置, 都会与某个或某几个所述磁传感器 31接触。
[0039] 当用户的头部位于所述枕头本体 2上吋, 所述磁传感器 31产生预设频率的电磁 场并作用于所述用户的头部。
[0040] 需要说明的是, 由于用户睡觉吋, 头部并不会固定于枕头本体 2上的某一位置 , 而磁传感器 31所产生的电磁场与用户头部直接接触吋才能产生更好的效果, 在本实施例中, 所述磁传感器 31用于当与用户头部接触吋才产生预设频率的电 磁场。
[0041] 所述压力传感器 32设置于所述枕头本体 2的枕面。 所述压力传感器 32用于监测 用户头部对该压力传感器 32施加压力的压力值。 当压力传感器 32上的压力值超 过预设阈值吋, 表明用户的头部与该压力传感器 32接触。
[0042] 进一步地, 一个磁传感器 31与一个压力传感器 32设置于同一位置, 如图 3所示 , 所述枕头本体 2的枕面上每个磁传感器 31的位置上还设置一个压力传感器 32 ( 图 3中黑色圆圈) 。 如此一来, 无论用户的头部在所述枕头本体 2枕面的哪个位 置, 当用户的头部与所述压力传感器 32接触吋, 用户的头部也与所述磁传感器 3 1接触。
[0043] 所述处理单元 30用于控制所述压力传感器 32监测用户头部对所述压力传感器 32 施加压力的压力值。
[0044] 所述处理单元 30用于当所述压力传感器 32上的压力值超过预设阈值吋, 控制该 压力传感器 32位置上的所述磁传感器 31产生预设频率的电磁场作用于用户的头 部, 以改善用户的睡眠。
[0045] 在本实施例中, 所述磁传感器 31产生预设频率的电磁场。 所预设频率的电磁场 诱发用户大脑中的抑制性突触后电位, 以改善用户的睡眠。
[0046] 具体地说, 大脑中的神经元之间主要通过突触来进行快速、 准确的信息传递与 处理。 而大脑中有两种变化相反的突触后电位: 兴奋性突触后电位 (excitatory postsynaptic potential, EPSP) 禾卩抑制性突触后电位 (inhibitory postsynaptic potential, IPSP) , 其中 EPSP使得突触后神经元产生快速的兴奋, 而 IPSP使得突 触后神经元产生快速的抑制。 在本实施例中, 通过磁传感器产生预设频率 (医 学研究表明采用的频率为 4赫兹至 7赫兹范围内的一个值) 的电磁场, 通过所述 预设频率的电磁场与大脑产生谐振, 进而诱发大脑中的 IPSP, 以抑制大脑的兴 奋度, 降低了用户睡眠吋大脑的复杂度, 改善了用户的睡眠。 所述预设频率的 电磁场与大脑产生谐振进而诱发大脑中的 IPSP为现有技术, 在此不在赘述。
[0047] 此外, 所述磁传感器 31及压力传感器 32采用可移动式结构设置于在所述枕头本 体 2的枕面, 用户可以根据需要改变所述磁传感器 31及压力传感器 32在所述枕头 本体 2上的位置。 [0048] 以上仅为本实用新型的优选实施例, 并非因此限制本实用新型的专利范围, 凡 是利用本实用新型说明书及附图内容所作的等效结构或等效功能变换, 或直接 或间接运用在其他相关的技术领域, 均同理包括在本实用新型的专利保护范围 内。
工业实用性
[0049] 相较于现有技术, 本实用新型所述采用磁传感器改善睡眠的智能枕头采用了上 述技术方案, 达到了如下技术效果: 本实用新型结合磁传感器产生预设频率的 电磁场, 所述预设频率的电磁场与大脑产生谐振, 进而诱发大脑中的 IPSP, 以 抑制大脑的兴奋度, 降低了用户睡眠吋大脑的复杂度, 改善了用户的睡眠。

Claims

权利要求书
[权利要求 1] 一种采用磁传感器改善睡眠的智能枕头, 该智能枕头包括枕头本体, 其特征在于, 所述智能枕头还包括设置于所述枕头本体上的睡眠改善 装置, 所述睡眠改善装置包括处理单元、 多个磁传感器及多个压力传 感器, 所述多个磁传感器及多个压力传感器均电连接至所述处理单元 ; 所述枕头本体的枕面每隔预设距离设置一个磁传感器及一个压力传 感器, 其中, 一个磁传感器与一个压力传感器设置于同一位置; 所述 压力传感器用于监测用户头部对该压力传感器施加压力的压力值; 及 所述处理单元用于当所述压力传感器上的压力值超过预设阈值吋, 控 制该压力传感器位置上的磁传感器产生预设频率的电磁场作用于用户 的头部。
[权利要求 2] 如权利要求 1所述的采用磁传感器改善睡眠的智能枕头, 其特征在于
, 所述智能枕头还包括连接至所述睡眠改善装置的设置按钮, 所述设 置按钮设置于所述枕头本体侧壁的外表面, 用于启动所述睡眠改善装
[权利要求 3] 如权利要求 2所述的采用磁传感器改善睡眠的智能枕头, 其特征在于
, 所述设置按钮是触摸感应式按钮或实体按钮。
[权利要求 4] 如权利要求 1所述的采用磁传感器改善睡眠的智能枕头, 其特征在于
, 所述磁传感器及压力传感器采用可移动式结构设置于在所述枕头本 体的枕面。
[权利要求 5] 如权利要求 1所述的采用磁传感器改善睡眠的智能枕头, 其特征在于
, 所述预设频率为 4赫兹至 7赫兹范围内的一个值。
[权利要求 6] 如权利要求 1至 5任意一项所述的采用磁传感器改善睡眠的智能枕头, 其特征在于, 所述智能枕头包括电池, 所述电池与所述睡眠改善装置 电连接, 用于为所述睡眠改善装置供电。
[权利要求 7] 如权利要求 6所述的采用磁传感器改善睡眠的智能枕头, 其特征在于
, 所述电池连接有充电端口, 所述充电端口用于对所述电池充电。
[权利要求 8] 如权利要求 1至 5任意一项所述的采用磁传感器改善睡眠的智能枕头, 其特征在于, 所述枕头本体包括连接至所述睡眠改善装置的电源插头 , 用于与市政电网的电源插座连接。
[权利要求 9] 如权利要求 1至 5任意一项所述的采用磁传感器改善睡眠的智能枕头, 其特征在于, 所述枕头本体的枕面为斜坡型结构或波浪型结构。
PCT/CN2016/105898 2016-04-01 2016-11-15 采用磁传感器改善睡眠的智能枕头 Ceased WO2017166824A1 (zh)

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