WO2018032778A1 - 自动调节水平度的健康一体机 - Google Patents

自动调节水平度的健康一体机 Download PDF

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Publication number
WO2018032778A1
WO2018032778A1 PCT/CN2017/079366 CN2017079366W WO2018032778A1 WO 2018032778 A1 WO2018032778 A1 WO 2018032778A1 CN 2017079366 W CN2017079366 W CN 2017079366W WO 2018032778 A1 WO2018032778 A1 WO 2018032778A1
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WO
WIPO (PCT)
Prior art keywords
detector
integrated machine
self
electrode
level
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Application number
PCT/CN2017/079366
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English (en)
French (fr)
Inventor
张贯京
高伟明
Original Assignee
深圳市前海安测信息技术有限公司
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Application filed by 深圳市前海安测信息技术有限公司 filed Critical 深圳市前海安测信息技术有限公司
Publication of WO2018032778A1 publication Critical patent/WO2018032778A1/zh

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Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01GWEIGHING
    • G01G19/00Weighing apparatus or methods adapted for special purposes not provided for in the preceding groups
    • G01G19/44Weighing apparatus or methods adapted for special purposes not provided for in the preceding groups for weighing persons
    • G01G19/50Weighing apparatus or methods adapted for special purposes not provided for in the preceding groups for weighing persons having additional measuring devices, e.g. for height
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/02Detecting, measuring or recording pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography or electroauscultation; Heart catheters for measuring blood pressure
    • A61B5/0205Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01CMEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
    • G01C9/00Measuring inclination, e.g. by clinometers, by levels
    • G01C9/18Measuring inclination, e.g. by clinometers, by levels by using liquids
    • G01C9/24Measuring inclination, e.g. by clinometers, by levels by using liquids in closed containers partially filled with liquid so as to leave a gas bubble
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01CMEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
    • G01C9/00Measuring inclination, e.g. by clinometers, by levels
    • G01C9/18Measuring inclination, e.g. by clinometers, by levels by using liquids
    • G01C2009/182Measuring inclination, e.g. by clinometers, by levels by using liquids conductive

Definitions

  • the present invention relates to the field of medical devices, and in particular to a health integrated machine that automatically adjusts the level.
  • the main object of the present invention is to provide a health-integrated machine that automatically adjusts the level, aiming at solving the technical problem that the existing health-integrated machine cannot automatically adjust the level of the health-integrated machine.
  • the present invention provides a health-integrated machine that automatically adjusts the level
  • the self-adjusting level health integrated machine includes a base, a level detecting portion, a bracket, a top cover, a control portion, Multiple feet, multiple anti-rotation pins and multiple rotating motors, where:
  • the base is connected to the bottom of the bracket, and the top of the bracket is connected to the top cover;
  • the plurality of feet, the plurality of anti-rotation pins and the plurality of rotating electric machines are disposed at an edge position of the bottom left and right sides of the base, wherein each of the feet corresponds to an anti-rotation pin and a rotating electric machine, and each The rotary electric machine includes a rotating shaft, and the rotating shaft of each rotating electric machine is screwed with a foot, each anti-rotation pin is disposed between the base and a foot, and each anti-rotation pin is also fixedly connected with a rotating electric machine. ; [0008]
  • the level detecting unit is horizontally disposed on the base, and the level detecting unit is configured to detect a level of the health integrated machine;
  • the control unit is disposed in the bracket, and the control unit is electrically connected to the levelness detecting unit and the plurality of rotating motors;
  • control unit is configured to control, when the level detecting unit detects that the health integrated machine is in a left high right low tilt state, and rotate the rotating electric machine located at a left bottom edge position of the base to drive and rotate The corresponding foot of the rotating electrical machine moves downwards, so that the health integrated machine is in a horizontal state;
  • control unit further controls the rotation of the rotating electrical machine at a position of a bottom edge of the right side of the base when the level detecting unit detects that the health integrated device is in a tilt state of right high left low
  • the pad corresponding to the rotating electrical machine is moved upwards, so that the health integrated machine is in a horizontal state.
  • the level detecting unit includes a power source, a switch, a first detector, a liquid box, and a conductive solution.
  • the liquid cartridge is filled with the conductive solution
  • the horizontal bubble is located in the liquid cartridge
  • the first electrode is connected
  • the second detector is connected to the second electrode.
  • the first electrode and the second electrode are disposed at a fixed position in the liquid box, the negative electrode of the power source is connected to the conductive liquid in the liquid box through a wire, and the first detector is connected in parallel with the positive electrode of the power source.
  • Second detector is disposed at a fixed position in the liquid box, the negative electrode of the power source is connected to the conductive liquid in the liquid box through a wire, and the first detector is connected in parallel with the positive electrode of the power source.
  • the horizontal bubble is located at an intermediate position of the liquid cartridge, and the first electrode and the second electrode are both located in the conductive solution,
  • the circuits of the first detector and the second detector are both turned on, and the first detector and the second detector are both turned on.
  • the horizontal bubble is located at a right position of the liquid cartridge, the first electrode is located in a horizontal bubble, and the second electrode Located within the electrically conductive solution, the circuitry of the first detector is broken and the first detector is turned off, the circuitry of the second detector is turned “on” and the second detector is turned “on”.
  • the horizontal bubble is located at a left position of the liquid cartridge, and the first electrode is located in the conductive solution.
  • the second electrode is located in the horizontal bubble, the circuit of the first detector is turned on and the first detector is turned on, the circuit of the second detector is broken and the second detector is turned off.
  • the self-adjusting level health integrated device includes a bottom portion of the top cover and the The height detecting unit electrically connected to the control unit is configured to detect the height of the user.
  • the self-adjusting level health integrated machine comprises a weight scale disposed on the base and electrically connected to the control unit for weighing the user's weight.
  • the self-adjusting level health integrated machine comprises a blood oxygen detecting portion disposed on the bracket for detecting a blood oxygen content of the user.
  • the self-adjusting level health integrated device comprises a blood pressure detecting portion disposed on the bracket for detecting a blood pressure and a pulse of the user.
  • the self-adjusting level health integrated device comprises a display disposed on a side surface of the bracket.
  • the self-adjusting level health integrated machine of the present invention adopts the above technical solution, and the technical effects brought by the present invention are:
  • the invention automatically detects whether the health integrated machine is in a horizontal state by the levelness detecting portion, when the health The integrated machine is not in a horizontal state, and the level of the health integrated machine is adjusted by automatically adjusting the height of the foot on the bottom of the health integrated machine, thereby ensuring that the health integrated machine is in a horizontal state, and improving the health integrated machine to the user.
  • the accuracy of the detected data is:
  • FIG. 1 is a cross-sectional structural view of a preferred embodiment of a self-adjusting level health integrated machine of the present invention
  • FIG. 2 is a top plan view of a preferred embodiment of the self-adjusting level health integrated machine of the present invention
  • 3024 is a schematic structural view of a preferred embodiment of a foot and anti-rotation pin in a self-adjusting level health integrated machine according to the present invention
  • FIG. 4 is a schematic circuit diagram showing a preferred embodiment of a level-level horizontal level detecting unit of a self-adjusting level health integrated machine according to the present invention
  • FIG. 5 is a schematic diagram showing the circuit structure of a preferred embodiment of the horizontal height right lower level level detecting unit of the self-adjusting level level health integrated machine of the present invention
  • FIG. 6 is a schematic diagram showing the circuit structure of a preferred embodiment of the right-level left low-level level detecting unit of the self-adjusting level level health integrated machine of the present invention.
  • FIG. 1 is a schematic cross-sectional structural view of a preferred embodiment of the self-adjusting level health integrated machine of the present invention
  • FIG. 2 is a preferred embodiment of the self-adjusting level health integrated machine of the present invention.
  • the self-adjusting level health integrated machine 100 includes, but is not limited to, the base 1, the plurality of feet 2 (four in FIG. 1 as an example), and multiple anti-reductions. 3 (four in Figure 1 as an example), a plurality of rotating electrical machines 4 (four in Figure 1 as an example), a plurality of cover plates 5 (four in Figure 1 as an example), a level detecting portion 6, and a bracket 7, The top cover 8, the height detecting unit 9, the weight scale 10, and the control unit 11.
  • the base 1 is connected to the bottom of the bracket 7, and the top of the bracket 7 is connected to the top cover 8.
  • the base 1, the bracket 7 and the top cover 8 form a U-shaped structure.
  • the base 1 has a square structure.
  • the weight scale 10 is disposed on the upper surface of the base 1 for weighing the user when the user stands on the weight scale 10.
  • the weight scale 10 is an electronic weight scale, and the electronic weight scale is provided with a resistance strain type load cell. When the user stands on the weight scale 10, the resistance strain type load cell pair The user's weight is weighed.
  • the height detecting portion 9 is provided at the bottom of the top cover 8. The height detecting unit 9 is for detecting the height of the user.
  • the height detecting portion 9 emits ultrasonic waves (or light rays) at the top of the user's head, and receives ultrasonic waves (or light rays) returned from the top of the user's head, and calculates the user's head to the height detecting portion based on the inter-turn difference from the transmission to the return.
  • the plurality of feet 2, the plurality of anti-rotation pins 3, the plurality of rotating electric machines 4 and the plurality of cover plates 5 are disposed at edge positions of the bottoms of the left and right sides of the base 1. Among them, each of the feet 2 corresponds to one anti-rotation pin 3, one rotating electric machine 4 and one cover plate 5.
  • Each of the rotary electric machines 4 includes a rotary shaft (black member in Fig. 1), and each of the rotary motors 4 is disposed at the top of one of the feet 2, and penetrates into the foot 2 through the rotary shaft. It is to be noted that the rotary shaft of the rotary electric machine 4 is of a screw structure, that is, the rotary shaft of each rotary electric machine 4 is screwed to a foot 2 .
  • Each of the anti-rotation pins 3 is disposed between the base 1 and a foot 2 (as shown in Fig. 3), and each of the anti-rotation pins 3 is also fixedly coupled to a rotary electric machine 4.
  • the anti-rotation pin 3 is configured to fix the rotary electric machine 4 when the rotating shaft of the rotary electric machine 4 rotates, to prevent the rotary electric machine 4 from moving up and down, and in a case where the rotary electric machine 4 does not move up and down, The foot 2 moves up and down due to the rotation of the rotating shaft.
  • the cover 5 is provided with the top of the rotary electric machine 4 for covering the rotary motor 4. In other embodiments, the cover 5 may be omitted.
  • the level detecting unit 6 is horizontally disposed on the susceptor 1.
  • the level detecting unit 6 is for detecting the levelness of the health integrated machine 100.
  • the level detecting portion 6 includes a power source 60, a switch 61, a first detector 62, a liquid cartridge 63, a conductive solution 64, a horizontal bubble 65, and a second detector 66.
  • the first electrode 632 and the second electrode 634 are the first electrode 632 and the second electrode 634.
  • the liquid cartridge 63 is filled with a conductive solution 64, the horizontal bubble 65 is located in the liquid cartridge 63, the horizontal bubble 65 will move within the liquid cartridge 63, for example, if the liquid The box 63 is left high right and low right, the horizontal bubble 65 is moved to the left, and if the liquid box 63 is right high left low, the horizontal bubble 65 moves to the right.
  • the electrically conductive liquid 64 is used for electrical conduction.
  • the electrically conductive liquid can be, but is not limited to, water or any other electrically conductive liquid. It should be noted that, in order to prevent electric leakage, the liquid cartridge 63 has a hermetic structure. Further, the conductive liquid 64 in the liquid cartridge 63 does not fill the liquid cartridge 63, so that the horizontal bubble 65 can be produced.
  • the first detector 62 is connected to the first electrode 632 by a wire
  • the second detector 66 is The second electrode 634 is connected by a wire.
  • the first electrode 632 and the second electrode 634 are disposed at a fixed position in the liquid cartridge 63.
  • the negative electrode of the power source 60 is connected to the conductive liquid in the liquid cartridge 63 by a wire.
  • the first detector 62 and the second detector 66 are connected in parallel to the positive pole of the power source 60.
  • the horizontal bubble 65 is located at an intermediate position of the liquid cartridge 63, the first electrode 632 and the second The electrodes 634 are all located in the conductive solution 64. Thereafter, the circuits of the first detector 62 and the second detector 66 are both turned on, and the first detector 62 and the second detector 66 are both turned on.
  • the horizontal bubble is located at an intermediate position of the liquid cartridge 63 and the level detecting portion 6 is in a horizontal state, that is, The health integrated machine 100 is also in a horizontal state (i.e., without tilting), and the user does not need to adjust the height of the foot pad 2.
  • the horizontal bubble 65 is located at a right position of the liquid cartridge 63, and the An electrode 632 is located in the horizontal bubble 65, and the second electrode 634 is located in the conductive solution 64.
  • the circuit of the first detector 62 is broken, and the circuit of the second detector 66 is turned on.
  • the first detector 62 is turned off and the second detector 66 is turned on. That is, if the first detector 62 is turned off and the second detector 66 is turned on, the surface horizontal bubble is located at the right position of the liquid cartridge 63 and the level detecting portion 6 is left.
  • the high right and low tilt state that is, the health integrated machine 100 is also in a left high right low tilt state.
  • the user needs to adjust the height of the foot pad 2 located on the left side of the base 1 (i.e., lower the height of the foot pad 2 located to the left of the base 1).
  • the horizontal bubble 65 is located at a left position of the liquid cartridge 63, and the first electrode 632 Located in the conductive solution 64, the second electrode 634 is located in the horizontal bubble 65.
  • the circuit of the first detector 62 is turned on, and the circuit of the second detector 66 is broken.
  • a detector 62 is turned on and the second detector 66 is turned off.
  • the health integrated machine 100 is also in a tilt state of right high left low.
  • the user needs to adjust the height of the foot pad 2 located on the right side of the base 1 (i.e., lower the height of the foot pad 2 located on the right side of the base 1).
  • the first detector 62 and the second detector 66 may be, but are not limited to, a bulb or a current signal detector.
  • the first detector 62 and the second detector 66 may be disposed on the surface of the base 1 to facilitate visual inspection by a user.
  • the bracket 7 is a hollow structure.
  • the control unit 11 is disposed in the bracket 7.
  • the control unit 11 is electrically connected to the rotary electric machine 4, the level detecting unit 6, the height detecting unit 9, and the weight 10 via a wire inside the health-integrated unit 100 that automatically adjusts the level.
  • the control unit 11 is configured to control the rotation of the rotary electric machine 4 located on the left side of the base 1 to drive the foot 2 to move downward, so that the level detection unit 6 is in a horizontal state (ie, the first A detector 62 and a second detector 66 are both turned on.
  • the control unit 11 is configured to control the rotation of the rotating electrical machine 4 located on the right side of the base 1 and drive the foot 2 to move upward, so that the level detecting unit 6 is in a horizontal state (ie, the first detector 62 and The second detector 66 is turned on.
  • the control unit 11 controls the height detecting unit 9 to detect the user's height, and the control unit 11 controls the weight 10 to weigh the user.
  • the health integrated machine 100 further includes a blood pressure detecting portion disposed on the bracket 7.
  • the other blood pressure detecting unit and the blood oxygen detecting unit are electrically connected to the control unit 11 (not shown) and other blood detecting means such as a blood oxygen detecting unit (not shown).
  • the blood pressure detecting unit is for detecting a blood pressure and a pulse of the user.
  • the blood pressure detecting unit has a ring-shaped structure, and the arm of the user passes through the blood pressure detecting unit ⁇ , and the air bag of the inner surface of the blood pressure detecting unit bulges and is attached to the arm of the user, and the user Perform blood pressure and pulse detection.
  • the blood oxygen detecting unit is configured to detect a blood oxygen content of the user.
  • the technique for detecting the blood oxygen content of the user by the blood oxygen detecting unit is prior art, and details are not described herein again.
  • control unit 11 When the level detecting unit 6 is in a horizontal state, the control unit 11 is configured to control the blood oxygen detecting The part detects the blood oxygen content of the user, and the control unit 11 controls the blood pressure detecting unit to detect the blood pressure and the pulse of the user.
  • the self-adjusting level health integrated machine 100 includes a display (not shown) disposed on a side surface of the bracket 7 when the health-integrated device 100 that automatically adjusts the level performs a body on the user.
  • the user's detection data for example, blood pressure, blood oxygen content, pulse, ultrasound image of the breast, height, weight, etc.
  • the display can be displayed on the display.
  • the self-adjusting level health integrated machine 100 includes a power plug (not shown) connected to a power outlet connected to the municipal power grid to pass the municipal power grid for the automatic The health-integrated machine 100 that adjusts the level of power is supplied.
  • the self-adjusting level health integrated machine of the present invention adopts the above technical solution, and the technical effects brought by the present invention are:
  • the invention automatically detects whether the health integrated machine is in a horizontal state by the levelness detecting portion, when the health The integrated machine is not in a horizontal state, and the level of the health integrated machine is adjusted by automatically adjusting the height of the foot on the bottom of the health integrated machine, thereby ensuring that the health integrated machine is in a horizontal state, and improving the health integrated machine to the user.
  • the accuracy of the detected data is:

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Abstract

一种自动调节水平度的健康一体机(100),包括基座(1)、水平度检测部(6)、支架(7)、顶罩(8)、控制部(11)、多个垫脚(2)、多个防转销(3)及多个旋转电机(4):基座(1)与支架(7)的底部连接,支架(7)的顶部与顶罩(8)连接;多个垫脚(2)、多个防转销(3)及多个旋转电机(4)均设置于基座(1)左右两边的边缘位置上,每个垫脚(2)与一个防转销(3)及一个旋转电机(4)对应,每个旋转电机(4)包括一个旋转轴,每个旋转电机(4)的旋转轴与一个垫脚(2)螺纹连接,每个防转销(3)设置于基座(1)与一个垫脚(2)之间,每个防转销(3)还与一个旋转电机(4)固定连接;水平度检测部(6)水平设置于基座(1)上;控制部(11)设置于支架(7)内,控制部(11)与水平度检测部(6)及多个旋转电机(4)电连接。可以自动调节健康一体机的水平度,提高了健康一体机对用户所检测的数据的精确度。

Description

自动调节水平度的健康一体机
技术领域
[0001] 本发明涉及医疗器械领域, 尤其涉及一种自动调节水平度的健康一体机。
背景技术
[0002] 随着社会的进步、 人们生活水平的不断提高, 人们对自身身体健康状况越来越 重视, 定期体检也成为人们了解自身身体状况的一种重要方式。
[0003] 目前, 在社区、 诊所等场所常常会安装健康一体机, 可以方便的对相关人员的 身体状况进行检测, 随吋了解自身身体健康状况以便采取相应的措施。 然而, 目前市面上常见的健康一体机功能进行检测之前, 需要调节健康一体机的水平 度, 以确保健康一体机处于水平状态。 现有的健康一体机通常采用人工调节的 方式, 例如通过螺丝刀调节位于所述健康一体机底部的垫脚的高度。 然而, 采 用人工的方式调节健康一体机的水平度后无法确保健康一体机处于水平状态, 且人工的方式费吋费力。
技术问题
[0004] 本发明的主要目的在于提供一种自动调节水平度的健康一体机, 旨在解决现有 的健康一体机无法自动对健康一体机进行水平度调节的技术问题。
问题的解决方案
技术解决方案
[0005] 为实现上述目的, 本发明提供了一种自动调节水平度的健康一体机, 所述自动 调节水平度的健康一体机包括基座、 水平度检测部、 支架、 顶罩、 控制部、 多 个垫脚、 多个防转销及多个旋转电机, 其中:
[0006] 所述基座与所述支架的底部连接, 所述支架的顶部与所述顶罩连接;
[0007] 所述多个垫脚、 多个防转销及多个旋转电机设置于所述基座左右两边底部的边 缘位置上, 其中, 每个垫脚与一个防转销及一个旋转电机对应, 每个旋转电机 包括一个旋转轴, 每个旋转电机的旋转轴与一个垫脚螺纹连接, 每个防转销设 置于所述基座与一个垫脚之间, 每个防转销还与一个旋转电机固定连接; [0008] 所述水平度检测部水平设置于所述基座上, 所述水平度检测部用于检测所述健 康一体机的水平度;
[0009] 所述控制部设置于所述支架内, 所述控制部与所述水平度检测部及所述多个旋 转电机电连接;
[0010] 所述控制部, 用于当所述水平度检测部检测出所述健康一体机处于左高右低的 倾斜状态吋, 控制位于所述基座左边底部边缘位置的旋转电机旋转并带动所述 旋转电机对应的垫脚向下移动, 使得所述健康一体机处于水平状态; 及
[0011] 所述控制部, 还当所述水平度检测部检测出所述健康一体机处于右高左低的倾 斜状态吋, 控制位于所述基座右边底部边缘位置的所述旋转电机旋转并带动所 述旋转电机对应的所述垫脚向上移动, 使得所述健康一体机处于水平状态。
[0012] 优选的, 所述水平度检测部包括电源、 幵关、 第一检测器、 液体盒、 导电溶液
、 水平泡、 第二检测器、 第一电极及第二电极, 其中, 所述液体盒内装有所述 导电溶液, 所述水平泡位于所述液体盒内, 所述第一检测器与所述第一电极连 接, 所述第二检测器与所述第二电极连接。 所述第一电极及第二电极设置于所 述液体盒内的固定位置, 所述电源的负极通过导线连接至所述液体盒内的导电 液体, 所述电源的正极上并联第一检测器及第二检测器。
[0013] 优选的, 当所述水平度检测部处于水平状态吋, 所述水平泡位于所述液体盒的 中间位置, 所述第一电极及第二电极均位于所述导电溶液内, 所述第一检测器 及第二检测器的电路均接通, 所述第一检测器及第二检测器均幵启。
[0014] 优选的, 当所述水平度检测部处于左高右低的倾斜状态吋, 所述水平泡位于所 述液体盒的靠右位置, 所述第一电极位于水平泡内, 第二电极位于所述导电溶 液内, 所述第一检测器的电路断幵且所述第一检测器关闭, 所述第二检测器的 电路接通且所述第二检测器幵启。
[0015] 优选的, 当所述水平度检测部处于右高左低的倾斜状态吋, 所述水平泡位于所 述液体盒的靠左位置, 所述第一电极位于所述导电溶液内, 所述第二电极位于 水平泡内, 所述第一检测器的电路接通且所述第一检测器幵启, 所述第二检测 器的电路断幵且所述第二检测器关闭。
[0016] 优选的, 所述自动调节水平度的健康一体机包括设置于所述顶罩底部且与所述 控制部电连接的高度检测部, 用于检测用户的身高。
[0017] 优选的, 所述自动调节水平度的健康一体机包括设置于所述基座上且与所述控 制部电连接的体重秤, 用于对用户体重称重。
[0018] 优选的, 所述自动调节水平度的健康一体机包括设置于所述支架上的血氧检测 部, 用于检测用户的血氧含量。
[0019] 优选的, 所述自动调节水平度的健康一体机包括设置于所述支架上的血压检测 部, 用于检测用户的血压及脉搏。
[0020] 优选的, 所述自动调节水平度的健康一体机包括设置于所述支架侧表面的显示 器。
发明的有益效果
有益效果
[0021] 本发明所述自动调节水平度的健康一体机采用上述技术方案, 带来的技术效果 为: 本发明通过水平度检测部自动检测所述健康一体机是否处于水平状态, 当 所述健康一体机不处于水平状态吋, 通过自动调节位于所述健康一体机底部的 垫脚的高度来调节健康一体机的水平度, 确保了所述健康一体机处于水平状态 , 提高了健康一体机对用户所检测的数据的精确度。
对附图的简要说明
附图说明
[0022] 图 1是本发明自动调节水平度的健康一体机的优选实施例的剖面结构示意图; [0023] 图 2是本发明自动调节水平度的健康一体机的优选实施例的俯视图示意图; [0024] 图 3是本发明自动调节水平度的健康一体机中垫脚与防转销的优选实施例的结 构示意图;
[0025] 图 4是本发明自动调节水平度的健康一体机的水平度水平吋水平度检测部的优 选实施例的电路结构示意图;
[0026] 图 5是本发明自动调节水平度的健康一体机的水平度为左高右低吋水平度检测 部的优选实施例的电路结构示意图;
[0027] 图 6是本发明自动调节水平度的健康一体机的水平度为右高左低吋水平度检测 部的优选实施例的电路结构示意图。 [0028] 本发明目的的实现、 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
[0029] 为更进一步阐述本发明为达成预定发明目的所采取的技术手段及功效, 以下结 合附图及较佳实施例, 对本发明的具体实施方式、 结构、 特征及其功效, 详细 说明如下。 应当理解, 此处所描述的具体实施例仅仅用以解释本发明, 并不用 于限定本发明。
[0030] 需要说明的是, 当元件被称为 "设置于"另一个元件, 它可以直接在另一个元件 上或者可以存在居中的元件。 当一个元件被认为是"连接"另一个元件, 它可以直 接连接到另一个元件或者可能同吋存在居中元件。
[0031] 除非另有定义, 本文所使用的所有的技术和科学术语与属于本发明的技术领域 的技术人员通常理解的含义相同。 本文中在发明的说明书中所使用的术语只是 为了描述具体的实施方式的目的, 不是旨在于限制本发明。 本文所使用的术语" 及 /或"包括一个或多个相关的所列项目的任意的和所有的组合。
[0032]
[0033] 参照图 1及图 2所示, 图 1是本发明自动调节水平度的健康一体机的优选实施例 的剖面结构示意图, 图 2是本发明自动调节水平度的健康一体机的优选实施例的 俯视图示意图。
[0034] 在本实施例中, 所述的自动调节水平度的健康一体机 100包括, 但不仅限于, 基座 1、 多个垫脚 2 (图 1中四个为例) 、 多个防转销 3 (图 1中四个为例) 、 多个 旋转电机 4 (图 1中四个为例) 、 多个盖板 5 (图 1中四个为例) 、 水平度检测部 6 、 支架 7、 顶罩 8、 高度检测部 9、 体重秤 10及控制部 11。
[0035] 所述基座 1与所述支架 7的底部连接, 所述支架 7的顶部与所述顶罩 8连接。 所述 基座 1、 支架 7及顶罩 8形成 U型结构。 所述基座 1为方形结构。
[0036] 所述体重秤 10设置于所述基座 1的上表面, 用于当用户站立于所述体重秤 10上 吋, 对用户称重。 在本实施例中, 体重秤 10为电子体重秤, 所述电子体重秤中 设置有电阻应变式称重传感器, 当用户站立于所述体重秤 10上吋, 所述电阻应 变式称重传感器对用户的体重进行称重。 [0037] 所述高度检测部 9设置于所述顶罩 8的底部。 所述高度检测部 9用于检测用户的 身高。 具体地说, 所述高度检测部 9对准用户头顶发射超声波 (或光线) , 并接 收从用户头顶返回的超声波 (或光线) , 根据从发射到返回的吋间差计算用户 头顶到高度检测部 9的第一距离, 由于所述高度检测部 9到基座 1的第二距离是固 定的, 因此可以计算出用户的身高 (即第二距离与第一距离的差值) 。
[0038] 所述多个垫脚 2、 多个防转销 3、 多个旋转电机 4及多个盖板 5设置于所述基座 1 左右两边底部的边缘位置上。 其中, 每个垫脚 2与一个防转销 3、 一个旋转电机 4 及一个盖板 5对应。 每个旋转电机 4包括一个旋转轴 (图 1中黑色部件) , 每个旋 转电机 4设置于一个垫脚 2的顶部, 并通过所述旋转轴深入至该垫脚 2内。 需要说 明的是, 所述旋转电机 4的旋转轴为螺纹结构, 也就是说, 每个旋转电机 4的旋 转轴与一个垫脚 2螺纹连接。 每个防转销 3设置于所述基座 1与一个垫脚 2之间 ( 如图 3所示) , 每个防转销 3还与一个旋转电机 4固定连接。 所述防转销 3用于当 所述旋转电机 4的旋转轴转动吋, 固定所述旋转电机 4, 防止所述旋转电机 4上下 移动, 在所述旋转电机 4不会上下移动的情况下, 由于旋转轴的旋转带动所述垫 脚 2上下移动。 此外, 所述盖板 5设置与所述旋转电机 4的顶部, 用于盖住所述旋 转电机 4。 在其他实施例中, 所述盖板 5可以省略。
[0039] 所述水平度检测部 6水平设置于所述基座 1上。 所述水平度检测部 6用于检测所 述健康一体机 100的水平度。 具体地说, 如图 4至 6所示, 所述水平度检测部 6包 括电源 60、 幵关 61、 第一检测器 62、 液体盒 63、 导电溶液 64、 水平泡 65、 第二 检测器 66、 第一电极 632及第二电极 634。
[0040] 其中, 所述液体盒 63内装有导电溶液 64, 所述水平泡 65位于所述液体盒 63内, 所述水平泡 65会在所述液体盒 63内移动, 例如, 若所述液体盒 63左高右低吋, 所述水平泡 65向左移动, 若所述液体盒 63右高左低吋, 所述水平泡 65向右移动 。 所述导电液体 64用于导电。 所述导电液体可以是, 但不限于, 水或其它任意 能够导电的液体。 需要说明的是, 为了防止漏电, 所述液体盒 63位密闭结构。 进一步地, 所述液体盒 63内的导电液体 64没有盛满所述液体盒 63, 如此才能产 生水平泡 65。
[0041] 所述第一检测器 62与所述第一电极 632通过导线连接, 所述第二检测器 66与所 述第二电极 634通过导线连接。 所述第一电极 632及第二电极 634设置于所述液体 盒 63内的固定位置。
[0042] 在本实施例中, 所述电源 60的负极通过导线连接至所述液体盒 63内的导电液体 。 所述电源 60的正极上并联第一检测器 62及第二检测器 66。
[0043] 通过控制所述水平泡 65在所述液体盒 63内的移动, 可以控制第一检测器 62及第 二检测器 66的关闭或启动。
[0044] 具体地说, 如图 4所示, 当所述水平度检测部 6处于水平状态吋, 所述水平泡 65 位于所述液体盒 63的中间位置, 所述第一电极 632及第二电极 634均位于所述导 电溶液 64内, 此吋, 所述第一检测器 62及第二检测器 66的电路均接通, 所述第 一检测器 62及第二检测器 66均幵启。 也就是说, 若所述第一检测器 62及第二检 测器 66均幵启, 表面所述水平泡位于所述液体盒 63的中间位置且所述水平度检 测部 6处于水平状态, 即所述健康一体机 100也处于水平状态 (即没有倾斜) , 用户不需要调节所述脚垫 2的高度。
[0045] 具体地说, 如图 5所示, 当所述水平度检测部 6处于左高右低的倾斜状态吋, 所 述水平泡 65位于所述液体盒 63的靠右位置, 所述第一电极 632位于水平泡 65内, 所述第二电极 634位于所述导电溶液 64内, 此吋, 所述第一检测器 62的电路断幵 , 所述第二检测器 66的电路接通, 所述第一检测器 62关闭, 所述第二检测器 66 幵启。 也就是说, 若所述第一检测器 62关闭且所述第二检测器 66幵启吋, 表面 所述水平泡位于所述液体盒 63的靠右位置且所述水平度检测部 6处于左高右低的 倾斜状态, 即所述健康一体机 100也处于左高右低的倾斜状态。 用户需要通过调 节位于所述基座 1左边的脚垫 2的高度 (即降低所述位于所述基座 1左边的脚垫 2 的高度) 。
具体地说, 如图 6所示, 当所述水平度检测部 6处于右高左低的倾斜状态吋, 所 述水平泡 65位于所述液体盒 63的靠左位置, 所述第一电极 632位于所述导电溶液 64内, 所述第二电极 634位于水平泡 65内, 此吋, 所述第一检测器 62的电路接通 , 所述第二检测器 66的电路断幵, 所述第一检测器 62幵启, 所述第二检测器 66 关闭。 也就是说, 若所述第一检测器 62幵启且所述第二检测器 66关闭吋, 表明 所述水平泡位于所述液体盒 63的靠左位置且所述水平度检测部 6处于右高左低的 倾斜状态, 即所述健康一体机 100也处于右高左低的倾斜状态。 用户需要通过调 节位于所述基座 1右边的脚垫 2的高度 (即降低所述位于所述基座 1右边的脚垫 2 的高度) 。
[0047] 在本实施例中, 所述第一检测器 62及第二检测器 66可以是, 但不限于, 灯泡或 电流信号检测器。 所述第一检测器 62及第二检测器 66可以设置于所述基座 1的表 面, 以方便用户直观地査看。
[0048] 进一步地, 所述支架 7为空心结构。 所述控制部 11设置于所述支架 7内。 所述控 制部 11通过所述自动调节水平度的健康一体机 100内部的导线与所述旋转电机 4 、 水平度检测部 6、 高度检测部 9及体重秤 10电连接。
[0049] 具体地说, 当所述水平度检测部 6检测出所述健康一体机 100处于左高右低的倾 斜状态吋 (即所述第一检测器 62关闭且第二检测器 66幵启) , 所述控制部 11用 于控制位于所述基座 1左边的所述旋转电机 4旋转并带动所述垫脚 2向下移动, 使 得所述水平度检测部 6处于水平状态 (即所述第一检测器 62及第二检测器 66均幵 启) 。
[0050] 当所述水平度检测部 6检测出所述健康一体机 100处于右高左低的倾斜状态吋 ( 即所述第一检测器 62幵启且第二检测器 66关闭) , 所述控制部 11用于控制位于 所述基座 1右边的所述旋转电机 4旋转并带动所述垫脚 2向上移动, 使得所述水平 度检测部 6处于水平状态 (即所述第一检测器 62及第二检测器 66均幵启) 。
[0051] 当所述水平度检测部 6处于水平状态吋, 所述控制部 11控制所述高度检测部 9检 测用户身高, 及所述控制部 11控制所述体重秤 10对用户称重。
[0052] 在其它实施例中, 所述健康一体机 100还包括设置于所述支架 7上的血压检测部
(图中未标号) 及血氧检测部 (图中未标号) 等其它健康检测部件, 所述血压 检测部及血氧检测部均与所述控制部 11电连接。 所述血压检测部用于检测用户 的血压及脉搏。 具体地说, 所述血压检测部为环型结构, 用户的手臂穿过所述 血压检测部吋, 所述血压检测部内表面的充气囊鼓起并帖合于所述用户的手臂 , 并对用户进行血压及脉搏检测。 所述血氧检测部用于检测用户的血氧含量。 所述血氧检测部检测用户的血氧含量的技术为现有技术, 在此不再赘述。
[0053] 当所述水平度检测部 6处于水平状态吋, 所述控制部 11用于控制所述血氧检测 部检测用户的血氧含量, 所述控制部 11用于控制所述血压检测部检测用户的血 压及脉搏。
[0054] 进一步地, 所述自动调节水平度的健康一体机 100包括设置于所述支架 7侧表面 的显示器 (图中未示出) , 当自动调节水平度的健康一体机 100对用户进行身体 检测吋, 可以在所述显示器中显示用户的检测数据 (例如, 血压、 血氧含量、 脉搏、 乳房的超声影像、 身高、 体重等数据) 。
[0055] 进一步地, 所述自动调节水平度的健康一体机 100包括电源插头 (图中未示出 ) , 所述电源插头与连接至市政电网的电源插座连接, 以通过市政电网为所述 自动调节水平度的健康一体机 100供电。
[0056] 以上仅为本发明的优选实施例, 并非因此限制本发明的专利范围, 凡是利用本 发明说明书及附图内容所作的等效结构或等效流程变换, 或直接或间接运用在 其他相关的技术领域, 均同理包括在本发明的专利保护范围内。
工业实用性
[0057] 本发明所述自动调节水平度的健康一体机采用上述技术方案, 带来的技术效果 为: 本发明通过水平度检测部自动检测所述健康一体机是否处于水平状态, 当 所述健康一体机不处于水平状态吋, 通过自动调节位于所述健康一体机底部的 垫脚的高度来调节健康一体机的水平度, 确保了所述健康一体机处于水平状态 , 提高了健康一体机对用户所检测的数据的精确度。

Claims

权利要求书
[权利要求 1] 一种自动调节水平度的健康一体机, 其特征在于, 所述自动调节水平 度的健康一体机包括基座、 水平度检测部、 支架、 顶罩、 控制部、 多 个垫脚、 多个防转销及多个旋转电机, 其中: 所述基座与所述支架的 底部连接, 所述支架的顶部与所述顶罩连接; 所述多个垫脚、 多个防 转销及多个旋转电机设置于所述基座左右两边底部的边缘位置上, 其 中, 每个旋转电机包括一个旋转轴, 每个旋转电机的旋转轴与一个垫 脚螺纹连接, 每个防转销设置于所述基座与一个垫脚之间, 每个防转 销还与一个旋转电机固定连接; 所述水平度检测部水平设置于所述基 座上, 所述水平度检测部用于检测所述健康一体机的水平度; 所述控 制部设置于所述支架内, 所述控制部与所述水平度检测部及所述多个 旋转电机电连接; 所述控制部, 用于当所述水平度检测部检测出所述 健康一体机处于左高右低的倾斜状态吋, 控制位于所述基座左边底部 边缘位置的旋转电机旋转并带动所述旋转电机对应的垫脚向下移动, 使得所述健康一体机处于水平状态; 及所述控制部, 还用于当所述水 平度检测部检测出所述健康一体机处于右高左低的倾斜状态吋, 控制 位于所述基座右边底部边缘位置的所述旋转电机旋转并带动所述旋转 电机对应的所述垫脚向上移动, 使得所述健康一体机处于水平状态。
[权利要求 2] 如权利要求 1所述的自动调节水平度的健康一体机, 其特征在于, 所 述水平度检测部包括电源、 幵关、 第一检测器、 液体盒、 导电溶液、 水平泡、 第二检测器、 第一电极及第二电极, 其中, 所述液体盒内装 有所述导电溶液, 所述水平泡位于所述液体盒内, 所述第一检测器与 所述第一电极连接, 所述第二检测器与所述第二电极连接, 所述第一 电极及第二电极设置于所述液体盒内的固定位置, 所述电源的负极通 过导线连接至所述液体盒内的导电液体, 所述电源的正极上并联第一 检测器及第二检测器。
[权利要求 3] 如权利要求 2所述的自动调节水平度的健康一体机, 其特征在于, 当 所述水平度检测部处于水平状态吋, 所述水平泡位于所述液体盒的中 间位置, 所述第一电极及第二电极均位于所述导电溶液内, 所述第一 检测器及第二检测器的电路均接通, 所述第一检测器及第二检测器均 幵启。
如权利要求 2所述的自动调节水平度的健康一体机, 其特征在于, 当 所述水平度检测部处于左高右低的倾斜状态吋, 所述水平泡位于所述 液体盒的靠右位置, 所述第一电极位于水平泡内, 第二电极位于所述 导电溶液内, 所述第一检测器的电路断幵且所述第一检测器关闭, 所 述第二检测器的电路接通且所述第二检测器幵启。
如权利要求 2所述的自动调节水平度的健康一体机, 其特征在于, 当 所述水平度检测部处于右高左低的倾斜状态吋, 所述水平泡位于所述 液体盒的靠左位置, 所述第一电极位于所述导电溶液内, 所述第二电 极位于水平泡内, 所述第一检测器的电路接通且所述第一检测器幵启 , 所述第二检测器的电路断幵且所述第二检测器关闭。
如权利要求 1所述的自动调节水平度的健康一体机, 其特征在于, 所 述自动调节水平度的健康一体机还包括设置于所述顶罩底部且与所述 控制部电连接的高度检测部, 用于检测用户的身高。
如权利要求 1所述的自动调节水平度的健康一体机, 其特征在于, 所 述自动调节水平度的健康一体机还包括设置于所述基座上且与所述控 制部电连接的体重秤, 用于对用户体重称重。
如权利要求 1所述的自动调节水平度的健康一体机, 其特征在于, 所 述自动调节水平度的健康一体机还包括设置于所述支架上的血氧检测 部, 用于检测用户的血氧含量。
如权利要求 1所述的自动调节水平度的健康一体机, 其特征在于, 所 述自动调节水平度的健康一体机还包括设置于所述支架上的血压检测 部, 用于检测用户的血压及脉搏。
如权利要求 1所述的自动调节水平度的健康一体机, 其特征在于, 所 述自动调节水平度的健康一体机还包括设置于所述支架侧表面的显示 器。
PCT/CN2017/079366 2016-08-13 2017-04-01 自动调节水平度的健康一体机 WO2018032778A1 (zh)

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