WO2021082182A1 - Dispositif pouvant être porté, et procédé de détection et appareil de détection de signes corporels humains - Google Patents

Dispositif pouvant être porté, et procédé de détection et appareil de détection de signes corporels humains Download PDF

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Publication number
WO2021082182A1
WO2021082182A1 PCT/CN2019/123540 CN2019123540W WO2021082182A1 WO 2021082182 A1 WO2021082182 A1 WO 2021082182A1 CN 2019123540 W CN2019123540 W CN 2019123540W WO 2021082182 A1 WO2021082182 A1 WO 2021082182A1
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WO
WIPO (PCT)
Prior art keywords
detection circuit
electrocardiogram
fat rate
body fat
wearable device
Prior art date
Application number
PCT/CN2019/123540
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English (en)
Chinese (zh)
Inventor
王文涛
方华斌
王德信
Original Assignee
潍坊歌尔微电子有限公司
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Publication of WO2021082182A1 publication Critical patent/WO2021082182A1/fr

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/24Detecting, measuring or recording bioelectric or biomagnetic signals of the body or parts thereof
    • A61B5/316Modalities, i.e. specific diagnostic methods
    • A61B5/318Heart-related electrical modalities, e.g. electrocardiography [ECG]
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/48Other medical applications
    • A61B5/4869Determining body composition
    • A61B5/4872Body fat
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/68Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient
    • A61B5/6801Arrangements of detecting, measuring or recording means, e.g. sensors, in relation to patient specially adapted to be attached to or worn on the body surface
    • A61B5/6802Sensor mounted on worn items
    • A61B5/681Wristwatch-type devices
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/74Details of notification to user or communication with user or patient ; user input means
    • A61B5/742Details of notification to user or communication with user or patient ; user input means using visual displays

Definitions

  • the technical field of the wearable device of the present invention particularly relates to a wearable device, a detection method and a detection device for body signs.
  • the previous electrode multiplexing technology is usually realized directly through analog switch switching. Although it realizes the function of electrode multiplexing, the volume of the analog switch is too large, which causes the overall size of the measurement circuit to be too large, which is not conducive to the overall small size of the wearable device ⁇ .
  • the main purpose of the present invention is to provide a wearable device, a detection method for human body signs, and a detection device, which aims to solve the problem that the overall size of the measurement circuit of the wearable device used by the user in the prior art is too large, which is not conducive to the overall size of the wearable device.
  • the technical effect of chemistry is to provide a wearable device, a detection method for human body signs, and a detection device, which aims to solve the problem that the overall size of the measurement circuit of the wearable device used by the user in the prior art is too large, which is not conducive to the overall size of the wearable device.
  • the wearable device includes: a housing; a system-in-package module, the system-in-package module is provided in the housing, and includes a circuit board and a device A body fat rate detection circuit and an electrocardiogram detection circuit on the circuit board; at least four multiplexing electrodes, the multiplexing electrodes are all exposed to the housing and contacting the human skin, and the multiplexing electrodes are all electrically connected To the body fat rate detection circuit and the electrocardiogram detection circuit; wherein the body fat rate detection circuit and the electrocardiogram detection circuit are turned on in a time sharing manner to collect body fat rate data and electrocardiogram data in a time sharing manner.
  • the system-in-package module further includes: a first silicon chip, the first silicon chip is disposed on the circuit board, and the body fat rate detection circuit is disposed on the first silicon chip; Two silicon wafers, the second silicon wafer is arranged on the circuit board, and the electrocardiogram detection circuit is arranged on the second silicon wafer.
  • the system-in-package module further includes: a microcontroller, which is arranged on the circuit board and is connected to the body fat rate detection circuit and the electrocardiogram via the circuit board.
  • the detection circuit is electrically connected, and the microcontroller controls the body fat rate detection circuit and the electrocardiogram detection circuit to conduct time sharing.
  • the wearable device further includes: a main control chip, the main control chip is arranged in the housing, the main control chip is connected to the body fat rate detection circuit and the body fat rate detection circuit via the circuit board.
  • the electrocardiogram detection circuit is electrically connected to control the body fat rate detection circuit and the electrocardiogram detection circuit to conduct time sharing.
  • the wearable device includes a display screen, the display screen is arranged on the housing and is electrically connected to the main control chip, and the display screen is used to display that the main control chip is The body fat rate calculated by the body fat rate data, and the human body electrocardiogram calculated by the main control chip according to the electrocardiogram data.
  • the wearable device includes: a plurality of conductive pins, the conductive pins are drawn from the body fat rate detection circuit and the electrocardiogram detection circuit and are arranged on the circuit board; a plurality of conductive elements, the conductive The element is connected between the multiplexing electrode and the conductive pin, and each multiplexing electrode is correspondingly connected to one conductive element.
  • the present invention also provides a detection method for human body signs, which is applied to the wearable device according to any one of the above, and the detection method includes:
  • the human body fat rate is obtained according to the collected body fat rate data
  • the human body electrocardiogram is obtained according to the collected electrocardiogram data.
  • the step of obtaining the body fat rate according to the collected body fat rate data, and obtaining the human body electrocardiogram according to the collected electrocardiogram data includes:
  • the display screen is controlled to display the body fat rate and the body electrocardiogram.
  • the step of controlling the time-sharing conduction of the body fat rate detection circuit and the electrocardiogram detection circuit includes:
  • control the body fat rate detection circuit After the conduction time of the body fat rate detection circuit reaches the first preset time period, control the body fat rate detection circuit to be turned off, and control the electrocardiogram detection circuit to be turned on;
  • the electrocardiogram detection circuit After the conduction duration of the electrocardiogram detection circuit reaches a second preset duration, the electrocardiogram detection circuit is controlled to be turned off, and the body fat rate detection circuit is controlled to conduct; wherein, the first preset duration is equal to or It is not equal to the second preset duration.
  • the present invention also provides a body sign detection device, which includes a memory, a main control chip, and a body sign that is stored in the memory and can run on the main control chip.
  • the steps of the method for detecting body signs described in any one of the above are realized when the program for detecting body signs is executed by the main control chip.
  • the technical solution of the present invention forms a system level by arranging the body fat rate detection circuit and the electrocardiogram detection circuit on the circuit board, and encapsulating the body fat rate detection circuit and the electrocardiogram detection circuit on the circuit board.
  • the packaged module controls the body fat rate detection circuit and the electrocardiogram detection circuit to be turned on in time sharing during the data collection process, so as to realize the time sharing collection of body fat rate data and electrocardiogram data through the four multiplexed electrodes.
  • the system-in-package module of the present application centrally encapsulates the body fat rate detection
  • the circuit, the electrocardiogram detection circuit, and the system-level package module are small, which is beneficial to further miniaturizing the wearable device.
  • FIG. 1 is a schematic structural diagram of an embodiment of a wearable device of the present invention
  • Fig. 2 is a schematic diagram of an enlarged structure of part A in Fig. 1;
  • FIG. 3 is a schematic diagram of the front structure of the wearable device of the present invention.
  • FIG. 4 is a schematic diagram of the structure of the back of the wearable device of the present invention.
  • FIG. 5 is a schematic structural diagram of an embodiment of the system-in-package module of the present invention.
  • FIG. 6 is a schematic flowchart of an embodiment of the method for detecting body signs of the present invention.
  • FIG. 7 is a schematic flowchart of another embodiment of the method for detecting body signs of the present invention.
  • FIG. 8 is a schematic diagram of a specific flow of step S10 of the method for detecting body signs of the present invention.
  • the present invention provides a wearable device 100.
  • the wearable device 100 includes: a housing 11; a system-in-package module 12, where the system-in-package module 12 is provided in the
  • the housing 11 includes a circuit board 121 and a body fat rate detection circuit (not shown) and an electrocardiogram detection circuit (not shown) arranged on the circuit board 121; at least four multiplexing electrodes 13, the The multiplexing electrodes 13 are all exposed to the housing 11 in contact with human skin, and the multiplexing electrodes 13 are all electrically connected to the body fat rate detection circuit and the electrocardiogram detection circuit; wherein, the body fat rate detection circuit
  • the circuit and the electrocardiogram detection circuit are turned on in time sharing to collect body fat rate data and electrocardiogram data in time sharing.
  • the system-in-package module 12 also known as SIP (System-In-Package System-in-Package) package module, integrates multiple functional chips, including functional chips such as processors and memories, into one package. In order to achieve a basically complete function, it is a packaging method in which different functional chips are arranged side by side or superimposed.
  • the wearable device 100 includes a housing 11, a wristband, etc., the system packaging module is disposed in the housing 11, and the system packaging module includes a circuit board 121 on the circuit board 121.
  • the body fat rate detection circuit and the electrocardiogram detection circuit are provided, and then the body fat rate detection circuit and the electrocardiogram detection circuit are packaged. At the same time, at least four multiplexing electrodes 13 are provided on the housing 11.
  • the four multiplexing electrodes 13 leak outside the housing 11 and can be contacted with human skin.
  • the four multiplexing electrodes 13 It is electrically connected to the body fat rate detection circuit to collect body fat rate data through the four multiplexing electrodes 13. At the same time, at least any three of the four multiplexing electrodes 13 are connected to the electrocardiogram detection circuit. , To collect electrocardiogram data through the electrocardiogram detection circuit.
  • At least four of the multiplexing electrodes 13 are arranged on the back of the housing 11 to contact the wrist wearing the wearable device 100, and at least two The multiplexing electrodes 13 are arranged on the front of the housing 11, so that the two fingers of the other hand that is not wearing the wearable device 100 are in contact with the two multiplexing electrodes 13 respectively, thereby realizing four The multiplexing electrode 13 is in contact with human skin.
  • the body fat rate detection circuit and the electrocardiogram detection circuit are controlled to be turned on in a time-sharing manner to receive the data transmitted by the multiplexing electrode 13 in a time-sharing manner.
  • the body fat rate detection circuit can receive the body fat rate data transmitted by the four multiplexing electrodes 13, and the body fat rate detection circuit can receive four body fat rate data during the conduction time of the electrocardiogram detection circuit.
  • the technical solution of the present invention is to install the body fat rate detection circuit and the electrocardiogram detection circuit on the circuit board 121, and package the body fat rate detection circuit and the electrocardiogram detection circuit on the A system-level packaging module 12 is formed on the circuit board 121.
  • the body fat rate detection circuit and the electrocardiogram detection circuit are controlled to be turned on in a time sharing manner, so as to realize the body fat through the four multiplexing electrodes 13 respectively.
  • the time-sharing collection of rate data and electrocardiogram data realizes the multiplexing of electrodes in contact with the human skin, reduces the number of electrodes on the wearable device 100, and further, the system-level packaging module of the present application
  • the group 12 encapsulates the body fat rate detection circuit and the electrocardiogram detection circuit.
  • the system-in-package module 12 is small, which is beneficial to further miniaturizing the wearable device 100.
  • the system-in-package module 12 further includes: a first silicon chip 122, the first silicon chip 122 being disposed on the circuit board 121, and the first silicon chip 122
  • the body fat rate detection circuit is provided;
  • a second silicon wafer 123 is provided on the circuit board 121, and the electrocardiogram detection circuit is provided on the second silicon wafer 123.
  • the body fat rate detection circuit is fabricated on the first silicon wafer 122 (a silicon wafer may also be called a wafer), and the electrocardiogram detection circuit is fabricated on the second silicon wafer 123.
  • Circuit, and the first silicon wafer 122 and the second silicon wafer 123 are arranged on the circuit board 121, and the first silicon wafer 122 and the second silicon wafer 123 can be packaged on the circuit board 121
  • the formation of the system-in-package module 12 is simple to manufacture and facilitates the reduction of the size of the system-in-package module 12.
  • the system-in-package module 12 further includes: a microcontroller 124, which is disposed on the circuit board 121 and is The circuit board 121 is respectively electrically connected with the body fat rate detection circuit and the electrocardiogram detection circuit, and the microcontroller 124 controls the body fat rate detection circuit and the electrocardiogram detection circuit to conduct time-sharing conduction.
  • a microcontroller 124 which is disposed on the circuit board 121 and is The circuit board 121 is respectively electrically connected with the body fat rate detection circuit and the electrocardiogram detection circuit, and the microcontroller 124 controls the body fat rate detection circuit and the electrocardiogram detection circuit to conduct time-sharing conduction.
  • the microcontroller 124, the first silicon chip 122 and the second silicon chip 123 are packaged together on the circuit board 121 to form a system-in-package module 12 with basically complete functions.
  • the microcontroller 124 is provided with a timer and a control program, etc., which are used to control the body fat rate detection circuit and the electrocardiogram detection circuit to conduct time-sharing, so as to realize the body fat rate data and the electrocardiogram data Time-sharing collection.
  • the wearable device 100 further includes: a main control chip (not shown), the main control chip is arranged in the housing 11, and the main control chip is The circuit board 121 is respectively electrically connected with the body fat rate detection circuit and the electrocardiogram detection circuit, so as to control the body fat rate detection circuit and the electrocardiogram detection circuit to conduct time sharing.
  • the system-in-package module 12 may not include the microcontroller 124. Instead, the body fat rate detection circuit and the electrocardiogram detection circuit may be controlled by the main control chip.
  • the main control chip is the control chip originally possessed by the wearable device 100, and the main control chip is originally used to provide the wearable device 100 with the computing power of the control machine, so as to realize the performance of the wearable device 100.
  • Basic normal functions such as time display, exercise data collection, timing, and interconnection with smart terminals such as mobile phones.
  • a time-sharing control program is added to the main control device, and the circuit board 121, the body fat rate detection circuit and the electrocardiogram detection circuit are used to control the body fat rate detection circuit and The electrocardiogram detection circuit is turned on in time sharing.
  • the wearable device 100 includes a display screen 14, which is disposed on the housing 11 and is electrically connected to the main control chip.
  • the display screen 14 is used for displaying the body fat rate calculated by the main control chip according to the body fat rate data, and used for displaying the human body electrocardiogram calculated by the main control chip according to the electrocardiogram data.
  • the microcontroller 124 or the main control chip receives the body fat rate data of the body fat rate detection circuit, it calculates the user's body fat rate based on the body fat rate data, and passes The display screen 14 is displayed for the user to view.
  • the microcontroller 124 or the main control chip receives the body fat rate data of the electrocardiogram detection circuit, it calculates the user's body fat rate according to the electrocardiogram data The electrocardiogram is displayed on the display screen 14 for the user to view.
  • the body fat rate and the electrocardiogram display time Continuous that is, before the next body fat rate and ECG update, the display screen 14 will continue to display the body fat rate and ECG measured and calculated this time. From the user's point of view, the body fat rate and ECG are collected in real time. It is calculated to improve the user experience.
  • the time-sharing collection process of the body fat rate data and ECG data is completed in a short time, for example, the body fat rate data is controlled to be collected within the current 100ms The ECG data is collected within the next 100ms. The body fat rate and ECG displayed on the display screen 14 are also updated very quickly. From the user’s point of view, the body fat rate and ECG are collected and calculated in real time, which further improves the user Experience.
  • the wearable device 100 includes: a plurality of conductive pins (not shown), the conductive pins are drawn from the body fat rate detection circuit and the electrocardiogram detection circuit and are arranged in the On the circuit board 121; a number of conductive elements 15, the conductive element 15 is connected between the multiplexing electrode 13 and the conductive pin, and each multiplexing electrode 13 is connected to a corresponding conductive element 15.
  • a number of conductive pins are drawn from the body fat rate detection circuit and the electrocardiogram detection circuit and are arranged on the circuit board 121, and the body fat rate detection circuit and the electrocardiogram detection circuit can share the conductive lead
  • a number of the conductive pins may form a pin area similar to a gold finger on the circuit board 121, and the number of the conductive pins may be 4 to correspond to the multiplexing electrode 13 one-to-one.
  • the conductive element 15 may be a metal shrapnel, and the number of the conductive elements 15 may be four to connect the multiplexing electrodes 13 to the conductive pins one by one, that is, one conductive element 15 has two
  • the terminals are respectively connected to one of the multiplexing electrode 13 and one of the conductive pins, so as to transmit the body fat percentage data collected by the multiplexing electrode 13 to the body fat percentage detection circuit, and to transfer the multiplexing electrode 13
  • the collected electrocardiogram data is transferred to the electrocardiogram detection circuit.
  • the present invention also provides a detection method of body signs, which is applied to the above-mentioned wearable device, and the detection method includes:
  • Step S10 controlling the body fat rate detection circuit and the electrocardiogram detection circuit to conduct time-sharing, so as to collect body fat rate data and electrocardiogram data in a time-sharing manner;
  • Step S20 Obtain the body fat rate according to the collected body fat rate data, and obtain the human body electrocardiogram according to the collected electrocardiogram data.
  • the body fat rate detection circuit and the electrocardiogram detection circuit are controlled to be turned on in a time-sharing manner to receive the data transmitted by the multiplexing electrode in a time-sharing manner.
  • the body fat percentage detection circuit can receive the body fat percentage data transmitted by the four multiplexing electrodes.
  • the body fat percentage detection circuit The circuit can receive electrocardiogram data transmitted from any three of the four multiplexing electrodes.
  • the electrocardiogram of the human body is obtained by processing the electrocardiogram data, that is, the potential difference information between multiple points of the human body.
  • the four multiplexing electrodes are used to realize the time sharing collection of body fat rate data and electrocardiogram data, thereby realizing the connection with the human body.
  • the multiplexing of electrodes in contact with the skin reduces the number of electrodes on the wearable device.
  • the step S20 includes:
  • Step S30 controlling the display screen to display the body fat rate and the body electrocardiogram.
  • the user's body fat rate is calculated according to the body fat rate data, and displayed on the display screen for the user to view
  • the user's electrocardiogram is calculated according to the electrocardiogram data, and displayed on the display screen for the user to view;
  • the body fat rate data and the electrocardiogram data are collected in time-sharing, but the display of the body fat rate and the electrocardiogram is continuous, that is, the display screen will continue to display this time before the next body fat rate and electrocardiogram update
  • the body fat rate and electrocardiogram obtained by measurement and calculation, in the eyes of the user, the body fat rate and the electrocardiogram are collected and calculated in real time.
  • the time-sharing collection process of the body fat rate data and the electrocardiogram data is in a short period of time. Completed, for example, control the collection of the body fat rate data in the current 100ms time period, and collect the ECG data in the next 100ms time period.
  • the body fat rate and the ECG displayed on the display screen are also updated very quickly, in the user's opinion , Body fat rate and ECG are collected and calculated in real time, which further improves user experience.
  • the step S10 includes:
  • Step S11 after the conduction time of the body fat rate detection circuit reaches a first preset time period, control the body fat rate detection circuit to be turned off, and control the electrocardiogram detection circuit to be turned on;
  • Step S12 after the conduction duration of the electrocardiogram detection circuit reaches a second preset duration, the electrocardiogram detection circuit is controlled to be turned off, and the body fat rate detection circuit is controlled to be turned on; wherein, the first preset The duration is equal to or not equal to the second preset duration.
  • the body fat rate detection circuit is controlled to be turned off, and the electrocardiogram detection circuit is controlled to be turned on.
  • the electrocardiogram detection circuit is controlled to be turned off, and the body fat rate detection circuit is controlled to be turned on, and the cycle is repeated to realize the body fat rate data and the electrocardiogram data Time-sharing collection, wherein the first preset duration and the second preset duration can be set according to actual conditions, and the first preset duration and the second preset duration may be equal or unequal, preferably The first preset duration is equal to the second preset duration and both are equal to 100 ms, so as to achieve rapid collection of the body fat rate data and electrocardiogram data, and rapid calculation and display to improve user experience.
  • the present invention also provides a body sign detection device, which includes a memory, a main control chip, and a body sign that is stored in the memory and can run on the main control chip.
  • the steps of the method for detecting body signs as described above are realized when the program for detecting body signs is executed by the main control chip.

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  • Medical Informatics (AREA)
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  • Engineering & Computer Science (AREA)
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  • Heart & Thoracic Surgery (AREA)
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  • Measurement And Recording Of Electrical Phenomena And Electrical Characteristics Of The Living Body (AREA)

Abstract

L'invention concerne un dispositif pouvant être porté (100), et un procédé de détection et un appareil de détection de signes corporels humains ; le dispositif pouvant être porté (100) comprend : un logement (11), un module de système-dans-boîtier (12), qui est disposé dans le logement (11) et comprend une carte de circuit (121), ainsi qu'un circuit de détection de taux de graisse corporelle et un circuit de détection d'électrocardiogramme qui sont disposés sur la carte de circuit (121) ; et au moins quatre électrodes de multiplexage (13), toutes les électrodes de multiplexage (13) étant exposées au logement (11) en contact avec la peau humaine, et toutes les électrodes de multiplexage (13) étant reliées électriquement au circuit de détection de taux de graisse corporelle et au circuit de détection d'électrocardiogramme ; le circuit de détection de taux de graisse corporelle et le circuit de détection d'électrocardiogramme sont activés par partage de temps de façon à collecter des données de taux de graisse corporelle et des données d'électrocardiogramme par partage de temps. Le dispositif présente les avantages de pouvoir réaliser le multiplexage des électrodes de multiplexage (13) et de faciliter la miniaturisation du dispositif pouvant être porté (100).
PCT/CN2019/123540 2019-10-29 2019-12-06 Dispositif pouvant être porté, et procédé de détection et appareil de détection de signes corporels humains WO2021082182A1 (fr)

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CN201911042854.5A CN110664398A (zh) 2019-10-29 2019-10-29 可穿戴设备、人体体征的检测方法及检测装置
CN201911042854.5 2019-10-29

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