WO2019080390A1 - Wristband pulse collector - Google Patents

Wristband pulse collector

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Publication number
WO2019080390A1
WO2019080390A1 PCT/CN2018/074241 CN2018074241W WO2019080390A1 WO 2019080390 A1 WO2019080390 A1 WO 2019080390A1 CN 2018074241 W CN2018074241 W CN 2018074241W WO 2019080390 A1 WO2019080390 A1 WO 2019080390A1
Authority
WO
WIPO (PCT)
Prior art keywords
pulse
wristband
collector
pulse collector
signal
Prior art date
Application number
PCT/CN2018/074241
Other languages
French (fr)
Chinese (zh)
Inventor
张贯京
葛新科
王海荣
高伟明
张红治
Original Assignee
深圳市易特科信息技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市易特科信息技术有限公司 filed Critical 深圳市易特科信息技术有限公司
Publication of WO2019080390A1 publication Critical patent/WO2019080390A1/en

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Classifications

    • 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

Definitions

  • the utility model relates to the field of wearable pulse data analysis devices, in particular to a wristband pulse pulse collector.
  • the pulse signal is generally collected by measuring the pressure state of the blood vessel by placing the pulse sensor unit on the surface of the human artery and by sensing the tension change of the artery.
  • the prior art pulse signal acquisition device cannot accurately collect the pulse signal of the subject due to the difference in the thickness of the wrist of the subject, the difference in fatness and thinness, and the individual differences in blood vessel distribution.
  • the utility model provides a wristband pulse pulse collector, which aims to solve the technical problem that the existing pulse signal acquisition pulse data analysis device cannot accurately collect the pulse signal.
  • the present invention provides a wristband pulse collector, comprising a pulse collector body, a first wristband, a second wristband and a connecting line, wherein the first wristband and the second wristband are respectively set On both sides of the pulse collector body, the pulse collector body further includes a pulse collector housing, and the pulse collector housing is provided with a power module, a microcontroller, a pulse sensor, a signal conversion module, and a communication connected through a line.
  • An interface is disposed on the pulse collector housing, the pulse probe is disposed opposite to the pulse sensor, and the pulse probe is wrapped with a silicone jacket; the pulse collector housing is curved, and the silicone jacket is An arcuate protrusion adapted to the pulse collector housing; an aperture is further disposed on the pulse collector housing, and the connection line is plugged into the communication interface through the aperture; the first The outer end of the wristband is connected with a buckle, and the outer end of the second wristband is provided with a fastening tape, wherein:
  • a power module for providing working energy to the wristband pulse collector
  • a pulse sensor for extracting a pulse signal from the pulse vibration signal
  • a signal conversion module configured to convert a pulse signal extracted by the pulse sensor into a pulse data digital signal
  • a microcontroller for transmitting a pulse data digital signal to a communication interface
  • a communication interface for transmitting the pulse data digital signal to the pulse data analysis device connected to the wristband pulse collector through the connection line.
  • the pulse probe has the same planar area as the pulse sensor.
  • the first wristband and the second wristband are both made of silicone material.
  • the pulse collector body is integral with the first wristband and the second wristband.
  • one end of the connecting line is provided with a USB interface.
  • the pulse collector housing has a length of 5 cm and a width of 2.5 cm.
  • the silicone jacket has a length of 4 cm and a width of 2 cm.
  • the wristband pulse collector of the utility model can conveniently collect the pulse vibration signal of the user by setting the body of the pulse ergonomic pulse collector, and can conveniently pick up the second wristband of the loopback discount type.
  • the wristband pulse collector improves ease of use and enhances user experience.
  • FIG. 1 is a schematic view showing the external structure of a preferred embodiment of the wristband pulse collector of the present invention
  • FIG. 2 is a schematic view showing the internal circuit structure of a preferred embodiment of the wristband pulse collector of the present invention.
  • FIG. 1 is a schematic diagram of the external structure of a preferred embodiment of the wristband pulse collector of the present invention, as shown in FIG. 2 , which is a preferred embodiment of the wristband pulse collector of the present invention.
  • the present invention provides a wristband pulse collector 100 comprising a pulse collector body 101, a first wristband 102, a second wristband 103 and a connecting line 104.
  • the first wristband 102 and the second wristband 103 are respectively disposed on both sides of the pulse collector body 101.
  • the first wristband 102 and the second wristband 103 may be made of silicone material, which is convenient for the user to wear when collecting the pulse signal.
  • the pulse collector body 101 and the first wristband 102 and the second wristband 103 may have a unitary structure, which may prevent frequent damage to the wristband pulse collector and facilitate cleaning and disinfection.
  • the pulse collector body 101 further includes a pulse collector housing 105.
  • the pulse collector housing 105 has a length L2 of 5 cm and a width D2 of 2.5 cm.
  • the pulse collector housing is curved, and the pulse collector housing 105 has an ergonomic design that matches the curvature of the human wrist.
  • a power module 106, a microcontroller 107, a pulse sensor 108, a signal conversion module 109, and a communication interface 110 connected by a line are disposed in the pulse collector housing 105.
  • the power module 106 is configured to provide working energy for the wristband pulse collector 100.
  • a pulse probe 111 is disposed on the pulse collector housing 105, and the pulse probe 111 is sheathed with a silicone sleeve, and the silicone jacket is an arc-shaped protrusion that is matched with the pulse collector housing 105.
  • the silicone jacket has a length L1 of 4 cm and a width D1 of 2 cm.
  • the pulse probe 111 is configured to receive a pulse motion signal. When the wristband pulse collector 100 is worn on the wrist of the user, the pulse probe 111 is pressed by the wrist of the user, and the pulse vibration signal of the user can be accurately detected.
  • the pulse probe 111 is disposed opposite to the pulse sensor 108.
  • the pulse probe 111 has the same planar area as the pulse sensor 108, and the shape of the pulse sensor 108 may be The shape of the silicone jacket is adapted to an arc shape.
  • the pulse probe 111 squeezes the pulse sensor 108, and the pulse probe 111 completely transmits the received pulse motion signal to the pulse sensor 108,
  • the pulse sensor 108 extracts a pulse signal from the pulse vibration signal.
  • the pulse sensor 108 uses a PVDF piezoelectric film with a measurement range of 0 to 50 g, an accuracy error of ⁇ 5% F.S, and a sensitivity of ⁇ 20 mV/F.
  • the signal conversion module 109 is configured to convert the pulse signal extracted by the pulse sensor 108 into a pulse data digital signal.
  • the microcontroller 107 is configured to transmit a pulse data digital signal to the communication interface 110.
  • An aperture is further disposed on the pulse collector housing 105, and the connecting line 104 is plugged into the communication interface 110 through the aperture.
  • the communication interface 110 is configured to transmit a pulse data digital signal to a pulse data analysis device connected to the wristband pulse collector 100 through a connection line.
  • one end of the connecting line 104 is provided with a USB interface, and the wristband pulse collector 100 can be plugged into the pulse data analyzing device through the USB interface, and from the pulse data analyzing device. Get working power.
  • the outer end of the first wristband 102 is connected with a buckle 112, and the outer end of the second wristband 103 is provided with a fastening tape 113.
  • the pulse collector body 101 is placed on the wrist of the user, the pulse probe 111 is aligned with the pulse detection of the user, and the second wristband 103 is The outer end is folded back through the buckle 112, so that the outer end of the second wristband 103 is fixed to the second wristband 103 through the fastening tape 113, so that the wristband pulse
  • the collector 100 conveniently and accurately collects the pulse vibration signal of the user and is convenient to adjust when used by people who are different in the thickness of the wrist.
  • the wristband pulse collector of the utility model can conveniently collect the pulse vibration signal of the user by setting the body of the pulse ergonomic pulse collector, and can conveniently pick up the second wristband of the loopback discount type.
  • the wristband pulse collector improves ease of use and enhances user experience.
  • the wristband pulse collector of the utility model can conveniently collect the pulse vibration signal of the user by setting the body of the pulse ergonomic pulse collector, and can conveniently pick up the second wristband of the loopback discount type.
  • the wristband pulse collector improves ease of use and enhances user experience.

Landscapes

  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Biomedical Technology (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Physiology (AREA)
  • Biophysics (AREA)
  • Pathology (AREA)
  • Engineering & Computer Science (AREA)
  • Cardiology (AREA)
  • Physics & Mathematics (AREA)
  • Medical Informatics (AREA)
  • Molecular Biology (AREA)
  • Surgery (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Measuring Pulse, Heart Rate, Blood Pressure Or Blood Flow (AREA)

Abstract

A wristband pulse collector (100), comprising a pulse collector body (101), a connecting wire (101), and a first wristband (102) and a second wristband (103) respectively arranged at two sides of the pulse collector body (101); the pulse collector body (101) also comprises a pulse collector housing (105), and a power supply module (106), a microcontroller (107), a pulse sensor (108), a signal conversion module (109), and a communication interface (110) connected by means of the connecting wire being arranged inside the pulse collector housing (105); a pulse probe (111) is arranged on the pulse collector housing (105); a hole is also disposed on the pulse collector housing (105), the connecting wire (104) being inserted into the communication interface (110) via the hole; a loop buckle (112) is connected to the outer end of the first wristband (102), and a hook and loop fastener strip (113) is arranged on the outer end of the second wristband (103). By means of being provided with a curved ergonomic pulse collector body (101), the present wristband pulse collector (100) can accurately collect a pulse vibration signal of the user, improving the user experience.

Description

腕带式脉搏采集器Wristband pulse collector 技术领域Technical field
本实用新型涉及可穿戴脉搏数据分析设备领域,尤其涉及一种腕带式脉搏采集器。The utility model relates to the field of wearable pulse data analysis devices, in particular to a wristband pulse pulse collector.
背景技术Background technique
中医学以阴阳五行作为理论基础,将人体看成是气、形、神的统一体,通过"望闻问切"四诊合参的方法,探求病因、病性、病位、分析病机及人体内五脏六腑、经络关节、气血津液的变化、判断邪正消长,进而得出病名,归纳出证型,以辨证论治原则得出治疗方案。而在"望闻问切"中,脉搏信息包含了大量人体的生理及病理信息,是临床评估人体健康状态的重要参数。现有技术中,脉搏信号的采集方式通常为通过将脉搏传感器单元放置在人体动脉表面上,通过感受动脉带来张力变化来测定血管内的压力状态。但是,由于受测者的腕部粗细不同、胖瘦程度不同以及血管分布的个体差异,现有技术的脉搏信号采集设备并不能准确的采集受测者的脉搏信号。Chinese medicine takes the yin and yang five elements as the theoretical basis, and regards the human body as a unity of qi, shape and god. Through the method of "seeking and squeezing" four diagnostic ginseng, it explores the cause, disease, disease, analysis of pathogenesis and the internal organs. Six sputum, meridian joints, qi and blood fluid changes, judge the evil is growing, and then get the name of the disease, sum up the syndrome type, and draw the treatment plan based on the principle of syndrome differentiation. In the "Watching and Asking", the pulse information contains a large number of physiological and pathological information of the human body, and is an important parameter for clinical evaluation of human health status. In the prior art, the pulse signal is generally collected by measuring the pressure state of the blood vessel by placing the pulse sensor unit on the surface of the human artery and by sensing the tension change of the artery. However, the prior art pulse signal acquisition device cannot accurately collect the pulse signal of the subject due to the difference in the thickness of the wrist of the subject, the difference in fatness and thinness, and the individual differences in blood vessel distribution.
技术问题technical problem
本实用新型提供一种腕带式脉搏采集器,旨在解决现有的脉搏信号采集脉搏数据分析设备不能准确采集脉搏信号的技术问题。The utility model provides a wristband pulse pulse collector, which aims to solve the technical problem that the existing pulse signal acquisition pulse data analysis device cannot accurately collect the pulse signal.
技术解决方案Technical solution
为实现上述目的,本实用新型提供一种腕带式脉搏采集器,包括脉搏采集器本体、第一腕带、第二腕带和连接线,所述第一腕带和第二腕带分别设置在脉搏采集器本体的两侧,所述脉搏采集器本体还包括脉搏采集器外壳,所述脉搏采集器外壳内设置有通过线路连接的电源模块、微控制器、脉搏传感器、信号转换模块和通信接口;所述脉搏采集器外壳上设置有脉搏探头,所述脉搏探头与所述脉搏传感器正对设置,所述脉搏探头外包裹硅胶外套;所述脉搏采集器外壳为弧形,所述硅胶外套为与所述脉搏采集器外壳相适配的弧形凸起;所述脉搏采集器外壳上还设置有孔径,所述连接线通过所述孔径插接于所述通信接口上;所述第一腕带的外端连接有环扣,所述第二腕带的外端上设置有粘扣带,其中:In order to achieve the above object, the present invention provides a wristband pulse collector, comprising a pulse collector body, a first wristband, a second wristband and a connecting line, wherein the first wristband and the second wristband are respectively set On both sides of the pulse collector body, the pulse collector body further includes a pulse collector housing, and the pulse collector housing is provided with a power module, a microcontroller, a pulse sensor, a signal conversion module, and a communication connected through a line. An interface is disposed on the pulse collector housing, the pulse probe is disposed opposite to the pulse sensor, and the pulse probe is wrapped with a silicone jacket; the pulse collector housing is curved, and the silicone jacket is An arcuate protrusion adapted to the pulse collector housing; an aperture is further disposed on the pulse collector housing, and the connection line is plugged into the communication interface through the aperture; the first The outer end of the wristband is connected with a buckle, and the outer end of the second wristband is provided with a fastening tape, wherein:
电源模块,用于为所述腕带式脉搏采集器提供工作电能;a power module for providing working energy to the wristband pulse collector;
脉搏探头,用于接收脉搏震动信号;a pulse probe for receiving a pulse vibration signal;
脉搏传感器,用于从所述脉搏震动信号中提取脉搏信号;a pulse sensor for extracting a pulse signal from the pulse vibration signal;
信号转换模块,用于将所述脉搏传感器提取的脉搏信号转换成脉搏数据数字信号;a signal conversion module, configured to convert a pulse signal extracted by the pulse sensor into a pulse data digital signal;
微控制器,用于将脉搏数据数字信号发送至通信接口;a microcontroller for transmitting a pulse data digital signal to a communication interface;
通信接口,用于将脉搏数据数字信号传输给通过连接线与所述腕带式脉搏采集器连接的脉搏数据分析设备。And a communication interface for transmitting the pulse data digital signal to the pulse data analysis device connected to the wristband pulse collector through the connection line.
优选地,所述脉搏探头与所述脉搏传感器的平面面积相同。Preferably, the pulse probe has the same planar area as the pulse sensor.
优选地,所述第一腕带和第二腕带均为硅胶材质。Preferably, the first wristband and the second wristband are both made of silicone material.
优选地,所述脉搏采集器本体与所述第一腕带和第二腕带为一体结构。Preferably, the pulse collector body is integral with the first wristband and the second wristband.
优选地,所述连接线的一端设置有USB接口。Preferably, one end of the connecting line is provided with a USB interface.
优选地,所述脉搏采集器外壳的长度为5cm,宽度为2.5cm。Preferably, the pulse collector housing has a length of 5 cm and a width of 2.5 cm.
优选地,所述硅胶外套的长度为4cm,宽度为2cm。Preferably, the silicone jacket has a length of 4 cm and a width of 2 cm.
有益效果Beneficial effect
本实用新型所述腕带式脉搏采集器通过设置带有弧形符合人体工学的脉搏采集器本体能够准去采集用户的脉搏震动信号,以及设置回环折扣式的第二腕带能够方便地摘戴所述腕带式脉搏采集器,提高易用性,从而提升用户体验。The wristband pulse collector of the utility model can conveniently collect the pulse vibration signal of the user by setting the body of the pulse ergonomic pulse collector, and can conveniently pick up the second wristband of the loopback discount type. The wristband pulse collector improves ease of use and enhances user experience.
附图说明DRAWINGS
图1是本实用新型腕带式脉搏采集器较佳实施例的外部结构示意图;1 is a schematic view showing the external structure of a preferred embodiment of the wristband pulse collector of the present invention;
图2是本实用新型腕带式脉搏采集器较佳实施例的内部电路结构示意图。2 is a schematic view showing the internal circuit structure of a preferred embodiment of the wristband pulse collector of the present invention.
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。The implementation, functional features and advantages of the present invention will be further described with reference to the accompanying drawings.
本发明的最佳实施方式BEST MODE FOR CARRYING OUT THE INVENTION
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,以下结合附图及较佳实施例,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,此处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。The specific embodiments, structures, features and functions of the present invention will be described in detail below with reference to the accompanying drawings and preferred embodiments. It is understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
如图1所示,图1为本实用新型腕带式脉搏采集器较佳实施例的外部结构示意图,如图2所示,图2为本实用新型腕带式脉搏采集器较佳实施例的内部电路结构示意图。本实用新型提供了一种腕带式脉搏采集器100,包括脉搏采集器本体101、第一腕带102、第二腕带103和连接线104。所述第一腕带102和第二腕带103分别设置在脉搏采集器本体101的两侧。作为本实用新型的优选实施例,所述第一腕带102和第二腕带103可以为硅胶材质,便于用户在采集脉搏信号时佩戴。所述脉搏采集器本体101与所述第一腕带102和第二腕带103可以为一体结构,可以防止频繁摘戴所述腕带式脉搏采集器而造成损坏,并且便于清洁、消毒。As shown in FIG. 1 , FIG. 1 is a schematic diagram of the external structure of a preferred embodiment of the wristband pulse collector of the present invention, as shown in FIG. 2 , which is a preferred embodiment of the wristband pulse collector of the present invention. Schematic diagram of internal circuit structure. The present invention provides a wristband pulse collector 100 comprising a pulse collector body 101, a first wristband 102, a second wristband 103 and a connecting line 104. The first wristband 102 and the second wristband 103 are respectively disposed on both sides of the pulse collector body 101. As a preferred embodiment of the present invention, the first wristband 102 and the second wristband 103 may be made of silicone material, which is convenient for the user to wear when collecting the pulse signal. The pulse collector body 101 and the first wristband 102 and the second wristband 103 may have a unitary structure, which may prevent frequent damage to the wristband pulse collector and facilitate cleaning and disinfection.
所述脉搏采集器本体101还包括脉搏采集器外壳105,作为本实用新型的优选实施例,所述脉搏采集器外壳105的长度L2为5cm,宽度D2为2.5cm。所述脉搏采集器外壳为弧形,所述脉搏采集器外壳105采用符合人体工学的设计,所述弧形与人体手腕部的弧度相适配。所述脉搏采集器外壳105内设置有通过线路连接的电源模块106、微控制器107、脉搏传感器108、信号转换模块109和通信接口110。其中,所述电源模块106,用于为所述腕带式脉搏采集器100提供工作电能。所述脉搏采集器外壳105上设置有脉搏探头111,所述脉搏探头111外包裹硅胶外套,所述硅胶外套为与所述脉搏采集器外壳105相适配的弧形凸起。作为本实用新型的优选实施例,所述硅胶外套的长度L1为4cm,宽度D1为2cm。所述脉搏探头111用于接收脉搏震动信号。当所述腕带式脉搏采集器100佩戴于用户的手腕上时,所述脉搏探头111受用户手腕的挤压,可以准确检测到用户的脉搏震动信号。所述脉搏探头111与所述脉搏传感器108正对设置,作为本实用新型的优选实施例,所述脉搏探头111与所述脉搏传感器108的平面面积相同,所述脉搏传感器108的形状可以是与所述硅胶外套的形状相适配的弧形。当所述脉搏探头111受用户手腕的挤压后,所述脉搏探头111挤压所述脉搏传感器108,所述脉搏探头111将接收的脉搏震动信号完全传递到所述脉搏传感器108上,所述脉搏传感器108从脉搏震动信号中提取脉搏信号。所述脉搏传感器108采用的是PVDF压电薄膜,测量范围0~50g,精度误差≤5%F.S,灵敏度≥20mV/F.S。所述信号转换模块109,用于将所述脉搏传感器108提取的脉搏信号转换成脉搏数据数字信号。所述微控制器107用于将脉搏数据数字信号发送至通信接口110。所述脉搏采集器外壳105上还设置有孔径,所述连接线104通过所述孔径插接于所述通信接口110上。所述通信接口110用于将脉搏数据数字信号传输给通过连接线与所述腕带式脉搏采集器100连接的脉搏数据分析设备。作为本实用新型的优选实施例,所述连接线104的一端设置有USB接口,所述腕带式脉搏采集器100可通过USB接口插接于脉搏数据分析设备,以及从所述脉搏数据分析设备获得工作电能。The pulse collector body 101 further includes a pulse collector housing 105. As a preferred embodiment of the present invention, the pulse collector housing 105 has a length L2 of 5 cm and a width D2 of 2.5 cm. The pulse collector housing is curved, and the pulse collector housing 105 has an ergonomic design that matches the curvature of the human wrist. A power module 106, a microcontroller 107, a pulse sensor 108, a signal conversion module 109, and a communication interface 110 connected by a line are disposed in the pulse collector housing 105. The power module 106 is configured to provide working energy for the wristband pulse collector 100. A pulse probe 111 is disposed on the pulse collector housing 105, and the pulse probe 111 is sheathed with a silicone sleeve, and the silicone jacket is an arc-shaped protrusion that is matched with the pulse collector housing 105. As a preferred embodiment of the present invention, the silicone jacket has a length L1 of 4 cm and a width D1 of 2 cm. The pulse probe 111 is configured to receive a pulse motion signal. When the wristband pulse collector 100 is worn on the wrist of the user, the pulse probe 111 is pressed by the wrist of the user, and the pulse vibration signal of the user can be accurately detected. The pulse probe 111 is disposed opposite to the pulse sensor 108. As a preferred embodiment of the present invention, the pulse probe 111 has the same planar area as the pulse sensor 108, and the shape of the pulse sensor 108 may be The shape of the silicone jacket is adapted to an arc shape. When the pulse probe 111 is squeezed by the user's wrist, the pulse probe 111 squeezes the pulse sensor 108, and the pulse probe 111 completely transmits the received pulse motion signal to the pulse sensor 108, The pulse sensor 108 extracts a pulse signal from the pulse vibration signal. The pulse sensor 108 uses a PVDF piezoelectric film with a measurement range of 0 to 50 g, an accuracy error of ≤ 5% F.S, and a sensitivity of ≥ 20 mV/F. The signal conversion module 109 is configured to convert the pulse signal extracted by the pulse sensor 108 into a pulse data digital signal. The microcontroller 107 is configured to transmit a pulse data digital signal to the communication interface 110. An aperture is further disposed on the pulse collector housing 105, and the connecting line 104 is plugged into the communication interface 110 through the aperture. The communication interface 110 is configured to transmit a pulse data digital signal to a pulse data analysis device connected to the wristband pulse collector 100 through a connection line. As a preferred embodiment of the present invention, one end of the connecting line 104 is provided with a USB interface, and the wristband pulse collector 100 can be plugged into the pulse data analyzing device through the USB interface, and from the pulse data analyzing device. Get working power.
所述第一腕带102的外端连接有环扣112,所述第二腕带103的外端上设置有粘扣带113。当用户使用所述腕带式脉搏采集器100时,将所述脉搏采集器本体101放置于用户的手腕上,所述脉搏探头111对准用户的脉搏检测处,所述第二腕带103的外端穿过所述环扣112后回折,使所述第二腕带103的外端部通过所述粘扣带113固定于所述第二腕带103上,从而使所述腕带式脉搏采集器100方便、准确的采集用户的脉搏震动信号,并在适应不同腕部粗细的人使用时便于调节。The outer end of the first wristband 102 is connected with a buckle 112, and the outer end of the second wristband 103 is provided with a fastening tape 113. When the user uses the wristband pulse collector 100, the pulse collector body 101 is placed on the wrist of the user, the pulse probe 111 is aligned with the pulse detection of the user, and the second wristband 103 is The outer end is folded back through the buckle 112, so that the outer end of the second wristband 103 is fixed to the second wristband 103 through the fastening tape 113, so that the wristband pulse The collector 100 conveniently and accurately collects the pulse vibration signal of the user and is convenient to adjust when used by people who are different in the thickness of the wrist.
本实用新型所述腕带式脉搏采集器通过设置带有弧形符合人体工学的脉搏采集器本体能够准去采集用户的脉搏震动信号,以及设置回环折扣式的第二腕带能够方便地摘戴所述腕带式脉搏采集器,提高易用性,从而提升用户体验。The wristband pulse collector of the utility model can conveniently collect the pulse vibration signal of the user by setting the body of the pulse ergonomic pulse collector, and can conveniently pick up the second wristband of the loopback discount type. The wristband pulse collector improves ease of use and enhances user experience.
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,均同理包括在本实用新型的专利保护范围内。The above is only a preferred embodiment of the present invention, and is not intended to limit the scope of the patents of the present invention. Any equivalent structure or equivalent flow transformation made by the specification and the drawings of the present invention may be directly or indirectly applied to other related The technical fields are all included in the scope of patent protection of the present invention.
工业实用性Industrial applicability
本实用新型所述腕带式脉搏采集器通过设置带有弧形符合人体工学的脉搏采集器本体能够准去采集用户的脉搏震动信号,以及设置回环折扣式的第二腕带能够方便地摘戴所述腕带式脉搏采集器,提高易用性,从而提升用户体验。The wristband pulse collector of the utility model can conveniently collect the pulse vibration signal of the user by setting the body of the pulse ergonomic pulse collector, and can conveniently pick up the second wristband of the loopback discount type. The wristband pulse collector improves ease of use and enhances user experience.

Claims (7)

  1. 一种腕带式脉搏采集器,包括脉搏采集器本体、第一腕带、第二腕带和连接线,所述第一腕带和第二腕带分别设置在脉搏采集器本体的两侧,其特征在于,所述脉搏采集器本体还包括脉搏采集器外壳,所述脉搏采集器外壳内设置有通过线路连接的电源模块、微控制器、脉搏传感器、信号转换模块和通信接口;所述脉搏采集器外壳上设置有脉搏探头,所述脉搏探头与所述脉搏传感器正对设置,所述脉搏探头外包裹硅胶外套;所述脉搏采集器外壳为弧形,所述硅胶外套为与所述脉搏采集器外壳相适配的弧形凸起;所述脉搏采集器外壳上还设置有孔径,所述连接线通过所述孔径插接于所述通信接口上;所述第一腕带的外端连接有环扣,所述第二腕带的外端上设置有粘扣带,其中:电源模块,用于为所述腕带式脉搏采集器提供工作电能;脉搏探头,用于接收脉搏震动信号;脉搏传感器,用于从所述脉搏震动信号中提取脉搏信号;信号转换模块,用于将所述脉搏传感器提取的脉搏信号转换成脉搏数据数字信号;微控制器,用于将脉搏数据数字信号发送至通信接口;通信接口,用于将脉搏数据数字信号传输给通过连接线与所述腕带式脉搏采集器连接的脉搏数据分析设备。A wristband pulse collector includes a pulse collector body, a first wristband, a second wristband, and a connecting line, and the first wristband and the second wristband are respectively disposed on two sides of the pulse collector body. The pulse collector body further includes a pulse collector housing, wherein the pulse collector housing is provided with a power module connected by a line, a microcontroller, a pulse sensor, a signal conversion module, and a communication interface; a pulse probe is disposed on the collector casing, the pulse probe is disposed opposite to the pulse sensor, and the pulse probe is wrapped with a silicone jacket; the pulse collector housing is curved, and the silicone jacket is opposite to the pulse An arcuate protrusion adapted to the collector housing; an aperture is further disposed on the pulse collector housing, the connection line is plugged to the communication interface through the aperture; an outer end of the first wristband Attached to the buckle, the outer end of the second wristband is provided with a fastening tape, wherein: a power module for supplying working power to the wristband pulse collector; and a pulse probe for connecting a pulse wave sensor for extracting a pulse signal from the pulse wave signal; a signal conversion module for converting a pulse signal extracted by the pulse sensor into a pulse data digital signal; and a microcontroller for pulsing the pulse signal The data digital signal is sent to the communication interface; the communication interface is configured to transmit the pulse data digital signal to the pulse data analysis device connected to the wristband pulse collector through the connection line.
  2. 如权利要求1所述的腕带式脉搏采集器,其特征在于,所述脉搏探头与所述脉搏传感器的平面面积相同。A wristband pulse collector according to claim 1, wherein said pulse probe has the same planar area as said pulse sensor.
  3. 如权利要求1所述的腕带式脉搏采集器,其特征在于,所述第一腕带和第二腕带均为硅胶材质。A wristband pulse collector according to claim 1, wherein said first wristband and said second wristband are of a silicone material.
  4. 如权利要求2所述的腕带式脉搏采集器,其特征在于,所述脉搏采集器本体与所述第一腕带和第二腕带为一体结构。A wristband pulse collector according to claim 2, wherein said pulse collector body is integrally formed with said first wristband and said second wristband.
  5. 如权利要求1所述的腕带式脉搏采集器,其特征在于,所述连接线的一端设置有USB接口。A wristband pulse collector according to claim 1, wherein one end of said connecting wire is provided with a USB interface.
  6. 如权利要求1-5任一项所述的腕带式脉搏采集器,其特征在于,所述脉搏采集器外壳的长度为5cm,宽度为2.5cm。A wristband pulse collector according to any one of claims 1 to 5, wherein the pulse collector housing has a length of 5 cm and a width of 2.5 cm.
  7. 如权利要求6所述的腕带式脉搏采集器,其特征在于,所述硅胶外套的长度为4cm,宽度为2cm。A wristband pulse collector according to claim 6, wherein said silicone outer casing has a length of 4 cm and a width of 2 cm.
PCT/CN2018/074241 2017-10-27 2018-01-26 Wristband pulse collector WO2019080390A1 (en)

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