WO2018072401A1 - 可穿透式血氧心率检测指环 - Google Patents

可穿透式血氧心率检测指环 Download PDF

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Publication number
WO2018072401A1
WO2018072401A1 PCT/CN2017/079522 CN2017079522W WO2018072401A1 WO 2018072401 A1 WO2018072401 A1 WO 2018072401A1 CN 2017079522 W CN2017079522 W CN 2017079522W WO 2018072401 A1 WO2018072401 A1 WO 2018072401A1
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WO
WIPO (PCT)
Prior art keywords
heart rate
finger
blood oxygen
ring
rate detecting
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PCT/CN2017/079522
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English (en)
French (fr)
Inventor
马学军
蒋传乐
戴南湖
Original Assignee
深圳市倍轻松科技股份有限公司
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Application filed by 深圳市倍轻松科技股份有限公司 filed Critical 深圳市倍轻松科技股份有限公司
Publication of WO2018072401A1 publication Critical patent/WO2018072401A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A44HABERDASHERY; JEWELLERY
    • A44CPERSONAL ADORNMENTS, e.g. JEWELLERY; COINS
    • A44C9/00Finger-rings
    • 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

Definitions

  • the utility model belongs to the field of finger ring technology, in particular to a penetrating blood oxygen heart rate detecting finger ring.
  • a watch or a bracelet that uses reflection detection is mainly used.
  • a reflective test watch or bracelet can detect heart rate oximetry, it still has such problems: The reflective test watch or bracelet has a large volume and its detection accuracy is not high.
  • the purpose of the present invention is to provide a penetrable blood oxygenation heart rate detecting ring, which aims to solve the problem that the existing reflective type detecting watch or wristband has a large volume and low detection precision.
  • the present invention provides a penetrable blood oxygen heart rate detecting finger ring, comprising a movement main body and a ring belt connected to the movement main body, wherein the finger ring belt is provided with a flexible circuit board.
  • a transmitting end chip disposed on the flexible circuit board and configured to emit a blood oxygen heart rate detecting signal toward the finger, and a receiving end chip for receiving the blood oxygen heart rate detecting signal, the movement main body including the flexible body
  • the motherboard components that are electrically connected to the board.
  • the transmitting end chip and the receiving end chip are respectively disposed on the opposite sides of the finger ring belt.
  • the ring belt includes an outer cladding layer and an inner cladding layer, and a spring piece is disposed between the inner cladding layer and the outer cladding layer, the flexible circuit board, the transmitting end chip, and the The receiving end chip is disposed between the inner cladding and the elastic piece, and the finger pad is formed on the inner cladding.
  • the two fingertips are protrusions for respectively supporting the transmitting end chip and the receiving end chip.
  • one end of the finger ring is fixedly connected to the movement main body, and the other end is detachably connected to the movement main body.
  • the movement main body is provided with a retaining sleeve, and the retaining sleeve is provided with a mouth groove, and the detachable end of the finger ring is slidably inserted into the slot.
  • the receiving volume of the mouth groove gradually becomes smaller as the sliding depth of the detachable end becomes larger.
  • the side wall of the mouth groove extends inwardly to form a receiving edge portion for accommodating the detachable end.
  • the inner side surface of the receiving edge portion is a curved surface
  • the movement main body includes a casing, the main board assembly is disposed in the outer casing, and the mainboard assembly is provided with a connecting seat for electrically connecting with the flexible circuit board.
  • the utility model provides the beneficial effects of the penetrating blood oxygen heart rate detecting finger ring:
  • the above-mentioned penetrable blood oxygen heart rate detecting ring adopts a flexible circuit board, a transmitting end chip, a receiving end chip and a main board component
  • the control of the main board component the transmitting end chip in the ring belt will emit a blood oxygen heart rate detecting signal toward the finger, and the blood oxygen heart rate detecting signal can penetrate the finger and be received by the receiving end chip, and then transmitted to the main board component, the main board component will be the blood oxygen
  • the heart rate detection signal is analyzed to obtain the user's blood oxygen heart rate data.
  • the above-mentioned penetrable blood oxygenation heart rate detecting ring has a small volume, and the penetration signal is used, that is, the blood is transmitted through the transmitting end chip and the receiving end chip respectively.
  • the oxygen heart rate data of the user is obtained by transmitting and receiving the oxygen heart rate detection signal, and the detection precision is high.
  • FIG. 1 is an exploded view of a penetrable blood oxygen heart rate detecting finger according to an embodiment of the present invention
  • FIG. 2 is a schematic structural diagram of a penetrating blood oxygen heart rate detecting finger according to an embodiment of the present invention
  • FIG. 3 is another embodiment of a penetrating blood oxygen heart rate detecting finger provided by an embodiment of the present invention.
  • FIG. 4 is a cross-sectional view of a penetrable blood oxygen heart rate detecting finger provided by an embodiment of the present invention.
  • FIGS. 1 to 4 a preferred embodiment of the present invention is provided.
  • the penetrating blood oxygenation rate detecting finger 10 provided in this embodiment includes a movement main body 11 and a finger band 12 connected to the movement main body 11, and the ring belt 12 is provided.
  • a flexible circuit board 13 There is a flexible circuit board 13, a transmitting end chip 14 disposed on the flexible circuit board 13 for emitting a blood oxygen heart rate detecting signal toward the finger, and a receiving end chip 15 for receiving a blood oxygen heart rate detecting signal
  • the movement main body 11 includes The main board assembly 111 to which the flexible circuit board 13 is electrically connected.
  • the above-mentioned penetrable blood oxygenation rate detecting finger ring 10 uses a flexible circuit board 13, a transmitting end chip 14, a receiving end chip 15, and a main board assembly 111, when the user wears the above-mentioned wearable
  • the penetrating blood oxygen heart rate detecting finger ring 10 ⁇ under the control of the main board component 111, the transmitting end chip 14 in the ring belt 12 will emit a blood oxygen heart rate detecting signal toward the finger, and the blood oxygen heart rate detecting signal can penetrate the finger, and
  • the receiving end chip 15 receives and transmits to the main board component 111, and the main board component 111 analyzes the blood oxygen heart rate detecting signal to obtain the user's blood oxygen heart rate data.
  • the transmissive oximetry heartbeat detecting ring 10 is smaller in volume than the conventional reflective detecting watch or wristband, and it uses a penetration signal, that is, through the transmitting end chip 14 and the receiving end chip 15.
  • the user's blood oxygen heart rate data is obtained by transmitting and receiving the blood oxygen heart rate detection signal respectively, and the detection precision is high.
  • the transmitting end chip 14 and the receiving end chip 15 are respectively disposed at the fingertips 124 on opposite sides of the finger band 12. In this way, the transmitting end chip 14 and the receiving end chip 15 will be located on opposite sides of the detected finger, and the blood oxygen heart rate detecting signal can penetrate the finger more comprehensively, thereby making the blood oxygen heart rate
  • the detection signal carries more detection data to improve the detection accuracy.
  • the ring band 12 includes an outer covering layer 121 and an inner clad layer 122.
  • the elastic layer 13 is provided between the inner clad layer 122 and the outer covering layer 121.
  • the transmitting end chip 14 and the receiving end chip 15 are both disposed between the inner clad layer 122 and the elastic piece 123, and the finger web 124 is formed on the inner clad layer 122.
  • the buckle belt 12 employs the outer cladding 121, the inner cladding 122 and the elastic piece 123, the ring belt 12 is easily elastically deformed to better adapt to different users.
  • the inner cladding layer 122 and the outer cladding layer 121 are all rubber layers. Specifically, both the inner cladding 122 and the outer cladding 121 are made of a soft material. Of course, in other embodiments, the inner cladding 122 and the outer cladding 121 may also be made of other soft materials such as leather, cloth, and the like.
  • the two finger webs 124 are protrusions for supporting the transmitting end chip 14 and the receiving end chip 15, respectively.
  • the protrusion can play a positioning role, that is, the position of the protrusion is the position of the transmitting end chip 14 and the receiving end chip 15, so that the relative positions of the transmitting end chip 14 and the receiving end chip 15 and the finger abdomen are easily adjusted, thereby Improve detection accuracy.
  • the ring belt 12-end is fixedly connected with the movement main body 11, and the other end is detachably connected with the movement main body 11.
  • the movement main body 11 is provided with a retaining sleeve 16, and the retaining sleeve 16 is provided with a spout groove 161, and the detachable end of the finger strap 12 is slidably inserted into the spout groove 161.
  • the user is wearing the cymbal, and only needs to slide the detachable end of the ring belt 12 into the slot 161.
  • the ring belt 12 will form a space with the movement main body 11 for the user's finger to wear, due to different users.
  • the thickness of the finger is different, which adjusts the sliding depth of the detachable end of the finger band 12 in the mouth groove 161 to adapt to different thickness fingers, thereby improving the above-mentioned penetrable blood oxygen heart rate detecting ring 10 Easy to use and adaptable.
  • the receiving volume of the mouth groove 161 is along with the sliding depth of the detachable end. It gets bigger and gets smaller.
  • the sliding depth of the finger band 12 becomes larger, the finger band 12 and the mouth groove 161 The elastic interference fit will become larger, and the finger band 12 and the mouth groove 161 will also fit more stably.
  • the side wall of the mouth groove 161 extends inwardly to form a receiving edge portion 162 for receiving the detachable end.
  • the inner side surface of the accommodating edge portion 162 is a curved surface.
  • the ring band 12 slides in the arcuate receiving edge portion 162, which becomes smoother, and the ring band 12 becomes more stable by the receiving action of the receiving edge portion 162.
  • the movement main body 11 includes a housing 112, and the main board assembly 111 is disposed in the housing 112, and the main board assembly 111 is provided for flexibility.
  • Circuit board 1

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  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Cardiology (AREA)
  • Physiology (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Medical Informatics (AREA)
  • Biophysics (AREA)
  • Pathology (AREA)
  • Engineering & Computer Science (AREA)
  • Biomedical Technology (AREA)
  • Pulmonology (AREA)
  • Physics & Mathematics (AREA)
  • Molecular Biology (AREA)
  • Surgery (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Measurement Of The Respiration, Hearing Ability, Form, And Blood Characteristics Of Living Organisms (AREA)
  • Measuring Pulse, Heart Rate, Blood Pressure Or Blood Flow (AREA)

Abstract

一种可穿透式血氧心率检测指环(10),包括机芯主体(11)及指环带(12),指环带(12)中设有柔性电路板(13)、发射端芯片(14)及接收端芯片(15),机芯主体(11)包括主板组件(111)。当用户佩戴上述可穿透式血氧心率检测指环(10)时,在主板组件(111)的控制下,指环带(12)中的发射端芯片(14)将会朝手指发射血氧心率检测信号,血氧心率检测信号可穿透手指,并由接收端芯片(15)接收,再传递给主板组件(111),主板组件(111)将对该血氧心率检测信号进行分析,而得到用户的血氧心率数据。这样,相比较现有反射式检测手表或手环而言,该可穿透式血氧心率检测指环(10)体积较小,且其采用穿透信号,即通过发射端芯片(14)及接收端芯片(15)分别对血氧心率检测信号的发射和接收而得到用户的血氧心率数据,其检测精度高。

Description

说明书 发明名称:可穿透式血氧心率检测指环 技术领域
[0001] 本实用新型属于指环技术的领域, 尤其涉及可穿透式血氧心率检测指环。
背景技术
[0002] 目前, 市面上现有的可测心率血氧的智能产品中, 主要采用反射式检测的手表 或手环等。 虽然, 反射式检测手表或手环能够检测心率血氧, 但其仍存在这样 的问题: 反射式检测手表或手环的体积较大, 且其检测精度不高。
技术问题
[0003] 本实用新型的目的在于提供可穿透式血氧心率检测指环, 旨在解决现有反射式 检测手表或手环所存在的体积较大及检测精度不高的问题。
问题的解决方案
技术解决方案
[0004] 为解决上述技术问题, 本实用新型提供了可穿透式血氧心率检测指环, 包括机 芯主体及与所述机芯主体连接的指环带, 所述指环带中设有柔性电路板、 设于 所述柔性电路板上且用于朝手指发射血氧心率检测信号的发射端芯片及用于接 收所述血氧心率检测信号的接收端芯片, 所述机芯主体包括与所述柔性电路板 电连接的主板组件。
[0005] 进一步地, 所述发射端芯片与所述接收端芯片分别设于所述指环带的相对两侧 的指腹处。
[0006] 进一步地, 所述指环带包括相互贴合的外包层及内包层, 所述内包层与所述外 包层之间设有弹片, 所述柔性电路板、 所述发射端芯片及所述接收端芯片均设 于所述内包层与所述弹片之间, 所述指腹处为形成于所述内包层上。
[0007] 进一步地, 两所述指腹处为分别用于支撑所述发射端芯片和所述接收端芯片的 凸起。
[0008] 进一步地, 所述指环带一端与所述机芯主体固定连接, 另一端与所述机芯主体 可拆卸连接。 [0009] 进一步地, 所述机芯主体设有挡套, 所述挡套幵设有幵口槽, 所述指环带的可 拆卸端滑动插设于所述幵口槽中。
[0010] 进一步地, 所述幵口槽的收容体积随着所述可拆卸端的滑插深度的变大而逐渐 变小。
[0011] 进一步地, 所述幵口槽的侧壁朝内延伸形成用于容纳所述可拆卸端的容纳缘部 [0012] 进一步地, 所述容纳缘部的内侧面为弧面
[0013] 进一步地, 所述机芯主体包括外壳, 所述主板组件设于所述外壳中, 所述主板 组件上设有用于与所述柔性电路板电连接的连接座。
发明的有益效果
有益效果
[0014] 本实用新型提供的可穿透式血氧心率检测指环的有益效果:
[0015] 由于上述可穿透式血氧心率检测指环采用柔性电路板、 发射端芯片、 接收端芯 片及主板组件, 当用户佩戴上述可穿透式血氧心率检测指环吋, 在主板组件的 控制下, 指环带中的发射端芯片将会朝手指发射血氧心率检测信号, 血氧心率 检测信号可穿透手指, 并由接收端芯片接收, 再传递给主板组件, 主板组件将 对该血氧心率检测信号进行分析, 从而得到用户的血氧心率数据。 这样, 相比 较现有反射式检测手表或手环而言, 上述可穿透式血氧心率检测指环体积较小 , 而且, 其采用穿透信号, 即通过发射端芯片及接收端芯片分别对血氧心率检 测信号的发射和接收而得到用户的血氧心率数据, 其检测精度高。
对附图的简要说明
附图说明
[0016] 图 1是本实用新型实施例提供的可穿透式血氧心率检测指环的爆炸图;
[0017] 图 2是本实用新型实施例提供的可穿透式血氧心率检测指环的结构示意图; [0018] 图 3是本实用新型实施例提供的可穿透式血氧心率检测指环的另一结构示意图 图 4是本实用新型实施例提供的可穿透式血氧心率检测指环的剖面图。 本发明的实施方式
[0020] 为了使本实用新型的目的、 技术方案及优点更加清楚明白, 以下结合附图及实 施例, 对本实用新型进行进一步详细说明。 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。
[0021] 如图 1~4所示, 为本实用新型提供的较佳实施例。
[0022] 需要说明的是, 当元件被称为 "固定于"或"设置于"另一个元件, 它可以直接在 另一个元件上或者间接在该另一个元件上。 当一个元件被称为是 "连接于"另一个 元件, 它可以是直接连接到另一个元件或间接连接至该另一个元件上。
[0023] 还需要说明的是, 本实施例中的左、 右、 上、 下等方位用语, 仅是互为相对概 念或是以产品的正常使用状态为参考的, 而不应该认为是具有限制性的。
[0024] 如图 1和图 4所示, 本实施例提供的可穿透式血氧心率检测指环 10, 包括机芯主 体 11及与机芯主体 11连接的指环带 12, 指环带 12中设有柔性电路板 13、 设于柔 性电路板 13上且用于朝手指发射血氧心率检测信号的发射端芯片 14及用于接收 血氧心率检测信号的接收端芯片 15, 机芯主体 11包括与柔性电路板 13电连接的 主板组件 111。
[0025] 如图 1和图 4所示, 由于上述可穿透式血氧心率检测指环 10采用柔性电路板 13、 发射端芯片 14、 接收端芯片 15及主板组件 111, 当用户佩戴上述可穿透式血氧心 率检测指环 10吋, 在主板组件 111的控制下, 指环带 12中的发射端芯片 14将会朝 手指发射血氧心率检测信号, 血氧心率检测信号可穿透手指, 并由接收端芯片 1 5接收, 再传递给主板组件 111, 主板组件 111将对该血氧心率检测信号进行分析 , 从而得到用户的血氧心率数据。 这样, 相比较现有反射式检测手表或手环而 言, 上述可穿透式血氧心率检测指环 10体积较小, 而且, 其采用穿透信号, 即 通过发射端芯片 14及接收端芯片 15分别对血氧心率检测信号的发射和接收而得 到用户的血氧心率数据, 其检测精度高。
[0026] 为了便于采集更多的检测数据, 发射端芯片 14与接收端芯片 15分别设于指环带 12的相对两侧的指腹处 124。 这样, 发射端芯片 14与接收端芯片 15将位于被检测 手指的相对两侧, 血氧心率检测信号能够更全面地穿透手指, 从而使血氧心率 检测信号携带更多的检测数据, 以提高检测精度。
[0027] 关于指环带 12具体结构的优选实施方式, 由于不同用户的手指粗细不一致, 因 此, 为了使得上述可穿透式血氧心率检测指环 10能够根据不同粗细手指进行适 应性调节, 便于发射端芯片 14和接收端芯片 15均与手指的腹部相对, 指环带 12 包括相互贴合的外包层 121及内包层 122, 内包层 122与外包层 121之间设有弹片 1 23, 柔性电路板 13、 发射端芯片 14及接收端芯片 15均设于内包层 122与弹片 123 之间, 指腹处 124为形成于内包层 122上。 这样, 由于指环带 12采用了外包层 121 、 内包层 122及弹片 123, 指环带 12便于进行弹性变形, 以更好地适应不同用户
[0028] 需要补充的是, 为了增强上述可穿透式血氧心率检测指环 10给用户佩戴的舒适 感, 内包层 122和外包层 121均为胶层。 具体地, 内包层 122和外包层 121均由软 质材料制成。 当然, 其他实施例中, 内包层 122和外包层 121还可由其他软质材 料制成, 如皮、 布等。
[0029] 为了便于支撑发射端芯片 14和接收端芯片 15的安装固定, 两指腹处 124为分别 用于支撑发射端芯片 14和接收端芯片 15的凸起。 同吋, 凸起可起到定位作用, 即凸起所在位置为发射端芯片 14和接收端芯片 15的位置, 这样, 便于调整发射 端芯片 14和接收端芯片 15与手指腹部的相对位置, 从而提高检测精度。
[0030] 为了指环带 12能够根据不同用户手指粗细情况进行适应性调整, 指环带 12—端 与机芯主体 11固定连接, 另一端与机芯主体 11可拆卸连接。
[0031] 具体地, 如图 1所示, 机芯主体 11设有挡套 16, 挡套 16幵设有幵口槽 161, 指环 带 12的可拆卸端滑动插设于幵口槽 161中。 这样, 用户在佩戴吋, 其只需要将指 环带 12的可拆卸端滑插于幵口槽 161中即可, 指环带 12将与机芯主体 11形成可供 用户手指佩戴的空间, 由于不同用户, 其手指的粗细存在不同, 其通过调节指 环带 12的可拆卸端于幵口槽 161中的滑插深度, 来适应不同粗细的手指, 从而提 高上述可穿透式血氧心率检测指环 10的使用方便性和适应性。
[0032] 如图 1所示, 为了进一步地方便上述上述可穿透式血氧心率检测指环 10根据不 同粗细手指进行适应性调节, 幵口槽 161的收容体积随着可拆卸端的滑插深度的 变大而逐渐变小。 这样, 随着指环带 12的滑插深度变大, 指环带 12与幵口槽 161 的弹性过盈配合将变大, 指环带 12与幵口槽 161也将配合得更加稳固。
[0033] 如图 1所示, 为了使得指环带 12的可拆卸端端与幵口槽 161的滑动配合更加顺畅
、 稳固, 以便于根据不同粗细手指进行适应性调节, 幵口槽 161的侧壁朝内延伸 形成用于容纳可拆卸端的容纳缘部 162。
[0034] 进一步细化地, 容纳缘部 162的内侧面为弧面。 这样, 指环带 12于呈弧面状的 容纳缘部 162中滑动, 将变得更为顺畅, 且指环带 12由于受到容纳缘部 162的收 容作用而变得更加稳固。
[0035] 如图 1和图 4所示, 关于机芯主体 11具体结构的优选实施方式, 机芯主体 11包括 外壳 112, 主板组件 111设于外壳 112中, 主板组件 111上设有用于与柔性电路板 1
3电连接的连接座 113。
[0036] 以上仅为本实用新型的较佳实施例而已, 并不用以限制本实用新型, 凡在本实 用新型的精神和原则之内所作的任何修改、 等同替换和改进等, 均应包含在本 实用新型的保护范围之内。

Claims

权利要求书
可穿透式血氧心率检测指环, 其特征在于, 包括机芯主体及与所述机 芯主体连接的指环带, 所述指环带中设有柔性电路板、 设于所述柔性 电路板上且用于朝手指发射血氧心率检测信号的发射端芯片及用于接 收所述血氧心率检测信号的接收端芯片, 所述机芯主体包括与所述柔 性电路板电连接的主板组件。
如权利要求 1所述的可穿透式血氧心率检测指环, 其特征在于, 所述 发射端芯片与所述接收端芯片分别设于所述指环带的相对两侧的指腹 处。
如权利要求 2所述的可穿透式血氧心率检测指环, 其特征在于, 所述 指环带包括相互贴合的外包层及内包层, 所述内包层与所述外包层之 间设有弹片, 所述柔性电路板、 所述发射端芯片及所述接收端芯片均 设于所述内包层与所述弹片之间, 所述指腹处为形成于所述内包层上
[权利要求 4] 如权利要求 3所述的可穿透式血氧心率检测指环, 其特征在于, 两所 述指腹处为分别用于支撑所述发射端芯片和所述接收端芯片的凸起。
[权利要求 5] 如权利要求 1~4任一项所述的可穿透式血氧心率检测指环, 其特征在 于, 所述指环带一端与所述机芯主体固定连接, 另一端与所述机芯主 体可拆卸连接。
[权利要求 6] 如权利要求 5所述的可穿透式血氧心率检测指环, 其特征在于, 所述 机芯主体设有挡套, 所述挡套幵设有幵口槽, 所述指环带的可拆卸端 滑动插设于所述幵口槽中。
[权利要求 7] 如权利要求 6所述的可穿透式血氧心率检测指环, 其特征在于, 所述 幵口槽的收容体积随着所述可拆卸端的滑插深度的变大而逐渐变小。
[权利要求 8] 如权利要求 7所述的可穿透式血氧心率检测指环, 其特征在于, 所述 幵口槽的侧壁朝内延伸形成用于容纳所述可拆卸端的容纳缘部。
[权利要求 9] 如权利要求 8所述的可穿透式血氧心率检测指环, 其特征在于, 所述 容纳缘部的内侧面为弧面。 [权利要求 10] 如权利要求 1~4任一项所述的可穿透式血氧心率检测指环, 其特征在 于, 所述机芯主体包括外壳, 所述主板组件设于所述外壳中, 所述主 板组件上设有用于与所述柔性电路板电连接的连接座。
PCT/CN2017/079522 2016-10-21 2017-04-06 可穿透式血氧心率检测指环 WO2018072401A1 (zh)

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