WO2020191667A1 - 电极装置 - Google Patents

电极装置 Download PDF

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Publication number
WO2020191667A1
WO2020191667A1 PCT/CN2019/079879 CN2019079879W WO2020191667A1 WO 2020191667 A1 WO2020191667 A1 WO 2020191667A1 CN 2019079879 W CN2019079879 W CN 2019079879W WO 2020191667 A1 WO2020191667 A1 WO 2020191667A1
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WO
WIPO (PCT)
Prior art keywords
base
electrode device
processor
magnetic
magnetic member
Prior art date
Application number
PCT/CN2019/079879
Other languages
English (en)
French (fr)
Inventor
李灵锐
Original Assignee
阿木(深圳)新科技有限公司
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 阿木(深圳)新科技有限公司 filed Critical 阿木(深圳)新科技有限公司
Priority to PCT/CN2019/079879 priority Critical patent/WO2020191667A1/zh
Publication of WO2020191667A1 publication Critical patent/WO2020191667A1/zh

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Classifications

    • 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

Definitions

  • the invention belongs to the field of electrode equipment, and more specifically, relates to an electrode device.
  • the processor in the existing electrode device is usually connected in the form of a snap button, but the durability of this connection method is poor. After repeated use, the processor in the electrode device and the base are prone to detachment or wear, resulting in contact Bad, interfere with the collection of signals.
  • the purpose of the present invention is to provide an electrode device, which aims to solve the technical problem that the long-term use of the electrode device in the prior art causes poor contact between the processor and the base and affects signal collection.
  • An embodiment of the present application provides an electrode device, including a base and a processor detachably mounted on the base.
  • a first magnetic part is installed in the processor, and the base corresponds to the first magnetic part
  • the position is provided with a second magnetic member that is opposite to that of the first magnetic member and cooperates with the first magnetic member to position the processor on the base.
  • the number of the first magnetic members is set to two, and each of the first magnetic members is respectively distributed at two ends of the processor.
  • the first magnetic member is square or circular.
  • a first accommodating groove for accommodating the first magnetic element is opened in the processor, and a position corresponding to the first accommodating groove is provided on the base for accommodating the second magnetic element The second housing tank.
  • the first magnetic member is bonded in the first accommodating groove.
  • the second magnetic member is bonded in the second accommodating groove.
  • a first conductive contact is built in the processor, and a second conductive contact is provided in the base corresponding to the position of the first conductive contact to be electrically connected to an electrode for externally collecting bioelectric signals of the human body,
  • the base is provided with a channel through which one end of the second conductive contact extends and is electrically connected to the first conductive contact.
  • the channel is opened in the middle of the base.
  • the electrode device further includes a connector for mounting the base on the outer clothing, and the connector is mounted on a side of the base that faces away from the processor.
  • the electrode device further includes a screw for connecting the connecting piece with the base, the connecting piece is provided with a through hole, the outer clothing is provided with a through hole, and the base is provided with a through hole.
  • a threaded hole, the screw passes through the through hole and the through hole sequentially, and is connected to the threaded hole in a mating manner.
  • the number of the through holes is set to be multiple, and each through hole is distributed at an edge position of the base at intervals.
  • a positioning column is provided on the side of the base opposite to the processor, and the connecting piece is provided with a positioning hole that is matched and connected with the positioning column corresponding to the position of the positioning column.
  • the electrode device further includes a packaging member used to cover the surface of the connecting member.
  • the electrode device of the present invention has a first magnetic part installed in the processor and a second magnetic part installed on the base, and the first The magnetic member and the second magnetic member are arranged oppositely. In this way, the first magnetic member and the second magnetic member are attracted to each other, so that the processor can be positioned on the base, and the anti-vibration ability of the electrode device is improved by the magnetic adsorption method.
  • the electrode device can still maintain the stability of signal collection after repeated use.
  • FIG. 1 is a front exploded view of an electrode device proposed in an embodiment of the invention
  • Figure 2 is a top view of an electrode device according to an embodiment of the present invention.
  • Fig. 3 is an exploded left view of an electrode device according to an embodiment of the invention.
  • first, second, etc. are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Thus, the features defined with “first” and “second” may explicitly or implicitly include one or more of these features. In the description of this application, “multiple” means two or more than two, unless otherwise specifically defined.
  • the present invention proposes an electrode device.
  • the present invention proposes an electrode device 4, which includes a base 1 and a processor 2.
  • the processor 2 is detachably mounted on the base 1.
  • a first magnetic member 3 is installed in the device 2, and a second magnetic member 4 is installed in the base 1.
  • the second magnetic member 4 is arranged in a position corresponding to the first magnetic member 3, and the first magnetic member 3 and the second magnetic member 4 The magnetism is opposite.
  • the first magnetic member 3 in the processor 2 and the second magnetic member 4 are attracted to each other, so that the processor 2 can be positioned On the base 1, the anti-vibration capability of the electrode device is improved by means of magnetic adsorption, so that the electrode device can still maintain the stability of signal collection after repeated use.
  • a first accommodating groove 20 is opened in the processor 2, the first magnetic member 3 can be accommodated in the first accommodating groove 20, and a second accommodating groove is opened on the base 1 (Not shown in the figure), the second magnetic member 4 can be accommodated in the second accommodating groove, so that it can be ensured that the first magnetic member 3 is better installed on the processor 2, and the second magnetic member 4 can be compared It is well installed on the base 1.
  • the first magnetic member 3 and the second magnetic member 4 can also be installed on the processor 2 and the processor 2 and the second magnetic member 4 by bonding.
  • the first magnetic member 3 can be a magnetic body such as a magnet block, a magnet, or has an adsorption member that can be adsorbed by a magnet, etc., which is not exclusively limited here.
  • the second magnetic member 4 can be a magnetic body such as a magnet block, a magnet, or has an adsorption member that can be adsorbed by a magnet, etc., which is not exclusively limited here.
  • the first magnetic member 3 is bonded in the first accommodating groove 20, and the second magnetic member 4 is bonded in the second accommodating groove.
  • the first magnetic member 3 The second magnetic member 4 is relatively stably positioned in the first accommodating groove 20 and the second accommodating groove, respectively, to prevent the first magnetic member 3 and the second magnetic member 4 from shaking during the use of the electrode device.
  • the first magnetic member 3 and the second magnetic member 4 can also be fixed in other ways, which is not uniquely limited here.
  • the number of the first magnetic member 3 is set to two, and each first magnetic member 3 is respectively distributed on both ends of the processor 1 In this way, it can be better ensured that the processor 2 is installed on the base 1, the shock resistance of the electrode device is improved, and the stability of signal collection is ensured.
  • the number of the first magnetic member 3 can also be set to one, three, four, etc., and there is no unique limitation here.
  • the above-mentioned first magnetic member 3 may also be arranged at the middle position of the processor 2, and correspondingly, the second magnetic member 4 may also be arranged at the middle position of the base 1. Through such distribution, better adsorption can be achieved.
  • the first magnetic member 3 can also be arranged in other positions, which is not uniquely limited here.
  • the magnetic properties of the two first magnetic members 3 are oppositely arranged in the first accommodating groove 20.
  • the processor 2 can be easily installed. The positioning provides a guarantee for the subsequent installation of the processor 2 on the base 1 quickly.
  • the magnetic properties of the two first magnetic members 3 can also be arranged in the first accommodating groove 20 in the same manner, which is not uniquely limited here.
  • the first magnetic member 3 is square. By setting the first magnetic member 3 in a square shape, it is ensured that the first magnetic member 3 and the second magnetic member 4 have a larger contact area, and the first magnetic member 3 is increased. The magnetic attraction between the second magnetic member 4 and the second magnetic member 4 provides a guarantee for the subsequent processor 2 to be stably installed on the base 1.
  • the first magnetic member 3 may also be arranged in other shapes such as a circle, and there is no unique limitation here.
  • the second magnetic member 4 is square.
  • the shape of the first magnetic member 3 is the same as the shape of the second magnetic member 4, ensuring that the first magnetic member 3 and the second magnetic member 4
  • the two magnetic parts 4 have a larger contact area, which increases the magnetic attraction between the first magnetic part 3 and the second magnetic part 4, and provides a guarantee for the subsequent processor 2 to be stably installed on the base 1.
  • the second magnetic member 4 can also be arranged in other shapes such as a circle, an ellipse, a sphere, etc., which is not exclusively limited here.
  • a first conductive contact 21 is built in the processor 2 and a second conductive contact 11 is provided on the base 1.
  • the second conductive contact 21 is disposed on the circuit board 15 in the base 1, the second conductive contact 11 is disposed corresponding to the position of the first conductive contact 21, and the second conductive contact
  • the contact 11 is electrically connected to an external electrode that collects bioelectric signals of the human body.
  • a channel 12 is provided on the base 1, and the channel 12 allows one end of the second conductive contact 11 to extend and connect with the first conductive contact. 21 Electrical connection.
  • the bioelectric signal can be transmitted to the first conductive contact 21, and then converted into an electrical signal by the processor 2 and transmitted to the external terminal, so as to realize the ECG signal to the human body.
  • the processor 2 transmits the electrical signal to the external terminal through Bluetooth.
  • the processor may also be transmitted through other transmissions, which is not exclusively limited here.
  • the first conductive contacts 21 are arranged on the processor 1 in a spaced annular array, and correspondingly, the second conductive contacts 11 are also arranged on the circuit board 15 in a spaced annular array.
  • the biological signal of the human body can be captured in a larger area, so that the detection effect is more accurate.
  • the first conductive contacts 21 or the second conductive contacts 11 may also be distributed in other forms, which are not uniquely limited here.
  • the aforementioned channel 12 is opened in the middle of the base 1. Through this arrangement, it is ensured that the second conductive contact 11 can monitor the bioelectric signal stably and accurately.
  • the channel 12 can also be opened in other positions, which is not limited here.
  • the electrode device further includes a connecting member 5 installed on the side of the base 1 opposite to the processor 2 .
  • the connecting member 5 installed on the side of the base 1 opposite to the processor 2 .
  • the base 1 can also be installed on the external clothing by means of bonding without the need to provide the connector 5, or the base 1 can be positioned on the external clothing by stitching, etc. There is no unique restriction.
  • the electrode device further includes a screw 6 which can connect the connecting member 5 with the base 1.
  • the connecting member 5 is provided with a through hole 50
  • the outer garment is provided with a through hole (not shown in the drawings)
  • the base 1 is provided with a threaded hole 13 corresponding to the through hole 50 , The position of the through hole is opened, the screw 6 can pass through the through hole 50 and the through hole in sequence and connect with the threaded hole 13, so that the base 1 can be installed on the outer clothing.
  • the connecting member can also be connected to the base by a buckle, or connected in other ways, which is not exclusively limited here.
  • the number of the through holes 50 is set to be multiple, and correspondingly, the through holes, the threaded holes 13, and the screws 6 are also set to be multiple. , And the through holes 50 are distributed at the edge of the base 1 at intervals. Through this distribution, the space of the base 1 is fully utilized to ensure that the base 1 and the connector 5 can be connected stably. At the same time, the electrode device is more For beautiful.
  • the through holes 50 may also be distributed at other positions of the base 1, which is not uniquely limited here.
  • the number of the above-mentioned through holes 50 is set to eight, the base 1 is rectangular, and the above-mentioned through holes 50 are respectively distributed along the long and wide sides of the base 1.
  • the through holes 50 can also be set to other multiple, which is not uniquely limited here.
  • a positioning post 14 is also provided on the base 1, and the positioning post 14 is arranged on the side of the base 1 facing away from the processor 2
  • the connecting member 5 is provided with a positioning hole 51, and the positioning hole 51 is set corresponding to the position of the positioning post 14, and the positioning post 14 is mated and connected with the positioning hole 51.
  • the base 1 and the positioning column 14 are integrally formed. Through the integral molding, the combining force of the base 1 and the positioning column 14 is enhanced. At the same time, the subsequent machining is also simplified.
  • the The base 1 can also be detachably connected with the positioning column 14, which is not exclusively limited here.
  • the electrode device further includes a package (not shown in the drawings), and the package can be used to cover the surface of the connecting member 5.
  • the surface of the connector 5 is encapsulated by using the encapsulation, on the one hand, it has a beautification effect, and some pictures such as cartoons can also be printed on the encapsulation by hot pressing to further achieve the beautification effect.
  • the packaging member 5 may be other fabrics such as packaging cloth, covering cloth, etc., which is not exclusively limited here.
  • the packaging member is bonded to the connecting member 5 by means of bonding, which can quickly and conveniently cover the connecting member 5, of course, in this embodiment, the packaging member can also be It is covered on the connecting member 5 by sewing and other methods, which is not uniquely limited here.
  • the above-mentioned base 1 is encapsulated by rubber, so as to prevent the base 1 from being damaged during use and improve the service life of the base.
  • the first magnetic member 3 is installed in the processor 2 and the second magnetic member 4 is installed on the base 1, so that the first magnetic member 3 and the second magnetic member 4 are arranged oppositely.
  • the first magnetic member 3 and the second magnetic member 4 attract each other, so that the processor 2 can be positioned on the base 1, and the anti-vibration ability of the electrode device is improved by magnetic adsorption, so that the electrode device can still maintain the signal after repeated use The stability of the collection.
  • the first magnetic member 3 and the second magnetic member 4 are respectively bonded to the first accommodating groove 20 and the second accommodating groove by using a bonding method to prevent the electrode device from being used A magnetic piece 3 and a second magnetic piece 4 shake.

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  • Life Sciences & Earth Sciences (AREA)
  • Health & Medical Sciences (AREA)
  • Medical Informatics (AREA)
  • Biophysics (AREA)
  • Pathology (AREA)
  • Engineering & Computer Science (AREA)
  • Biomedical Technology (AREA)
  • Heart & Thoracic Surgery (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 And Recording Of Electrical Phenomena And Electrical Characteristics Of The Living Body (AREA)

Abstract

电极装置,包括底座(1)以及可拆卸地安装于底座(1)上的处理器(2),该处理器(2)中安装有第一磁性件(3),该底座(1)中设置有第二磁性件(4)。第一磁性件(3)与第二磁性件(4)相互吸引,从而可将处理器(2)定位于底座(1)上,通过采用这种磁性吸附的方式提高了电极装置的抗震能力,实现了电极装置反复使用后可仍然保持信号收集的稳定性。

Description

电极装置 技术领域
本发明属于电极设备领域,更具体地说,是涉及一种电极装置。
背景技术
由于现代社会的快节奏和高工作压力,越来越多的城市人群处于亚健康状态,长跑有助于促进新陈代谢,改善人体心脑血管健康,因此马拉松等跑步运动越来越受到人们的喜爱。但是长时间的体育运动会对心脏造成过量的负荷,因而一款能实时监控人体体征的变化,科学指导运动的产品引起了市场上广泛的关注,近几年内一种能够提取心电信号的智能衣凭借其高精度、体感舒适以及采集数据量庞大等诸多优点得到迅猛发展。
现有的电极装置中的处理器通常采用按扣的形式进行配合连接,而这种连接方式的耐用性较差,反复使用后导致电极装置中的处理器与底座易发生脱离或磨损,造成接触不良,对信号的收集产生干扰。
技术问题
本发明的目的在于提供一种电极装置,旨在解决现有技术中的电极装置长期使用导致处理器与底座接触不良而影响信号收集的技术问题。
技术解决方案
本申请实施例提供一种电极装置,包括底座、以及可拆卸地安装于所述底座上的处理器,所述处理器中安装有第一磁性件,所述底座中对应所述第一磁性件位置设置有与所述第一磁性件的磁性相反并配合所述第一磁性件以将所述处理器定位于所述底座上的第二磁性件。
进一步地,所述第一磁性件的数量设置为两个,各所述第一磁性件分别分布于所述处理器的两端。
进一步地,所述第一磁性件为方形或圆形。
进一步地,所述处理器中开设有用于容置所述第一磁性件的第一容置槽,所述底座上对应所述第一容置槽位置开设有用于容置所述第二磁性件的第二容置槽。
进一步地,所述第一磁性件粘结于所述第一容置槽中。
进一步地,所述第二磁性件粘结于所述第二容置槽中。
进一步地,所述处理器中内置有第一导电触点,所述底座中对应所述第一导电触点位置设有用于与外部采集人体生物电信号的电极电性连接第二导电触点,所述底座上开设有并供所述第二导电触点一端伸出并与所述第一导电触点电性连接的通道。
进一步地,所述通道开设于所述底座的中部位置处。
进一步地,所述电极装置还包括用于将所述底座安装于外部服饰上的连接件,所述连接件安装于所述底座背对所述处理器的一侧。
进一步地,所述电极装置还包括用于将所述连接件与所述底座连接的螺钉,所述连接件上开设有通过孔,所述外部服饰上开设有贯穿孔,所述底座上开设有螺纹孔,所述螺钉依次穿过所述通过孔、所述贯穿孔并与所述螺纹孔配合连接。
进一步地,所述通过孔的数量设置为多个,各所述通过孔间隔分布于所述底座的边缘位置处。
进一步地,所述底座背对所述处理器的一侧设有定位柱,所述连接件对应所述定位柱位置开设有与所述定位柱配合连接的定位孔。
进一步地,所述电极装置还包括用于对所述连接件的表面进行封盖处理的封装件。
有益效果
本发明提供的电极装置的有益效果在于:与现有技术相比,本发明中的电极装置,通过在处理器中安装有第一磁性件,在底座上安装有第二磁性件,且第一磁性件与第二磁性件呈相对设置,这样,第一磁性件与第二磁性件相互吸引,从而可将处理器定位于底座上,通过磁性吸附的方式提高了电极装置的抗震能力,实现了电极装置反复使用后可仍然保持信号收集的稳定性。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其它的附图。
图1为本发明一实施例提出的电极装置的主视分解图;
图2为本发明一实施例提出的电极装置俯视图;
图3为本发明一实施例提出的电极装置左视分解图。
其中,图中各附图标记:
1-底座;11-第二导电触点;12-通道;13-螺纹孔;14-定位柱;15-电路板;
2-处理器;20-第一容置槽;21-第一导电触点;
3-第一磁性件;
4-第二磁性件;
5-连接件;50-通过孔;51-定位孔;
6-螺钉。
本发明的实施方式
为了使本申请所要解决的技术问题、技术方案及有益效果更加清楚明白,以下结合附图及实施例,对本申请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申请,并不用于限定本申请。
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。
需要理解的是,术语“长度”、“宽度”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请的限制。
此外,术语“第一”、“第二”等仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。在本申请的描述中,“多个”的含义是两个或两个以上,除非另有明确具体的限定。
如图1~3所示,本发明提出了一种电极装置,本发明提出了一种电极装置4,包括底座1和处理器2,该处理器2可拆卸地安装于底座1上,在处理器2中安装有第一磁性件3,在底座1中安装有第二磁性件4,第二磁性件4对应第一磁性件3的位置设置,且第一磁性件3与第二磁性件4磁性相反。这样,通过在处理器2中安装有第一磁性件3,在底座1上安装有第二磁性件4,第一磁性件3与第二磁性件4相互吸引,从而可将处理器2定位于底座1上,通过磁性吸附的方式提高了电极装置的抗震能力,实现了电极装置反复使用后可仍然保持信号收集的稳定性。
优选地,请参阅图1,在处理器中2开设有第一容置槽20,第一磁性件3可容置于第一容置槽20中,在底座1上开设有第二容置槽(附图未作出),该第二磁性件4可容置于第二容置槽中,这样,可以保证第一磁性件3较好地安装于处理器2上,第二磁性件4可较好地安装于底座1上,当然,在本实施例中,根据实际情况和具体需求,该第一磁性件3与第二磁性件4也可通过粘结等方式分别对应安装于处理器2与底座1上,此处不作唯一限定。
在本实施例中,通过采用磁性吸附方式,一方面可以较好地保证处理器2能够稳定地安装于底座1上,另一方面也便于处理器2与底座1之间的拆卸与安装,提高了安装的效率。
优选地,第一磁性件3可为磁铁块、磁石等磁性体,又或者是具有被磁铁可吸附的吸附件等,此处不作唯一限定。
优选地,第二磁性件4可为磁铁块、磁石等磁性体,又或者是具有被磁铁可吸附的吸附件等,此处不作唯一限定。
优选地,上述第一磁性件3粘结于第一容置槽20中,上述第二磁性件4粘结于第二容置槽中,通过采用粘结方式,从而使得第一磁性件3、第二磁性件4分别较稳定地定位于第一容置槽20与第二容置槽中,防止电极装置在使用过程中第一磁性件3与第二磁性件4出现晃动。当然,在本实施例中,根据实际情况和具体需求,也可通过其他方式固定第一磁性件3与第二磁性件4,此处不作唯一限定。
进一步地,请参阅图1,作为本发明提供的电极装置一种具体实施方式,该第一磁性件3的数量设置为两个,各第一磁性件3分别分布于该处理器1的两端,这样,可较好地保证将处理器2安装于底座1上,提高了电极装置的抗震能力,保证了信号收集的稳定性。当然,在本实施例中,根据实际情况和具体需求,该第一磁性件3的数量也可以设置为一个、三个、四个等其他多个,此处不作唯一限定。
在本实施例中,上述第一磁性件3也可设在处理器2的中部位置,相应地,第二磁性件4也可设置在底座1的中部位置处。通过这样分布,可以实现较好的吸附,当然,在本实施例中,根据实际情况和具体需求,该第一磁性件3也可设置在其他位置处,此处不作唯一限定。
优选地,上述两个第一磁性件3的磁性呈相反设置于第一容置槽20中,通过将两个第一磁性件3的磁性呈相反设置,从而可便于将处理器2较好的定位,为后续将处理器2快速地安装于底座1上提供了保证。当然,在本实施例中,依据不同需求,两个第一磁性件3的磁性也可呈同性设置于第一容置槽20中,此处不作唯一限定。
优选地,该第一磁性件3为方形,通过将第一磁性件3设置为方形,保证了第一磁性件3与第二磁性件4具有较大的接触面积,增加了第一磁性件3与第二磁性件4之间的磁性吸引力,为后续处理器2能够稳定安装于底座1上提供了保证。当然,在本实施例中,根据实际情况和具体需求,该第一磁性件3也可呈圆形等其他形状设置,此处不作唯一限定。
优选地,该第二磁性件4为方形,通过将第二磁性件4设置为方形,使得第一磁性件3的形状与第二磁性件4的形状相同,保证了第一磁性件3与第二磁性件4具有较大的接触面积,增加了第一磁性件3与第二磁性件4之间的磁性吸引力,为后续处理器2能够稳定安装于底座1上提供了保证。当然,在本实施例中,根据实际情况和具体需求,该第二磁性件4也可呈圆形、椭圆形、球形等其他形状设置,此处不作唯一限定。
进一步地,请参阅图1与图3,作为本发明提供的电极装置一种具体实施方式,该处理器2中内置有第一导电触点21,在底座1上设有第二导电触点11,具体地,在本实施例中,该第二导电触点21设置在底座1中的电路板15上,第二导电触点11对应第一导电触点21的位置设置,且该第二导电触点11与外部采集人体生物电信号的电极电性连接,此外,在底座1上还开设有通道12,该通道12可供第二导电触点11的一端伸出并与第一导电触点21电性连接。这样,当第二导电触点11监测到生物电信号后,可将生物电信号传递至第一导电触点21,随后通过处理器2转化为电信号传递至外部终端,实现对人体心电信号的监测。优选地,在本实施例中,该处理器2通过蓝牙方式将电信号传递至外部终端,当然,在本实施例中,该处理器也可通过其他传递,此处不作唯一限定。
优选地,上述第一导电触点21呈间隔环形阵列于处理器1上,对应地,上述第二导电触点11也呈间隔环形阵列于电路板15上。通过环形阵列分布,从而可以较大面积的捕捉人体的生物信号,使得检测的效果较为精准。当然,在本实施例中,该第一导电触点21或第二导电触点11也可呈其他形式分布,此处不作唯一限定。
优选地,上述通道12开设于底座1的中部位置处。通过这样设置,保证了第二导电触点11能够稳定、准确地监测生物电信号,当然,在本实施例中,该通道12也可开设在其他位置处,此处不作限定。
进一步地,请参阅图1与图3,作为本发明提供的电极装置一种具体实施方式,该电极装置还包括一连接件5,该连接件5安装于底座1背对处理器2的一侧。这样,通过设置连接件5,从而可将底座1安装于外部服饰(附图未作出)上。
优选地,在本实施例中,也可通过粘结的方式而无需设置连接件5以将底座1安装于外部服饰上,又或者通过缝合的方式将底座1定位于外部的服饰上等,此处不作唯一限定。
优选地,请参阅图3,该电极装置还包括螺钉6,该螺钉6可将连接件5与底座1相连。具体地,在上述连接件5上开设有通过孔50,在外部服饰上开设有有贯穿孔(附图未作出),在上述底座1上开设有螺纹孔13,该螺纹孔13对应通过孔50、贯穿孔的位置开设,该螺钉6可依次穿过通过孔50、贯穿孔并与螺纹孔13配合连接,从而可将底座1安装于外部服饰上。当然,在本实施例中,该连接件也可与底座通过卡扣连接,又或者通过其他方式连接,此处不作唯一限定。
进一步地,请参阅图3,作为本发明提供的电极装置一种具体实施方式,该通过孔50的数量设置为多个,相应地,该贯穿孔、螺纹孔13、螺钉6也设置为多个,且各通过孔50分别呈间隔分布于底座1的边缘位置处,通过这样分布,充分利用了底座1的空间,保证底座1与连接件5能够稳定连接,与此同时,也使得电极装置更为美观。当然,在本实施例中,根据实际情况和具体需求,该通过孔50也可分布于底座1的其他位置处,此处不作唯一限定。
优选地,上述通过孔50的数量设置为八个,该底座1为长方形,上述各通过孔50分别沿着底座1的长边和宽边间隔分布,当然,根据实际情况和具体需求,该通过孔50的数量也可以设置为其他多个,此处不作唯一限定。
进一步地,请参阅图3,作为本发明提供的电极装置一种具体实施方式,在底座1上还设有定位柱14,该定位柱14设置于底座1背对处理器2的一侧,在上述连接件5上开设有定位孔51,该定位孔51对应定位柱14的位置设置,该定位柱14与定位孔51配合连接。这样,通过在底座1上设置定位柱14,当需要将底座1与连接件5进行安装时,此时可通过定位柱14与定位孔51的配合连接,从而可快速地实现底座1与连接件5的连接,提高了安装的效率。
优选地,该底座1与定位柱14一体成型,通过一体成型,增强了底座1与定位柱14的结合力,与此同时,也简化了后续的机加工,当然,在本实施例中,该底座1也可与定位柱14可拆卸连接,此处不作唯一限定。
优选地,该电极装置还包括一封装件(附图未作出),该封装件可用于对连接件5的表面进行封盖处理。这样,通过采用封装件将连接件5表面进行封装处理,一方面起到美化的效果,也可通过热压方式在封装件上印制一些卡通等之类的图片,从而进一步起到美化效果,另一方面,也防止了连接件5在使用过程中出现磨损、遭到破坏。可选地,在本实施例中,该封装件5可为包装布、遮盖布等其他布料,此处不作唯一限定。
优选地,该封装件通过粘结的方式粘结于连接件5上,通过粘结的方式可快速便捷地实现对连接件5的封盖,当然,在本实施例中,该封装件也可通过缝合等其他方式封盖于连接件5上,此处不作唯一限定。
优选地,上述底座1采用橡胶进行包胶处理,这样,避免了底座1在使用过程中遭到破坏,提高了底座的使用寿命。
在本发明中,通过在处理器2中安装有第一磁性件3,在底座1上安装有第二磁性件4,且使得第一磁性件3与第二磁性件4呈相对设置,这样,第一磁性件3与第二磁性件4相互吸引,从而可将处理器2定位于底座1上,通过磁性吸附的方式提高了电极装置的抗震能力,实现了电极装置反复使用后可仍然保持信号收集的稳定性,通过采用粘结的方式分别将第一磁性件3与第二磁性件4对应粘结于第一容置槽20与第二容置槽中,防止电极装置在使用过程中第一磁性件3与第二磁性件4出现晃动。
以上所述仅为本申请的较佳实施例而已,并不用以限制本申请,凡在本申请的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本申请的保护范围之内。

Claims (13)

  1. 电极装置,其特征在于,包括底座、以及可拆卸地安装于所述底座上的处理器,所述处理器中安装有第一磁性件,所述底座中对应所述第一磁性件位置设置有与所述第一磁性件的磁性相反并配合所述第一磁性件以将所述处理器定位于所述底座上的第二磁性件。
  2. 根据权利要求1所述的电极装置,其特征在于,所述第一磁性件的数量设置为两个,各所述第一磁性件分别分布于所述处理器的两端。
  3. 根据权利要求2所述的电极装置,其特征在于,所述第一磁性件为方形或圆形。
  4. 根据权利要求2所述的电极装置,其特征在于,所述处理器中开设有用于容置所述第一磁性件的第一容置槽,所述底座上对应所述第一容置槽位置开设有用于容置所述第二磁性件的第二容置槽。
  5. 根据权利要求4所述的电极装置,其特征在于,所述第一磁性件粘结于所述第一容置槽中。
  6. 根据权利要求4所述的电极装置,其特征在于,所述第二磁性件粘结于所述第二容置槽中。
  7. 根据权利要求1所述的电极装置,其特征在于,所述处理器中内置有第一导电触点,所述底座中对应所述第一导电触点位置设有用于与外部采集人体生物电信号的电极电性连接第二导电触点,所述底座上开设有并供所述第二导电触点一端伸出并与所述第一导电触点电性连接的通道。
  8. 根据权利要求7所述的电极装置,其特征在于,所述通道开设于所述底座的中部位置处。
  9. 根据权利要求1所述的电极装置,其特征在于,所述电极装置还包括用于将所述底座安装于外部服饰上的连接件,所述连接件安装于所述底座背对所述处理器的一侧。
  10. 根据权利要求9所述的电极装置,其特征在于,所述电极装置还包括用于将所述连接件与所述底座连接的螺钉,所述连接件上开设有通过孔,所述外部服饰上开设有贯穿孔,所述底座上开设有螺纹孔,所述螺钉依次穿过所述通过孔、所述贯穿孔并与所述螺纹孔配合连接。
  11. 根据权利要求10所述的电极装置,其特征在于,所述通过孔的数量设置为多个,各所述通过孔间隔分布于所述底座的边缘位置处。
  12. 根据权利要求9所述的电极装置,其特征在于,所述底座背对所述处理器的一侧设有定位柱,所述连接件对应所述定位柱位置开设有与所述定位柱配合连接的定位孔。
  13. 根据权利要求9所述的电极装置,其特征在于,所述电极装置还包括用于对所述连接件的表面进行封盖处理的封装件。
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