Waterproof electrocardio electrode

文档序号:753102 发布日期:2021-04-06 浏览:20次 中文

阅读说明:本技术 一种防水心电电极 (Waterproof electrocardio electrode ) 是由 白洁 姜雪滨 赵卫 于 2020-12-24 设计创作,主要内容包括:本发明提供了一种防水心电电极,其使心电设备在内腔避免与水接触、进而达到设备防水功能,其操作简易、结构轻便。其包括软基线路板,所述软基线路板的对应于电极布置的位置设置有电极下扣,所述软基线路板的外侧表面贴付有第一背衬所述第一背衬的外表面对应于电极区域贴合有保护罩的底板,所述保护罩的可翻转罩体通过翻折边连接所述底板的一侧,所述罩体包括有朝向底板组合形成的安装腔,所述罩体的向底板的止挡周边贴合所述底板的对应上表面,所述电极下扣的外凸部分贯穿第一背衬、底板后扣装有电极上扣,所述罩体闭合状态下的安装腔内布置有心电采集设备。(The invention provides a waterproof electrocardio-electrode, which enables electrocardio equipment to be prevented from contacting water in an inner cavity, further achieves the waterproof function of the equipment, and is simple to operate and light in structure. It includes the soft basic circuit board, the position that corresponds to the electrode arrangement of soft basic circuit board is provided with under the electrode and detains, the outside surface subsides of soft basic circuit board are paid and are had first back lining the surface of first back lining has the bottom plate of safety cover corresponding to the regional laminating of electrode, the cover body that can overturn of safety cover is connected through turning over the hem one side of bottom plate, the cover body is including the installation cavity that forms towards the bottom plate combination, the backstop peripheral laminating to the bottom plate of the cover body the corresponding upper surface of bottom plate, the outer convex part branch of detaining under the electrode runs through behind first back lining, the bottom plate and detains on the dress has the electrode, electrocardio collection equipment has been arranged in the installation cavity under the cover body closed state.)

1. A waterproof electrocardio-electrode is characterized in that: it includes the soft basic circuit board, the position that corresponds to the electrode arrangement of soft basic circuit board is provided with under the electrode and detains, the outside surface subsides of soft basic circuit board are paid and are had first back lining the surface of first back lining has the bottom plate of safety cover corresponding to the regional laminating of electrode, the cover body that can overturn of safety cover is connected through turning over the hem one side of bottom plate, the cover body is including the installation cavity that forms towards the bottom plate combination, the backstop peripheral laminating to the bottom plate of the cover body the corresponding upper surface of bottom plate, the outer convex part branch of detaining under the electrode runs through behind first back lining, the bottom plate and detains on the dress has the electrode, electrocardio collection equipment has been arranged in the installation cavity under the cover body closed state.

2. The waterproof electrocardio-electrode according to claim 1, wherein: the installation cavity is arranged along the profile of the electrocardio acquisition equipment to be assembled.

3. The waterproof electrocardio-electrode according to claim 1, wherein: the key panel is arranged on the exposed surface of the cover body in a closed state.

4. The waterproof electrocardio-electrode according to claim 1, wherein: the laminating of the orientation human body side of soft basic circuit board has the second backing, the length direction both sides of second backing are provided with the conducting resin and dodge the hole, the conducting resin dodge the hole through the conducting resin paste pay in the corresponding side position of soft basic circuit board.

5. The waterproof electrocardio-electrode according to claim 1, wherein: the lower electrode buckle is in full contact with the soft base circuit board through the conductive cloth.

6. The waterproof electrocardio-electrode according to claim 1, wherein: the protective cover is manufactured and molded through a plastic suction process.

7. The waterproof electrocardio-electrode according to claim 1, wherein: the stop periphery of the cover body is bonded with the corresponding upper surface of the bottom plate through double-sided adhesive tape.

8. The waterproof electrocardio-electrode according to claim 1, wherein: the protective cover is made of a plastic plate or a foam sheet.

Technical Field

The invention relates to the technical field of electrocardiogram monitoring equipment, in particular to a waterproof electrocardiogram electrode.

Background

The existing electrocardio-electrode is used for collecting and transmitting human electrocardiosignals such as heart monitoring, critical patient monitoring, dynamic heart function measurement and the like. The conventional electrocardio equipment needs to meet the daily life habits of users, and a plurality of electrocardio equipment does not have a waterproof function.

Disclosure of Invention

In order to solve the problems, the invention provides a waterproof electrocardio-electrode, which enables electrocardio equipment to be prevented from contacting water in an inner cavity, further achieves the waterproof function of the equipment, and is simple and easy to operate and light in structure.

A waterproof electrocardio-electrode is characterized in that: it includes the soft basic circuit board, the position that corresponds to the electrode arrangement of soft basic circuit board is provided with under the electrode and detains, the outside surface subsides of soft basic circuit board are paid and are had first back lining the surface of first back lining has the bottom plate of safety cover corresponding to the regional laminating of electrode, the cover body that can overturn of safety cover is connected through turning over the hem one side of bottom plate, the cover body is including the installation cavity that forms towards the bottom plate combination, the backstop peripheral laminating to the bottom plate of the cover body the corresponding upper surface of bottom plate, the outer convex part branch of detaining under the electrode runs through behind first back lining, the bottom plate and detains on the dress has the electrode, electrocardio collection equipment has been arranged in the installation cavity under the cover body closed state.

It is further characterized in that:

the installation cavity is arranged in a shape of profiling the electrocardio acquisition equipment to be assembled, so that the electrocardio acquisition equipment is stable in position and reliable in connection after being placed in the installation cavity;

the key panel is arranged on the exposed surface of the cover body in a closed state, so that the electrocardio acquisition equipment can be conveniently operated;

a second backing is attached to the side, facing the human body, of the soft base circuit board, conductive adhesive avoiding holes are formed in two sides of the second backing in the length direction, and the conductive adhesive is attached to the corresponding side end position of the soft base circuit board through the conductive adhesive avoiding holes;

the lower electrode buckle is in full contact with the soft base circuit board through the conductive cloth;

the protective cover is manufactured and molded through a plastic suction process;

the stopping periphery of the cover body is adhered to the corresponding upper surface of the bottom plate through double-sided adhesive tape;

the protective cover is made of a plastic plate or a foam sheet.

After the water-proof device is adopted, the installation cavity is arranged in a copying manner on the electrocardio acquisition equipment to be assembled, the electrocardio acquisition equipment is stable in position and reliable in connection after being placed in the installation cavity, the electrocardio equipment is prevented from contacting water in the inner cavity, the water-proof function of the equipment is further achieved, and the water-proof device is simple to operate and light in structure.

Drawings

FIG. 1 is a perspective view of the ECG collection device of the present invention shown when not in place;

FIG. 2 is a perspective view of the ECG collection device of the present invention positioned on a base plate;

FIG. 3 is a perspective view of the ECG collecting device of the present invention disposed in the mounting chamber and with the cover closed;

FIG. 4 is a schematic cross-sectional view of FIG. 3;

FIG. 5 is an exploded view of the present invention;

the names corresponding to the sequence numbers in the figure are as follows:

the electrocardio collecting device comprises a soft base circuit board 1, an electrode lower buckle 2, a first back lining 3, a protective cover 4, a bottom plate 41, a cover body 42, a flanging edge 43, a mounting cavity 5, a stop periphery 6, an electrode upper buckle 7, an electrocardio collecting device 8, a key panel 9, a second back lining 10, a conductive adhesive avoiding hole 11, a conductive adhesive 12 and a conductive cloth 13.

Detailed Description

A waterproof electrocardio-electrode, see fig. 1-5: the electrocardio collecting device comprises a soft base circuit board 1, an electrode lower buckle 2 is arranged at a position, corresponding to an electrode arrangement, of the soft base circuit board 1, a first back lining 3 is attached to the outer side surface of the soft base circuit board 1, a bottom plate 41 of a protective cover 4 is attached to the outer surface of the first back lining 3 corresponding to an electrode area, a turnover cover body 42 of the protective cover 4 is connected to one side of the bottom plate 41 through a turnover edge 43, the cover body 42 comprises a mounting cavity 5 formed by combining towards the bottom plate, the corresponding upper surface of the bottom plate 41 is attached to a stop periphery 6, facing the bottom plate 41, of the cover body 42, an outer convex part of the electrode lower buckle 2 penetrates through the first back lining 3 and the bottom plate 41 and is buckled with an electrode upper buckle 7, and electrocardio collecting equipment 8 is.

The mounting cavity 5 is arranged in a way of copying on the electrocardio acquisition equipment 8 to be assembled, so that the electrocardio acquisition equipment 8 is ensured to be stable in position and reliable in connection after being placed in the mounting cavity 5;

the key panel 9 is arranged on the exposed surface of the cover body 42 in a closed state, so that the electrocardio acquisition equipment 8 can be conveniently operated;

a second backing 10 is attached to the side, facing the human body, of the soft base circuit board 1, conductive adhesive avoidance holes 11 are formed in two sides of the second backing 10 in the length direction, and conductive adhesives 12 are attached to the corresponding side end positions of the soft base circuit board 1 through the conductive adhesive avoidance holes 11;

the electrode lower buckle 2 is fully contacted with the soft base circuit board 1 through the conductive cloth 13;

the protective cover 4 is manufactured and molded by a plastic suction process;

the stop perimeter 6 of the cover 42 is glued to the corresponding upper surface of the base plate 41 by means of a double-sided adhesive;

the protective cover 4 is made of a plastic plate or a foam sheet.

The working principle is as follows: the installation cavity is arranged in the copying manner of the electrocardio acquisition equipment to be assembled, the electrocardio acquisition equipment is placed in the installation cavity, the position is stable and the connection is reliable, the electrocardio acquisition equipment is prevented from being contacted with water in the inner cavity, and further the waterproof function of the equipment is achieved, and the electrocardio acquisition equipment is simple and easy to operate and has a light structure.

It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

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