Conductive part of EMS wearable equipment and EMS massage waistband

By designing the conductive parts of the EMS wearable device, and using the coordination of conductive wires, conductive pins and connecting ears, the electrical connection between the conductive electrodes and the host machine base is achieved, which solves the problems of complex internal connections and high production costs in the prior art, and achieves the effect of simplifying the installation process and reducing production costs.

CN222915213UActive Publication Date: 2025-05-27SHENZHEN LIDIAN TECH CO LTD
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Patent Information

Application Number
CN202421319009.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-11
Publication Date
2025-05-27
Estimated Expiration
2034-06-11

AI Technical Summary

Technical Problem

The internal wiring method of existing EMS wearable devices is complex in technology and has high production costs, so there is room for improvement and improvement.

Method used

A conductive component of an EMS wearable device is designed, including a conductive electrode and a host base. Through the coordination of conductive wires, conductive pins and connecting ears, the electrical connection between the conductive electrode and the host base is realized, simplifying the installation process and reducing production costs.

Benefits of technology

This design allows the conductive components of the EMS wearable device to be produced separately from the main body, quickly assembled, simplified installation process, save production time, and reduce production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a conductive part of an EMS wearable device, which comprises a conductive electrode and a host machine base, a conductive wire is arranged between the conductive electrode and the host machine base, the conductive electrode is connected with the host machine base through the conductive wire, one end of the conductive wire is fixedly connected with the host machine base, and the other end of the conductive wire is fixedly connected with the host machine base. One end of the conductive wire is connected with the conductive electrode, the other end of the conductive wire is provided with a conductive pin, the conductive electrode is provided with a connecting lug, the connecting lug is provided with a conductive hole, the conductive pin is inserted into the conductive hole of the connecting lug of the conductive electrode, and the conductive electrode is electrically connected with the host base through the conductive wire. The conductive part of the EMS wearable equipment can be produced separately from the EMS wearable equipment main body, and can be quickly assembled on the EMS wearable equipment after being produced, and control connection between the conductive electrode and the host base which are arranged front and back is completed through the matching of the conductive wire, the conductive pin and the connecting lug, so that the installation process is simplified, the production time is saved, and the production efficiency is improved. The production cost is reduced.
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Description

Technical Field

[0001] The utility model relates to the field of EMS wearable devices, in particular to a conductive component of an EMS wearable device and an EMS massage belt. Background Art

[0002] EMS (Electrical Muscle Stimulation), a technology that uses electrical pulses to stimulate muscle movement. As a miraculous kinematic theory technology, the essence of EMS is a pulse signal. By simulating this human brain signal, EMS directly transmits the signal to the muscle, causing the muscle to contract. This exercise mode can maximize the exercise needs of relevant parts, improve the safety guarantee level of the body's autonomous movement, is conducive to muscle relaxation and promoting blood circulation, is conducive to the stability of the internal environment, and promotes the recovery of the body's injuries. Existing EMS wearable devices use EMS for massage of relevant parts, but the internal wiring method of EMS massage belts and other EMS wearable devices in the existing market is relatively complex in technology and relatively high in production cost. Therefore, the existing technology still needs to be improved. Summary of the Utility Model

[0003] In view of the deficiencies of the above-mentioned existing technology, the purpose of the present utility model is to provide a conductive component of an EMS wearable device and an EMS massage belt.

[0004] To solve the above technical problems, the present utility model has taken the following technical solutions:

[0005] The present utility model provides a conductive component of an EMS wearable device, including a conductive electrode and a mainframe base. A conductive wire is arranged between the conductive electrode and the mainframe base. The conductive electrode and the mainframe base are connected through the conductive wire. One end of the conductive wire is fixedly connected to the mainframe base, and the other end of the conductive wire is provided with a conductive pin. A connecting ear is arranged on the conductive electrode, and the connecting ear has a conductive hole. The conductive pin is inserted into the conductive hole of the connecting ear of the conductive electrode, and the conductive electrode is electrically connected to the mainframe base through the conductive wire.

[0006] Further, in the conductive component of the EMS wearable device, the conductive pin is a conductive metal rod.

[0007] Further, in the conductive component of the EMS wearable device, the conductive hole is a conductive hole with a telescopable aperture.

[0008] Further, in the conductive component of the EMS wearable device, the conductive pin and the conductive hole are in interference fit.

[0009] Further, for the conductive components of the EMS wearable device, the connecting ear is a conductive silicone connecting ear, and the conductive hole is a conductive silicone ear hole.

[0010] Further, for the conductive components of the EMS wearable device, the conductive electrode is a conductive silicone sheet, and the connecting ear is fixed to the inner side of the conductive silicone sheet.

[0011] Further, for the conductive components of the EMS wearable device, the connecting ear and the conductive silicone sheet are adhesively bonded, welded or integrally formed.

[0012] Further, for the conductive components of the EMS wearable device, there are multiple conductive wires and multiple conductive electrodes, and the conductive wires are connected to the conductive electrodes in a one-to-one correspondence.

[0013] The present utility model also provides an EMS massage belt, which includes a belt body and a control host, and further includes the conductive components of the EMS wearable device as described above. The conductive components of the EMS wearable device are installed on the belt body, and the control host is installed on the conductive components of the EMS wearable device.

[0014] Further, for the EMS massage belt, the conductive components of the EMS wearable device include multiple conductive electrodes and a host base. Between the conductive electrodes and the host base, there are multiple conductive wires connected to the conductive electrodes in a one-to-one correspondence. The conductive electrodes and the host base are connected through the conductive wires. One end of the conductive wire is fixedly connected to the host base, and the other end of the conductive wire is provided with a conductive pin. The conductive electrode is provided with a connecting ear having a conductive hole, and the conductive pin is inserted into the conductive hole of the connecting ear of the conductive electrode. The conductive electrode is electrically connected to the host base through the conductive wire. On the inner side of the belt body, there are multiple conductive positions, and the conductive electrodes are installed in the corresponding conductive positions one by one. On the outer side of the belt body, there is a control position, and the host base is installed in the control position. The control host is detachably connected to the host base.

[0015] Compared with the prior art, a conductive component of an EMS wearable device provided by the present utility model includes a conductive electrode and a mainframe base. A conductive wire is disposed between the conductive electrode and the mainframe base. The conductive electrode and the mainframe base are connected through the conductive wire. One end of the conductive wire is fixedly connected to the mainframe base, and the other end of the conductive wire is provided with a conductive pin. A connecting ear is disposed on the conductive electrode, and the connecting ear has a conductive hole. The conductive pin is inserted into the conductive hole of the connecting ear of the conductive electrode. The conductive electrode is electrically connected to the mainframe base through the conductive wire. The conductive component of the EMS wearable device of the present utility model can be separately produced from the main body of the EMS wearable device and can be quickly assembled on the EMS wearable device after production. Through the cooperation of the conductive wire, the conductive pin, and the connecting ear, the control connection between the front and rear configured conductive electrodes and the mainframe base is completed, which is beneficial to simplifying the installation process, saving production time, and reducing production costs. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following described drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on the structures shown in these drawings.

[0017] Figure 1 It is a schematic structural diagram of the conductive component of the EMS wearable device provided by the present utility model.

[0018] Figure 2 It is a schematic structural diagram of the conductive wire and the conductive pin of the conductive component of the EMS wearable device provided by the present utility model.

[0019] Figure 3 It is a schematic diagram of the inner structure of the EMS massage belt provided by the present utility model.

[0020] Figure 4 It is a schematic diagram of the outer structure of the EMS massage belt provided by the present utility model.

[0021] Explanation of the reference numerals in the drawings:

[0022] Conductive electrode 11

[0023] Mainframe base 12

[0024] Conductive wire 13

[0025] Conductive pin 14

[0026] Connecting ear 15

[0027] Conductive hole 16

[0028] Conductive buckle 17

[0029] Belt body 100

[0030] Conductive position 101

[0031] Control position 102 Detailed implementation manners

[0032] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present invention.

[0033] It should be noted that if there are directional indications (such as up, down, left, right, front, back,...) involved in the embodiments of the present invention, then the directional indications are only used to explain the relative positional relationship and movement conditions between components in a specific posture (as shown in the drawings). If the specific posture changes, the directional indications will also change accordingly.

[0034] In addition, if there are descriptions involving "first", "second", etc. in the embodiments of the present invention, then the descriptions of "first", "second", etc. are only for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one of the features. In addition, the technical solutions between various embodiments can be combined with each other, but it must be based on the fact that those of ordinary skill in the art can implement them. When the combination of technical solutions results in contradictions or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection required by the present invention.

[0035] Such as Figure 1 、 Figure 2As shown in the figure, a conductive component of an EMS wearable device provided by the present utility model includes a conductive electrode 11 and a mainframe base 12. A conductive wire 13 is provided between the conductive electrode 11 and the mainframe base 12. The conductive electrode 11 and the mainframe base 12 are connected through the conductive wire 13. One end of the conductive wire 13 is fixedly connected to the mainframe base 12, and a conductive pin 14 is provided at the other end of the conductive wire 13. A connecting ear 15 is provided on the conductive electrode 11, and the connecting ear 15 has a conductive hole 16. The conductive pin 14 is inserted into the conductive hole 16 of the connecting ear 15 of the conductive electrode 11. The conductive electrode 11 is electrically connected to the mainframe base 12 through the conductive wire 13. The conductive component of the EMS wearable device of the present utility model can be produced separately from the main body of the EMS wearable device and can be quickly assembled on the EMS wearable device after production. Through the cooperation of the conductive wire 13, the conductive pin 14, and the connecting ear 15, the control connection between the front and rear configured conductive electrodes 11 and the mainframe base 12 is completed, which is beneficial to simplifying the installation process, saving production time, and reducing production costs. The connecting ear 15 is fixed to the middle of the inner side of the conductive electrode 11. The setting of the conductive pin 14 can not only facilitate the connection with the connecting ear 15 but also strengthen the connection strength between the conductive wire 13 and the connecting ear 15. Generally, multiple conductive electrodes 11 are provided and are dispersed. In addition, the conductive electrodes 11 often bend during wearing, and the connection points between the conductive electrodes 11 at different positions and the conductive wire 13 are prone to breakage. The present utility model can strengthen the connection strength and effectively improve the product life.

[0036] Further, for the conductive component of the EMS wearable device provided by the present utility model, multiple conductive wires 13 are provided, multiple conductive electrodes 11 are provided, and the conductive wires 13 and the conductive electrodes 11 are connected in a one-to-one correspondence. Further, for the conductive component of the EMS wearable device provided by the present utility model, the conductive pin 14 is a conductive metal rod. The conductive metal rod can be a copper rod, an aluminum rod, etc. Further, for the conductive component of the EMS wearable device provided by the present utility model, the conductive hole 16 is a conductive hole 16 with a variable aperture. Further, for the conductive component of the EMS wearable device provided by the present utility model, the conductive pin 14 and the conductive hole 16 are in interference fit. Further, for the conductive component of the EMS wearable device provided by the present utility model, the connecting ear 15 is a conductive silicone connecting ear 15, and the conductive hole 16 is a conductive silicone ear hole. Further, for the conductive component of the EMS wearable device provided by the present utility model, the conductive electrode 11 is a conductive silicone sheet, and the connecting ear 15 is fixed to the inner side of the conductive silicone sheet. Further, for the conductive component of the EMS wearable device provided by the present utility model, the connecting ear 15 and the conductive silicone sheet are adhesively bonded, welded, or integrally formed.

[0037] As Figure 3 andFigure 4 As shown, the present utility model also provides an EMS massage belt, which includes a belt body 100 and a control host. It further includes the conductive components of the EMS wearable device provided by the present utility model as above. The conductive components of the EMS wearable device are installed on the belt body 100, and the control host is installed on the conductive components of the EMS wearable device. Further, for the EMS massage belt provided by the present utility model, the conductive components of the EMS wearable device include a plurality of conductive electrodes 11 and a host base 12. A plurality of conducting wires 13 corresponding to the conductive electrodes 11 one by one are arranged between the conductive electrodes 11 and the host base 12. The conductive electrodes 11 and the host base 12 are connected through the conducting wires 13. One end of the conducting wire 13 is fixedly connected to the host base 12, and the other end of the conducting wire 13 is provided with a conductive pin 14. A connecting ear 15 is arranged on the conductive electrode 11, and the connecting ear 15 has a conductive hole 16. The conductive pin 14 is inserted into the conductive hole 16 of the connecting ear 15 of the conductive electrode 11. The conductive electrode 11 is electrically connected to the host base 12 through the conducting wire 13. A plurality of conductive positions 101 are arranged on the inner side of the belt body 100, and the conductive electrodes 11 are respectively installed in the corresponding conductive positions 101. A control position 102 is arranged on the outer side of the belt body 100, and the host base 12 is installed in the control position 102. The control host is detachably connected to the host base 12. The conducting wire 13 is clamped inside the belt body 100. The control host mainly serves as an output source to output EMS to the conductive electrodes 11, as well as for switch and output gear control. The control host and the host base 12 are connected by magnetic attraction or snap connection. In this embodiment, a conductive buckle position 17 connected to the control host is arranged on the host base 12, and the conductive buckle position 17 is electrically connected to the conducting wire 13 inside. The control host and the host base 12 are magnetically attracted. For example, a magnet is arranged on the control host, and the host base 12 is matched with an iron plate part, etc.

[0038] In summary, the conductive components of the EMS wearable device of the present utility model can be separately produced from the main body of the EMS wearable device. After production, they can be quickly assembled on the EMS wearable device. Through the cooperation of the conducting wire, the conductive pin, and the connecting ear, the control connection between the front and rear configured conductive electrodes and the host base is completed, which is beneficial to simplifying the installation process, saving production time, and reducing production costs.

[0039] The above are only the preferred embodiments of the present utility model, and do not limit the patent scope of the present utility model accordingly. All equivalent structural transformations made under the inventive concept of the present utility model by using the content of the specification and drawings of the present utility model, or directly / indirectly applied in other related technical fields, are included in the patent protection scope of the present utility model.

Claims

1. A conductive component of an EMS wearable device, characterized in that: It includes a conductive electrode and a main machine base, a conductive wire is arranged between the conductive electrode and the main machine base, the conductive electrode and the main machine base are connected through the conductive wire, one end of the conductive wire is fixedly connected to the main machine base, and the other end of the conductive wire is provided with a conductive pin, the conductive electrode is provided with a connecting ear, the connecting ear has a conductive hole, the conductive pin is inserted into the conductive hole of the connecting ear of the conductive electrode, and the conductive electrode is electrically connected to the main machine base through the conductive wire.

2. The conductive component of the EMS wearable device according to claim 1, characterized in that: The conductive pin is a conductive metal rod.

3. The conductive component of the EMS wearable device according to claim 2, characterized in that: The conductive hole is a conductive hole with a retractable aperture.

4. The conductive component of the EMS wearable device according to claim 3, characterized in that: The conductive pin is interference-fitted with the conductive hole.

5. The conductive component of the EMS wearable device according to claim 4, characterized in that: The connecting ears are conductive silicone connecting ears, and the conductive holes are conductive silicone ear holes.

6. The conductive component of the EMS wearable device according to claim 5, characterized in that: The conductive electrode is a conductive silicone sheet, and the connecting ear is fixed on the inner side of the conductive silicone sheet.

7. The conductive component of the EMS wearable device according to claim 6, characterized in that: The connecting ear is bonded, welded or integrally formed with the conductive silicone sheet.

8. The conductive component of the EMS wearable device according to any one of claims 1 to 7, characterized in that: There are a plurality of the conductive wires and a plurality of the conductive electrodes, and the conductive wires are connected and arranged in a one-to-one correspondence with the conductive electrodes.

9. An EMS massage belt, comprising a belt body and a control host, characterized in that: It also includes a conductive component of the EMS wearable device as described in any one of claims 1 to 8, wherein the conductive component of the EMS wearable device is mounted on the waistband body, and the control host is mounted on the conductive component of the EMS wearable device.

10. The EMS massage belt according to claim 9, characterized in that: The conductive components of the EMS wearable device include a plurality of conductive electrodes and a host base, a plurality of conductive wires connected to the conductive electrodes in a one-to-one correspondence are arranged between the conductive electrodes and the host base, the conductive electrodes are connected to the host base through the conductive wires, one end of the conductive wire is fixedly connected to the host base, and the other end of the conductive wire is provided with a conductive pin, the conductive electrode is provided with a connecting ear, the connecting ear has a conductive hole, the conductive pin is inserted into the conductive hole of the connecting ear of the conductive electrode, the conductive electrode is electrically connected to the host base through the conductive wire, a plurality of conductive positions are arranged on the inner side of the waistband body, the conductive electrodes are installed in the corresponding conductive positions in a one-to-one correspondence, a control position is arranged on the outer side of the waistband body, the host base is installed in the control position, and the control host is detachably connected to the host base.