Bracelet watchband with conductive function

By replacing traditional wires with metal strips in smart wristbands, the positioning and assembly challenges are addressed, resulting in higher production quality and user-friendly wearability.

CN223094958UActive Publication Date: 2025-07-15ZHEJIANG YUEFAN INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202422477093.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-14
Publication Date
2025-07-15
Estimated Expiration
2034-10-14

AI Technical Summary

Technical Problem

The existing smart bracelet strap is difficult to control the conductor position during mold injection molding, resulting in high product defect rate and inconvenient wear.

Method used

No less than 2 metal conductive strip rails are used to set along the length of the functional strap, combined with adjustable connecting components and fixed structures, to ensure that the conductive strip rails are well positioned in the mold, and can be adjusted according to the shape of the user's wrist to simplify the processing steps.

Benefits of technology

It improves product qualification rate, simplifies processing steps, reduces costs, and enhances wearability and the stability of electrical signals.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a bracelet watchband with a conductive function, which comprises a functional watchband, a fixing piece and a fixed watchband, the functional watchband comprises a silica gel watchband base body and at least two metal conductive strip rails electrically connected between a host and an electrode module, and one end of the silica gel watchband base body is connected with the host; the metal conductive strip rail is embedded in the silica gel watchband base body in the length direction of the functional watchband, the electrode module is electrically connected to the metal conductive strip rail through the fixed connecting assembly or the adjustable connecting assembly, the fixing piece is connected to the end away from the main machine, and one end of the fixed watchband is connected with the main machine. And the other end is connected with the functional watchband through a fixing piece so as to realize wearing of the bracelet. According to the utility model, a traditional wire is replaced by the metal conductive strip rail arranged along the length direction of the functional watchband, so that positioning and processing can be better carried out in a mold, the qualified rate of products is improved, the watchband is more convenient for a user to wear, the processing steps of the functional watchband are simplified, and the processing efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of smart bracelets, in particular to a bracelet strap with a conductive function. Background Art

[0002] With the development of Internet technology and intelligent products, at present, various intelligent wearable products have emerged on the market. Among them, the emergence of smart bracelets, as a common intelligent wearable product, has brought convenience to users.

[0003] Existing smart bracelets generally include a watch face and two straps connected to the watch face. The watch face has functions such as monitoring sleep, heart rate, and calorie consumption. The straps are similar to wristbands. A buckle is provided on one side of the strap, and a row of small holes are provided on the other side of the strap. The small holes are arranged at intervals, and the buckle can be inserted into any small hole. Users can insert the buckle into the most suitable small hole according to the size of their wrists.

[0004] The above-mentioned prior art solutions have the following defects: Conductive wires are arranged along the direction of the strap inside the strap, but the wires embedded in the silicone strap are very soft. During the process of injection molding with a mold, it is difficult to control the position of the wires inside it, and the wires are often broken by the mold or deviated from the center of the strap, resulting in product defects such as exposed wires, increasing the scrap cost, and at the same time affecting the reliability of the strap during later use; At the same time, most of the straps with common integrated electrodes are made by injection molding with silicone materials. The silicone material has good resilience. When no external force is applied, the strap will naturally return to its shape when it leaves the factory. If worn on the user's wrist, every time it is worn, the user needs to use the other hand to pull the two straps to fix the bracelet, which is not convenient for the user to wear. Summary of the Invention

[0005] By providing a bracelet strap with a conductive function in the embodiments of the present application, by replacing the traditional wire with at least two metal conductive strip tracks arranged along the length direction of the functional strap, it can be better positioned and processed in the mold, improving the qualified rate of the product, being more convenient for users to wear, and at the same time simplifying the processing steps of the functional strap and improving the processing efficiency.

[0006] To achieve the above object, the utility model provides the following technical solutions: A smart bracelet with a conductive function includes

[0007] A functional strap, including a silicone strap substrate and at least two metal conductive strip tracks electrically connected between the main unit and the electrode module. One end of the silicone strap substrate is connected to the main unit. The metal conductive strip tracks are embedded in the silicone strap substrate along the length direction of the functional strap, and the electrode module is electrically connected to the metal conductive strip tracks through a fixed connection component or an adjustable connection component;

[0008] A fixing member, connected to one end away from the main body.

[0009] A fixed strap, one end of which is connected to the main body, and the other end is connected to the functional strap through the fixing member to realize the wearing of the bracelet.

[0010] Compared with the prior art, the advantages of the present utility model are as follows:

[0011] By replacing the traditional wire with at least two metal conductive strip tracks arranged along the length direction of the functional strap, the metal conductive strip track itself has a certain yield strength, and the yield strength is greater than the resilience of the functional strap material. During the production and processing process, compared with the wire, the metal conductive strip track can be better positioned and processed in the mold, improving the qualified rate of the product;

[0012] Changing the traditional wire to a metal conductive strip track, the user can refer to the curve and shape of their own wrist and apply an external force to the functional strap and the metal conductive strip track inside it. When the applied force is greater than the yield strength of the metal conductive strip track, the functional strap is bent and the bent shape is maintained, realizing the bending and shaping of the functional strap. The shaped functional strap can fit the skin in the natural state. During the wearing process, only the fixed strap needs to be operated for fixation, which is convenient for the user to wear;

[0013] By embedding at least two metal conductive strip tracks in the silicone strap matrix, compared with the prior art where the functional strap needs to include three parts: a spring piece, a signal strip, and an insulating layer, the processing steps of the functional strap are simplified, thereby reducing the processing cost and improving the processing efficiency at the same time;

[0014] The electrode module is connected to the metal conductive strip track through a fixed connection component or an adjustable connection component. This design provides a high degree of flexibility and customization. The user can adjust the electrode position according to personal needs or professional suggestions to achieve the best monitoring effect.

[0015] As an improvement, the adjustable connection component includes an adjustable connection seat for installing the electrode module. The electrode module includes at least two electrode pieces and an electrical connection component. The silicone strap matrix is provided with a non-closed structure at the corresponding positions of the electrical connection component and the metal conductive strip track, which can realize the connection between the two. The non-closed structure provided on the silicone strap matrix provides a direct connection channel between the electrical connection component and the metal conductive strip track. This design reduces the resistance and signal interference, ensuring the stability and efficiency of the current or signal during the transmission process. At the same time, it also simplifies the connection structure, reduces the failure rate, and improves the reliability and durability of the bracelet.

[0016] As an improvement, the adjustable connector is a C-shaped connector. A semi-enclosed mounting cavity matching the functional watch band is formed between the first clamping body and the second clamping body of the C-shaped connector. The electrode module is mounted on the first clamping body. The electrical connector is a spring pin provided at the lower end of the first clamping body. A conductive sliding groove is provided along the length direction of the silicone watch band substrate corresponding to the spring pin. The lower end of the spring pin passes through the conductive sliding groove and directly abuts against the upper end of the metal conductive strip rail to achieve the electrical pulse transmission between the host and the electrode module. Through its unique semi-enclosed mounting cavity design, the C-shaped connector can closely and flexibly adapt to watch bands of different shapes and functions. This design not only simplifies the installation process but also improves the connection stability and reliability, enabling users to easily replace or adjust the watch band to meet different wearing needs or scenarios; the electrical connector is in the form of a spring pin provided at the lower end of the first clamping body, which ensures efficient and stable electrical connection; the spring pin can accurately pass through the conductive sliding groove on the silicone watch band substrate and directly abut against the metal conductive strip rail, realizing seamless and low-impedance electrical pulse transmission between the host and the electrode module. This direct-contact connection method reduces signal attenuation and interference and improves the overall performance of the device.

[0017] As an improvement, the adjustable connection assembly includes a flat connector and an adjustment screw provided at the lower end of the flat connector. The electrode module is mounted on the flat connector. The electrical connector is a conductive spring sleeved on the outer periphery of the adjustment screw. A plurality of adjustment holes for the adjustment screw to pass through are provided along the length direction on both the silicone watch band substrate and the metal conductive strip rail. The conductive spring directly abuts against the metal conductive strip rail to achieve the electrical pulse transmission between the host and the electrode module. The setting of the adjustment screw allows users to adjust the contact pressure and position between the electrode module and the metal conductive strip rail according to actual needs. This adjustability ensures stable electrical connection regardless of the thickness or shape change of the silicone watch band, thus adapting to the wrist sizes and wearing habits of different users; the conductive spring is sleeved on the outer periphery of the adjustment screw, which not only provides good elastic contact but also ensures close fit with the metal conductive strip rail. This design effectively reduces the resistance and signal attenuation in the electrical connection and ensures efficient and stable electrical pulse transmission between the host and the electrode module.

[0018] As an improvement, one end of the fixing member is provided with a fixing structure. The fixing structure includes a mounting groove provided at one end of the fixing member for inserting a metal conductive bar track, a mounting through hole provided at the upper end of the mounting groove corresponding to the metal conductive bar track, and a threaded hole provided at one end of the metal conductive bar track corresponding to the mounting through hole. When the metal conductive bar track is inserted into the mounting groove, a fixing screw passes through the mounting through hole and is threadedly connected to the threaded hole. Through the design of the mounting groove, the metal conductive bar track can be accurately and stably inserted into the fixing member. This plug-in design not only simplifies the installation process but also ensures the stability of the metal conductive bar track during use, avoiding electrical connection problems caused by loosening or displacement. The mounting through hole corresponds to the threaded hole at one end of the metal conductive bar track, enabling the fixing screw to pass through the mounting through hole and achieve a threaded connection with the threaded hole. This connection method has extremely high reliability and durability, can withstand large tensile and shear forces, and ensures that the metal conductive bar track remains stable during long-term use.

[0019] As an improvement, the fixed connection component is a fixed connection seat for mounting an electrode module. The electrode module includes at least two electrode plates, and one end of the electrode plate is fixedly connected to one end of the metal conductive bar track. This design simplifies the electrical connection process, reduces resistance and signal attenuation. As the channel for electrical signal transmission, the high efficiency of the metal conductive bar track ensures that the electrode module can quickly and accurately transmit the monitored signals to the host for processing and analysis.

[0020] As an improvement, the fixing member is a fixed connection seat, which includes an upper fixing block and a lower fixing block. The electrode plate is arranged between the upper fixing block and the lower fixing block. The design of the upper fixing block and the lower fixing block provides a firm clamping environment for the electrode plate, effectively preventing the electrode plate from moving or loosening during use. This stability is crucial for ensuring continuous and high-quality contact between the electrode and the skin, thereby improving the accuracy and reliability of data collection.

[0021] As an improvement, the upper fixing block is provided with a limiting through hole for the electrode sheet, so that the upper end of the electrode sheet passes through the limiting through hole. The lower fixing block protrudes with a convex platform, and the shape of the convex platform is adapted to the lower end face of the electrode sheet so that the upper end face of the convex platform abuts against the lower end face of the electrode sheet. The lower end of the upper fixing block is provided with a limiting groove corresponding to the metal conductive strip rail, and the metal conductive strip rail is embedded inside the limiting groove. The upper fixing block is provided with a limiting through hole for the electrode sheet, so that the upper end of the electrode sheet can accurately pass through and be positioned in the limiting through hole. This design ensures the accurate position of the electrode sheet during the installation process, avoiding poor contact or signal distortion caused by position deviation; the shape of the convex platform of the lower fixing block is adapted to the lower end face of the electrode sheet, and the upper end face of the convex platform abuts against the lower end face of the electrode sheet. This design not only provides additional support force, but also ensures the stable fixation of the electrode sheet in the vertical direction, reducing looseness caused by vibration or external force; the limiting groove provided at the lower end of the upper fixing block corresponding to the metal conductive strip rail enables the metal conductive strip rail to be firmly embedded therein. This design not only improves the installation stability of the metal conductive strip rail, but also avoids problems such as poor contact or detachment caused by vibration or external force.

[0022] As an improvement, the metal conductive strip rails are evenly and dispersedly embedded inside the silicone watch band base body. As a key component for electrical signal transmission, the evenly and dispersedly embedded design of the metal conductive strip rails ensures the stable transmission of electrical signals throughout the silicone watch band base body. This layout reduces signal attenuation and interference, improves the conduction efficiency, and thus ensures the accuracy and reliability of the device in aspects such as monitoring and data transmission.

[0023] As an improvement, on the side of the fixing member close to the fixed watch band, there is an adjustment through hole for the fixed watch band to pass through. The adjustment through hole is provided for the fixed watch band to pass through. When wearing, by tightening the fixed watch band, the bracelet can be firmly fixed on the user's wrist. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] The following further describes the present utility model in detail with reference to the drawings and specific embodiments:

[0025] Figure 1 Schematic structural diagram of a bracelet watch band with a conductive function for Embodiment 1;

[0026] Figure 2 Exploded view of the functional watch band and the fixing member for Embodiment 1;

[0027] Figure 3 Schematic cross-sectional structural diagram of the electrode module for Embodiment 1;

[0028] Figure 4 Schematic structural diagram of a bracelet watch band with a conductive function for Embodiment 2;

[0029] Figure 5Exploded view of the functional strap and the fixing member in Embodiment 2;

[0030] Figure 6 Schematic cross-sectional structure diagram of the electrode module in Embodiment 2;

[0031] Figure 7 Exploded view of the functional strap and the fixing member in Embodiment 3.

[0032] The markings in the above figures are respectively: 1, functional strap; 1.1, silicone strap base; 1.2, metal conductive strip track; 2, main body; 3, fixing member; 3.1, adjusting through hole; 4, fixing strap; 5, electrode plate; 6, C-shaped connecting seat; 6.1, first clamping body; 6.2, second clamping body; 6.3, semi-enclosed mounting cavity; 7, spring pin; 8, conductive sliding groove; 9, planar connecting seat; 10, adjusting screw; 11, conductive spring; 12, adjusting hole; 13, fixing structure; 13.1, mounting groove; 13.2, mounting through hole; 13.3, threaded hole; 14, fixed connecting seat; 14.1, upper fixing block; 14.1.1, limiting through hole; 14.1.2, limiting groove; 14.2, lower fixing block; 14.2.1, boss. Detailed implementation manners

[0033] In the present utility model, it should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial direction", "plane direction", "circumferential direction", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for facilitating the description of the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present utility model.

[0034] Embodiment 1

[0035] As Figures 1 to 3 shown, the markings 1 to 8 and 13 are the markings in Embodiment 1, including a functional strap 1, a fixing member 3, and a fixing strap 4. The functional strap 1 includes a silicone strap base 1.1 and at least two metal conductive strip tracks 1.2 electrically connected between the main body 2 and the electrode module. One end of the silicone strap base 1.1 is connected to the main body 2; the metal conductive strip tracks 1.2 are embedded in the silicone strap base 1.1 along the length direction of the functional strap 1, and the electrode module is electrically connected to the metal conductive strip tracks 1.2 through a fixed connection assembly or an adjustable connection assembly. The fixing member 3 is connected to the end far from the main body 2. One end of the fixing strap 4 is connected to the main body 2, and the other end is connected to the functional strap 1 through the fixing member 3 to realize the wearing of the bracelet.

[0036] The adjustable connection component includes an adjustable connection seat for installing the electrode module. The electrode module includes at least two electrode sheets 5 and an electrical connector. The silicone strap base body 1.1 is provided with a non-closed structure at the corresponding positions of the electrical connector and the metal conductive bar rail 1.2 to enable the connection and communication between the two.

[0037] The adjustable connection seat is a C-shaped connection seat 6. A semi-enclosed installation cavity 6.3 matching the functional strap 1 is formed between the first clamping body 6.1 and the second clamping body 6.2 of the C-shaped connection seat 6. The electrode module is installed on the first clamping body 6.1. The electrical connector is a spring pin 7 arranged at the lower end of the first clamping body 6.1. The non-closed structure is a conductive chute 8. The conductive chute 8 is arranged on the silicone strap base body 1.1 along the length direction corresponding to the spring pin 7. The lower end of the spring pin 7 passes through the conductive chute 8 and directly abuts against the upper end of the metal conductive bar rail 1.2 to realize the electrical pulse transmission between the host 2 and the electrode module.

[0038] One end of the fixing member 3 is provided with a fixing structure 13. The fixing structure 13 includes an installation groove 13.1 provided at one end of the fixing member 3 for the metal conductive bar rail 1.2 to be inserted, an installation through hole 13.2 provided at the upper end of the installation groove 13.1 corresponding to the metal conductive bar rail 1.2, and a threaded hole 13.3 provided at one end of the metal conductive bar rail 1.2 corresponding to the installation through hole 13.2. The metal conductive bar rail 1.2 is inserted into the installation groove 13.1 so that the fixing screw passes through the installation through hole 13.2 and is threadedly connected to the threaded hole 13.3.

[0039] The metal conductive bar rails 1.2 are evenly and dispersedly embedded inside the silicone strap base body 1.1.

[0040] One side of the fixing member 3 close to the fixed strap 4 is provided with an adjustment through hole 3.1 for the fixed strap 4 to pass through.

[0041] Embed at least two metal conductive strip tracks 1.2 inside the silicone watch band base body 1.1, and electrically connect one side of the metal conductive strip track 1.2 to the host 2. The other side of the metal conductive strip track 1.2 is inserted into the installation groove 13.1, and a fixing screw passes through the installation through hole 13.2 and is threadedly connected to the threaded hole 13.3. The electrode sheet 5 is connected to one end of the spring needle 7 through the first clamping body 6.1. The functional watch band 1 passes through the semi-surrounding installation cavity 6.3, so that the other end of the spring needle 7 passes through the conductive sliding groove 8 and directly abuts against the upper end of the metal conductive strip track 1.2 to realize the electrical pulse transmission between the host 2 and the electrode module. Apply an external force to the functional watch band 1 and the metal conductive strip track 1.2 inside it. When the applied force is greater than the yield strength of the metal conductive strip track 1.2, the functional watch band 1 is bent and maintains the bent shape, realizing the bending and shaping of the functional watch band 1. The shaped functional watch band 1 can fit the skin in the natural state. During the wearing process, only need to operate the fixing watch band 4 to pass through the adjustment through hole 3.1 for fixation, and by sliding the C-shaped connecting seat 6, the position of the electrode sheet 5 can be adjusted to realize the precise stimulation of the inner side of the wrist by the electrode sheet 5.

[0042] Embodiment 2

[0043] As Figures 4 to 6 shown, the marks 1 to 5, 9 to 13 are the marks of Embodiment 2, including the functional watch band 1, the fixing member 3, and the fixing watch band 4. The functional watch band 1 includes a silicone watch band base body 1.1 and at least two metal conductive strip tracks 1.2 electrically connected between the host 2 and the electrode module. One end of the silicone watch band base body 1.1 is connected to the host 2; the metal conductive strip tracks 1.2 are embedded in the silicone watch band base body 1.1 along the length direction of the functional watch band 1, and the electrode module is electrically connected to the metal conductive strip tracks 1.2 through a fixed connection component or an adjustable connection component. The fixing member 3 is connected to the end far from the host 2. One end of the fixing watch band 4 is connected to the host 2, and the other end is connected to the functional watch band 1 through the fixing member 3 to realize the wearing of the bracelet.

[0044] The adjustable connection component includes an adjustable connection seat for installing the electrode module. The electrode module includes at least two electrode sheets 5 and an electrical connection member. The silicone watch band base body 1.1 is provided with a non-closed structure at the corresponding positions of the electrical connection member and the metal conductive strip track 1.2 to realize the connection and communication between the two.

[0045] The adjustable connection component includes a planar connection seat 9 and an adjustment screw 10 provided at the lower end of the planar connection seat 9. The electrode module is installed on the planar connection seat 9. The electrical connection member is a conductive spring 11 sleeved on the outer periphery of the adjustment screw 10. A plurality of adjustment holes 12 for the adjustment screw 10 to pass through are provided along the length direction on the silicone watch band base body 1.1 and the metal conductive strip track 1.2. The conductive spring 11 directly abuts against the metal conductive strip track 1.2 to realize the electrical pulse transmission between the host 2 and the electrode module.

[0046] One end of the fixing member 3 is provided with a fixing structure 13. The fixing structure 13 includes a mounting groove 13.1 provided at one end of the fixing member 3 for inserting the metal conductive strip rail 1.2, a mounting through hole 13.2 corresponding to the metal conductive strip rail 1.2 and provided at the upper end of the mounting groove 13.1, and a threaded hole 13.3 corresponding to the mounting through hole 13.2 and provided at one end of the metal conductive strip rail 1.2. When the metal conductive strip rail 1.2 is inserted into the mounting groove 13.1, a fixing screw passes through the mounting through hole 13.2 and is threadedly connected to the threaded hole 13.3.

[0047] The metal conductive strip rails 1.2 are evenly and dispersedly embedded inside the silica gel watch band base body 1.1.

[0048] One side of the fixing member 3 close to the fixing watch band 4 is provided with an adjustment through hole 3.1 for the fixing watch band 4 to pass through.

[0049] Not less than two metal conductive strip rails 1.2 are embedded inside the silica gel watch band base body 1.1, and one side of the metal conductive strip rail 1.2 is electrically connected to the main body 2. The other side of the metal conductive strip rail 1.2 is inserted into the mounting groove 13.1, and a fixing screw passes through the mounting through hole 13.2 and is threadedly connected to the threaded hole 13.3. The electrode piece 5 is connected to one end of the adjustment screw 10 through the flat connecting seat 9. The flat connecting seat 9 is mounted on one end of the silica gel watch band base body 1.1 close to the wearing wrist. The non-closed structure is a plurality of adjustment holes 12 provided along the length direction on both the silica gel watch band base body 1.1 and the metal conductive strip rails 1.2 for the adjustment screw 10 to pass through. The conductive spring 11 is sleeved on the outer periphery of the adjustment screw 10, and then the other end of the adjustment screw 10 passes through the adjustment hole 12 and is movably connected to the metal conductive strip rail 1.2. The conductive spring 11 directly abuts against the metal conductive strip rail 1.2 to realize the electrical pulse transmission between the main body 2 and the electrode module. An external force is applied to the functional watch band 1 and the metal conductive strip rails 1.2 inside it. When the applied force is greater than the yield strength of the metal conductive strip rail 1.2, the functional watch band 1 is bent and maintains the bent shape, realizing the bending and shaping of the functional watch band 1. The shaped functional watch band 1 can fit the skin in the natural state. During the wearing process, only the fixing watch band 4 needs to be operated to pass through the adjustment through hole 3.1 for fixation, and the position of the electrode piece 5 can be adjusted by the adjustment hole 12 through which the adjustment screw 10 passes, so as to realize the precise stimulation of the inner side of the wrist by the electrode piece 5.

[0050] Embodiment III

[0051] As Figure 7As shown, marks 1 to 5 and 14 are marks in Embodiment 3, including a functional watch band 1, a fixing member 3, and a fixing watch band 4. The functional watch band 1 includes a silicone watch band base body 1.1 and at least two metal conductive strip tracks 1.2 electrically connected between the host 2 and the electrode module. One end of the silicone watch band base body 1.1 is connected to the host 2; the metal conductive strip tracks 1.2 are embedded in the silicone watch band base body 1.1 along the length direction of the functional watch band 1, and the electrode module is electrically connected to the metal conductive strip tracks 1.2 through a fixed connection component or an adjustable connection component. The fixing member 3 is connected to the end far from the host 2. One end of the fixing watch band 4 is connected to the host 2, and the other end is connected to the functional watch band 1 through the fixing member 3 to realize the wearing of the bracelet.

[0052] The fixed connection component is a fixed connection seat 14 for installing the electrode module. The electrode module includes at least two electrode plates 5, and one end of the electrode plate 5 is fixedly connected to one end of the metal conductive strip track 1.2.

[0053] The fixing member is the fixed connection seat 14. Preferably, the fixed connection seat 14 can be separately arranged from the fixing member 3. The fixed connection seat 14 includes an upper fixing block 14.1 and a lower fixing block 14.2, and the electrode plate 5 is arranged between the upper fixing block 14.1 and the lower fixing block 14.2.

[0054] The upper fixing block 14.1 is provided with a limiting through hole 14.1.1 for the electrode plate 5, so that the upper end of the electrode plate 5 passes through the limiting through hole 14.1.1. The lower fixing block 14.2 is protrudingly provided with a boss 14.2.1, and the shape of the boss 14.2.1 is adapted to the lower end face of the electrode plate 5 so that the upper end face of the boss 14.2.1 abuts against the lower end face of the electrode plate 5. The lower end of the upper fixing block 14.1 is provided with a limiting groove 14.1.2 corresponding to the metal conductive strip track 1.2, and the metal conductive strip track 1.2 is embedded into the inside of the limiting groove 14.1.2.

[0055] The metal conductive strip tracks 1.2 are evenly and dispersedly embedded in the inside of the silicone watch band base body 1.1.

[0056] One side of the fixing member 3 close to the fixing watch band 4 is provided with an adjusting through hole 3.1 for the fixing watch band 4 to pass through.

[0057] At least two metal conductive rails 1.2 are embedded in the silicone watchband substrate 1.1, and one side of the metal conductive rail 1.2 is electrically connected to the host 2, and the other side of the metal conductive rail 1.2 is fixedly connected to the electrode sheet 5. When installing the fixed connection seat 14, the connection between the metal conductive rail 1.2 and the electrode sheet 5 is embedded in the limiting groove 14.1.2, and the upper end of the electrode sheet 5 passes through the limiting through hole 14.1.1, and the lower end surface of the electrode sheet 5 is connected to the upper end of the boss 14.2.1. The surfaces of the functional watch band 1 are against each other, and an external force is applied to the functional watch band 1 and the metal conductive track 1.2 inside thereof. When the applied force is greater than the yield strength of the metal conductive track 1.2, the functional watch band 1 is bent and maintains the bent shape, thereby realizing the bending shaping of the functional watch band 1. The shaped functional watch band 1 can fit the skin in a natural state. During wearing, it is only necessary to operate the fixed watch band 4 to pass through the adjustment hole 3.1 to fix it, and the electrode sheet 5 is in contact with the skin to achieve the purpose of stimulating the nerves under the skin.

[0058] The above is an exemplary description of the utility model in conjunction with the accompanying drawings. It is obvious that the specific implementation of the utility model is not limited to the above-mentioned method. As long as various non-substantial improvements are made using the technical solution of the utility model, or the concept and technical solution of the utility model are directly applied to other occasions without improvement, they are all within the protection scope of the utility model.

Claims

1. A bracelet strap with conductive function, characterized in that: including A functional watch band, comprising a silicone watch band base body and at least two metal conductive rails electrically connected between a main body and an electrode module. One end of the silicone watch band base body is connected to the main body. The metal conductive rails are embedded in the silicone watch band base body along the length direction of the functional watch band. And the electrode module is electrically connected to the metal conductive rails through a fixed connection component or an adjustable connection component; A fixing member, connected to the end far from the main body; A fixed watch band, with one end connected to the main body and the other end connected to the functional watch band through the fixing member to realize the wearing of the bracelet.

2. The bracelet strap with conductive function according to claim 1, characterized in that: The adjustable connection component includes an adjustable connection seat for installing the electrode module. The electrode module includes at least two electrode plates and an electrical connection member. The silicone watch band base body is provided with a non-closed structure at the position corresponding to the electrical connection member and the metal conductive rail to enable the connection between the two.

3. The bracelet strap with conductive function according to claim 2, characterized in that: The adjustable connection seat is a C-shaped connection seat. A semi-surround installation cavity matching the functional watch band is formed between the first clamping body and the second clamping body of the C-shaped connection seat. The electrode module is installed on the first clamping body. The electrical connection member is a spring pin arranged at the lower end of the first clamping body. The silicone watch band base body is provided with a conductive sliding groove along the length direction corresponding to the spring pin. The lower end of the spring pin passes through the conductive sliding groove and directly abuts against the upper end of the metal conductive rail to realize the electrical pulse transmission between the main body and the electrode module.

4. The bracelet strap with a conductive function according to claim 2, wherein: The adjustable connection component includes a flat connection seat and an adjusting screw arranged at the lower end of the flat connection seat. The electrode module is installed on the flat connection seat. The electrical connection member is a conductive spring sleeved on the outer periphery of the adjusting screw. A plurality of adjusting holes for the adjusting screw to pass through are arranged on the silicone watch band base body and the metal conductive rail along the length direction. The conductive spring directly abuts against the metal conductive rail to realize the electrical pulse transmission between the main body and the electrode module.

5. The bracelet strap with a conductive function according to claim 2, characterized in that: One end of the fixing member is provided with a fixing structure. The fixing structure includes an installation groove arranged at one end of the fixing member for the metal conductive rail to be inserted, an installation through hole arranged at the upper end of the installation groove corresponding to the metal conductive rail, and a threaded hole arranged at one end of the metal conductive rail corresponding to the installation through hole. The metal conductive rail is inserted into the installation groove so that a fixing screw passes through the installation through hole and is threadedly connected to the threaded hole.

6. The bracelet strap with a conductive function according to claim 1, wherein: The fixed connection component is a fixed connection seat for installing the electrode module. The electrode module includes at least two electrode plates, and one end of the electrode plate is fixedly connected to one end of the metal conductive rail.

7. The bracelet strap with a conductive function according to claim 6, characterized in that: The fixing member is a fixed connection seat, and the fixed connection seat includes an upper fixing block and a lower fixing block. The electrode plate is arranged between the upper fixing block and the lower fixing block.

8. The bracelet strap with a conductive function according to claim 7, wherein: The upper fixing block is provided with a limiting through hole for the electrode plate, so that the upper end of the electrode plate passes through the limiting through hole. The lower fixing block protrudes with a convex platform. The shape of the convex platform is adapted to the lower end face of the electrode plate so that the upper end face of the convex platform abuts against the lower end face of the electrode plate. The lower end of the upper fixing block is provided with a limiting groove corresponding to the metal conductive rail, and the metal conductive rail is embedded inside the limiting groove.

9. The bracelet strap with a conductive function according to claim 1, wherein: The metal conductive rails are evenly and dispersedly embedded in the interior of the silicone watch band base body.

10. The bracelet strap with a conductive function according to claim 1, characterized in that: One side of the fixing member close to the fixed watch band is provided with an adjusting through hole for the fixed watch band to pass through.