Solar intelligent ring

The design of detachable connection between flexible solar panels and the ring body solves the problem of difficult removal of solar panels, enabling convenient replacement and cost savings, and improving product performance.

CN223913594UActive Publication Date: 2026-02-17SHENZHEN GUANGYIN TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520807755.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-27
Publication Date
2026-02-17
Estimated Expiration
2035-04-27

AI Technical Summary

Technical Problem

The solar panels of existing solar-powered smart rings are difficult to disassemble, leading to maintenance difficulties, the inability to replace them with high-efficiency solar panels in a timely manner, increased usage costs, and limitations on performance improvement.

Method used

The flexible solar panel is detachably connected to the ring body. The electrode terminals are detachably connected by a snap-fit ​​groove structure and conductive components. The design of the elastic seal and snap-fit ​​components ensures sealing and stability.

Benefits of technology

It enables convenient disassembly and installation of flexible solar panels, facilitates replacement, reduces maintenance difficulty, enhances the product's technological upgrade capabilities, and saves costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a solar intelligent ring. The solar intelligent ring comprises a ring main body and a flexible solar panel, two connecting parts are arranged on the outer surface of the ring main body, the two connecting parts are conductively connected to the positive electrode and the negative electrode of an energy storage battery of the ring main body in a one-to-one correspondence mode, and the flexible solar panel covers the outer surface of the ring main body in a surrounding mode. The flexible solar panel is detachably connected to the ring main body, the flexible solar panel is provided with two electrode terminals, the two electrode terminals are conductively connected to the positive electrode and the negative electrode of the flexible solar panel in a one-to-one correspondence manner, and the two electrode terminals are detachably connected to the two connecting parts in a one-to-one correspondence manner; the positive electrode of the energy storage battery is conductively connected to the positive electrode of the flexible solar panel, and the negative electrode of the energy storage battery is conductively connected to the negative electrode of the flexible solar panel. According to the solar intelligent ring disclosed by the utility model, the solar panel can be conveniently detached and replaced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to intelligent ring technical field, especially in solar energy intelligent ring. BACKGROUND

[0002] The intelligent ring is a kind of wearable equipment, integrated sensor, communication module and other electronic components, for recording or transmitting the physiological data of user.

[0003] The solar panel of existing solar energy intelligent ring is usually fixed by using glue paste.This kind of fixing mode in actual use process, once solar panel appears damage, such as being impacted by external force and leading to panel breakage, the power generation efficiency is seriously reduced after long-term use etc., since it is difficult to disassemble, maintenance personnel often need to spend a lot of time and energy to try to separate solar panel and ring main body, even possibly because of disassembly difficulty is too big and has to give up maintenance, directly replaces entire ring, which undoubtedly greatly increases the use cost of user.Moreover, with the continuous progress of solar energy technology, new high-efficiency solar panel constantly emerges, user cannot conveniently disassemble old solar panel on intelligent ring and replace with new high-efficiency solar panel, so that intelligent ring cannot be timely subjected to the advantage brought by technical development, limits the improvement of product performance. SUMMARY

[0004] The main purpose of the utility model is to provide an intelligent ring, to facilitate the disassembly and replacement of its solar panel.

[0005] To achieve the above object, the solar energy intelligent ring provided by the utility model comprises:

[0006] A ring main body, the outer surface of the ring main body is provided with two connecting parts, the two connecting parts are respectively and one by one conductively connected to the positive electrode and negative electrode of an energy storage battery of the ring main body; and

[0007] A flexible solar panel, the flexible solar panel is wrapped around and covers the outer surface of the ring main body, the flexible solar panel is detachably connected to the ring main body, the flexible solar panel is provided with two electrode terminals, the two electrode terminals are respectively and one by one conductively connected to the positive electrode and negative electrode of the flexible solar panel.

[0008] Among them, the two electrode terminals are respectively and one by one detachably connected to the two connecting parts, so that the positive electrode of the energy storage battery is conductively connected to the positive electrode of the flexible solar panel, and the negative electrode of the energy storage battery is conductively connected to the negative electrode of the flexible solar panel.

[0009] In an embodiment, the flexible solar panel is a flexible perovskite solar panel.

[0010] In an embodiment, the flexible solar panel comprises a panel body and two clamping members, the two clamping members are fixedly connected to the panel body respectively, the two clamping members are arranged on two opposite sides of the panel body in the length direction respectively, one electrode terminal is fixedly connected to one clamping member, another electrode terminal is fixedly connected to another clamping member, and the two clamping members are buckled to the two connecting parts respectively.

[0011] In an embodiment, the two connecting parts each comprise a clamping groove structure and a conductive member, the two clamping groove structures are arranged at intervals, the groove bottom of the two clamping groove structures is connected with one conductive member, the conductive member of one clamping groove structure is used for electrically connecting to the positive electrode of the energy storage battery of the ring body, and the conductive member of another clamping groove structure is used for electrically connecting to the negative electrode of the energy storage battery of the ring body.

[0012] The two clamping members are each provided with the electrode terminal.

[0013] When the two clamping members are clamped in the two clamping groove structures respectively, the conductive members with the same polarity and the electrode terminals are in contact with each other.

[0014] In an embodiment, the clamping groove structure is provided with a sealing portion inwardly protruding from the slot opening, the sealing portion, the groove bottom and the groove wall of the clamping groove structure form a sealing cavity, and the sealing portion is provided with a through hole.

[0015] The clamping member comprises a column body and an elastic sealing body, the column body protrudes from the surface of the flexible solar panel, the end of the column body away from the flexible solar panel is fixedly connected with the electrode terminal, and the elastic sealing body surrounds the central axis of the column body and is fixedly connected to the circumferential surface of the column body.

[0016] When the clamping member is inserted into the clamping groove structure, the elastic sealing body is located in the sealing cavity and abuts against the end face of the through hole facing the groove bottom.

[0017] In an embodiment, the material of the elastic sealing body is rubber.

[0018] In an embodiment, the two conductive members each comprise an elastic portion and a conductive portion, the first end of the elastic portion is fixedly connected to the groove bottom of the clamping groove structure, the second end of the conductive portion is fixedly connected to the conductive portion, the conductive portion of one conductive member is used for electrically connecting to the positive electrode of the energy storage battery, and the conductive portion of another conductive member is used for electrically connecting to the negative electrode of the energy storage battery.

[0019] When the clamping member is inserted into the clamping groove structure, the elastic portion is compressed, the conductive portion abuts against the electrode terminal, and the elastic sealing body abuts against the end face of the through hole facing the groove bottom.

[0020] In an embodiment, the ring body comprises:

[0021] The ring body comprises:

[0022] The energy storage battery is mounted in the ring and is in conductive connection with the two connection parts;

[0023] The two charging terminals are respectively in conductive connection with the positive and negative poles of the energy storage battery;

[0024] The biosensor is mounted in the ring and is in conductive connection with the energy storage battery, and the biosensor is used for detecting physiological parameters;

[0025] The wireless communication module is mounted in the ring and is in conductive connection with the energy storage battery; and

[0026] The charging and discharging control circuit module is in conductive connection between the positive and negative poles of the flexible solar panel and the positive and negative poles of the energy storage battery.

[0027] In an embodiment, the ring body comprises:

[0028] In an embodiment, the depth of the accommodation groove is greater than or equal to the thickness of the flexible solar panel.

[0029] In the technical scheme of the present application, the flexible solar panel is detachably connected to the ring body, and the two electrode terminals are respectively and one-to-one detachably connected to the two connection parts, so that the flexible solar panel is convenient to detach and install, and further convenient to replace. BRIEF DESCRIPTION OF DRAWINGS

[0030] In order to more clearly illustrate the technical scheme in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained according to the structures shown in these drawings without creative labor.

[0031] Figure 1 The structure diagram of one embodiment of the solar energy intelligent ring provided by the present application;

[0032] Figure 2 The structure diagram of one embodiment of the solar energy intelligent ring provided by the present application; Figure 1Structure schematic view of the solar energy intelligent ring from another perspective;

[0033] Figure 3 Structure schematic view of the ring main body in the solar energy intelligent ring; Figure 1

[0034] Figure 4 Structure schematic view of the solar energy intelligent ring from another perspective; Figure 1

[0035] Figure 5 Structure schematic view of the solar energy intelligent ring from another perspective; Figure 4

[0036] Brief description of the drawings:

[0037] 100, solar energy intelligent ring; 10, ring main body; 10a, containing groove; 11, finger ring; 11a, charging hole; 12, biological sensor; 20, connecting part; 20a, sealed cavity; 20b, through hole; 21, clamping groove structure; 211, sealing part; 22, conductive part; 221, elastic part; 222, conductive part; 30, flexible solar panel; 31, plate body; 32, clamping part; 321, column body; 322, elastic sealing body; 40, electrode terminal.

[0038] The realization, functional features and advantages of the utility model will be further described with reference to the drawings in combination with the embodiments. Specific implementation

[0039] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.

[0040] It should be noted that if the embodiments of the utility model involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement condition, etc. between the components in a certain specific posture, and if the specific posture changes, the directional indications will also change accordingly.

[0041] ​​​In addition, if the description of "first", "second" and the like is involved in the embodiments of the present application, the description of "first", "second" and the like is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can be explicitly or implicitly included at least one of the features. In addition, if "and / or" or "and / or" appears throughout the text, it means that the three parallel schemes include the A scheme, or the B scheme, or the A and B schemes. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of the ordinary skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, nor in the protection scope required by the present application.

[0042] The utility model provides a solar energy intelligence ring.

[0043] Please refer to Figure 1 and Figure 5 In an embodiment of the present application, the solar energy intelligent ring 100 includes a ring body 10 and a flexible solar panel 30. The outer surface of the ring body 10 is provided with two connecting parts 20. The two connecting parts 20 are respectively and one-to-one conductive connected to the positive and negative poles of the energy storage battery of the ring body 10, that is, one connecting part 20 is conductive connected to the positive pole of the energy storage battery, and the other connecting part 20 is conductive connected to the negative pole of the energy storage battery. The flexible solar panel 30 is wrapped around the outer surface of the ring body 10, and the flexible solar panel 30 is detachably connected to the ring body 10. The flexible solar panel 30 is provided with two electrode terminals 40, and the two electrode terminals 40 are respectively and one-to-one conductive connected to the positive and negative poles of the flexible solar panel 30, that is, one electrode terminal 40 is conductive connected to the positive pole of the flexible solar panel 30, and the other electrode terminal 40 is conductive connected to the negative pole of the flexible solar panel 30. Among them, the two electrode terminals 40 are respectively and one-to-one detachably connected to the two connecting parts 20, so that the positive pole of the energy storage battery is conductive connected to the positive pole of the flexible solar panel 30, and the negative pole of the energy storage battery is conductive connected to the negative pole of the flexible solar panel 30. That is, the electrode terminal 40 of the positive pole is detachably connected to the connecting part 20 of the positive pole, and the electrode terminal 40 of the negative pole is detachably connected to the connecting part 20 of the negative pole.

[0044] It can be understood that the flexible solar panel 30 is detachably connected to the ring body 10, and the two electrode terminals 40 are respectively and one-to-one detachably connected to the two connecting parts 20, so that the flexible solar panel 30 is convenient to disassemble and install, and further convenient to disassemble and replace the flexible solar panel 30. On the other hand, when the flexible solar panel 30 is iterated, the user can only replace the flexible solar panel 30 to enjoy the advantages of the new generation of flexible solar panel 30.

[0045] It should be noted that the connection mode of the flexible solar panel 30 detachably connected to the ring body 10 can be a buckle connection, a magic tape connection, or other effective detachable connection modes.

[0046] The connection mode of the two electrode terminals 40 respectively and one by one detachably connected to the two connecting portions 20 can be a buckle connection, a magnetic attraction connection, or other effective detachable connection modes.

[0047] Please refer to Figure 1 and Figure 2 In an embodiment of the present application, the flexible solar panel 30 is a flexible perovskite solar panel. Understandably, the flexible perovskite solar panel has good flexibility and can better adapt to the curved shape of the ring body 10. Moreover, the flexible perovskite solar panel has high conversion efficiency and can improve the endurance of the solar intelligent ring 100.

[0048] In an embodiment of the present application, the flexible solar panel 30 includes a panel body 31 and two clamping pieces 32, the two clamping pieces 32 are respectively fixedly connected to the panel body 31, the two clamping pieces 32 are respectively arranged on two side edges of the panel body 31 opposite in the length direction, one electrode terminal 40 is fixedly connected to one clamping piece 32, the other electrode terminal 40 is fixedly connected to the other clamping piece 32, and the two clamping pieces 32 are respectively and one by one buckled to the two connecting portions 20. Understandably, the two clamping pieces 32 are respectively arranged on two side edges of the flexible solar panel 30 opposite in the length direction, so that the extension of the flexible solar panel 30 on the outer surface of the ring body 10 can be realized by fixing the two clamping pieces 32, and the detachable connection of the flexible solar panel 30 to the ring body 10 can also be realized. Moreover, this mode realizes the detachable connection between the flexible solar panel 30 and the ring body 10, the conductive connection between the electrode terminal 40 and the connecting portion 20, and the buckle connection of the two clamping pieces 32 respectively and one by one to the two connecting portions 20, so as to simplify the overall structure and save costs.

[0049] Please refer to Figures 3 to 5In an embodiment of the utility model, two connecting parts 20 all include joint groove structure 21 and conducting part 22, two joint groove structures 21 are spaced apart, and the groove bottom of two joint groove structures 21 is connected with a conducting part 22, and the conducting part 22 of a joint groove structure 21 is used for electrically connecting the positive pole of the energy storage battery of ring body 10. The conducting part 22 of another joint groove structure 21 is used for electrically connecting the negative pole of the energy storage battery of ring body 10. Two joint pieces 32 are all equipped with electrode terminal 40. Among them, when two joint pieces 32 are correspondingly jointed in two joint groove structures 21, the conducting part 22 and electrode terminal 40 of the same polarity contact each other. That is, the joint piece 32 of the positive pole is jointed in the joint groove structure 21 of the positive pole, and the joint piece 32 of the negative pole is jointed in the joint groove structure 21 of the negative pole, so that the conducting part 22 of the positive pole and the electrode terminal 40 of the positive pole contact, and the conducting part 22 of the negative pole and the conducting part 22 of the negative pole contact.

[0050] Understandably, joint piece 32 and joint groove structure 21 are connected by the way of jointing, and this way is convenient to disassemble and install, and can realize the quick connection and separation of flexible solar panel 30 and ring body 10. By the groove bottom of two joint groove structures 21 being equipped with conducting part 22 and two joint pieces 32 being equipped with electrode terminal 40, the detachable connection between flexible solar panel 30 and ring body 10, the electrically connecting between electrode terminal 40 and connecting part 20 can be realized in joint piece 32 and joint groove structure 21, so that the overall structure can be simplified, and the cost can be saved. And, the structure is simple, stable and reliable.

[0051] Please refer to Figure 4 And Figure 5 In an embodiment of the utility model, the slot of joint groove structure 21 is inwardly provided with sealing part 211, sealing part 211 and the groove bottom and groove wall of joint groove structure 21 surround to form sealing cavity 20a, and sealing part 211 is provided with through hole 20b. Joint piece 32 includes column body 321 and elastic sealing body 322, column body 321 is protruded on the surface of flexible solar panel 30, one end of column body 321 away from flexible solar panel 30 is fixedly connected with electrode terminal 40, and elastic sealing body 322 surrounds the central axis of column body 321 and is fixedly connected to the circumferential side surface of column body 321. When joint piece 32 is inserted into joint groove structure 21, elastic sealing body 322 is located in sealing cavity 20a and abuts against the end face of through hole 20b towards the groove bottom, so as to form sealing, prevent water, dust and the like from entering joint groove structure 21 and affecting electrically connecting. Understandably, by arranging sealing part 211 and elastic sealing body 322, the jointing of joint piece 32 and joint groove structure 21 can be realized, and the sealing of sealing cavity 20a can also be realized.

[0052] Specifically, the column 321 is provided with a through hole, and the electrode terminal 40 can be connected to the positive or negative pole of the flexible solar panel 30 through a thin wire. The column 321 can be made of plastic, rubber or other effective insulating materials. The column 321 and the elastic sealing body 322 can be integrally formed; or the elastic sealing body 322 can be sleeved on the column 321 and then fixedly connected by using glue; or other effective fixing methods can be used. The material of the electrode terminal 40 can be silver, copper or other effective conductive materials. The electrode terminal 40 can be adhered to the column 321; or the electrode terminal 40 can be fixedly connected to the column 321 by interference fit; or other effective fixing methods can be used.

[0053] In use, when the clamping piece 32 is inserted into the clamping groove structure 21, the elastic sealing body 322 is extruded and deformed by the through hole 20b under the action of external force, and after the elastic sealing body 322 is extruded into the sealing cavity 20a, the elastic sealing body 322 is restored to abut against the end face of the through hole 20b, so that the clamping piece 32 is connected to the clamping groove structure 21. When the clamping piece 32 is pulled out of the clamping groove structure 21, the elastic sealing body 322 is extruded and deformed by the through hole 20b under the action of external force, so as to pass through the through hole 20b, thereby separating the clamping piece 32 from the clamping groove structure 21.

[0054] It should be noted that the elastic sealing body 322 can be made of rubber; or made of silica gel; or made of other effective elastic sealing materials.

[0055] Please refer to Figure 5 In an embodiment of the present application, the material of the elastic sealing body 322 is rubber. The rubber has good elasticity and sealing performance, and can effectively improve the sealing effect of the elastic sealing body 322.

[0056] Please refer to Figure 5 In an embodiment of the present application, each of the two conductive pieces 22 includes an elastic part 221 and a conductive part 222, the first end of the elastic part 221 is fixedly connected to the groove bottom of the clamping groove structure 21, and the second end of the conductive part 222 is fixedly connected to the conductive part 222. The conductive part 222 of one conductive piece 22 is used for electrically connecting the positive pole of the energy storage battery, and the conductive part 222 of the other conductive piece 22 is used for electrically connecting the negative pole of the energy storage battery. When the clamping piece 32 is inserted into the clamping groove structure 21, the elastic part 221 is compressed, and the conductive part 222 abuts against the electrode terminal 40, so that the elastic sealing body 322 abuts against the end face of the through hole 20b facing the groove bottom.

[0057] It can be understood that by providing the elastic part 221, the reliability of the conductive contact between the conductive part 222 and the electrode terminal 40 can be ensured, and the elastic force of the elastic part 221 can make the elastic sealing body 322 abut against the end face of the through hole 20b, thereby improving the reliability of the sealing.

[0058] It should be noted that the elastic part 221 can be a spring, can also be elastic rubber, and can also be other effective elastic parts.

[0059] The elastic part 221 is fixedly connected to the groove bottom of the clamping groove structure 21, which can be achieved by providing a mounting groove in the groove bottom, mounting the elastic part in the mounting groove, or by adhesive connection, or by other effective fixed connection modes.

[0060] The material of the conductive part 222 can be silver, can also be copper, and can also be other effective conductive materials.

[0061] The second end of the conductive part 222 is fixedly connected to the conductive part 222, which can be achieved by adhesive connection, can also be achieved by welding connection, or can be achieved by other effective fixed connection modes, which can be selected according to actual needs.

[0062] Please refer to Figures 1 to 3 In an embodiment of the present application, the ring body 10 includes a ring 11, an energy storage battery, a biological sensor 12, a wireless communication module, and a charge and discharge control circuit module. The ring 11 is provided with two connecting parts 20. The outer surface of the ring 11 is provided with two connecting parts 20, and the inner surface of the ring 11 is provided with two charging holes 11a. The energy storage battery is installed in the ring 11 and is in conductive connection with the two connecting parts 20. One charging terminal is located in one charging hole 11a and is in conductive connection with the positive electrode of the energy storage battery, and the other charging terminal is located in the other charging hole 11a and is in conductive connection with the negative electrode of the energy storage battery. In this way, the solar energy intelligent ring 100 can be supplemented with electric energy by using a charger. The biological sensor 12 is installed in the ring 11 and is in conductive connection with the energy storage battery. The biological sensor 12 is used to detect physiological parameters, such as a heart rate sensor, a body temperature sensor, etc. The wireless communication module is installed in the ring 11 and is used to realize wireless communication with other devices, such as a Bluetooth module, a Wi-Fi module, etc. The wireless communication module is in conductive connection with the energy storage battery. The positive and negative electrodes of the flexible solar panel are in conductive connection with the positive and negative electrodes of the energy storage battery through the charge and discharge control circuit module. The charge and discharge control circuit module is used to control the power output from the flexible solar panel to the energy storage battery, and can protect the energy storage battery. It should be noted that the heart rate sensor, the body temperature sensor, the Bluetooth module, the Wi-Fi module, etc. are all prior art. The external charger supplements the energy storage battery with electric energy through the two charging terminals, which is prior art. The charge and discharge control circuit module controls the output power of the flexible solar panel, which is also prior art.

[0063] Please refer to Figure 1 and Figure 3In an embodiment of the present application, the outer surface of the ring body 10 is provided with a receiving groove 10a around the central axis, and the flexible solar panel 30 is located in the receiving groove 10a. Understandably, the receiving groove 10a can further facilitate the installation and positioning of the flexible solar panel 30, and can limit the flexible solar panel 30 to a certain extent.

[0064] Please refer to Figure 1 and Figure 3 In an embodiment of the present application, the depth of the receiving groove 10a is greater than or equal to the thickness of the flexible solar panel 30. In this way, the flexible solar panel 30 can be flush with or slightly lower than the outer surface of the ring body 10, reducing the probability of impact and wear of the flexible solar panel 30 by external force, and prolonging its service life.

[0065] The above is only an exemplary embodiment of the present application, and does not limit the patent scope of the present application, and any equivalent structural transformation made by using the content of the present application specification and drawings, or direct / indirect application in other related technical fields is included in the patent protection scope of the present application.

Claims

1. A solar powered smart ring, characterized in that, The ring body is provided with two connecting parts on the outer surface, and the two connecting parts are respectively and one-to-one electrically connected to the positive and negative poles of the energy storage battery of the ring body; and The flexible solar panel is wrapped around the outer surface of the ring body, and is detachably connected to the ring body. The flexible solar panel is provided with two electrode terminals, and the two electrode terminals are respectively and one-to-one electrically connected to the positive and negative poles of the flexible solar panel. The two electrode terminals are respectively and one-to-one detachably connected to the two connecting parts, so that the positive pole of the energy storage battery is electrically connected to the positive pole of the flexible solar panel, and the negative pole of the energy storage battery is electrically connected to the negative pole of the flexible solar panel. The flexible solar panel is a flexible perovskite solar panel.

2. The solar powered smart ring of claim 1, wherein, The flexible solar panel includes a panel body and two clamping pieces. The two clamping pieces are respectively fixedly connected to the panel body, and are respectively arranged on two opposite side edges of the panel body in the length direction. One of the electrode terminals is fixedly connected to one of the clamping pieces, and the other electrode terminal is fixedly connected to the other clamping piece. The two clamping pieces are respectively and one-to-one buckled to the two connecting parts.

3. The solar powered smart ring of claim 1, wherein, The two connecting parts each include a clamping groove structure and a conductive piece. The two clamping groove structures are arranged at intervals, and the groove bottoms of the two clamping groove structures are connected to one of the conductive pieces. The conductive piece of one of the clamping groove structures is used for electrically connecting to the positive pole of the energy storage battery of the ring body, and the conductive piece of the other clamping groove structure is used for electrically connecting to the negative pole of the energy storage battery of the ring body.

4. The solar powered smart ring of claim 3, wherein, The two clamping pieces are each provided with the electrode terminal. When the two clamping pieces are respectively and one-to-one clamped in the two clamping groove structures, the conductive pieces and the electrode terminals of the same polarity are in contact with each other. The clamping groove structure is provided with a sealing portion inwardly protruding from the slot opening. The sealing portion, the groove bottom and the groove wall of the clamping groove structure form a sealing cavity. The sealing portion is provided with a through hole.

5. The solar powered smart ring of claim 4, wherein, The clamping piece includes a column body and an elastic sealing body. The column body protrudes from the surface of the flexible solar panel. The end of the column body away from the flexible solar panel is fixedly connected to the electrode terminal. The elastic sealing body surrounds the central axis of the column body and is fixedly connected to the peripheral side surface of the column body. When the clamping piece is inserted into the clamping groove structure, the elastic sealing body is located in the sealing cavity and abuts against the end face of the through hole facing the groove bottom. The material of the elastic sealing body is rubber.

6. The solar powered smart ring of claim 5, wherein, The two conductive pieces each include an elastic portion and a conductive portion. The first end of the elastic portion is fixedly connected to the groove bottom of the clamping groove structure, and the second end of the conductive portion is fixedly connected to the conductive portion. The conductive portion of one of the conductive pieces is used for electrically connecting to the positive pole of the energy storage battery, and the conductive portion of the other conductive piece is used for electrically connecting to the negative pole of the energy storage battery.

7. The solar powered smart ring of claim 6, wherein, When the clamping piece is inserted into the clamping groove structure, the elastic portion is compressed, the conductive portion abuts against the electrode terminal, and the elastic sealing body abuts against the end face of the through hole facing the groove bottom. The ring body includes:

8. The solar powered smart ring of claim 1, wherein, ​ The ring has two connection parts on its outer surface and two charging holes on its inner surface. The energy storage battery is installed in the ring and electrically connected with the two connection parts. Two charging terminals, one of which is located in one of the charging holes and electrically connected with the positive pole of the energy storage battery, and the other of which is located in the other charging hole and electrically connected with the negative pole of the energy storage battery. A biological sensor is installed in the ring and electrically connected with the energy storage battery, and is used to detect physiological parameters. A wireless communication module is installed in the ring and electrically connected with the energy storage battery. A charge and discharge control circuit module is used to electrically connect the positive and negative poles of the flexible solar panel with the positive and negative poles of the energy storage battery.

9. The solar intelligent ring of claim 1, wherein, The outer surface of the ring body has a receiving groove around its central axis, and the flexible solar panel is located in the receiving groove.

10. The solar powered smart ring of claim 9, wherein, The depth of the receiving groove is greater than or equal to the thickness of the flexible solar panel.