A multifunctional intelligent glasses

By designing flexible circuit boards and mobile batteries in smart glasses, and adjusting the shape of glasses with telescopic rods and limiting devices, the problem of excessive size and quality of smart glasses is solved, improving wear comfort and portability, reducing compression on the ears and head, and meeting the wear needs of different occasions.

CN111367083BActive Publication Date: 2025-05-27LIMING VOCATIONAL UNIV
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Patent Information

Application Number
CN202010295913.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2020-04-15
Publication Date
2025-05-27
Estimated Expiration
2040-04-15

AI Technical Summary

Technical Problem

Existing smart glasses are too large in size and mass due to limited battery capacity and frame structure, which affects wearing comfort and portability. At the same time, long-term wear will cause compression to the ears and head, leading to health problems.

Method used

A multifunctional intelligent glasses are designed, which are embedded with a flexible circuit board in the frame, move the battery into the wearer, and flexibly adjust and fix the glasses through a telescopic rod and limiting device to avoid direct contact with the head and reduce compression on the ears.

Benefits of technology

It improves the portability and wear comfort of smart glasses, reduces pressure on the ears and head, extends usage time, meets the wear needs of different occasions, and improves the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a multifunctional intelligent glasses, which includes a glasses body and an intelligent control module having a bone conduction module, a communication module, a light sensor, a camera and an MCU. The glasses body includes a frame and two temple arms. The bone conduction module, the communication module, the light sensor and the camera are arranged in the two temple arms, and the MCU is arranged in the frame. The wearing body includes a wearing frame and a storage battery and a charge-discharge circuit installed in the wearing frame. The storage battery is electrically connected to the power supply end of the intelligent control module. The wearing frame includes a first side telescopic rod, a second side telescopic rod and a top telescopic rod. The first end portions of the first side telescopic rod, the second side telescopic rod and the top telescopic rod are conductively rotatably hinged together, and clamping portions are arranged on the second ends of the first side telescopic rod and the second side telescopic rod. Compared with the prior art, the multifunctional intelligent glasses of the present invention not only improve the portability during use, but also are comfortable to wear and more beneficial to health, and have a good user experience.
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Description

Technical Field

[0001] The present invention relates to the technical field of smart glasses, and particularly to a multifunctional intelligent glasses. Background Art

[0002] Glasses are optical devices worn in front of the eyes to improve eyesight, protect the eyes or for decorative purposes. In short, glasses can be both tools for protecting the eyes and a kind of beauty decoration. They are also necessities for a large part of people's lives.

[0003] With the progress of society and the development of technology, smart glasses are increasingly appearing in daily life. In existing smart glasses, the main board, MCU, battery, bone conduction module, communication module, optical sensor and camera are usually arranged in the left and right temple arms, and power supply and control connections are achieved through wires. The bone conduction module, communication module, optical sensor, camera and MCU are intelligent control modules in the smart glasses. However, no matter which kind of smart glasses, they cannot do without a battery. Due to the limited space of the frame structure, the batteries of smart glasses are usually separately arranged in the left and right temple arms. Therefore, the disadvantages of existing smart glasses are becoming more and more obvious: first, not only the capacity of the battery is limited, but also the volume and mass of the glasses are relatively large, making it more difficult to ensure the comfort of daily use. Second, they are inconvenient to carry and not suitable for wearing during leisure or sports.

[0004] Furthermore, due to the weight of the glasses themselves and the structure, whether it is ordinary glasses or smart glasses, they will cause a burden on the human ear during long-term use. In the lightest case, the human ear aches, or the acupoints on the head clamped by the left and right temple arms are oppressed for a long time, resulting in poor blood circulation, easy swelling, and even blisters in hot summer. Even with the auxiliary support of nose pads, the pressure of the nose pads on the corresponding acupoints of the bridge of the nose causes poor blood circulation and leaves two deep marks on the bridge of the nose. Therefore, they will have an adverse impact on people's health (that is, whether people wearing glasses are in a leisure, learning or working state). Therefore, it causes great trouble to people, especially those who need to wear glasses for a long time to read or work.

[0005] In view of this, the inventor of this case has conducted in-depth research on the above problems, and thus this case has been produced. Summary of the Invention

[0006] The purpose of the present invention is to provide a multifunctional intelligent glasses, which not only improves the portability during use, but also is comfortable to wear and more beneficial to health, while meeting people's wearing needs for different glasses styles in different occasions, and having a good user experience.

[0007] In order to achieve the above purpose, the present invention adopts the following technical solutions:

[0008] A multifunctional intelligent glasses, comprising a glasses body and an intelligent control module, wherein the intelligent control module has a bone transmission module, a communication module, an optical sensor, a camera and an MCU, wherein the glasses body comprises a frame and two temples arranged on the frame, wherein the bone transmission module, the communication module, the optical sensor and the camera are arranged in the temples, wherein the MCU is arranged in the frame, wherein the bone transmission module, the optical sensor, the communication module and the camera are controlled and connected with the MCU, and further comprising a wearing body, wherein the wearing body comprises a wearing frame and a battery and a charging and discharging circuit installed in the wearing frame, wherein the battery is electrically connected to the charging and discharging circuit, wherein the battery is electrically connected to the power supply end of the intelligent control module, wherein the wearing frame comprises a first side telescopic rod, a second side telescopic rod and a top telescopic rod, wherein the top telescopic rod is in a first position and a second position. Between a side telescopic rod and a second side telescopic rod, a first end portion of the first side telescopic rod, a first end portion of the second side telescopic rod and a first end portion of the top telescopic rod are conductively rotatably hinged together, and a limiting device is installed on the top telescopic rod for limiting the position of the first side telescopic rod and the second side telescopic rod when they rotate to the same straight line; the second end of the top telescopic rod extends across the parietal bone of the human head and extends to the frontal bone of the human head, and the second ends of the first side telescopic rod and the second side telescopic rod extend to the sphenoid bones on both sides of the human head respectively, and the second ends of the first side telescopic rod and the second side telescopic rod are provided with a clamping part on a side surface away from the human head and electrically connected to the two temples in a one-to-one corresponding manner, and the glasses main body is detachably connected to the second ends of the first side telescopic rod and the second side telescopic rod through the clamping part.

[0009] Furthermore, the two clamping parts are respectively C-shaped clamping blocks which are integrally formed on the corresponding first side telescopic rod and the corresponding second side telescopic rod in a one-to-one correspondence. The inner wall of the C-shaped clamping mouth of the clamping block is provided with a bipolar elastic contact piece which is always in the C-shaped area of ​​the clamping block. Both the temples are provided with a conductive metal sheet extending along the length direction thereof and provided for the corresponding clamping mouth of the clamping block to contact and electrically conduct with the bipolar elastic contact piece in a one-to-one correspondence. The two temples are provided with wires connected to the conductive metal sheet and electrically connected to the bone transmission module, the optical sensor, the communication module, the camera and the MCU. A flexible circuit board is embedded in the frame, the flexible circuit board is electrically connected to the MCU, the wire is conductively connected to the flexible circuit board, and the charging and discharging circuit is electrically connected to the conductive metal sheet through the bipolar elastic contact piece to supply power to the glasses body.

[0010] Further, the first side telescopic rod has a first hinged section, a first elastic sheet body, and a first limiting section that is slidably connected to the first elastic sheet body and into which the first elastic sheet body is entirely inserted. A first side connection portion that is in contact electrical connection with the top telescopic rod and the second side telescopic rod is provided at the first end of the first hinged section. The second end of the first hinged section is fixedly connected to one end of the first elastic sheet body. The other two ends of the first elastic sheet body are free ends. A first conductive contact piece that extends along its length and is exposed is provided on the first elastic sheet section. A first chute into which the free end of the first elastic sheet body extends is provided on the first limiting section. A first metal contact that is in contact electrical connection with the first conductive contact piece and is used to form a loop is provided in the first chute. A first handle that is tightly clamped and limited and fixed to the first hinged section by screw thread cooperation is provided on the first limiting section. The clamping portion on the first side telescopic rod is provided on the first limiting section and is electrically connected to the first metal contact.

[0011] Further, the second side telescopic rod has a second hinged section, a second elastic sheet body, and a second limiting section that is slidably connected to the second elastic sheet body and into which the second elastic sheet body is entirely inserted. A second side connection portion that is in contact electrical connection with the top telescopic rod and the second side telescopic rod is provided at the first end of the second hinged section. A second conductive contact piece that extends along its length and is exposed is provided on the second elastic sheet section. A second chute into which the free end of the second elastic sheet body extends is provided on the second limiting section. A second metal contact that is in contact electrical connection with the second conductive contact piece and is used to form a loop is provided in the second chute. A second handle that is tightly clamped and limited and fixed to the second hinged section by screw thread cooperation is provided on the second limiting section. The clamping portion on the second side telescopic rod is provided on the second limiting section and is electrically connected to the second metal contact.

[0012] Further, the limiting device includes a limiting block for limiting and abutting when the first side telescopic rod and the second side telescopic rod rotate to the same straight line, and a pushing sleeve that is sleeved on the first end of the top telescopic rod and cooperates with the limiting block to push and limit the first side telescopic rod and the second side telescopic rod. The limiting block is fixedly connected to the first end of the top telescopic rod. A third handle that is tightly clamped and limited and fixed to the top telescopic rod portion by screw thread cooperation is provided on the pushing sleeve. A micro-projector with a projection direction consistent with the extension direction of the first end of the top telescopic rod is fixedly installed on the limiting block.

[0013] Furthermore, the top telescopic rod has a third hinge section, a third elastic section, and a third limiting section that is slidably connected to the third elastic section and into which the entire third elastic sheet is inserted. A top connection portion that is in contact electrical connection with the first side telescopic rod and the second side telescopic rod is provided at the first end of the third hinge section. The limiting block is fixedly connected to the top connection portion. A third conductive contact piece that extends along its length and is exposed is provided on the third elastic section. A third chute into which the free end of the third elastic sheet extends is provided on the third limiting section. A third metal contact that is in contact electrical connection with the second conductive contact piece is provided in the second chute. The third metal contact is in contact electrical connection with the third conductive contact piece to form a circuit. A fourth handle is provided on the third limiting section and is limited and fixed to the third hinge section in a tightening manner through screw-thread cooperation.

[0014] Furthermore, the two temple arms are hinged to the spectacle frame. The spectacle frame has a hinge pin shaft and spectacle frame hinge seats for the two temple arms to be respectively and correspondingly hinged. Both of the two temple arms have temple arm hinge portions that are hinged to the corresponding spectacle frame hinge seats. An inner conduction piece and an outer conduction piece that are spaced apart from the inner conduction piece are provided on the spectacle frame hinge seats. The inner conduction piece is arranged around the hinge pin shaft on the spectacle frame hinge seats. Both the inner conduction piece and the outer conduction piece have antennae for the temple arms to be in contact electrical connection. Both the inner conduction piece and the outer conduction piece are electrically connected to the flexible circuit board. The temple arm hinge portion includes conductive elastic pieces that are respectively arranged corresponding to the inner conduction piece and the outer conduction piece. The two temple arms are a first temple arm and a second temple arm respectively. The first temple arm is in contact electrical connection with the first side telescopic rod through a clamping portion. The second temple arm is in contact electrical connection with the second side telescopic rod through a clamping portion.

[0015] Furthermore, a temperature sensor is provided inside the spectacle frame. The sensing end of the temperature sensor is exposed outside the spectacle frame. The MCU is electrically connected to the temperature sensor. The spectacle body further includes a nose pad installed on the spectacle frame. A ceramic heating sheet or a far-infrared heating chip is built in the nose pad. The ceramic heating sheet or the far-infrared heating chip is electrically connected to the flexible circuit board.

[0016] Further, bone conduction headphones and a volume control switch for controlling the volume of the bone conduction headphones are provided on the two temple arms. An FM antenna and an FM receiving antenna amplifier circuit are provided on the two temple arms or one of the temple arms. The FM antenna is electrically connected to the FM receiving antenna amplifier circuit. The bone conduction headphones, the volume control switch, the FM antenna, the FM receiving antenna amplifier circuit, and the clamping portion together form a listening loop. The wearing body further includes a heart rate detection chip and a motion control chip. A loop is respectively formed between the heart rate detection chip, the motion control chip and the MCU. The heart rate detection chip is arranged in the first side telescopic rod, and the motion control chip is arranged in the second side telescopic rod.

[0017] Further, it further includes a first antenna and a second antenna for receiving and / or transmitting wireless signals. The first antenna is arranged in the top telescopic rod or the first side telescopic rod and the second side telescopic rod. The second antenna is arranged in any one of the temple arms and is electrically connected to the corresponding clamping portion; the wire is an optical fiber connecting line; soft elastic breathable sheets which are breathable and used for increasing the stress area and reducing the generated pressure are arranged on the first side telescopic rod and the second side telescopic rod.

[0018] Further, the glasses body further includes a terminal. The terminal can control the multifunctional intelligent glasses through the communication module. The terminal includes a mobile phone and a computer.

[0019] The beneficial effects of the present invention are as follows: The wearing body includes a wearing frame, a storage battery and a charging and discharging circuit installed in the wearing frame. The storage battery is electrically connected to the charging and discharging circuit and the power supply end of the intelligent control module. Therefore, the wearing body has a charging and discharging function and can perform contact charging and discharging through the clamping portions of the first side telescopic rod and the second side telescopic rod to supply power to the glasses body. This solves the problems that the battery capacity of the existing intelligent glasses is limited, and the volume and mass of the glasses are relatively large. It also solves the problem that it is difficult to ensure the comfort of daily use of the existing intelligent glasses. Since the top telescopic rod is between the first side telescopic rod and the second side telescopic rod, the first end portions of the second side telescopic rod, the first side telescopic rod and the top telescopic rod are conductively rotatably hinged together (that is, the first end of the first side telescopic rod, the first end of the second side telescopic rod, and the first end of the top telescopic rod are sequentially rotatably hinged and stacked together). Therefore, when not in use, it can be telescoped and stacked together, so it is inconvenient to carry.

[0020] When in use, adjust to a suitable position for wearing on one's own head through the telescopic adjustment of the top telescopic rod, the first side telescopic rod, and the second side telescopic rod. Then, through the limiting device, the top telescopic rod, the first side telescopic rod, and the second side telescopic rod are maintained in shape (i.e., forming a three-claw shape that grabs from the back of the head to the front of the face and fits the individual). When the temple of the glasses is snapped onto the corresponding snap-in parts of the first side telescopic rod and the second side telescopic rod, and the first side telescopic rod and the second side telescopic rod maintain a specific shape, the top telescopic rod mainly bears the force, and the first side telescopic rod and the second side telescopic rod play an auxiliary role, so that the main body of the glasses is in a suspended state without contacting the human head, thus not causing a burden on the human ear and resulting in the problem of ear pain, and also avoiding the problem that the acupoints on the head clamped by the two temples are oppressed for a long time, leading to poor blood circulation and easy swelling. Therefore, it is comfortable to wear, and it also relieves the oppression of the acupoints on the head and the acupoints on the bridge of the nose clamped by the left and right temples, which is more beneficial to health. It meets the needs of people who need to wear glasses for long-term reading or working. When the wearing main body is unfolded, the structure is stable, and the main body of the glasses is firmly fixed, which is suitable for casual or sports wearing.

[0021] In addition, through the limiting device, the top telescopic rod, the first side telescopic rod, and the second side telescopic rod are maintained in shape (i.e., forming a three-claw shape that grabs from the back of the head to the front of the face and fits the individual), and when the temple of the glasses is snapped onto the corresponding snap-in parts of the first side telescopic rod and the second side telescopic rod, so it is applicable to both ordinary glasses and smart glasses, and at the same time meets people's wearing needs for different glasses styles in different occasions, and the user experience is not good. Therefore, a multifunctional intelligent glasses of the present invention not only improves the portability during use, but also is comfortable to wear and more beneficial to health, and at the same time meets people's wearing needs for different glasses styles in different occasions, and has a good user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] For ease of explanation, the present invention will be described in detail by the following specific embodiments and accompanying drawings.

[0023] Figure 1 It is a three-dimensional structure schematic diagram of the present invention.

[0024] Figure 2 For Figure 1 It is a schematic diagram of the structure of another perspective at A in

[0025] Figure 3 It is a front view structure schematic diagram of the present invention.

[0026] Figure 4 It is a schematic diagram of the contact and electrical connection structure between the snap-in part on the first side telescopic rod and the temple of the glasses in the present invention (i.e., a partial structure schematic diagram of the connection between the snap-in part on the first side telescopic rod and the temple).

[0027] Figure 5Another structural schematic diagram of the present invention (i.e., a three-dimensional view of another structure).

[0028] In the figure:

[0029] Frame - 01; temple - 02; nose pad - 03; top telescopic rod - 1; third hinge section - 11; third elastic section - 12; third limiting section - 13; fourth handle - 14; first side telescopic rod - 2; first hinge section - 21; first elastic sheet - 22; first limiting section - 23; first handle - 24; second side telescopic rod - 3; second hinge section - 31; second elastic sheet - 32; second limiting section - 33; limiting block - 41; pushing sleeve - 42; third handle - 43; micro projector - 4; clamping portion - 5; heart rate detection chip - 5; motion control chip - 6; bone conduction earphone - 7; volume control switch - 8; second antenna - 9; MCU - 011; temperature sensor - 012; control board - 013; first elastic rubber band - 100; second elastic rubber band - 200. Detailed implementation manners

[0030] In order to further explain the technical solution of the present invention, the present invention will be elaborated in detail through specific embodiments below.

[0031] Such as Figures 1-5As shown, the multi-functional intelligent glasses of the present invention include a glasses main body and an intelligent control module. The intelligent control module has a bone conduction module, a communication module, a light sensor, a camera, and also has an MCU011 or a control board 013 with an MCU011. The control board 013 uses an existing micro control board. The glasses body includes a spectacle frame 01 and two temple arms 02 arranged on the spectacle frame 01. The bone conduction module (not shown in the figure), the communication module (not shown in the figure), the light sensor (not shown in the figure), and the camera (not shown in the figure) are fixedly installed in the temple arms 02. The control board 013 is fixedly installed in the spectacle frame. The bone conduction module, the light sensor, the communication module, and the camera are connected to the control board 013 for control. A flexible circuit board (not shown in the figure) is embedded in the spectacle frame 01 between the two temple arms 02. This flexible circuit board is electrically connected to the control board 013, and the two temple arms 02 are electrically connected to the flexible circuit board. It further includes a wearing body. The wearing body includes a wearing frame and a storage battery and a charge and discharge circuit installed in the wearing frame. The storage battery is electrically connected to the charge and discharge circuit, and the storage battery is electrically connected to the power supply terminal of the intelligent control module. Here, for the convenience of a clearer description, the side close to the human head is defined as the inner side, and the side away from the human head is defined as the outer side. The wearing frame includes a first side telescopic rod, a second side telescopic rod, and a top telescopic rod. The top telescopic rod is located between the first side telescopic rod and the second side telescopic rod, and the second side telescopic rod 3, the first side telescopic rod 2, and the top telescopic rod 1 are arranged from the outside to the inside in sequence. The first end of the second side telescopic rod 3, the first end of the first side telescopic rod 2, and the first end of the top telescopic rod 1 are conductively rotatably hinged together, so that the top telescopic rod 1, the first side telescopic rod 2, and the second side telescopic rod 3 can be telescoped and can be accommodated and stacked against each other. A limiting device for limiting when the first side telescopic rod 2 and the second side telescopic rod 3 rotate to the same straight line is installed on the top telescopic rod 1; the second end of the top telescopic rod 1 extends across the parietal bone of the human head and extends to the frontal bone of the human head. The second ends of the first side telescopic rod 2 and the second side telescopic rod 3 respectively extend to the sphenoid bones on both sides of the human head. Clamping portions 5 are provided on the second ends of the first side telescopic rod 2 and the second side telescopic rod 3 on the surface that does not contact the human head and are in one-to-one corresponding contact and electrical connection with the two temple arms 02. The clamping portions 5 are connected to the bone conduction module, the light sensor, the communication module, and the camera and are connected to the control board 013 for control through wires arranged along the temple arms 02. The inner wall of the clamping portion 5 is closely attached to the inserted temple arm 02. The glasses main body is detachably connected to the second ends of the first side telescopic rod 2 and the second side telescopic rod 3 through the clamping portions 5.With the above structural arrangement, the top telescopic rod 1, the first side telescopic rod 2, and the second side telescopic rod 3 are maintained in shape by the limiting device (i.e., forming a three-claw shape that grabs from the back of the head to the face and adapts to the individual), and when the temple 02 of the glasses is clamped to the clamping portions 5 of the corresponding first side telescopic rod 2 and the second side telescopic rod 3, so it is applicable to ordinary glasses or the glasses main body (i.e., existing smart glasses that can contact and conduct electricity with the clamping portion 5). When worn, the main body cooperates with the glasses main body to wear and can supply power to the glasses main body. It solves the problem that the built-in battery of the glasses main body is heavy and large in volume. It can also solve the technical problems existing in the prior art, such as the single style of existing glasses or only partial replacement, which cannot meet people's wearing needs for different glasses styles in different occasions, and the poor user experience.

[0032] Specifically, the bone conduction module, the optical sensor, the communication module, and the camera are all fixed in the temple in a conventional manner and have the same installation method as existing smart glasses. The charging and discharging circuit also uses an existing charging and discharging circuit board or a charging and discharging circuit module. The charging and discharging circuit supplies power to the glasses main body through the clamping portion 5. Specifically, the storage battery and the charging and discharging circuit are mainly installed in the third limiting block 41 or the third hinge section 11, which is beneficial to the overall weight distribution of the wearing main body and ensures wearing comfort. The wearing main body can also be provided with an external power socket (not shown in the figure) for charging the storage battery and electrically connecting the charging and discharging circuit. The storage battery can be a lithium battery. The external power socket can be USB, micro-B, or Type-C, etc. The flexible circuit board uses an existing one, so that while ensuring the transmission of the power control signal of the MCU011, it can greatly reduce the weight of the frame, and further reduce the overall weight of the glasses body, which is convenient for carrying. It is well-known that a flexible circuit board is a highly reliable and excellent flexible printed circuit board made of polyimide or polyester film as the substrate. Abbreviated as a flexible board or FPC, it has the characteristics of high wiring density, light weight, and thin thickness. It is mainly used in many products such as mobile phones, laptop computers, PDAs, digital cameras, and LCMs.

[0033] There is currently an ordinary pair of glasses with a frame assembly. The frame assembly includes two lenses and a bridge for connecting the two lenses between the two lenses. The frame includes two upper brow frames, a cross-brow frame connecting the two upper brow frames between the two upper brow frames, and two temple arms 02 respectively connected to the ends of the two upper brow frames. Through the detachable connection between the bridge and the cross-brow frame, any assembly between each frame assembly and each frame can be achieved. Different styles of smart glasses or other styles of non-smart glasses can be assembled in this way. Obviously, people can pre-assemble several commonly used frame assemblies and frames when purchasing, so the cost is relatively high and it is inconvenient to carry. And during use, professional guidance is also required for operation, so it is very inconvenient and time-consuming. The multi-functional intelligent glasses of the present invention can be adapted in a snap-fit manner whether it is an ordinary pair of glasses or a glasses body (i.e., an existing smart glasses that can be energized by contacting the snap-fit part 5). The replacement operation is convenient and fast, without the need for professional guidance, with a good experience, multi-functional, time-saving and labor-saving. It meets people's wearing needs for different glasses styles in different occasions and has a good user experience.

[0034] Specifically, the two snap-fit parts 5 are respectively C-shaped blocks integrally formed on the corresponding first side telescopic rod 2 and the corresponding second side telescopic rod 3 in a one-to-one correspondence. On the inner wall of the C-shaped bayonet of the block, there are two-pole elastic contacts that are always within the C-shaped area of the block. On the two temple arms 02, there are conductive metal sheets extending along the length direction of the temple arms 02 and in electrical conduction contact with the two-pole elastic contacts, realizing power supply from the wearing body to the glasses body. For the convenience of clearer description, with the side close to the human head being the inner side and the side away from the human head being the outer side, the top telescopic rod 1, the first side telescopic rod 2, and the second side telescopic rod 3 are arranged in sequence from the inner to the outer. The advantage of this arrangement is that the top telescopic rod 1 bears the main weight and serves as the main load-bearing rod. The first side telescopic rod 2 and the second side telescopic rod 3 are only for auxiliary fixation, and the contact parts form a triangle to form a firm three-claw structure. Therefore, it can be firmly fixed on the human head, making the wearing body comfortable to wear and not shake during wearing. Therefore, it is suitable for people using it during outdoor leisure sports or when reading a book with their heads down. It can greatly reduce the pulling force on the ears by traditional glasses when reading a book with the head down (i.e., at this time, the ears become the main part bearing the weight of the glasses), avoiding ear pain or inflammation caused by ear stress and being more ear-protective. At the same time, the first ends of the top telescopic rod 1, the first side telescopic rod 2, and the second side telescopic rod 3 are hinged in a conventional manner, and inner and outer annular conductive sheets are respectively arranged around the hinge axis at the hinged parts of the first ends of the top telescopic rod 1, the first side telescopic rod 2, and the second side telescopic rod 3. Conductive contacts that form electrical contact with the inner and outer annular conductive sheets on the opposite sides are provided between the top telescopic rod 1 and the first side telescopic rod 2 and between the first side telescopic rod 2 and the second side telescopic rod 3. This is only a description for the convenience of those skilled in the art to understand, so as to make it clear that the top telescopic rod 1, the first side telescopic rod 2, and the second side telescopic rod 3 are hinged and electrically connected together, so it will not be elaborated here.

[0035] In this embodiment, the first side telescopic rod 2 has a first hinged section 21, a first elastic sheet body 22, and a first limiting section 23 which is slidably connected to the first elastic sheet body 22 and into which the first elastic sheet body 22 is entirely inserted. A first side connection part (i.e., the connection part for hinging and contact on the first end of the above-described first hinged section 21) that is in contact electrical connection with the top telescopic rod 1 and the second side telescopic rod 3 is provided at the first end of the first hinged section 21. The second end of the first hinged section 21 is fixedly connected to one end of the first elastic sheet body 22. The other two ends of the first elastic sheet body 22 are free ends. A first conductive contact piece extending along its length and exposed is provided on the first elastic sheet section. A first sliding groove (not shown in the figure) for the free end of the first elastic sheet body 22 to extend into is formed in the first limiting section 23. A first metal contact (not shown in the figure) that is in contact electrical connection with the first conductive contact piece and is used to form a circuit is provided in the first sliding groove. A first handle 24 that is tightly fixed to the first hinged section 21 in a tightening manner through screw-thread fit is provided on the first limiting section 23. The clamping portion 5 on the first side telescopic rod 2 is provided on the first limiting section 23 and is electrically connected to the first metal contact. The clamping portion 5 on the first side telescopic rod 2. With the above structural arrangement, the first hinged section 21, the first elastic sheet body 22, and the first limiting section 23 are electrically conductive. Therefore, components that achieve functions through conventional installation and cooperation work can be installed on the first hinged section 21 and the first limiting section 23, and stable power supply can be provided for the components to work. During use, by loosening and tightening the first handle 24, the resulting tightening realizes the limit fixation of the length of the first elastic sheet body 22 inserted into the first limiting section 23 in a sliding manner (i.e., the tightening generated by the threaded fit part of the first handle 24 extending into the first limiting section 23 on the existing surface of the first elastic sheet body 22), thereby realizing the adjustment of the telescopic length of the first side telescopic rod 2 and achieving the purpose of being applicable to different people.

[0036] In this embodiment, the second side telescopic rod 3 has a second hinged section 31, a second elastic sheet body 32, and a second limiting section 33 that is slidably connected to the second elastic sheet body 32 and into which the second elastic sheet body 32 is entirely inserted. A second side connection portion (i.e., the connection portion for hinging and contact described specifically above at the first end of the second hinged section 31) that is in contact electrical connection with the top telescopic rod 1 and the second side telescopic rod 3 is provided at the first end of the second hinged section 31. A second conductive contact piece that extends along its length and is exposed is provided on the second elastic section. A second conductive contact piece that extends along its length and is exposed is provided on the second elastic section. A second chute (not shown in the figure) into which the free end of the second elastic sheet body 32 extends is provided on the second limiting section 33. A second metal contact (not shown in the figure) that is in contact electrical connection with the second conductive contact piece and is used to form a circuit is provided in the second chute. A second handle (not shown in the figure) that is tightly fitted and limited and fixed on the second hinged section 31 through threaded cooperation is provided on the second limiting section 33. The clamping portion 5 on the second side telescopic rod 3 is provided on the second limiting section 33 and is electrically connected to the second metal contact. The clamping portion 5 on the second side telescopic rod 3. With the above structural arrangement, the second hinged section 31, the second elastic sheet body 32, and the second limiting section 33 are electrically conductive. Therefore, components that achieve functions through conventional installation and cooperation work can be installed on the second hinged section 31 and the second limiting section 33, and stable power supply can be provided for the components to work. During use, by loosening and tightening the second handle, the resulting tight fit is used to limit and fix the length of the second elastic sheet body 32 inserted into the second limiting section 33 in a sliding manner (i.e., the second handle partially extends into the second limiting section 33 through threaded cooperation to produce a tight fit on the existing surface of the second elastic sheet body 32), thereby realizing the adjustment of the telescopic length of the second side telescopic rod 3 and achieving the purpose of being applicable to different people.

[0037] In this embodiment, the limiting device includes a limiting block 41 for limiting and abutting when the first side telescopic rod 2 and the second side telescopic rod 3 rotate to the same straight line, and a pushing sleeve 42 sleeved on the first end of the top telescopic rod 1 and cooperating with the limiting block 41 to push and limit the first side telescopic rod 2 and the second side telescopic rod 3. The limiting block 41 is fixedly connected to the first end of the top telescopic rod 1. A third handle 43 is provided on the pushing sleeve 42 to limit and fix it on the top telescopic rod part by screwing in a tight manner. A micro-projector 4 with a projection direction consistent with the extension direction of the first end of the top telescopic rod 1 is fixedly installed on the limiting block 41. The micro-projector 4 here is an existing one and can be controlled by the MUC011 on the control board 013 through wireless or wired conventional means in this field, or it can work independently without being controlled by the MUC011. With the above mechanism set, during use, by sliding and pushing the pushing sleeve 42 along the top telescopic rod 1, the first side telescopic rod 2 and the second side telescopic rod 3 are respectively unfolded to both sides of the top telescopic rod 1. By tightening and loosening the third handle 43, it is realized that the third handle 43 partially extends into the pushing sleeve 42 through the threaded fit to tightly abut the corresponding part of the surface of the top telescopic rod 1, so as to fix the pushing sleeve 42 and the third handle 43 to unfold the first side telescopic rod 2 and the second side telescopic rod 3 to both sides of the top telescopic rod 1 respectively.

[0038] In this embodiment, the top telescopic rod 1 has a third hinge segment 11, a third elastic segment 12, and a third limiting segment 13 that is slidably connected to the third elastic segment 12 and into which the entire third elastic sheet is inserted. A top connection portion (i.e., the connection portion for hinging and contact on the first end of the third hinge segment 11 described above specifically) that is in contact electrical connection with the first side telescopic rod 2 and the second side telescopic rod 3 is provided at the first end of the third hinge segment 11. The limiting block 41 is fixedly connected to the top connection portion. A third conductive contact piece that extends along its length and is exposed is provided on the third elastic segment 12. A third chute (not shown in the figure) for the free end of the third elastic sheet to extend into is provided on the third limiting segment 13. A third metal contact (not shown in the figure) that is in contact electrical connection with the second conductive contact piece is provided in the second chute. The third metal contact is in contact electrical connection with the third conductive contact piece to form a circuit. A fourth handle 14 is provided on the third limiting segment 13 and is limited and fixed to the third hinge segment 11 in a tightening manner through thread cooperation. With the above structural arrangement, the third hinge segment 11, the third elastic sheet, and the third limiting segment 13 are electrically conductive. Therefore, components that achieve functions through conventional installation and cooperation work can be installed on the third hinge segment 11 and the third limiting segment 13, and stable power supply can be provided for the components to work. During use, by tightening and loosening the fourth handle 14, the resulting tightening is used to limit and fix the length of the third elastic sheet inserted into the third limiting segment 13 in a sliding manner (i.e., the fourth handle 14 partially extends into the third limiting segment 13 through thread cooperation to generate tightening on the existing surface of the third elastic sheet), thereby realizing the adjustment of the telescopic length of the third side telescopic rod and achieving the purpose of being applicable to different people.

[0039] More specifically: The first handle 24, the second handle, the third handle 43, and the fourth handle 14 are all selected from existing ordinary handles with threaded segments and can be directly purchased. The first elastic sheet 22, the first elastic sheet 22, and the third elastic sheet are elastic metal sheets wrapped with silica gel, and the above-mentioned conductive contact pieces (i.e., the corresponding first conductive contact piece, second conductive contact piece, and third conductive contact piece) are provided on the silica gel of the wrapped elastic metal sheet. Chambers for fixedly installing a storage battery and the like are provided inside the top telescopic rod 1, the first side telescopic rod 2, and the second side telescopic rod 3.

[0040] As a further preference in this embodiment, the two temple arms 02 are hinged to the spectacle frame 01. The spectacle frame 01 is provided with a hinge pin shaft and spectacle frame 01 hinge seats for the two temple arms 02 to be hinged one by one. Each of the two temple arms 02 has a temple arm 02 hinge portion hinged to the corresponding spectacle frame 01 hinge seat. An inner conduction sheet and an outer conduction sheet spaced from the inner conduction sheet are provided on the spectacle frame 01 hinge seat. The inner conduction sheet is arranged around the hinge pin shaft on the spectacle frame 01 hinge seat. Both the inner conduction sheet and the outer conduction sheet have tentacles for the temple arms 02 to make contact electrical connection. Both the inner conduction sheet and the outer conduction sheet are electrically connected to the flexible circuit board. The temple arm 02 hinge portion includes conductive elastic sheets respectively corresponding to the inner conduction sheet and the outer conduction sheet; the two temple arms 02 are a first temple arm 02 and a second temple arm 02 respectively. The first temple arm 02 is in contact electrical connection with the first side telescopic rod 2 through a clamping portion 5, and the second temple arm 02 is in contact electrical connection with the second side telescopic rod 3 through the clamping portion 5. With the above structural arrangement, it is realized that there is no need to arrange connecting wires at the hinge joints of the first temple arm 02, the second temple arm 02 and the spectacle frame 01, no redundant external wiring will be generated, and a flexible circuit board is embedded in the spectacle frame 01, which will not cause the spectacle frame 01 to be too large in volume. The multifunctional intelligent glasses of the present invention solve the problem of wire leakage at the hinge joints of the temple arms 02 and the spectacle frame 01 of the existing intelligent glasses, improve the stability of the communication connection between the two temple arms 02 and can reduce the production cost.

[0041] As a further preference of this embodiment, a temperature sensor 012 is disposed inside the spectacle frame 01. The temperature sensor 012 is located inside the spectacle frame 01, and the sensing end of the temperature sensor 012 is exposed outside the spectacle frame 01. The temperature sensor 012 is electrically connected to the control board 013 and is controlled by the MUC 011 on the control board 013. The spectacle body further includes a nose pad 03 installed on the spectacle frame 01. A ceramic heating element or a far-infrared heating chip (not shown in the figure) is disposed inside the nose pad 03. The ceramic heating element or the far-infrared heating chip is electrically connected to the flexible circuit board. The ceramic heating element or the far-infrared heating chip both adopt the existing ones. The nose pad 03 is a ceramic nose pad 03. When the ceramic heating element or the far-infrared heating chip is manufactured, it is fixed inside the ceramic nose pad 03. The ceramic heating element or the far-infrared heating chip is directly located 1-2 millimeters below the surface of the ceramic nose pad 03, or the ceramic nose pad 03 is provided with a cavity for fixing the ceramic heating element or the far-infrared heating chip (that is, it can be directly fixed with glue). With the above structural arrangement, the nose pad 03 can be heated by the ceramic heating element or the far-infrared heating chip. The temperature sensor 012 senses the temperature of the air outside the spectacle frame 01, and the temperature sensor 012 generates an electrical feedback signal to the MUC 011 on the control board 013. The MUC 011 controls the ceramic heating element or the far-infrared heating chip inside the nose pad 03 to heat and work. Therefore, the nose pad 03 will not feel cold when contacting the human nose bridge in winter. In addition, it is beneficial to promote the blood flow at the part where the nose pad 03 presses on the nose bridge, avoid the appearance of red rashes, and is more beneficial to the human body.

[0042] In this embodiment, preferably, bone conduction earphones 7 and a volume control switch 8 for controlling the volume of the bone conduction earphones 7 are disposed on the two temple arms 02. An FM antenna (not shown in the figure) and an FM receiving antenna amplifier circuit (not shown in the figure) are disposed on the two temple arms 02 or one temple arm 02. The FM antenna is electrically connected to the FM receiving antenna amplifier circuit. The bone conduction earphones 7, the volume control switch 8, the FM antenna, the FM receiving antenna amplifier circuit and the clamping portion 5 together form a listening circuit. With the above structural arrangement, the provided bone conduction earphones 7, FM antenna, and FM receiving antenna amplifier circuit cooperate with each other to enable the use of the spectacle body to listen to the radio. The volume control switch 8 is a conventional button switch, and the volume of the bone conduction earphones 7 can be directly controlled by pressing. The power supply for the operation of the bone conduction earphones 7, FM antenna, and FM receiving antenna amplifier circuit is provided by the wearing body.

[0043] In the present invention, the wearing main body further includes a heart rate detection chip 5 and a motion control chip 6. A circuit is respectively formed between the heart rate detection chip 5, the motion control chip 6 and the control board 013. The heart rate detection chip 5 is arranged in the first side telescopic rod 2, and the motion control chip 6 is arranged in the second side telescopic rod 3. Specifically, the heart rate detection chip 5 is installed in the first hinge section 21, and the motion control chip 6 is installed in the second hinge section 31. The ceramic heating sheet or the far-infrared heating chip both adopt the existing ones, and the heart rate detection chip 5 and the motion control chip 6 also both adopt the existing ones. With the above structural arrangement, the heart rate detection chip 5 and the motion control chip 6 are electrically connected to the control board 013 through a flexible circuit board (that is, the heart rate detection chip 5 and the motion control chip 6 are electrically connected to the MUC011 on the control board 013 through a flexible circuit board). During operation, the heart rate detection chip 5 transmits signals to the MCU011, and the MCU011 controls the operation of the motion control chip 6 through the control board 013. The heart rate detection chip 5 mainly detects the heart rate of the human body, and after being processed by the MCU011 (presetting the threshold of the human heart rate on the MCU011 in a conventional manner), it is played by the bone conduction earphone 7 to inform the wearer, and the motion control chip 6 operates to remind people in a vibrating manner. This avoids the problem that the heart rate is too high during exercise or being stimulated, which is harmful to the body.

[0044] The multifunctional intelligent glasses of the present invention further include a first antenna and a second antenna 9 for receiving and / or transmitting wireless signals. The first antenna (not shown in the figure) is arranged in the top telescopic rod 1 or the first side telescopic rod 2 and the second side telescopic rod 3, and the second antenna 9 is arranged in any one of the temple arms 02 and is electrically connected to the corresponding clamping portion 5; a wire for electrically connecting the bone transmission module, the optical sensor, the communication module, the camera and the control board 013 (that is, the MUC011 on the control board 013) is arranged in the temple arm 02, and the wire is an optical fiber connecting wire; soft elastic breathable sheets for ventilation and increasing the force-bearing area to reduce the generated pressure are arranged on the first side telescopic rod 2 and the second side telescopic rod 3. The soft elastic breathable sheet is an existing soft silicone sheet or soft sponge sheet provided with through holes. With the above structural arrangement, the first antenna and the second antenna 9 are provided. As long as only one of the first antenna and the second antenna 9 works, normal communication connection can be ensured, and the stability of wireless communication is guaranteed.

[0045] In this embodiment, preferably, the spectacle body further includes a terminal, and the terminal can control the multifunctional intelligent glasses through the communication module. The terminal includes a mobile phone and a computer. Specifically, the communication module can also be arranged on the spectacle frame 01 or the temple. The communication method can be through wired or wireless transmission. Wireless communication includes communication methods such as Wireless Fidelity (Wi-Fi), Bluetooth, or Near Field Communication (NFC), and is not limited to the above examples. The bone conduction module is preferably arranged inside the temple 02. The bone conduction module (i.e., the existing bone conduction sensor), the communication module, the light sensor, and the camera are all existing and can be directly purchased. With the above structural arrangement, the provided light sensor is mainly used to sense light and capture the light for the camera to take pictures. By setting the bone conduction module, the vibration of the frontal bone when blinking can trigger the bone conduction module to work. The bone conduction module turns on the circuit, and after being processed by the MCU011 (the number threshold of frontal bone movements or the continuous number threshold of frontal bone movements is preset on the MCU011 in a conventional manner), the MCU011 controls the camera and the light sensor to work together to complete taking pictures or videos.

[0046] As another preference of this embodiment, as Figure 1 and Figure 5 shown, after the top telescopic rod 1, the first side telescopic rod 2, and the second side telescopic rod 3 are unfolded, the top telescopic rod 1 and the first side telescopic rod 2 are connected by a detachable first elastic rubber band 100, and the top telescopic rod 1 and the second side telescopic rod 3 are connected by a detachable second elastic rubber band 200. This can make the wearing body cooperate with the glasses, and the wearing is more comfortable and stable. Specifically, I-shaped grooves that are consistent along their respective inner channels and have a uniformly open end are provided on the first limiting section 23, the second limiting section 33, and the third limiting section 13. The I-shaped blocks of the I-shaped grooves are locked by screws at both ends of the first elastic rubber band 100 and the second elastic rubber band 200. This enables the first elastic rubber band 100 and the second elastic rubber band 200 to be installed as needed, making the wearing body cooperate with the glasses, and the wearing is more comfortable and stable. Especially when used during larger movements (such as running), it can also be worn, looking more fashionable, with a good user experience, and can also reflect personal taste and self-personality.

[0047] The above embodiments and drawings do not limit the product form and style of the present invention. Any appropriate changes or modifications made by those of ordinary skill in the relevant technical field shall be regarded as not departing from the patent scope of the present invention.

Claims

1. A multifunctional intelligent glasses, comprising a glasses body and an intelligent control module, wherein the intelligent control module comprises a bone transmission module, a communication module, a light sensor, a camera and an MCU, wherein the glasses body comprises a frame and two temples arranged on the frame, wherein the bone transmission module, the communication module, the light sensor and the camera are arranged in the temples, wherein the MCU is arranged in the frame, and wherein the bone transmission module, the light sensor, the communication module and the camera are controlled and connected with the MCU, Features: It also includes a wearing body, the wearing body includes a wearing frame and a battery and a charging and discharging circuit installed in the wearing frame, the battery is electrically connected to the charging and discharging circuit, the battery is electrically connected to the power supply end of the intelligent control module, the wearing frame includes a first side telescopic rod, a second side telescopic rod and a top telescopic rod, the top telescopic rod is between the first side telescopic rod and the second side telescopic rod, the first end of the first side telescopic rod, the first end of the second side telescopic rod and the first end of the top telescopic rod are conductively rotatably hinged together, and a limiting device is installed on the top telescopic rod for limiting the position when the first side telescopic rod and the second side telescopic rod are rotated to the same straight line; the top telescopic rod The second end of the rod extends across the parietal bone of the human head and extends to the frontal bone of the human head, the second ends of the first side telescopic rod and the second side telescopic rod extend to the sphenoid bones on both sides of the human head respectively, and the second ends of the first side telescopic rod and the second side telescopic rod are provided with a clamping part on a side surface away from the human head and electrically connected to the two temples in a one-to-one contact, and the glasses body is detachably connected to the second ends of the first side telescopic rod and the second side telescopic rod through the clamping part; the top telescopic rod, the first side telescopic rod and the second side telescopic rod maintain their shape through the limiting device, that is, forming three claws that grab from the back of the head to the front of the face and adapt to the individual.

2. The multifunctional intelligent glasses according to claim 1, Features: The two clamping parts are respectively C-shaped clamping blocks which are integrally formed on the corresponding first side telescopic rod and the corresponding second side telescopic rod in a one-to-one correspondence. The inner wall of the C-shaped clamping mouth of the clamping block is provided with a bipolar elastic contact piece which is always in the C-shaped area of ​​the clamping block. Both the temples are provided with a conductive metal sheet extending along the length direction thereof and provided for the clamping mouth of the corresponding clamping block to contact and electrically conduct with the bipolar elastic contact piece in a one-to-one correspondence. The two temples are provided with wires connected to the conductive metal sheet and electrically connected to the bone transmission module, the optical sensor, the communication module, the camera and the MCU. A flexible circuit board is embedded in the frame, the flexible circuit board is electrically connected to the MCU, the wire is conductively connected to the flexible circuit board, and the charging and discharging circuit is electrically connected to the conductive metal sheet through the bipolar elastic contact piece to supply power to the glasses body.

3. The multifunctional intelligent glasses according to claim 2, Features: The first side telescopic rod has a first hinge segment, a first elastic sheet body, and a first limiting segment that is slidably connected to the first elastic sheet body and into which the first elastic sheet body is entirely inserted. A first side connection portion that is in contact electrical connection with the top telescopic rod and the second side telescopic rod is provided at the first end of the first hinge segment. The second end of the first hinge segment is fixedly connected to one end of the first elastic sheet body. The other two ends of the first elastic sheet body are free ends. A first conductive contact piece that extends along its length and is exposed is provided on the first elastic sheet segment. A first chute into which the free end of the first elastic sheet body extends is formed on the first limiting segment. A first metal contact that is in contact electrical connection with the first conductive contact piece and is used to form a loop is provided in the first chute. A first handle that is tightly pressed and limited and fixed on the first hinge segment through a threaded fit is provided on the first limiting segment. The clamping portion on the first side telescopic rod is provided on the first limiting segment and is electrically connected to the first metal contact.

4. A multifunctional intelligent glasses according to claim 1, 2 or 3, characterized in that: The second side telescopic rod has a second hinge segment, a second elastic sheet body, and a second limiting segment that is slidably connected to the second elastic sheet body and into which the second elastic sheet body is entirely inserted. A second side connection portion that is in contact electrical connection with the top telescopic rod and the second side telescopic rod is provided at the first end of the second hinge segment. A second conductive contact piece that extends along its length and is exposed is provided on the second elastic sheet segment. A second chute into which the free end of the second elastic sheet body extends is formed on the second limiting segment. A second metal contact that is in contact electrical connection with the second conductive contact piece and is used to form a loop is provided in the second chute. A second handle that is tightly pressed and limited and fixed on the second hinge segment through a threaded fit is provided on the second limiting segment. The clamping portion on the second side telescopic rod is provided on the second limiting segment and is electrically connected to the second metal contact.

5. A multifunctional intelligent glasses according to claim 4, characterized in that: The limiting device includes a limiting block for limiting and abutting when the first side telescopic rod and the second side telescopic rod rotate in the same straight line, and a pushing sleeve that is sleeved on the first end of the top telescopic rod and cooperates with the limiting block to push and limit the first side telescopic rod and the second side telescopic rod. The limiting block is fixedly connected to the first end of the top telescopic rod. A third handle that is tightly pressed and limited and fixed on the top telescopic rod portion through a threaded fit is provided on the pushing sleeve. A micro-projector with a projection direction consistent with the extending direction of the first end of the top telescopic rod is fixedly installed on the limiting block.

6. A multifunctional intelligent glasses according to claim 5, characterized in that: The top telescopic rod has a third hinge segment, a third elastic segment, and a third limiting segment that is slidably connected to the third elastic segment and into which the entire third elastic sheet is inserted. A top connection portion that is in contact electrical connection with the first side telescopic rod and the second side telescopic rod is provided at a first end of the third hinge segment. The limiting block is fixedly connected to the top connection portion. A third conductive contact piece that extends along its length direction and is exposed is provided on the third elastic segment. A third chute for the free end of the third elastic sheet to extend into is provided on the third limiting segment. A third metal contact that is in contact electrical connection with the second conductive contact piece is provided in the second chute. The third metal contact is in contact electrical connection with the third conductive contact piece to form a circuit. A fourth handle is provided on the third limiting segment and is limited and fixed to the third hinge segment in a tightening manner through screw-thread cooperation.

7. A multifunctional intelligent glasses according to claim 2, wherein: The two temple arms are hinged to the spectacle frame. The spectacle frame has a hinge pin shaft and spectacle frame hinge seats for the two temple arms to be respectively and correspondingly hinged. Each of the two temple arms has a temple arm hinge portion that is hinged to the corresponding spectacle frame hinge seat. An inner conduction piece and an outer conduction piece that is spaced from the inner conduction piece are provided on the spectacle frame hinge seat. The inner conduction piece is arranged around the hinge pin shaft on the spectacle frame hinge seat. The inner conduction piece and the outer conduction piece both have antennae for the temple arms to be in contact electrical connection. The inner conduction piece and the outer conduction piece are both electrically connected to the flexible circuit board. The temple arm hinge portion includes conductive elastic pieces respectively corresponding to the inner conduction piece and the outer conduction piece; the two temple arms are a first temple arm and a second temple arm respectively. The first temple arm is in contact electrical connection with the first side telescopic rod through a clamping portion. The second temple arm is in contact electrical connection with the second side telescopic rod through a clamping portion.

8. A multifunctional intelligent glasses according to claim 2 or 7, wherein: A temperature sensor is provided inside the spectacle frame. The sensing end of the temperature sensor is exposed outside the spectacle frame. The MCU is electrically connected to the temperature sensor. The glasses body further includes a nose pad installed on the spectacle frame. A ceramic heating sheet or a far-infrared heating chip is built in the nose pad. The ceramic heating sheet or the far-infrared heating chip is electrically connected to the flexible circuit board.

9. A multifunctional intelligent glasses according to claim 8, wherein: Bone conduction headphones and a volume control switch for controlling the volume of the bone conduction headphones are provided on the two temple pieces. An FM antenna and an FM receiving antenna amplifier circuit are provided on the two temple pieces or one temple piece. The FM antenna is electrically connected to the FM receiving antenna amplifier circuit. The bone conduction headphones, the volume control switch, the FM antenna, the FM receiving antenna amplifier circuit, and the clamping portion together form a listening circuit. The wearing body further includes a heart rate detection chip and a motion control chip. A circuit is formed between the heart rate detection chip, the motion control chip and the MCU respectively. The heart rate detection chip is arranged in the first side telescopic rod, and the motion control chip is arranged in the second side telescopic rod.

10. A multifunctional intelligent glasses according to claim 8, characterized in that: It further includes a first antenna and a second antenna for receiving and / or transmitting wireless signals. The first antenna is arranged in the top telescopic rod or the first side telescopic rod and the second side telescopic rod. The second antenna is arranged in any one of the temple pieces and is electrically connected to the corresponding clamping portion. The wire is an optical fiber connecting wire. Soft elastic breathable sheets that are breathable and used to increase the force area and reduce the generated pressure are provided on the first side telescopic rod and the second side telescopic rod.

Citation Information

Patent Citations

  • Intelligent sports glasses

    CN210270396U

  • Multifunctional intelligent glasses

    CN211718620U