Ion pulse treatment device for eyes

By designing the eye ion pulse therapy device as a combination structure of the glasses end and the independent control end, combining the flexible wiring harness and high-voltage wiring harness bending mechanism, the problems of lightweight and wear stability are solved, suitable for teenagers and enhanced safety in sports scenarios.

CN120285446APending Publication Date: 2025-07-11WOYI HEALTH TECH CO LTD
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Patent Information

Application Number
CN202510449409.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-11
Publication Date
2025-07-11

AI Technical Summary

Technical Problem

While relieving eye fatigue, existing eye ion pulse therapy devices are difficult to achieve lightweight wear, especially not suitable for the use needs of adolescents.

Method used

Designed as a combination structure of glasses and independent control ends, the weight is distributed to two submodules through a flexible wiring harness connection, combining a high-voltage wiring harness bending mechanism and a removable restraint strap to improve wear stability and safety.

Benefits of technology

It realizes the lightweight part of the glasses, is suitable for teenagers to wear, enhances the safety and stability of use in sports scenarios, and is convenient for use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an eye ion pulse treatment device which comprises a glasses end, a conductor element is arranged at a nose pad of the glasses end, the glasses end is detachably connected with an independent control end through a flexible wire harness, the independent control end is provided with two sub-modules, one sub-module is internally provided with a power supply part, and the other sub-module is internally provided with a control part. A flexible connecting wire harness is arranged between the two submodules, the control part is provided with a high-voltage generating element, the high-voltage generating element is connected to the control panel, the control panel is electrically connected to the power supply part, and the two conductor elements are connected to the grounding end and the high-voltage end of the high-voltage generating element respectively. According to the eye ion pulse treatment device, the glasses end and the independent control end are designed and organically combined together through the flexible wire harness, the requirement for light weight of the glasses part can be met, the eye ion pulse treatment device can be hung on the neck, use is more convenient, and the treatment effect is better. And a corresponding fatigue relieving function is matched with the characteristics of the teenagers.
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Description

Technical Field

[0001] The present invention relates to an eye ion pulse therapy device suitable for relieving eye fatigue. Background Art

[0002] The invention patent with the publication number CN107982636A discloses an eye ion pulse therapy device, which includes: a carrier for mounting a conductor element on the eye acupoint area; a power supply arranged on the carrier and electrically connected to a control board; a high-voltage generating element arranged on the carrier and electrically connected to the control board; two conductor elements mounted on the carrier and used for treatment, and the two conductor elements are in contact with the surface skin of the eye acupoint area; among the two conductor elements, one conductor element is electrically connected to the ground terminal of the high-voltage generating element, and the other conductor element is electrically connected to the high-voltage terminal of the high-voltage generating element. The negative ions (electrons) of the eye ion pulse therapy device provided by the present invention have the effect of promoting microcirculation in the eye area after entering the eye acupoint area, thereby accelerating cell metabolism, effectively relieving eye fatigue, and promoting eye health. While effectively relieving eye fatigue, this product is also more suitable for consumers to wear, but for the adolescent group, the lightweight of the eye ion pulse therapy device is more conducive to the wearing of this group. Summary of the Invention

[0003] The present invention aims to solve the above technical problems and provides an eye ion pulse therapy device that takes into account the lightweight wearing requirement while meeting the need to relieve eye fatigue.

[0004] To solve the above technical problems, an embodiment of the present invention provides an eye ion pulse therapy device, which includes a glasses end, a conductor element is arranged at the nose pad of the glasses end, the glasses end is detachably connected to an independent control end through a flexible wire harness, the independent control end has two sub-modules, one of the sub-modules is built with a power supply part, the other sub-module is built with a control part, a flexible connecting wire harness is arranged between the two sub-modules, the control part has a high-voltage generating element, the high-voltage generating element is connected to a control board, the control board is electrically connected to the power supply part, and the two conductor elements are respectively connected to the ground terminal and the high-voltage terminal of the high-voltage generating element.

[0005] It is not difficult to find from the above content that the eye ion pulse therapy device provided by the present invention is designed into a glasses end and an independent control end, and is organically combined through a flexible wire harness, which can not only meet the need for lightweight of the glasses part, but also make the eye ion pulse therapy device hang on the neck, making it more convenient to use, and supporting the corresponding fatigue relief function according to the characteristics of adolescents.

[0006] Further, the glasses end is provided with a high-voltage wire harness bending mechanism.

[0007] Furthermore, the end of the temple of the eyeglasses is integrally formed with a downward deflection-type inner extension body that forms an obtuse angle with the temple. This can be used to fit the head area behind the ear to avoid the high-voltage interface being close to the gap between the ear and the brain, which may bring safety risks in use. The temples can also be gathered together and fit tightly against the brain inside the ear through the deflection extension body distributed in an eight-shaped shape, thereby preventing the eyeglass frame from being tilted up by the independent control end. The downward deflection-type inner extension body is provided with an eyeglass end wiring terminal, and the flexible wiring harness of the independent control end is provided with a control end wiring terminal that cooperates with the eyeglass end wiring terminal.

[0008] Furthermore, the eyeglass frame at the eye end is provided with an electrode needle, and the conductive nose pad structure is inserted into the electrode needle. This structure can facilitate the installation of the nose pad, and the arrangement of two electrode needles on one side of the nose pad can improve the stability of the nose pad installation. When the electrode needles with triangular distribution are arranged on one side of the nose pad, the nose pad installation stability at this location is higher, and the fitting degree between the nose pad and the nose can be adjusted by bending the electrode needle to meet the needs of different users, and the adjustment direction is more.

[0009] Furthermore, the temple (11) at the end of the glasses has a square first block (11-1) connected to the high-voltage wire harness bending mechanism, a square second block (11-2) is arranged between the first block and the high-voltage wire harness bending mechanism, the cross-section of the second block is smaller than the high-voltage wire harness bending mechanism and the first block, a rectangular groove (11-1a) is arranged on the upper surface of the first block, and a vertical channel (11-1b) passing through the second block is arranged near one end of the rectangular groove close to the second block, the second block is provided with a horizontal through hole (11-2a) communicating with the high-voltage wire harness bending mechanism and the vertical channel, and the first block is provided with a transverse through hole (11-1c).

[0010] Furthermore, a restraint strip is detachably mounted on the outer side of one of the temples of the eyeglasses near the lower deflection type inner extension, and a restraint strip fixing portion is provided near the lower deflection type inner extension of the other temple. The restraint strip can improve the stability of the eye ion pulse therapy device when worn on the head.

[0011] The inventors have discovered that teenagers and other groups wearing eye ion pulse therapy devices are very likely to have collisions in sports scenes, and glasses worn on the face are prone to breaking the bridge of the glasses. In the eye pulse therapy device provided by the present invention, the control end distributes the weight to the first submodule and the second submodule, and the first flexible wire harness and the second flexible wire harness distributed on the control end can not only play the electrical connection function, but also use the two large flexible wire harnesses to restrain the two broken lens rings from falling to the ground, but only falling to the front chest position, thereby improving the safety of the glasses part of the eye ion pulse therapy device and making this product more suitable for teenagers who like sports. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 This is a perspective view of the eye ion pulse treatment device in the first embodiment of the present invention.

[0013] Figure 2 This is a schematic diagram of a partial structure at the high-voltage wire harness bending mechanism in the first embodiment of the present invention.

[0014] Figure 3 This is a schematic diagram of a partial structure at the downwardly deflected inner extension body in the first embodiment of the present invention.

[0015] Figure 4 This is a schematic diagram of a partial structure at the safety high-voltage interface in the first embodiment of the present invention.

[0016] Figure 5 This is a schematic diagram of the connection end of the bent part between the temple and the spectacle frame in the first embodiment of the present invention.

[0017] Figure 6 This is a schematic diagram of the bottom of the connection end of the bent part between the temple and the spectacle frame in the first embodiment of the present invention.

[0018] Figure 7 This is an enlarged partial view of the bent part of the spectacle frame in the first embodiment of the present invention.

[0019] Figure 8 This is an exploded view of the eye ion pulse treatment device in the second embodiment of the present invention, with the independent control end omitted in the figure. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0020] In order to make the technical means, creative features, achieved purposes and effects of the present invention easy to understand, the present invention will be further described below in conjunction with specific embodiments.

[0021] The first embodiment of the present invention provides an eye ion pulse treatment device. Refer to Figure 1 , which includes a spectacle end 1, a nose pad 2, an independent control end 3, a first flexible wire harness 4, and a second flexible wire harness 5. Compared with traditional products, the inventor of the present invention has made an optimized separation design of the corresponding structure of the eye ion pulse treatment device, which not only meets the wearing needs of lightweight glasses but also facilitates the adaptation of the corresponding structure to the characteristics of groups such as teenagers.

[0022] In Figure 1It can be seen that the eyeglass end 1 can refer to the eyeglass structure in the prior art, that is, it has parts such as the eyeglass frame, and conductor elements are arranged at the two nose pads 2 at the eyeglass end. The nose pads can be made of conductor / semiconductor materials, and the nose pads made of conductor / semiconductor materials are connected to the corresponding circuits in the eyeglass frame and the temples, so as to realize electrical connection with the ground terminal and the high-voltage terminal of the high-voltage generating element. Considering that the eyeglass frame is decomposed into a frame part and a frame cover plate in the present invention, a conductive insert can be injection molded in the eyeglass frame, and 2 conductive pins are exposed for fixing and installing the nose pads. When the nose pads are made of semiconductor materials, the functional requirements can be met.

[0023] It is worth mentioning that in this embodiment, the glasses end is detachably connected to the independent control end 3 through the first flexible harness 4. The first flexible harness 4 can serve as a lanyard and also take into account the function of the internal layout of the power line. The sheath of the first flexible harness can be a rubber sheath, which is soft and durable and has the effect of isolating and protecting the power line. The independent control end has two submodules, which can be a block, such as a shell structure encapsulated by a plastic shell, and a corresponding supporting structure is built into the shell structure. The two submodules are defined as a first submodule 30 and a second submodule 31 respectively. We build a power supply part into the first submodule 30 to power the eye ion pulse treatment device. The power supply part is a rechargeable battery, and the second submodule 31 has a control part built in. The shell structure of the second submodule can be installed with a display screen to display the corresponding parameters. If allowed, the display screen can be selected as a touch screen. At this time, the entire device is displayed through the touch screen. Of course, the traditional display screen is also allowed to be combined with the mechanical control button set in the second submodule. A second flexible harness 5 is arranged between the two submodules. The second flexible harness also adopts an outer covering structure of rubber material, and the corresponding circuit is arranged inside.

[0024] In this embodiment, the control part installed inside the second submodule has a high-voltage generating element, which is connected to a control board, which is electrically connected to the power supply part, and two conductor elements are respectively connected to the ground terminal and the high-voltage terminal of the high-voltage generating element.

[0025] When in use, the user can directly control the entire eye ion pulse therapy device through the second sub-module, and the two sub-modules effectively decompose the weight of the power supply part and PCB circuit board (built-in high-voltage circuit board, control board, etc.) in the eye ion pulse therapy device. The weight of the frame part is no different from that of traditional glasses, which greatly alleviates the discomfort caused to the user when the weight of the frame exceeds that of traditional glasses, and provides the possibility for large-scale commercialization of eye ion pulse therapy devices.

[0026] The eye ion pulse therapy device provided by the present invention is designed to be a glasses end and an independent control end. The two terminals are separated from each other and are organically combined together through a flexible harness. This can not only meet the need for lightweight glasses, but also allow the eye ion pulse therapy device to be hung around the neck, making it more convenient to use and suitable for the characteristics of teenagers with a corresponding fatigue relief function.

[0027] See also Figure 2 Although the eyeglass end 1 can be rotatably connected by a hinge at the adjacent position of the eyeglass frame 10 and the temple 11, the eyeglass frame and temple at the eyeglass end need to be equipped with corresponding wire harnesses (power lines, etc.), and repeated bending can easily cause fatigue and breakage of the metal wires. Here, a high-voltage wire harness bending mechanism 6 can be arranged at the adjacent position of the eyeglass frame and the temple. The high-voltage wire harness bending mechanism is made of a rubber body, and the side surface of the main body of the high-voltage wire harness bending mechanism has a plurality of protrusions distributed in the length direction and gaps distributed between the protrusions, and the two ends of the main body are connected to the temple and the folded edge body of the eyeglass frame.

[0028] See also Figure 3 The end of the temple of the eyeglass end is integrally formed with a downward deflection type inner extension body 7 which is at an obtuse angle with the temple. The downward deflection type inner extension body 7 can be used to fit the head area behind the ear to avoid the high-voltage interface being close to the gap between the ear and the brain, which may bring about a safety risk in use. The temple can also be gathered by the deflection extension body distributed in an eight-shaped manner to fit closely to the brain inside the ear, which can prevent the eyeglass frame from being tilted up by the independent control end. Figure 4 The lower deflection type inner extension body is provided with a glasses end terminal 8, and the flexible wiring harness of the independent control end is provided with a control end terminal 9 that cooperates with the glasses end terminal. The glasses end terminal 9 and the control end terminal 9 are provided with matching docking terminals, for example, a male terminal is matched with a female terminal. After the terminals here are connected, the high-voltage end and the grounding end of the control end can be electrically connected to the grounding end conductor element and the high-voltage end conductor element at the nose pad.

[0029] See also Figures 5 - 6As shown in the figure, the temple 11 of the glasses end has a square first block 11-1 connected to the high-voltage wire harness bending mechanism. The height of the first block is greater than its width. A square second block 11-2 is arranged between the first block and the high-voltage wire harness bending mechanism. The cross-section of the second block is smaller than that of the high-voltage wire harness bending mechanism and the first block, so as to form a thin neck structure at the second block. There is a bent part 10-1 of the glasses frame. An inner channel of the bent part forms a circumferential seal 10-2 at the end. The opening enclosed by the circumferential seal is slightly smaller than the thin neck structure, so that the thin neck structure of the second block can be installed at the opening and there can also be a certain movement space for the thin neck structure at the opening 10-2a. A rectangular groove 11-1a is arranged on the upper surface of the first block. The rectangular groove is opened at the upper part of the first block. First, considering that relevant wire harnesses enter the bent part through the rectangular groove, which is beneficial to the stability of wire routing and wiring. And through this structure, a zigzag wire routing structure can be formed, which can greatly improve the restraint of the wire harness and avoid the wire harness being too loose in the wire routing channels of the temple and the glasses frame, resulting in fatigue damage during long-term use. One end of the rectangular groove close to the second block is provided with a vertical channel 11-1b penetrating the second block. The second block is provided with a horizontal through hole 11-2a communicating with the high-voltage wire harness bending mechanism and the vertical channel. The first block is provided with a transverse through hole 11-1c. The bent part is provided with a matching opening, so that the pin shaft P can be inserted into the transverse through hole and the opening 10-1a of the bent part, which is convenient for the disassembly and assembly operation of the temple and is also beneficial to subsequent maintenance requirements.

[0030] As an option, a restraint strip 12 is detachably installed on the outer side of one of the temples of the glasses end near the downward deflection inner extension body. The restraint strip can be used as an auxiliary structure to wrap around the head to improve the wearing stability of the product in special scenarios such as sports. It is a detachable component. A restraint strip fixing part is arranged on the other temple near the downward deflection inner extension body. In this embodiment, cylindrical convex fixing parts arranged at equal intervals are provided on the outer side of the temple, and the restraint strip is provided with a plurality of round holes matching the cylindrical convex fixing parts. Through the above structure, adjustable assembly with each other can be realized to adjust the effective use length of the restraint strip.

[0031] The second embodiment of the present invention provides an eye ion pulse treatment device. See Figure 8 , which includes a glasses end 1. The glasses end includes a glasses frame 10 and temples 11. The glasses frame can be equipped with lenses 14. The glasses frame 10 is distributed with a glasses frame cover plate 10a, and the temples are distributed with temple cover plates 11a. Conductive inserts 13 are injection-molded in the glasses frame, and 2 conductive needles are exposed for fixedly installing the nose pad 2.

[0032] In this embodiment, the nose pad is made of semiconductor material. The two ends of the spectacle frame cover plate are provided with rotating shaft fixing holes, and the temple has a hollow rotating shaft at the corresponding position. The rotating shaft is snapped into the fixing hole, and the high-voltage wire 15 can pass through the center of the rotating shaft and enter the spectacle frame. There is a temple fixing piece above the temple, which can fix the temple at the position of the rotating shaft. Thus, the temple can rotate, and the structure of the thick high-voltage wire can be adopted. The temple and the temple cover plate are both injection molded with two colors, and the outer layer at the ear position has anti-slip rubber that runs through to the end of the temple. A connection terminal is provided at the end of the temple, and there is a metal pin in the middle of the terminal, which is protected by rubber on the periphery.

[0033] The supporting electrical part adopts a split-type independent control end design. In this embodiment, it is in the form of a lanyard and can be hung around the neck. The first sub-module as the independent control end is used as the power supply part, while the second sub-module is used as the control part. The battery part and the control part are connected by an anti-slip rubber wire. The downward-deflecting inner extension of the temple is provided with a spectacle end connection terminal, and the flexible wire harness of the independent control end is provided with a control end connection terminal that cooperates with the spectacle end connection terminal. Specifically, each of the outer ends of the battery part and the control part has a connection terminal as the control end connection terminal. There is a hole in the middle of the terminal, corresponding to the temple terminal as the spectacle end connection terminal. The two terminals are closely matched and can be clamped tightly without loosening.

[0034] The eye ion pulse treatment device provided by the present invention is applied to relieve eye fatigue. Among the user groups wearing glasses, it can take into account the functions of traditional glasses while synchronously completing the relief of eye fatigue through the device.

[0035] Those of ordinary skill in the art can understand that the above embodiments are specific embodiments for implementing the present invention, and in practical applications, various changes can be made in form and details without departing from the spirit and scope of the present invention.

Claims

1. An eye ion pulse treatment device, which includes a glasses end, and a conductor element is provided at the nose pad of the glasses end, characterized in that, The glasses end is detachably connected to an independent control end through a flexible wire harness. The independent control end has two sub-modules. One sub-module is internally provided with a power supply part, and the other sub-module is internally provided with a control part. A flexible connection wire harness is arranged between the two sub-modules. The control part has a high-voltage generating element. The high-voltage generating element is connected to a control board. The control board is electrically connected to the power supply part. Two conductor elements are respectively connected to the grounding end and the high-voltage end of the high-voltage generating element.

2. The eye ion pulse therapy device according to claim 1, characterized in that, The glasses end is provided with a high-voltage wire harness bending mechanism.

3. The eye ion pulse treatment device according to claim 1, characterized in that, An inwardly extending deflecting body with an obtuse angle with the temple is integrally formed at the end of the temple of the glasses end. The inwardly extending deflecting body is provided with a glasses end terminal. The flexible wire harness of the independent control end is provided with a control end terminal that cooperates with the glasses end terminal.

4. The eye ion pulse treatment device according to claim 1, characterized in that, A restraint strip is detachably installed on the outer side of one temple of the glasses end near the inwardly extending deflecting body, and a restraint strip fixing part is arranged on the other temple near the inwardly extending deflecting body.

5. The eye ion pulse treatment device according to claim 1 or 2, characterized in that, The temple (11) of the glasses end has a square first block (11-1) connected to the high-voltage wire harness bending mechanism. A square second block (11-2) is arranged between the first block and the high-voltage wire harness bending mechanism. The cross-section of the second block is smaller than that of the high-voltage wire harness bending mechanism and the first block. A rectangular groove (11-1a) is arranged on the upper surface of the first block. A vertical channel (11-1b) penetrating the second block is arranged at one end of the rectangular groove close to the second block. The second block is provided with a horizontal through hole (11-2a) communicating with the high-voltage wire harness bending mechanism and the vertical channel. The first block is provided with a horizontal through hole (11-1c).

6. The eye ion pulse treatment device according to claim 1, characterized in that, An electrode needle is arranged at the spectacle frame of the eye end, and a conductive nose pad structure is inserted at the electrode needle.

Citation Information

Patent Citations

  • Ion pulse treatment device for eyes

    CN107982636A