Integrated intelligent device capable of improving naked eye vision
By integrating technical means such as negative oxygen ion generator, fill light and flip vision card, myopia caused by excessive axial length is solved, and effective adjustment of the axial length and vision improvement is achieved.
Patent Information
- Application Number
- CN202510264387.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2025-06-06
AI Technical Summary
In recent years, the phenomenon of 'social myopia' has been serious, causing half of the world's population to suffer from myopia in 2050. The existing technology is difficult to effectively solve the myopia problem caused by excessive axes.
It provides an integrated intelligent device, including a negative oxygen ion generator, fill light, flipped vision card, large vision card, small vision card, variable distance knob and visual channel. By swiping the card to obtain electricity, negative oxygen ions and fill light stimulation, combined with manual adjustment of variable distance knob, the observation and adjustment of the eye axis length can be achieved.
Through the use of this device, it can effectively alleviate and treat eye myopia, simplify the observation and adjustment process of eye axis length, and provide significant visual enhancement effect.
Smart Images

Figure CN120093569A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of vision treatment and maintenance, and in particular to an integrated intelligent device capable of improving naked eye vision. Background Art
[0002] Eye vision is a health issue that people are most concerned about now. In recent years, with the advancement of science and technology, the phenomenon of "social myopia" has become more and more serious. The World Health Organization predicts that by 2050, half of the world's population will suffer from myopia, which will be a very serious problem. The axial length of a person with normal vision is shorter than that of a myopic person. If the axial length is too long, light can only focus in front of the retina, which is called myopia. Therefore, under similar conditions of other eyes, children and adolescents with longer axial lengths are more likely to be myopic. Restoring the axial length is the key to solving myopia. For this reason, we provide an integrated technical solution that can adjust the axial length of the eye. Summary of the invention
[0003] The purpose of the present invention is to provide an integrated intelligent device that can improve naked eye vision to solve the problems raised in the above background technology.
[0004] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an integrated intelligent device for improving naked eye vision comprises: a device body, a negative oxygen ion switch, a fill light switch, a flip switch, a pitch knob, a negative oxygen ion eye gasket, a visual channel, an elastic strap, a lock, a pitch adjustment rod, a contact roller, a transmission rod, a contact roller, a pitch transmission belt, a vision card fixing rod, a flip shaft, a flip vision card, a front vision card, a back vision card, a flip motor, a negative oxygen ion generator, a fill light, a pitch lens group, a transmission gear, a flip shaft bearing, an induction power supply device, and a special power supply card. The device body is made of lightweight non-metallic material.
[0005] Preferably, a negative oxygen ion switch is provided on the upper left side of the device body, a fill light switch and a flip switch are provided on the upper side of the device body, and a variable pitch knob is also provided on the right side of the device body.
[0006] Preferably, a visual channel is provided in the middle of the device body, and a negative oxygen ion eye gasket is provided on the outer edge of the visual channel.
[0007] Preferably, elastic straps are connected to both sides of the middle of the device body, and the other two ends of the elastic straps are provided with docking locks.
[0008] Preferably, the pitch knob is connected to a pitch adjustment rod arranged inside the equipment body, the pitch adjustment rod is provided with a contact roller, and a contact roller is provided for rolling transmission connection with the contact roller, and the contact roller is arranged on the transmission rod.
[0009] Preferably, a variable pitch transmission belt is connected to the transmission rod, and the variable pitch transmission belt is arranged as two parallel ones. A vision card fixing rod is provided on the variable pitch transmission belt, and an induction power supply device is provided on one side of the variable pitch transmission belt. A special power supply card is also provided to match the induction power supply device.
[0010] Preferably, a flip shaft is provided on the vision card fixing rod, a flip shaft bearing is provided below the flip shaft, and a flip vision card is provided above the flip vision card. A large vision card is provided on one side of the flip vision card, and a small vision card is provided on the other side. The size of the letter E of the large vision card is set to 45.88 mm, with a diopter of 630.9, and the size of the letter E of the small vision card is set to 11.53 mm, with a diopter of 158.5.
[0011] Preferably, a flip motor is further provided on the vision card fixing rod, and a transmission gear is provided on the flip motor, and the transmission gear is meshingly connected with teeth provided on the flip shaft.
[0012] Preferably, a negative oxygen ion generator and a fill light are provided in the visual channel, and a variable distance lens group is also provided in the visual channel, and the variable distance lens group is provided as one group for each of the two channels.
[0013] Preferably, a distance scale is provided on the pitch knob, and the distance scale is set to 1-30M according to the simulation distance.
[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: the present invention uses the flip vision cards, large vision cards, small vision cards, variable pitch knobs, visual channels, negative oxygen ion eye washers, and fill-in lights arranged inside the device body, and records the number of uses by swiping the card to take electricity. The card-swiping power device is powered on, and the negative oxygen ion switch and the fill-in light are turned on to release negative oxygen ions and the light source required by the eyes to fill in the light and stimulate the eyes to open the microcirculation, provide stimulation and nutrition for the eyes, and manually adjust the variable pitch knob by observing the clear signals of the large vision card and the small vision card set on the flip vision cards with the eyes to adjust the distance of the flip vision cards. When the big E large vision card is seen, the viewing distance is manually adjusted in the reverse direction. At this time, it can be adjusted back by 1 meter, and the cumulative back can be 30M. On the contrary, if it is not clear, the variable pitch knob is rotated forward by nearly 1 meter to watch, and when it is clear, training is carried out at a closer distance of one meter. And so on until the farthest viewing distance reaches a black dot, and repeated viewing adjustment training is carried out to achieve observation training of the axial length of the eye and restore the axial length of the eye. The head is fixed by a head strap, which is simple, convenient and easy to carry, and plays a role in eye care, shortening the axial length and treating myopia. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is an external structural view of the invention of the present invention; Figure 2 It is a view of the internal structure of the present invention; Figure 3 The flip vision card mechanism of the present invention is shown in FIG. Figure 4 This is an enlarged view of the large vision card of the present invention Figure 5 An enlarged view of the small vision card of the present invention Figure 6 A cross-sectional view of the turning mechanism of the present invention Figure 7 A view of the pitch knob of the present invention Figure 8 A view of the power card of the present invention In the figure: equipment body-1, negative oxygen ion switch-2, fill light switch-3, flip switch-4, pitch knob-5, negative oxygen ion eye gasket-6, visual channel-7, elastic strap-8, lock-9, pitch adjustment rod-10, contact roller-11, transmission rod-12, contact roller-13, pitch transmission belt-14, vision card fixing rod-15, flip shaft-16, flip vision card-17, large vision card-1701, small vision card-1702, flip motor-18, negative oxygen ion generator-19, fill light-20, pitch lens group-21, transmission gear-200, flip shaft bearing-300, induction power supply device-400, special power supply card-500. DETAILED DESCRIPTION
[0016] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0017] See also Figure 1-8 An integrated intelligent device for improving naked eye vision is shown, comprising a device body 1, a negative oxygen ion switch 2, a fill light switch 3, a flip switch 4, a pitch knob 5, a negative oxygen ion eye gasket 6, a visual channel 7, an elastic strap 8, a lock 9, a pitch adjustment rod 10, a contact roller 11, a transmission rod 12, a contact roller 13, a pitch transmission belt 14, a vision card fixing rod 15, a flip shaft 16, a flip vision card 17, a large vision card 1701, a small vision card 1702, a flip motor 18, a negative oxygen ion generator 19, a fill light 20, a pitch lens group 21, a transmission gear 200, a flip shaft bearing 300, an induction power supply device 400, and a special power supply card 500. The device body 1 is made of lightweight non-metallic material.
[0018] A negative oxygen ion switch 2 is provided on the upper left side of the device body 1 for controlling the opening and closing of the negative oxygen ion generator 19. A fill light switch 3 and a flip switch 4 are provided on the upper side of the device body 1 for filling light for the visual channel 7 and flipping control of the vision card 17. A variable distance knob 5 is also provided on the right side of the device body 1 for adjusting the distance between the large vision card 1701 and the small vision card 1702 set on the visual flip vision card 17.
[0019] A visual channel 7 is provided in the middle of the device body 1, and a negative oxygen ion eye gasket 6 is provided on the outer edge of the visual channel 7 for eye observation and opening the internal circulation for the eye tissue, thereby activating and stimulating the eyes.
[0020] Elastic straps 8 are connected to both sides of the middle of the device body 1, and the other two ends of the elastic straps 8 are provided with docking buckles 9 for fixing the device when worn on the head.
[0021] The pitch knob 5 is connected to the pitch adjustment rod 10 arranged inside the equipment body 1, and the pitch adjustment rod 10 is provided with a contact roller 11. The contact roller 13 is provided with a rolling transmission connection with the contact roller 11, and the contact roller 13 is arranged on the transmission rod 12, so that the pitch adjustment rod 10 is driven to rotate by rotating the pitch knob 5, and the contact roller 11 on the pitch adjustment rod 10 drives the contact roller 13 to drive the transmission rod 12 connected to the contact roller 13 to rotate synchronously to realize a linkage action.
[0022] The variable pitch transmission belt 14 is connected to the transmission rod 12, and the variable pitch transmission belt 14 is arranged as two parallel ones. The variable pitch transmission belt 14 is provided with a vision card fixing rod 15. The variable pitch transmission belt 14 is connected to the transmission rod 12 to realize transmission. The variable pitch transmission belt 14 is provided with a vision card fixing rod 15. The front and rear distance transmission of the vision card fixing rod 15 is realized by the action of the variable pitch transmission belt 14. An induction power supply device 400 is also arranged on one side of the variable pitch transmission belt 14 for induction power supply. A special power supply card 500 is also provided to match the induction power supply device 400. The power supply of the equipment is completed by swiping the power supply card, and the number of times of use can be recorded by swiping the power supply card, which is convenient for recording.
[0023] The vision card fixing rod 15 is provided with a flip shaft 16, a flip shaft bearing 300 is provided below the flip shaft 16, and a flip vision card 17 is provided above. A large vision card 1701 is provided on one side of the flip vision card 17, and a small vision card 1702 is provided on the other side. The size of the letter E of the large vision card 1701 is set to 45.88 mm, and the diopter is 630.9. The size of the letter E of the small vision card 1702 is set to 11.53 mm, and the diopter is 158.5.
[0024] The vision card fixing rod 15 is also provided with a flip motor 18, and the flip motor 18 is provided with a transmission gear 200, which is meshed with the teeth provided on the flip shaft 16, so that the flip motor 18 controls the flip shaft 16 to rotate on the vision card fixing rod 15, thereby realizing the flipping movement of the flip vision card 17.
[0025] The visual channel 7 is provided with a negative oxygen ion generator 19 and a fill light 20. The visual channel 7 is also provided with a variable distance lens group 21. The variable distance lens group 21 is provided as one group for each of the two channels, which mainly plays the role of filling light in the visual channel of the eyes and providing negative oxygen ions to promote the moisturizing of the eyes.
[0026] The variable distance knob 5 is provided with a distance scale, and the distance scale is set to 1-30M according to the simulated distance. The 1-30M simulated distance adjustment is realized by observing the visible signal combined with the simulation of the variable distance lens group.
[0027] When in use, the elastic band 8 is worn on the head, the two eyeballs are aligned with the visual channel 7, the eyes are attached to the negative oxygen ion eye gasket 6, and then the negative oxygen ion switch 2 and the fill light switch 3 are turned on to release negative oxygen ions and the light source required for the eyes in the visual channel 7, and then the eyes are used to observe the large vision card 1701 set in the visual channel. When it is not visible, the pitch knob 5 is rotated to adjust the scale of 1M forward until it can be seen clearly. When training from near to far is required, the small vision card 1702 can be adjusted by flipping the switch button 4. When the small vision card 1702 is too close, the pitch knob 5 can be rotated to retreat 1m and adjusted until the best viewing distance is reached. Then, the pitch knob 5 is rotated at a farther distance to achieve hyperopia training, and see farther and smaller targets until a black dot is seen, thereby achieving adjustment training and treatment of the eye axis length, thereby alleviating and treating myopia. The present invention has a simple structure, ingenious design, lightness to wear, remarkable effect, low manufacturing cost, and is easy to promote.
[0028] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An integrated intelligent device capable of improving naked eye vision, characterized in that: The invention comprises a device body (1), a negative oxygen ion switch (2), a fill light switch (3), a flip switch (4), a pitch knob (5), a negative oxygen ion eye gasket (6), a visual channel (7), an elastic strap (8), a lock (9), a pitch adjustment rod (10), a contact roller (11), a transmission rod (12), a contact roller (13), a pitch transmission belt (14), a vision card fixing rod (15), a flip shaft (16), a flip vision card (17), a large vision card (1701), a small vision card (1702), a flip motor (18), a negative oxygen ion generator (19), a fill light (20), a pitch lens group (21), a transmission gear (200), a flip shaft bearing (300), an induction power supply device (400), and a special power supply card (500). The device body (1) is made of a lightweight non-metallic material.
2. The integrated intelligent device capable of improving naked eye vision according to claim 1, characterized in that: A negative oxygen ion switch (2) is provided on the upper left side of the device body (1), a fill light switch (3) and a flip switch (4) are provided on the upper side of the device body (1), and a pitch knob (5) is also provided on the right side of the device body (1).
3. The integrated intelligent device capable of improving naked eye vision according to claim 2, characterized in that: A visual channel (7) is provided in the middle of the device body (1), and a negative oxygen ion eye gasket (6) is provided on the outer edge of the visual channel (7).
4. The integrated intelligent device capable of improving naked eye vision according to claim 1, characterized in that: Elastic bands (8) are connected to both sides of the middle of the device body (1), and the other two ends of the elastic bands (8) are provided with docking locks (9).
5. The integrated intelligent device capable of improving naked eye vision according to claim 2, characterized in that: The pitch knob (5) is connected to a pitch adjustment rod (10) disposed inside the device body (1); a contact roller (11) is disposed on the pitch adjustment rod (10); a contact roller (13) is disposed in rolling transmission connection with the contact roller (11); and the contact roller (13) is disposed on the transmission rod (12).
6. The integrated intelligent device capable of improving naked eye vision according to claim 5, characterized in that: A variable pitch transmission belt (14) is provided connected to the transmission rod (12), the variable pitch transmission belt (14) being arranged in two parallel pieces, a vision card fixing rod (15) being provided on the variable pitch transmission belt (14), an induction power collection device (400) being provided on one side of the variable pitch transmission belt (14), and a special power collection card (500) being provided in conjunction with the induction power collection device (400).
7. The integrated intelligent device capable of improving naked eye vision according to claim 6, characterized in that: The vision card fixing rod (15) is provided with a flip shaft (16), a flip shaft bearing (300) is provided below the flip shaft (16), and a flip vision card (17) is provided above the flip vision card (17), one side of the flip vision card (17) is provided with a large vision card (1701), and the other side is provided with a small vision card (1702), the size of the letter E of the large vision card (1701) is set to 45.88 mm, and the diopter is 630.9, the size of the letter E of the small vision card (1702) is set to 11.53 mm, and the diopter is 158.5, the letters E are arranged in 1-6 horizontal directions, the opening direction of the letters E is arranged in four directions of up, down, left, and right, and the size of the letters E is set to be 72.71-1.15 mm at the maximum.
8. The integrated intelligent device for improving naked eye vision according to claim 6, characterized in that The vision card fixing rod (15) is also provided with a flip motor (18), and the flip motor (18) is provided with a transmission gear (200), and the transmission gear (200) is meshingly connected with teeth provided on the flip shaft (16).
9. The integrated intelligent device capable of improving naked eye vision according to claim 3, characterized in that: A negative oxygen ion generator (19) and a fill light (20) are provided in the visual channel. A variable distance lens group (21) is also provided in the visual channel. The variable distance lens group (21) is provided as one group for each of the two channels.
10. The integrated intelligent device capable of improving naked eye vision according to claim 2, characterized in that: The variable pitch knob (5) is provided with a distance scale, and the distance scale is set to 1-30M according to the simulated distance.