CN211097067U - Light wave pulse anion eye protection instrument - Google Patents

Light wave pulse anion eye protection instrument Download PDF

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Publication number
CN211097067U
CN211097067U CN201921389868.XU CN201921389868U CN211097067U CN 211097067 U CN211097067 U CN 211097067U CN 201921389868 U CN201921389868 U CN 201921389868U CN 211097067 U CN211097067 U CN 211097067U
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eye protection
protection instrument
pulse
light wave
lens barrel
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CN201921389868.XU
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Chinese (zh)
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袁建中
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Sichuan Jiadi Technology Co ltd
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Sichuan Jiadi Technology Co ltd
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Abstract

The utility model discloses an appearance is protected to light wave pulse anion eye, it includes the eye protection appearance main part, the eye protection appearance main part includes two mutual articulated "L" shape eye protection appearance shells, all be provided with the telescopic lens cone on every eye protection appearance shell, the front end of lens cone is provided with light wave emitter and concave lens, the both sides of visual window are provided with the pulse contact needle, be provided with anion generator in the lens cone, the afterbody of eye protection appearance shell is installed pulse contactor.

Description

Light wave pulse anion eye protection instrument
Technical Field
The utility model relates to an appearance technical field is protected to the eye, concretely relates to light wave pulse anion eye protection appearance.
Background
In the prior art, in the process of training the myopia of teenagers, adopted equipment does not adopt a light wave mode, and generally adopts a ciliary muscle training mode or a simple massage mode. Or cautious patients to see far and near and green plants. There is no principle of a short light wave physiotherapy or of alternate training with multiple light waves. The anion can promote the metabolism of eyes and really realize the health care function of eyes. The eye fatigue is alleviated through cold and hot compress mostly to current eye health care, like the steam eye-shade, but long-time hot compress eyes can lead to eyes hyperemia, is unfavorable for the eyeshield on the contrary, and the position and the duration of generating heat are also unstable, easily cause the injury to the eye.
The skin shrinks sharply during cold compress, which is easy to cause wrinkles. And a mixed mode of mechanical massage and hot compress is adopted, so that the visual fatigue is simply solved. The eye health care is carried out by combining the light wave, the electronic pulse and the negative ions, the light wave can increase dopamine in eyes, the collagen of eyeballs can be enhanced, and the elasticity and the adjusting capacity of the eyes are improved; the current pulse massages acupuncture points of eyes to help people do eye exercises, so that the eyes can relax quickly and the effect of promoting blood circulation is achieved; the high-concentration small-particle-size negative ions can improve microcirculation of eyes, promote metabolism, activate cells of the eyes, sterilize the periphery of the eyes and nourish the sclera. Myopia occurs in association with oxygen deprivation of the sclera and a lack of dopamine. The product can prevent and control myopia of teenagers by combining the three components. Can be used for relieving asthenopia, dry eye, and ocular inflammation for adults. By improving the vitality of cells, the blood circulation is promoted, and the oxygen is added to the sclera to play a good role in inhibiting glaucoma and cataract.
SUMMERY OF THE UTILITY MODEL
To the above-mentioned not enough of prior art, the utility model provides an utilize light wave, anion and pulse to combine to carry out the light wave pulse anion eye protection appearance that keeps healthy to the eye.
In order to achieve the purpose of the invention, the technical scheme adopted by the utility model is as follows:
the light wave pulse negative ion eye protection instrument comprises an eye protection instrument main body, wherein the eye protection instrument main body comprises two L-shaped eye protection instrument shells which are hinged with each other, each eye protection instrument shell is provided with a telescopic lens barrel, the front end of each lens barrel is provided with a light wave emitter, and the light wave emitters are electrically connected with a light wave controller;
the tail part of the eye protection instrument shell is provided with a pulse contactor, the pulse contactor is arranged on the inner side of the eye protection instrument shell, and the pulse contactor and a pulse contact pin are electrically connected with a pulse generator; the lens barrel is provided with an anion emission needle which is electrically connected with an anion generator, the light wave controller, the anion generator and the pulse generator are all electrically connected with a single chip microcomputer, and the single chip microcomputer is electrically connected with a power supply.
Furthermore, the lens cone comprises a first lens cone, a second lens cone and a third lens cone which are sequentially stacked, and the first lens cone is fixedly arranged in the eye protection instrument shell; sliding grooves are formed in the first lens barrel and the second lens barrel, sliding blocks are arranged outside the third lens barrel and the second lens barrel, and the sliding blocks are inserted into the sliding grooves; belt wheels are arranged at two ends of the sliding chute, the belt wheels at the two ends are connected through a belt, and the sliding block is fixed on the belt; the belt pulleys on the first sliding barrel and the second sliding barrel are respectively connected with a first telescopic motor and a second telescopic motor, and the first telescopic motor and the second telescopic motor are both electrically connected with the single chip microcomputer.
Furthermore, the end parts of the first lens barrel and the second lens barrel are respectively provided with a travel switch, and the travel switches are electrically connected with the single chip microcomputer.
Furthermore, two eye protection instrument shells are oppositely provided with connecting surfaces, the bottoms of the two connecting surfaces are hinged, and magnets are arranged on the connecting surfaces.
Furthermore, a contact part is arranged at the bell mouth of the conductive silica gel, a plurality of contact discs which are contacted with the eye acupuncture points are arranged on the contact part, a buffer layer is arranged between the contact part and the bell mouth, and the buffer layer, the contact part and the contact discs are all made of medical conductive silica gel; the bottom of conductive silica gel is provided with the telescopic folded portion of screw thread form.
Furthermore, the bottom of the conductive silica gel is provided with an annular extension ring, and the extension ring is inserted into a ring groove formed in the shell of the eye protection instrument; an extension piece is arranged on the horn mouth of the conductive silica gel and connected with the pulse contactor.
Further, pulse contactor includes the base plate of medical electrically conductive silica gel material, and the central authorities of base plate are provided with curved contact station, and the upper end of contact station sets up elastic response piece, and response piece and contact station clearance set up, and the response piece is fixed on the base plate, and the base plate is connected with the extension piece.
Furthermore, a loudspeaker is arranged on the shell of the eye protection instrument and is electrically connected with the music controller.
Furthermore, the singlechip is also connected with a memory storage, the light wave controller is electrically connected with the light adjusting chip, and the light adjusting chip is electrically connected with the light wave emitter.
The utility model has the advantages that: the scheme has the effects of protecting the eyes of a human body, relieving eye dryness, relieving visual fatigue, controlling the growth of the ocular axis, increasing oxygen for the sclera, increasing the generation of dopamine in the eyes and the like by combining the light wave, negative oxygen ions and pulses, has the effects of relieving the visual fatigue, eliminating fine lines and black eye circles, controlling the growth of the ocular axis and the like, and plays an effective role in preventing and controlling teenagers from myopia. The device is safe and effective, and the high-concentration negative ions have the functions of sterilization and inflammation diminishing on eyes.
The negative ion generator emits negative ions, and the negative ions are contacted with oxygen in the air around the eyes to promote metabolism of the eyes; the light wave emitter emits light waves to the eyes to carry out physical therapy on the eyes and control the growth of the axis of the eyes; the pulse contactor emits pulses to contact with the temples on the two sides of the head, and the fatigue of the eyes is relieved by massaging the temples and the acupuncture points around the eyes of the human body.
The light waves are emitted from the front end of the lens cone, and the light waves are dispersed through the concave lens, so that the light waves are uniformly distributed on eyes and around the eyes, and the eyes are prevented from being stimulated; the lens cone is formed by three telescopic lens cones, and the lens cone is contracted when the eye protection instrument is not used, so that the size of the whole eye protection instrument is reduced, the eye protection instrument is convenient to carry, and meanwhile, the abrasion of the lens cone is avoided; simultaneously, whole eye protection appearance shell can be folded, conveniently carries and accomodates. The contact dish on the contact site can effectively increase the skin contact of conductive silica gel and eye acupuncture point, strengthens the massage effect of pulse to the buffer layer can cushion conductive silica gel and give the extrusion of eye, and the comfort level of human impression is good simultaneously.
The conductive silica gel is clamped into the annular groove on the eye protection instrument shell through the lower end extension ring, so that the conductive silica gel is convenient to take and replace, is stable when in use and is not easy to move; the pulse is transmitted out through the arc-shaped contact platform and is contacted with the temple through the induction sheet, and the induction sheet can be contacted with the contact platform only by being extruded after a person wears the eye protection instrument, so that the pulse is transmitted and is simultaneously used as a switch of the whole eye protection instrument; the arc-shaped induction sheet is good in contact, and the eye protection instrument cannot feel uncomfortable to a human body when being worn and taken and placed, and is good in comfort level.
The memory is used for storing the health care modes needed by different users, when in use, the singlechip reads the health care modes in the memory, and the intensity of the light wave and the health care time of the light wave in one health care period, as well as the pulse intensity and the pulse treatment time are reasonably planned according to the suggestion of medical staff.
Drawings
Fig. 1 is a schematic top view of the optical wave pulse anion eye protection instrument.
Fig. 2 is a schematic structural diagram of the inner side of the light wave pulse anion eye protection instrument.
Fig. 3 is a schematic structural diagram of conductive silica gel.
Fig. 4 is a schematic structural view of the lens barrel.
Fig. 5 is a schematic structural view of the pulse contactor.
Fig. 6 is a schematic structural view of a contact pad.
Fig. 7 is a control schematic block diagram of the light wave pulse anion eye protection instrument.
The eye protection instrument comprises an eye protection instrument shell 1, an eye protection instrument shell 2, a pulse contactor 3, conductive silica gel 4, a mounting hole 5, a pulse contact needle 6, a magnet 7, a first lens barrel 8, a second lens barrel 9, a third lens barrel 10, a light wave emitter 11, a light wave source 12, a control button 13, a loudspeaker 14, a USB interface 15, a visible window 16, a ring groove 17, a contact part 18, a buffer layer 19, a contact disc 20, a concave lens 21, a sliding groove 22, a belt 23, a sliding block 24, a second telescopic motor 25, a first telescopic motor 26, a contact table 27, an induction sheet 28, an extension ring 29, a negative ion generator 30, a folding part 31 and an extension sheet.
Detailed Description
The following description of the embodiments of the present invention is provided to facilitate the understanding of the present invention by those skilled in the art, but it should be understood that the present invention is not limited to the scope of the embodiments, and various changes may be made apparent to those skilled in the art within the spirit and scope of the present invention as defined and defined by the appended claims.
As shown in fig. 1, the light wave pulse anion eye protection instrument comprises an eye protection instrument main body, the eye protection instrument main body comprises two L-shaped eye protection instrument shells 1 which are hinged with each other, a telescopic lens barrel is mounted at the front end of each eye protection instrument shell 1, a light wave emitter 10 is arranged at the front end of each lens barrel, a light wave source 11 of the light wave emitter 10 is located in the central axis of each lens barrel, the light wave emitter 10 is electrically connected with a light wave controller, a control button 12 is arranged on each eye protection instrument shell 1, and the control button 12 comprises a music switch, a light wave switch, an anion switch and a pulse switch.
A concave lens 20 is arranged in the lens barrel, and the concave lens 20 is arranged in the middle of the lens barrel; the tail part of the lens cone is connected with a visual window 15 arranged on the eye protection instrument shell 1; pulse contact needle 5 is installed to visual window 15's both sides, and pulse contact needle 5 installs the conductive silica gel 3 of medical conductive silica gel material on visual window 15, and conductive silica gel 3 is oval horn structure, ensures with the eye laminating, and pulse contact needle 5 inserts in the mounting hole 4 of seting up on the conductive silica gel 3.
The tail part of the eye protection instrument shell 1 is provided with a pulse contactor 2, the pulse contactor 2 is arranged on the inner side of the eye protection instrument shell 1 to ensure that the pulse contactor 2 can be contacted with the temple of a human body, and the pulse contactor 2 and a pulse contact needle 5 are electrically connected with a pulse generator; the negative ion emitting needle 29 is arranged in the lens cone and can adopt a gold needle or a carbon brush, the negative ion emitting needle 29 is electrically connected with the negative ion generator, the light wave controller, the negative ion generator and the pulse generator are electrically connected with the singlechip, the singlechip is electrically connected with the power supply, and the power supply adopts a rechargeable battery and is charged through the USB interface 14.
The singlechip adopts STC89C52RC type singlechip, and the light wave controller adopts SJT8003 dimming chip to the light wave transmitter adopts L ED color mixing lamp, and adjustable module of NE555 pulse generation frequency is adopted to the pulse generator, and the anion generator adopts DC5V negative oxygen ion generator.
The anion generator, the pulse generator and the single chip microcomputer are all arranged in the left eye protection instrument shell 1, and the anion switch and the pulse switch are arranged on the left eye protection instrument shell 1; the light wave controller is installed in the eye protection instrument housing 1 on the right, and the music switch and the light wave switch are installed on the eye protection instrument housing 1 on the right.
The scheme has the effects of protecting the eyes of a human body, relieving eye dryness, relieving visual fatigue, controlling the growth of the ocular axis, increasing oxygen for the sclera, increasing the generation of dopamine in the eyes and the like by combining the light wave, negative oxygen ions and pulses, has the effects of relieving the visual fatigue, eliminating fine lines and black eye circles, controlling the growth of the ocular axis and the like, and plays an effective role in preventing and controlling teenagers from myopia. The device is safe and effective, and the high-concentration negative ions have the functions of sterilization and inflammation diminishing on eyes.
The negative ion generator emits negative ions, and the negative ions are emitted into the air through the negative ion emitting needle 29 and are contacted with oxygen in the air around the eyes, so that the metabolism of the eyes is promoted; the light wave emitter 10 emits light waves to eyes to carry out physical therapy on the eyes and control the growth of the axis of the eyes; the pulse contactor 2 and the pulse contact needle 5 pulse-emit pulses, the pulse contactor 2 contacts with temples on two sides of the head, the pulse contact needle 5 emits pulses to the conductive silica gel 3, and fatigue of eyes is relieved by massaging the temples and periocular acupoints of a human body.
The lens cone comprises a first lens cone 7, a second lens cone 8 and a third lens cone 9 which are sequentially stacked, wherein the first lens cone 7 is fixedly arranged in the eye protection instrument shell 1; the first lens cone 7 and the second lens cone 8 are both provided with a sliding chute 21, the third lens cone 9 and the second lens cone 8 are both provided with a sliding block 23 outside, and the sliding block 23 is inserted into the sliding chute 21; the two ends of the sliding chute 21 are provided with belt wheels, the belt wheels at the two ends are connected through a belt 22, and the sliding block 23 is fixed on the belt 22. The scheme preferably adopts the negative ion emission needle 29 which is arranged at the bottom of the second lens cone 8, and when the second lens cone 8 is controlled to shrink, the negative ion emission needle 29 does not exceed the visible window 15.
Belt wheels on the first sliding barrel and the second sliding barrel are respectively connected with a first telescopic motor 25 and a second telescopic motor 24, and the first telescopic motor 25 and the second telescopic motor are both electrically connected with the single chip microcomputer; the end parts of the first lens cone 7 and the second lens cone 8 are both provided with travel switches, and the travel switches are electrically connected with the single chip microcomputer.
The light waves are emitted from the front end of the lens cone and are diffused through the concave lens 20, so that the light waves are uniformly distributed on and around eyes, and the eyes are prevented from being stimulated; the lens cone comprises three telescopic lens cones, contracts when the eye protection instrument is not used, reduces the overall size and is convenient to carry, and meanwhile, the abrasion of the lens cone is avoided.
The two eye protection instrument shells 1 are provided with connecting surfaces, the bottoms of the connecting surfaces are hinged, and the connecting surfaces are provided with magnets 6. Whole eye protection appearance shell 1 can be folded, conveniently carries and accomodates. And a soft line belt is arranged between the connecting surfaces of the left eye protection instrument shell 1 and the right eye protection instrument shell 1 to realize signal transmission.
A contact part 17 is arranged at the bell mouth of the conductive silica gel 3, a plurality of contact discs 19 which are uniformly distributed are arranged on the contact part 17, the contact discs 19 are arranged corresponding to the acupuncture points of the eyes of the human body, the acupuncture points of the eyes comprise Qingming acupuncture points, pupil acupuncture points, Chengqi acupuncture points and the like, a buffer layer 18 is arranged between the contact part 17 and the bell mouth, and the buffer layer 18, the contact part 17 and the contact discs 19 are all made of medical conductive silica gel; the bottom of the conductive silica gel 3 is provided with a thread-shaped telescopic folding part 30.
The bottom of the conductive silica gel 3 is provided with an annular extension ring 28, and the extension ring 28 is inserted into the annular groove 16 formed on the eye protection instrument shell 1. The contact disc 19 on the contact part 17 can effectively increase the contact between the conductive silica gel 3 and skin acupuncture points, enhance the effect of pulse massage, and the buffer layer 18 can buffer the extrusion of the conductive silica gel 3 to eyes, and meanwhile, the comfort level of human body feeling is good; an extension piece 31 is arranged on the bell mouth of the conductive silica gel 3, and the extension piece 31 is connected with the pulse contactor 2. The conductive silica gel 3 is clamped into the annular groove 16 on the eye protection instrument shell 1 through the lower end extension ring 28, so that the conductive silica gel is convenient to take and replace, and is stable and not easy to move when in use.
The pulse contactor 2 comprises a base plate made of medical conductive silica gel, an arc-shaped contact table 26 is arranged in the center of the base plate, an elastic arc-shaped induction sheet 27 is arranged at the upper end of the contact table 26, the induction sheet 27 and the contact table 26 are arranged in a clearance mode, the induction sheet 27 is fixed on the base plate, the base plate is connected with an extension sheet 31, and the induction sheet 27 and the contact table 26 are both electrically connected with a pulse generator.
The pulse is transmitted out through the arc-shaped contact platform 26 and is contacted with the temple through the induction sheet 27, only when a person wears the eye protection instrument, the induction sheet 27 is extruded to be contacted with the contact platform 26, the pulse transmission is realized, and meanwhile, the pulse is used as a switch of the whole eye protection instrument; the arc-shaped induction sheet 27 is good in contact, uncomfortable feeling to a human body cannot happen when the eye protection instrument is worn and taken and placed, and the comfort level is good.
A loudspeaker 13 is arranged on the eye protection instrument shell 1, and the loudspeaker 13 is electrically connected with the music controller; the music playing device is used for playing music, and can improve the experience of a user and relax the mood. The singlechip is also connected with a memory storage. The memory storage is used for storing the use modes required by different users so as to achieve different treatment effects, when in use, the singlechip reads the use modes in the memory storage, and the intensity of the light wave and the light wave health-care time as well as the pulse intensity and the pulse treatment time in one eye protection period are reasonably planned according to the suggestion of medical staff.
The utility model discloses a control method of light wave pulse anion eye protection appearance combines the different efficiency to eye health care of negative oxygen ion, light wave and pulse to combine, carries out alternate use with ruddiness, yellow light and green glow, and ruddiness realizes the physiotherapy to eyes promptly, and the yellow light improves eyesight, and the green glow makes the eye relax, through the alternate use of these three kinds of light, can be the inside dopamine that produces of human eyes to the increase of control eye axis. The eye-protecting mask can not cause the eyes to feel tight and has moderate looseness while achieving the effect. Has good prevention and control effect on the myopia of teenagers.

Claims (9)

1. The light wave pulse anion eye protection instrument is characterized by comprising an eye protection instrument main body, wherein the eye protection instrument main body comprises two L-shaped eye protection instrument shells (1) which are hinged with each other, each eye protection instrument shell (1) is provided with a telescopic lens barrel, the front end of each lens barrel is provided with a light wave emitter (10), the light wave emitters (10) are electrically connected with a light wave controller, a concave lens (20) is arranged in each lens barrel, the tail part of each lens barrel is connected with a visual window (15) formed in the eye protection instrument shell (1), pulse contact pins (5) are arranged on two sides of each visual window (15), conductive silica gel (3) made of medical conductive silica gel materials is arranged on each visual window (15), each conductive silica gel (3) is of an oval horn structure, and each pulse contact pin (5) is inserted into a mounting hole (4) formed in each conductive silica gel (3);
the tail of the eye protection instrument shell (1) is provided with a pulse contactor (2), the pulse contactor (2) is arranged on the inner side of the eye protection instrument shell (1), and the pulse contactor (2) and a pulse contact pin (5) are electrically connected with a pulse generator; the lens barrel is provided with a negative ion emitting needle (29), the negative ion emitting needle (29) is electrically connected with a negative ion generator, the light wave controller, the negative ion generator and the pulse generator are all electrically connected with a single chip microcomputer, and the single chip microcomputer is electrically connected with a power supply.
2. The optical wave pulse anion eye protection instrument according to claim 1, wherein the lens cone comprises a first lens cone (7), a second lens cone (8) and a third lens cone (9) which are sequentially stacked, and the first lens cone (7) is fixedly installed in the eye protection instrument shell (1); the first lens barrel (7) and the second lens barrel (8) are both internally provided with a sliding chute (21), the third lens barrel (9) and the second lens barrel (8) are both externally provided with a sliding block (23), and the sliding block (23) is inserted into the sliding chute (21); belt wheels are arranged at two ends of the sliding groove (21), the belt wheels at the two ends are connected through a belt (22), and the sliding block (23) is fixed on the belt (22); the belt wheels on the first lens barrel (7) and the second lens barrel (8) are respectively connected with a first telescopic motor (25) and a second telescopic motor (24), and the first telescopic motor (25) and the second telescopic motor (24) are electrically connected with the single chip microcomputer.
3. The light wave pulse anion eye protection instrument according to claim 2, wherein the end parts of the first lens barrel (7) and the second lens barrel (8) are respectively provided with a travel switch, and the travel switches are electrically connected with a single chip microcomputer.
4. The light wave pulse anion eye protection instrument according to claim 1, wherein connecting surfaces are oppositely arranged on two eye protection instrument shells (1), the bottoms of the two connecting surfaces are hinged, and a magnet (6) is arranged on the connecting surfaces.
5. The light wave pulse anion eye protection instrument according to claim 1, wherein a contact part (17) is arranged at the bell mouth of the conductive silica gel (3), a plurality of contact discs (19) contacting with eye acupuncture points are arranged on the contact part (17), a buffer layer (18) is arranged between the contact part (17) and the bell mouth, and the buffer layer (18), the contact part (17) and the contact discs (19) are all made of medical conductive silica gel; the bottom of the conductive silica gel (3) is provided with a thread-shaped telescopic folding part (30).
6. The light wave pulse anion eye protection instrument according to claim 1, wherein the bottom of the conductive silica gel (3) is provided with an annular extension ring (28), and the extension ring (28) is inserted into a ring groove (16) formed in the eye protection instrument shell (1); be provided with on the horn mouth of conductive silica gel (3) and extend piece (31), it is connected with pulse contactor (2) to extend piece (31).
7. The light wave pulse anion eye protection instrument according to claim 6, wherein the pulse contactor (2) comprises a substrate made of medical conductive silica gel, an arc-shaped contact platform (26) is arranged in the center of the substrate, an elastic sensing piece (27) is arranged at the upper end of the contact platform (26), the sensing piece (27) and the contact platform (26) are arranged in a clearance mode, the sensing piece (27) is fixed on the substrate, and the substrate is connected with the extension piece (31).
8. The light wave pulse anion eye protection instrument according to claim 1, wherein a loudspeaker (13) is mounted on the eye protection instrument housing (1), and the loudspeaker (13) is electrically connected with a music controller.
9. The light wave pulse anion eye protection instrument according to claim 1, wherein the single chip microcomputer is further connected with a memory storage, the light wave controller is electrically connected with a dimming chip, and the dimming chip is electrically connected with the light wave emitter (10).
CN201921389868.XU 2019-08-26 2019-08-26 Light wave pulse anion eye protection instrument Active CN211097067U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921389868.XU CN211097067U (en) 2019-08-26 2019-08-26 Light wave pulse anion eye protection instrument

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921389868.XU CN211097067U (en) 2019-08-26 2019-08-26 Light wave pulse anion eye protection instrument

Publications (1)

Publication Number Publication Date
CN211097067U true CN211097067U (en) 2020-07-28

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Application Number Title Priority Date Filing Date
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110368600A (en) * 2019-08-26 2019-10-25 四川甲弟科技有限公司 A kind of light wave pulse anion eye-protection instrument and its control method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110368600A (en) * 2019-08-26 2019-10-25 四川甲弟科技有限公司 A kind of light wave pulse anion eye-protection instrument and its control method
CN110368600B (en) * 2019-08-26 2024-02-23 四川甲弟科技有限公司 Light wave pulse anion eye protection instrument and control method thereof

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