CN214201822U - Prevent static sapphire cell-phone camera lens - Google Patents

Prevent static sapphire cell-phone camera lens Download PDF

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Publication number
CN214201822U
CN214201822U CN202120084432.0U CN202120084432U CN214201822U CN 214201822 U CN214201822 U CN 214201822U CN 202120084432 U CN202120084432 U CN 202120084432U CN 214201822 U CN214201822 U CN 214201822U
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layer
static
lens
camera lens
phone camera
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CN202120084432.0U
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Chinese (zh)
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柯平
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Dongguan Honghan Electronic Machinery Co ltd
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Dongguan Honghan Electronic Machinery Co ltd
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Abstract

The utility model belongs to the technical field of the optical lens piece, concretely relates to prevent static sapphire cell-phone camera lens, including preventing the fingerprint layer, the antireflection layer, add the hard coat, the lens substrate, the electricity induction device, protector and antistatic backing, prevent the fingerprint layer, the antistatic backing, the antireflection layer, add the hard coat from last to overlapping in proper order down and locate the upper surface of lens substrate, the lower surface of lens substrate is provided with first recess, the side of lens substrate is provided with the second recess, second recess and first recess intercommunication, the electricity induction device includes first wire and second wire, first wire is connected with the second wire, first wire is laid in first recess, the second wire runs through the second recess, protector includes the card strip, the pivot, magnetic plate and adsorption block, the card strip sets up in preventing the fingerprint layer, the pivot runs through the card strip. The lens can prevent fingerprints and static electricity, has the characteristics of antireflection, good light transmission, wear resistance and the like, and is long in service life and high in practicability.

Description

Prevent static sapphire cell-phone camera lens
Technical Field
The utility model belongs to the technical field of the optical lens piece, concretely relates to prevent static sapphire cell-phone camera lens.
Background
Mobile phones have become very popular as mobile communication terminals, and become one of the main tools in the current communication field. At present, when a mobile phone is used, the mobile phone is generally placed in a pocket or a backpack, and a lens of a mobile phone camera is easily scratched by sundries in the pocket or the backpack, so that the photographing effect of the camera is influenced.
In the prior art, for example, a technical solution of a sapphire camera lens of application No. 201520307389.4 is to provide a first titanium pentoxide film, a first silicon dioxide film, an ink layer, a second titanium pentoxide film, a second silicon dioxide film, and an AF fingerprint-proof film on a lens substrate, wherein the silicon dioxide and the titanium pentoxide films are plated on the lens substrate, so as to increase the transmittance of the camera lens and increase the light transmission amount, so that a camera photosensitive element behind the lens receives a light intensity with a larger intensity, so that the camera image is clearer, and the night image forming capability is increased, and the fingerprint-proof film is plated on the surface layer, so as to increase the stain resistance of the camera lens, so that the camera lens can maintain a blue-green color for a long time, and has an increased wear resistance, so as to prolong the service life thereof, but the lens in the technical solution does not have an antistatic function, so that static electricity on the lens is easy to adsorb dust during work, the lens is easy to be stained with dust, so that the photographing effect is influenced; or the static electricity filter of a camera with application number 201520436623.3 is through setting up a plurality of layers of static electricity resistance membrane to reach the effect of preventing static, but this technical scheme can not the abrasionproof decreases, and the lens easily takes place wearing and tearing in the use, leads to its life to be short.
In view of the above, the related art needs to be perfected.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a: the anti-static sapphire mobile phone camera lens has the advantages of being good in light transmission, wear-resistant and the like, long in service life and high in practicability.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
an anti-static sapphire mobile phone camera lens comprises an anti-fingerprint layer, an anti-reflection layer, a hardening layer, a lens substrate, an electricity guiding device, a protective device and an anti-static layer, wherein the anti-fingerprint layer, the anti-reflection layer and the hardening layer are sequentially stacked on the upper surface of the lens substrate from top to bottom, a first groove is formed in the lower surface of the lens substrate, a second groove is formed in the side surface of the lens substrate and communicated with the first groove, the electricity guiding device comprises a first lead and a second lead, the first lead is connected with the second lead, the first lead is laid in the first groove, the second lead penetrates through the second groove, the protective device comprises a clamping strip, a rotating shaft, a magnetic plate and an adsorption block, the clamping strip is arranged on the anti-fingerprint layer, and the rotating shaft penetrates through the clamping strip, the magnetic plate is clamped in the clamping strip through the rotating shaft, and the magnetic plate is connected with the adsorption block through magnetic field force. In practical application, the material of the lens substrate is preferably colorless sapphire material; the adsorption block preferably adopts a magnetic adhesive tape, the clamping strip is arranged at the edge of the lens, and the clamping strip and the adsorption block are preferably adhered to the fingerprint-proof layer by glue; the fingerprint preventing layer is used for reducing fingerprint and various stains, the antireflection layer utilizes the interference principle of light to plate a metal coating with 1/4 light wavelength thickness on the surface of the lens, so that light rays completely pass through the lens without reflection, ultraviolet rays below 380nm and infrared rays above 700nm can be filtered, dazzling glare under strong light can be filtered, illusion can be removed, lens eddy can be reduced, aesthetic degree can be increased, the hard coating is a potassium ion layer formed on the lens substrate, so that the wear resistance of the lens substrate can be increased, in operation, the second lead is connected with the mobile phone shell, the static electricity on the lens substrate is guided to the mobile phone shell through the second lead by the first lead, the static electricity on the mobile phone shell is absorbed by human hands, the human body introduces the static electricity to the ground, thereby achieving the effect of eliminating the static electricity on the camera lens of the mobile phone, and avoiding the static electricity on the lens from adsorbing dust in the air, the lens is not suitable for adsorbing dust, and the working performance of the lens is improved; simultaneously, the one end chucking of pivot is in the card strip, the magnetic sheet is fixed at the pivot other end, the magnetic sheet can rotate around the pivot, when shooing, rotate the magnetic sheet and expose the scenic spot of camera, the framing of shooing, after the completion of shooing, rotate the magnetic sheet and cover the lens, prevent that debris in the pocket or the knapsack from contacting the camera lens, thereby the effect of wearing and tearing camera lens has been reached, the fingerprint can be prevented to this lens, prevent static, and possess and subtract reflection, the light transmissivity is good, characteristics such as abrasionproof decreases, long service life, therefore, the clothes hanger is strong in practicability.
As an improvement of the anti-static sapphire mobile phone camera lens, the magnetic plate is a magnetic rubber plate. In practical application, the hardness of the material of the magnetic plate is lower than that of glass, the magnetic plate is preferably a single-sided magnetic rubber plate, and the magnetic plate can be made of various materials and can be flexibly arranged according to actual conditions.
As an improvement of anti-static sapphire mobile phone camera lens, the thickness of preventing the fingerprint layer is 1 ~ 4 mu m. The structure design enables the fingerprint prevention effect to be optimal.
As an improvement of anti-static sapphire cell-phone camera lens, the antistatic backing is anti-static resistive film, the thickness of antistatic backing is 2 ~ 6 mu m. In practical application, the antistatic layer can effectively prevent static electricity generated by friction when hands of people contact with the lens, so that the antistatic performance is improved.
As an improvement of the anti-static sapphire mobile phone camera lens, the anti-fingerprint layer is a fluorine film. In practical application, the fluorine film is mainly made of fluoride, a porous antireflection film layer can be covered, the contact area between water and oil and the lens can be reduced, oil and water drops are not easy to adhere to the surface of the lens, and a vacuum coating method is mostly adopted for plating the fingerprint prevention layer.
As an improvement of anti-static sapphire cell-phone camera lens, the thickness of antireflection layer is 0.5 ~ 2.5 mu m. The structure design enables the antireflection effect to be optimal.
As an improvement of anti-static sapphire cell-phone camera lens, the antireflection coating is antireflection coating. Besides, the antireflection layer can be made of other materials which can achieve the same effect, and can be flexibly arranged according to actual conditions.
As an improvement of anti-static sapphire cell-phone camera lens, the thickness of adding the hard coat is 4 ~ 8 mu m. This configuration can increase the wear resistance of the lens substrate.
As an improvement of anti-static sapphire mobile phone camera lens, first recess is the loop configuration. In practical application, the first groove is of a circular ring structure or a square ring structure and can be flexibly arranged according to practical conditions, and the first groove is arranged at the edge of the lens substrate to avoid interference on image pickup operation.
As an improvement of anti-static sapphire cell-phone camera lens, first wire passes through the conducting resin to be fixed in first recess. This design is capable of conducting static electricity on the lens substrate away through the first wire.
As an improvement of the anti-static sapphire mobile phone camera lens, the first wire the second wire is conductive plastic or conductive rubber. Besides, the first conducting wire and the second conducting wire can be made of other materials which can achieve the same effect, and can be flexibly arranged according to actual conditions.
As an improvement of anti-static sapphire cell-phone camera lens, draw the electric installation and still include electrically conductive paster, the second wire with electrically conductive paster is connected. This kind of structural design is favorable to with second wire and cell-phone shell fixed connection, is favorable to eliminating the static on the lens.
Compared with the prior art, the beneficial effects of the utility model are that: meanwhile, the anti-static fingerprint anti-reflection coating has the characteristics of fingerprint resistance, static resistance, reflection resistance, good light transmission, wear resistance and the like, and is long in service life and high in practicability.
Drawings
The accompanying drawings, which are described herein, serve to provide a further understanding of the invention and constitute a part of this specification, and the exemplary embodiments and descriptions thereof are provided for explaining the invention without unduly limiting it. In the drawings:
fig. 1 is one of three-dimensional structural diagrams in embodiment 1 of the present invention;
fig. 2 is a second three-dimensional structural diagram according to embodiment 1 of the present invention;
fig. 3 is one of three-dimensional structural diagrams in embodiment 2 of the present invention;
fig. 4 is a second three-dimensional structural diagram according to embodiment 2 of the present invention;
fig. 5 is a third schematic perspective view of embodiment 2 of the present invention;
wherein: 1-an anti-fingerprint layer; 2-an anti-reflection layer; 3-hardening layer; 4-a lens substrate; 41-a first groove; 42-a second groove; 5-a power-on device; 51-a first wire; 52-a second conductive line; 53-conductive patch; 6-a guard device; 61-clamping strip; 62-a rotating shaft; 63-a magnetic plate; 64-an adsorption block; 7-antistatic layer.
Detailed Description
As used in the specification and in the claims, certain terms are used to refer to particular components. As one skilled in the art will appreciate, manufacturers may refer to a component by different names. This specification and claims do not intend to distinguish between components that differ in name but not function. In the following description and in the claims, the terms "include" and "comprise" are used in an open-ended fashion, and thus should be interpreted to mean "include, but not limited to. "substantially" means within an acceptable error range, within which a person skilled in the art can solve the technical problem to substantially achieve the technical result.
In the description of the present invention, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "horizontal", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplification of description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention.
In the present invention, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "fixed" are to be construed broadly and may, for example, be fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood according to specific situations by those skilled in the art.
The present invention will be described in further detail with reference to the accompanying drawings, which are not intended to limit the present invention.
Example 1
As shown in fig. 1-2, an anti-static sapphire mobile phone camera lens comprises an anti-fingerprint layer 1, an anti-reflection layer 2, a hardened layer 3, a lens substrate 4, a power conducting device 5, a protective device 6 and an anti-static layer 7, wherein the anti-fingerprint layer 1, the anti-static layer 7, the anti-reflection layer 2 and the hardened layer 3 are sequentially stacked on the upper surface of the lens substrate 4 from top to bottom, a first groove 41 is formed in the lower surface of the lens substrate 4, a second groove 42 is formed in the side surface of the lens substrate 4, the second groove 42 is communicated with the first groove 41, the power conducting device 5 comprises a first wire 51 and a second wire 52, the first wire 51 is connected with the second wire 52, the first wire 51 is laid in the first groove 41, the second wire 52 penetrates through the second groove 42, the protective device 6 comprises a clamping strip 61, a rotating shaft 62, a magnetic plate 63 and an adsorption block 64, the clamping strip 61 is arranged on the anti-fingerprint layer 1, the rotating shaft 62 penetrates through the clamping strip 61, the magnetic plate 63 is clamped on the clamping strip 61 through the rotating shaft 62, and the magnetic plate 63 is connected with the adsorption block 64 through magnetic field force. In practical application, the material of the lens substrate 4 is preferably colorless sapphire material; the clamping strip 61 is arranged at the edge of the lens, the adsorption block 64 is preferably a magnetic adhesive tape, and the clamping strip 61 and the adsorption block 64 are preferably adhered to the fingerprint-proof layer 1 through glue; the fingerprint preventing layer 1 is used for reducing fingerprint prints and the attachment of various stains, the antireflection layer 2 is used for plating a metal plating layer with the wavelength of 1/4 light on the surface of a lens by utilizing the principle of light interference, so that light can completely pass through the lens without reflection, ultraviolet rays below 380nm and infrared rays above 700nm can be filtered, dazzling glare under strong light can be filtered, illusion can be removed, meanwhile, lens eddy can be reduced, the aesthetic degree can be increased, the hardening layer 3 is a potassium ion layer formed on the lens substrate 4, so that the wear resistance of the lens substrate 4 can be improved, in work, the second lead 52 is connected with the mobile phone shell, the first lead 51 leads static electricity on the lens substrate 4 to the mobile phone shell through the second lead 52, the static electricity on the mobile phone shell is absorbed by a human body through hands, the human body leads the static electricity to the ground, thereby achieving the effect of eliminating the static electricity on the mobile phone camera lens, and simultaneously, the anti-static layer 7 is beneficial to preventing hands from contacting with the upper surface of the lens and generating static electricity by friction, so that the static electricity on the lens is prevented from adsorbing dust in the air, the lens is not suitable for adsorbing the dust, and the working performance of the lens is improved; meanwhile, one end of the rotating shaft 62 is clamped in the clamping strip 61, the magnetic plate 63 is fixed at the other end of the rotating shaft 62, the magnetic plate 63 can rotate around the rotating shaft 62, when the camera is shot, the magnetic plate 63 is rotated to expose a view area of the camera, the camera is shot and view is viewed, after the shooting is completed, the magnetic plate 63 and the adsorption block 64 are rotated to cover the lens through magnetic field force attraction, and sundries in a pocket or sundries in a backpack are prevented from contacting the lens, so that the effect of preventing the lens from being worn is achieved, the lens can prevent fingerprints and static electricity, and has the characteristics of antireflection, good light transmission, wear resistance and the like, long service life and strong practicability.
Preferably, the magnetic plate 63 is a magnetic rubber plate. In practical application, the hardness of the material of the magnetic plate 63 is lower than that of glass, the magnetic plate 63 is preferably a single-sided magnetic rubber plate, and the magnetic plate 63 can be made of various materials and can be flexibly arranged according to actual conditions.
Preferably, the thickness of the anti-fingerprint layer 1 is 1 to 4 μm. The structure design enables the fingerprint prevention effect to be optimal.
Preferably, the antistatic layer 7 is an antistatic resistive film, and the thickness of the antistatic layer 7 is 2 to 6 μm. In practical application, the antistatic layer 7 can effectively prevent static electricity generated by friction when a hand of a person contacts with the lens, thereby improving antistatic performance.
Preferably, the anti-fingerprint layer 1 is a fluorine film. In practical application, the fluorine film is mainly made of fluoride, a porous antireflection film layer can be covered, the contact area between water and oil and the lens can be reduced, oil and water drops are not easy to adhere to the surface of the lens, and the anti-fingerprint plating layer 1 is mostly plated by a vacuum coating method.
Preferably, the thickness of the antireflection layer 2 is 0.5 to 2.5 μm. The structure design enables the antireflection effect to be optimal.
Preferably, the antireflection layer 2 is an antireflection film. Besides, the antireflection layer 2 may be made of other materials that can achieve the same effect, and may be flexibly set according to actual conditions.
Preferably, the thickness of the hard coating layer 3 is 4 to 8 μm. This structure can increase the wear resistance of the lens substrate 4.
Preferably, the first groove 41 has an annular configuration. In practical application, the first groove 41 is of a circular ring structure or a square ring structure, and can be flexibly arranged according to practical situations, and the first groove 41 is arranged at the edge of the lens substrate 4 to avoid interference on image pickup operation.
Preferably, the first lead 51 is fixed in the first groove 41 by conductive paste. This structure is designed to conduct the static electricity on the lens substrate 4 through the first wire 51.
Preferably, the first and second wires 51 and 52 are made of conductive plastic or conductive rubber. Besides, the first and second wires 51 and 52 may be made of other materials to achieve the same effect, and may be flexibly configured according to actual conditions.
The utility model discloses a theory of operation is: in practical application, the material of the lens substrate 4 is preferably colorless sapphire material; the clamping strip 61 is arranged at the edge of the lens, the adsorption block 64 is preferably a magnetic adhesive tape, and the clamping strip 61 and the adsorption block 64 are preferably adhered to the fingerprint-proof layer 1 through glue; the fingerprint preventing layer 1 is used for reducing fingerprint prints and the attachment of various stains, the antireflection layer 2 is used for plating a metal plating layer with the wavelength of 1/4 light on the surface of a lens by utilizing the principle of light interference, so that light can completely pass through the lens without reflection, ultraviolet rays below 380nm and infrared rays above 700nm can be filtered, dazzling glare under strong light can be filtered, illusion can be removed, meanwhile, lens eddy can be reduced, the aesthetic degree can be increased, the hardening layer 3 is a potassium ion layer formed on the lens substrate 4, so that the wear resistance of the lens substrate 4 can be improved, in work, the second lead 52 is connected with the mobile phone shell, the first lead 51 leads static electricity on the lens substrate 4 to the mobile phone shell through the second lead 52, the static electricity on the mobile phone shell is absorbed by a human body through hands, the human body leads the static electricity to the ground, thereby achieving the effect of eliminating the static electricity on the mobile phone camera lens, and simultaneously, the anti-static layer 7 is beneficial to preventing hands from contacting with the upper surface of the lens and generating static electricity by friction, so that the static electricity on the lens is prevented from adsorbing dust in the air, the lens is not suitable for adsorbing the dust, and the working performance of the lens is improved; meanwhile, one end of the rotating shaft 62 is clamped in the clamping strip 61, the magnetic plate 63 is fixed at the other end of the rotating shaft 62, the magnetic plate 63 can rotate around the rotating shaft 62, when the camera is shot, the magnetic plate 63 is rotated to expose a view area of the camera, the camera is shot and view is viewed, after the shooting is completed, the magnetic plate 63 and the adsorption block 64 are rotated to cover the lens through magnetic field force attraction, and sundries in a pocket or sundries in a backpack are prevented from contacting the lens, so that the effect of preventing the lens from being worn is achieved, the lens can prevent fingerprints and static electricity, and has the characteristics of antireflection, good light transmission, wear resistance and the like, long service life and strong practicability.
Example 2
As shown in fig. 3 to 5, different from embodiment 1 are: the electricity guiding device 5 further comprises a conductive patch 53 in the present embodiment, and the second wire 52 is connected to the conductive patch 53. This configuration facilitates the secure attachment of the second conductor 52 to the housing of the handset, which facilitates the elimination of static electricity from the lens.
The rest is the same as in embodiment 1, and is not described herein again.
While the foregoing description shows and describes several preferred embodiments of the invention, it is to be understood, as noted above, that the invention is not limited to the forms disclosed herein, but is not intended to be exhaustive or to exclude other embodiments and may be used in various other combinations, modifications, and environments and is capable of changes within the scope of the inventive concept as expressed herein, commensurate with the above teachings, or the skill or knowledge of the relevant art. But that modifications and variations may be effected by those skilled in the art without departing from the spirit and scope of the invention, which is to be limited only by the claims appended hereto.

Claims (10)

1. The utility model provides an prevent static sapphire cell-phone camera lens which characterized in that: the lens comprises an anti-fingerprint layer (1), an anti-reflection layer (2), a hardening layer (3), a lens substrate (4), an electricity guiding device (5), a protective device (6) and an anti-static layer (7), wherein the anti-fingerprint layer (1), the anti-static layer (7), the anti-reflection layer (2) and the hardening layer (3) are sequentially stacked on the upper surface of the lens substrate (4) from top to bottom, a first groove (41) is formed in the lower surface of the lens substrate (4), a second groove (42) is formed in the side surface of the lens substrate (4), the second groove (42) is communicated with the first groove (41), the electricity guiding device (5) comprises a first lead (51) and a second lead (52), the first lead (51) is connected with the second lead (52), and the first lead (51) is laid in the first groove (41), the second wire (52) runs through the second groove (42), the protection device (6) comprises a clamping strip (61), a rotating shaft (62), a magnetic plate (63) and an adsorption block (64), the clamping strip (61) is arranged on the fingerprint prevention layer (1), the rotating shaft (62) runs through the clamping strip (61), the magnetic plate (63) is arranged in the clamping strip (61) through the rotating shaft (62), and the magnetic plate (63) is connected with the adsorption block (64) through a magnetic field force.
2. The anti-static sapphire cell phone camera lens of claim 1, wherein: the magnetic plate (63) is a magnetic rubber plate.
3. The anti-static sapphire cell phone camera lens of claim 1, wherein: the thickness of the fingerprint-proof layer (1) is 1-4 mu m.
4. The anti-static sapphire cell phone camera lens of claim 1, wherein: the anti-static layer (7) is an anti-static resistance film, and the thickness of the anti-static layer (7) is 2-6 microns.
5. The anti-static sapphire cell phone camera lens of claim 1, wherein: the thickness of the antireflection layer (2) is 0.5-2.5 microns.
6. The anti-static sapphire cell phone camera lens of claim 1, wherein: the antireflection layer (2) is an antireflection film.
7. The anti-static sapphire cell phone camera lens of claim 1, wherein: the thickness of the hardening layer (3) is 4-8 mu m.
8. The anti-static sapphire cell phone camera lens of claim 1, wherein: the first groove (41) is of an annular structure.
9. The anti-static sapphire cell phone camera lens of claim 1, wherein: the first lead (51) is fixed in the first groove (41) through conductive adhesive; the first conducting wire (51) and the second conducting wire (52) are made of conductive plastic or conductive rubber.
10. The anti-static sapphire cell phone camera lens of claim 1, wherein: the electricity leading device (5) further comprises a conductive patch (53), and the second lead (52) is connected with the conductive patch (53).
CN202120084432.0U 2021-01-13 2021-01-13 Prevent static sapphire cell-phone camera lens Active CN214201822U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120084432.0U CN214201822U (en) 2021-01-13 2021-01-13 Prevent static sapphire cell-phone camera lens

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120084432.0U CN214201822U (en) 2021-01-13 2021-01-13 Prevent static sapphire cell-phone camera lens

Publications (1)

Publication Number Publication Date
CN214201822U true CN214201822U (en) 2021-09-14

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Date Code Title Description
GR01 Patent grant
GR01 Patent grant
PE01 Entry into force of the registration of the contract for pledge of patent right
PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of utility model: An anti-static sapphire phone camera lens

Effective date of registration: 20230928

Granted publication date: 20210914

Pledgee: China Co. truction Bank Corp Dongguan branch

Pledgor: DONGGUAN HONGHAN ELECTRONIC MACHINERY CO.,LTD.

Registration number: Y2023980059598