CN216133400U - Magnifying glass, anti-counterfeiting mark system and anti-counterfeiting structure system - Google Patents

Magnifying glass, anti-counterfeiting mark system and anti-counterfeiting structure system Download PDF

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CN216133400U
CN216133400U CN202022897892.3U CN202022897892U CN216133400U CN 216133400 U CN216133400 U CN 216133400U CN 202022897892 U CN202022897892 U CN 202022897892U CN 216133400 U CN216133400 U CN 216133400U
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texture
counterfeiting
random
elements
distribution
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孙显林
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Beijing Kesiyuan Technology Co ltd
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Beijing Kesiyuan Technology Co ltd
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Abstract

The utility model relates to the technical field of anti-counterfeiting, in particular to a magnifying lens for photographing and identifying anti-counterfeiting of photographing equipment, which comprises a magnifying lens, wherein the bottom cross section of the magnifying lens is non-circular. The bottom end section of the magnifying lens is set to be non-circular, namely, the edge part is omitted relative to the magnifying lens with the circular bottom end section, namely, the edge part with low imaging quality is removed, and only the central part with high imaging quality is left, so that the integral imaging quality of the magnifying lens is improved. The utility model also relates to an anti-counterfeiting mark system and an anti-counterfeiting structure system.

Description

Magnifying glass, anti-counterfeiting mark system and anti-counterfeiting structure system
Technical Field
The utility model relates to the technical field of anti-counterfeiting, in particular to a magnifying glass for photographing and identifying anti-counterfeiting by photographing equipment, an anti-counterfeiting mark system and an anti-counterfeiting structure system.
Background
The rapid development of market economy promotes the diversification and richness of market products and fully meets the requirements of consumers. But at the same time, the appearance of counterfeit and counterfeit products is abundant, which seriously affects the benefits of consumers and users. Especially for some products with known brands, once fake and inferior products appear, immeasurable loss is brought to the society and enterprises. The production, circulation, use and maintenance of these well-known branded products require security, effective anti-counterfeiting and tracking safeguards.
The anti-counterfeiting technology is a technology which can accurately identify true and false within a certain range and is not easy to copy and duplicate, namely simply a technology for preventing counterfeiting and faking, and measures are taken for achieving the anti-counterfeiting purpose. Anti-counterfeiting is a precaution against fraudulent activity that is imitated or duplicated without the permission of the owner. The anti-fake product is made by adopting anti-fake technology and has anti-fake function.
In recent years, the applicant is always dedicated to research and development of anti-counterfeiting technical products for amplification identification, and through a great deal of experimental research, the applicant finds that, as shown in fig. 1-2, the cross section of the bottom end of a magnifying lens for mobile phone amplification identification is circular, the central area of the magnifying lens has high imaging quality, and the edge area of the magnifying lens has low imaging quality, so that the imaging quality of the edge area affects the overall imaging quality of the magnifying lens.
In addition, the organic combination of the anti-counterfeiting technical product with the amplified identification and the anti-counterfeiting object is always the key point of the research of the applicant, the embedding of the anti-counterfeiting technical product with the amplified identification into the anti-counterfeiting object is a good scheme for the organic combination of the anti-counterfeiting technical product with the amplified identification and the anti-counterfeiting object, which is proposed by the applicant, however, some products or some parts of the products in the market are small, so that the anti-counterfeiting technical product with the amplified identification embedded therein needs to be made smaller, but the imaging quality of the anti-counterfeiting technical product with the amplified identification cannot be reduced under the condition that the anti-counterfeiting technical product with the amplified identification is made small, and the demand is not met in the market and needs to be solved urgently.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a magnifier for photographing and identifying anti-counterfeiting of photographing equipment, so as to solve the problem that the magnifier for amplifying and identifying anti-counterfeiting technical products which are small in size and do not influence imaging quality is needed in the market.
The second aspect of the present invention is to provide an anti-counterfeit label system, so as to solve the problem of the market that an anti-counterfeit technology product for amplified identification is needed, which has a smaller volume and does not affect the imaging quality.
A third aspect of the present invention aims to provide a security feature system that solves the same problems as the security marking system.
The first aspect of the utility model is achieved by:
the utility model provides a magnifying glass for equipment of shooing discernment is anti-fake, includes magnifying lens, magnifying lens's bottom cross-section is non-circular.
Preferably, the photographing device is a mobile phone.
The second aspect of the present invention is achieved by:
the utility model provides an anti-counterfeit label system, includes magnifying glass and anti-counterfeit label, the magnifying glass is foretell be used for the equipment of shooing discernment anti-fake magnifying glass, and under the no magnification condition, the human eye can't distinguish anti-counterfeit function characteristic of anti-counterfeit label.
Preferably, the security feature comprises security fibers or security textures.
Preferably, the anti-counterfeiting fibers are randomly distributed in the anti-counterfeiting mark, and under the condition of no amplification, the random distribution characteristics formed by the randomly distributed anti-counterfeiting fibers cannot be distinguished by human eyes, wherein the random distribution characteristics refer to the distribution images and/or the characteristics of the distribution images of the anti-counterfeiting fibers randomly distributed in the anti-counterfeiting mark;
the texture elements of the anti-counterfeiting texture are randomly distributed, under the condition of no amplification, human eyes cannot distinguish the random texture distribution characteristics formed by the random distribution of the texture elements, and the random texture distribution characteristics refer to the distribution images and/or the characteristics of the distribution images of the texture elements randomly distributed in the anti-counterfeiting functional layer.
Preferably, the anti-counterfeiting mark is a texture anti-counterfeiting mark, the anti-counterfeiting functional feature is anti-counterfeiting texture, and the anti-counterfeiting texture is composed of texture elements.
Preferably, the texture anti-counterfeiting mark comprises a carrier and the texture elements randomly distributed on the carrier, and under the condition of no amplification, human eyes cannot distinguish the random texture distribution characteristics formed by the randomly distributed texture elements, wherein the random texture distribution characteristics refer to the distribution images and/or the characteristics of the distribution images of the randomly distributed texture elements on the carrier.
Preferably, the texture anti-counterfeiting mark further comprises a code, and the code cannot be distinguished by human eyes under the condition of no amplification.
Preferably, the texture elements of the texture anti-counterfeiting mark are randomly formed in the process of coding manufacture, the random texture patterns formed by the random distribution of the texture elements are different and correspond to the codes, the random texture patterns do not affect the identification of the codes, the texture elements are the random details of the codes, and the random details are the sawteeth at the edges of the codes or the fine white dots white lines of the codes.
Preferably, the texture elements are randomly distributed in the coding pattern, the random texture pattern formed by the random distribution of the texture elements has a difference in gray scale or color from the coding pattern, and the difference can be distinguished by image recognition and/or human eyes.
Preferably, the texture elements are randomly distributed in the coding pattern and outside the coding pattern, the random texture pattern formed by the random distribution of the texture elements in the coding pattern has a gray scale or color difference with the coding pattern, and the difference can be distinguished by image recognition and/or human eyes.
Preferably, the textured elements are randomly distributed outside the coding pattern.
Preferably, the carrier is a transparent viewing substrate.
Preferably, the textured elements are disposed on the upper or lower surface of the transparent viewing substrate.
Preferably, the transparent viewing substrate is glass.
Preferably, the code is a two-dimensional code.
The third aspect of the present invention is achieved by:
an anti-counterfeiting structure system comprises a pasted object and any anti-counterfeiting mark system, wherein the anti-counterfeiting mark of the anti-counterfeiting mark system is arranged on the pasted object.
Preferably, the attached object is an anti-counterfeiting object or a package of the anti-counterfeiting object.
The beneficial effects of the utility model are very obvious, which are as follows:
1. according to the utility model, the cross section of the bottom end of the magnifying lens is set to be non-circular, namely, the edge part is saved relative to the magnifying lens with the circular cross section of the bottom end, so that the use of high-grade optical materials is saved, the manufacturing cost of the magnifying lens is reduced, the volume of the magnifying lens can be made smaller, the change to the anti-counterfeiting object can be reduced when the magnifying lens is embedded into the anti-counterfeiting object, and the influence on the appearance of the anti-counterfeiting object is smaller.
2. The bottom end section of the magnifying lens is set to be non-circular, namely, the edge part is omitted relative to the magnifying lens with the circular bottom end section, namely, the edge part with low imaging quality is removed, and only the central part with high imaging quality is left, so that the integral imaging quality of the magnifying lens is improved.
3. According to the utility model, the cross section of the bottom end of the magnifying lens is set to be non-circular, so that the injection molding efficiency is higher.
4. The anti-counterfeiting mark system and the anti-counterfeiting structure system have the advantages that the anti-counterfeiting function characteristics in the anti-counterfeiting mark cannot be distinguished by human eyes under the condition of no amplification, the counterfeiting difficulty is greatly enhanced, and the anti-counterfeiting performance is stronger.
Drawings
In order to more clearly illustrate the technical solution of the present invention, the drawings used in the description of the embodiments are briefly described below.
FIG. 1 is a front view of a magnifying glass with a circular cross-section at the bottom end
FIG. 2 is a top view of a magnifier with a circular cross-section at the bottom end
FIG. 3 is a front view of a magnifying glass with a non-circular cross-section at the bottom end
FIG. 4 is a top view of a magnifier with non-circular cross section at the lower end
FIG. 5 is an anti-counterfeit label system
FIG. 6 is a texture anti-counterfeit mark
FIG. 7 is an anti-counterfeit label using random details of two-dimensional code as texture elements
FIG. 8 is an anti-counterfeit mark with texture elements distributed in two-dimensional code pattern region
FIG. 9 is an anti-counterfeit mark with texture elements distributed inside and outside a two-dimensional code pattern region
FIG. 10 is an anti-counterfeit label with texture elements distributed outside a two-dimensional code pattern area
In the figure: 1. magnifying lens, 2, anti-counterfeiting mark, 3, texture element, 4, carrier, 5, two-dimensional code, 6 and random detail
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention will be described in further detail below with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described herein are merely illustrative of the utility model and are not intended to limit the utility model.
Example 1
Referring to fig. 3-4, the magnifier for photographing identification anti-counterfeiting of photographing equipment comprises a magnifying lens 1, wherein the cross section of the bottom end of the magnifying lens 1 is non-circular, and the magnifier is used for being matched with a mobile phone to perform amplification identification of anti-counterfeiting characteristics.
Preferably, the photographing device is a mobile phone or a tablet computer.
Preferably, the cross section of the bottom end of the magnifying lens 1 is square.
Example 2
Referring to fig. 5, an anti-counterfeit mark system comprises the above-mentioned magnifying glass for photographing and identifying anti-counterfeit by the photographing device, and further comprises an anti-counterfeit mark 2, wherein under the condition of no magnification, human eyes cannot distinguish anti-counterfeit functional features in the anti-counterfeit mark 2, and the anti-counterfeit functional features comprise anti-counterfeit fibers or anti-counterfeit textures.
The anti-counterfeiting fibers are randomly distributed in the anti-counterfeiting mark, and under the condition of no amplification, the randomly distributed characteristics formed by the randomly distributed anti-counterfeiting fibers cannot be distinguished by human eyes, wherein the randomly distributed characteristics refer to the distribution images and/or the characteristics of the distribution images of the anti-counterfeiting fibers randomly distributed in the anti-counterfeiting mark.
The texture elements of the anti-counterfeiting texture are randomly distributed, under the condition of no amplification, human eyes cannot distinguish the random texture distribution characteristics formed by the random distribution of the texture elements, and the random texture distribution characteristics refer to the distribution images and/or the characteristics of the distribution images of the texture elements randomly distributed in the anti-counterfeiting functional layer.
Referring to fig. 6, the anti-counterfeit label 2 is a texture anti-counterfeit label, the anti-counterfeit functional feature is an anti-counterfeit texture, the anti-counterfeit texture is composed of texture elements 3, the texture anti-counterfeit label includes a carrier 4 and the texture elements 3 randomly distributed on the carrier, human eyes cannot distinguish the random texture distribution feature composed of the randomly distributed texture elements 3 under the condition of no amplification, and the random texture distribution feature refers to a distribution image and/or a distribution image feature of the randomly distributed texture elements 3 on the carrier.
The texture anti-counterfeiting mark further comprises a code, under the condition of no amplification, human eyes cannot distinguish the code, and the code is a two-dimensional code 5. Under the condition of no amplification, the human eye cannot distinguish the two-dimensional code. Acquiring a distribution image of texture elements and/or characteristics of the distribution image in the texture anti-counterfeiting mark under an amplification condition as a distribution characteristic, storing the distribution characteristic acquired under the amplification condition in a background of the identification system as a storage distribution characteristic, acquiring the two-dimensional code in the texture anti-counterfeiting mark under the amplification condition and storing the two-dimensional code in the background of the identification system corresponding to the storage distribution characteristic, and checking the authenticity of the texture anti-counterfeiting mark by a person to be identified by calling the corresponding storage distribution characteristic through the two-dimensional code on the texture anti-counterfeiting mark to be identified.
Preferably, referring to fig. 7, the texture elements 3 in the texture anti-counterfeiting mark are randomly formed in the manufacturing process of the two-dimensional code 5, the random texture patterns formed by the texture elements 3 in a random distribution are different and correspond to the two-dimensional code 5, the random texture patterns do not affect the identification of the two-dimensional code 5, the random texture patterns can be visually identified under the shooting condition of an amplification identifier, the texture elements 3 are the random details 6 of the two-dimensional code 5, the random details 6 can be sawtooth details at the edge of the two-dimensional code 5 square, or fine white-dot white lines on the two-dimensional code 5 square, and the like, and the texture anti-counterfeiting mark is quite simple to manufacture and small in area, for example, 0.5mm × 0.5 mm.
Preferably, referring to fig. 8, the texture elements 3 in the texture anti-counterfeit mark are distributed in the pattern area of the two-dimensional code 5, the pattern of the two-dimensional code 5 is black, and the texture elements 3 in the pattern area of the two-dimensional code 5 are red, yellow or light gray ink dots or lines, so that the recognition of the two-dimensional code 5 is not affected after the magnified recognizer shoots, that is, the image recognition software of the magnified recognizer can distinguish the black color of the two-dimensional code 5 from the color of the texture elements 3.
The texture anti-counterfeiting mark is very simple to manufacture, low in cost and small in area, for example, 0.5mm x 0.5mm, but the color selection of the texture element 3 is limited.
Preferably, referring to fig. 9, the texture elements 3 in the texture anti-counterfeit mark are distributed in and outside the pattern area of the two-dimensional code 5, the pattern of the two-dimensional code 5 is black, and the texture elements 3 in the pattern area of the two-dimensional code 5 are red, yellow or light gray ink dots or lines, so that the reading of the two-dimensional code 5 cannot be affected after the amplification recognizer shoots, that is, the image recognition software of the amplification recognizer can distinguish the black color of the two-dimensional code 5 from the color of the texture elements 3, the color selection of the texture distribution outside the pattern area of the two-dimensional code 5 is not limited, and the manufacturing process of the texture anti-counterfeit mark is relatively complex.
Preferably, referring to fig. 10, the texture elements 3 in the texture anti-counterfeiting mark are distributed outside the pattern area of the two-dimensional code 5, the pattern of the two-dimensional code 5 is black, the color selection of the texture elements 3 outside the pattern area of the two-dimensional code 5 is not limited, the manufacturing process of the texture anti-counterfeiting mark is relatively complex, and a shielding layer needs to be coated on the pattern of the two-dimensional code 5 before the texture elements 3 are distributed.
Preferably, the carrier 4 is a transparent viewing substrate, and the textured elements 3 are disposed on an upper surface or a lower surface of the transparent viewing substrate.
Preferably, the transparent viewing substrate is glass.
Example 3
An anti-counterfeiting structure system comprises any anti-counterfeiting mark system and a pasted object, wherein an anti-counterfeiting mark 2 of the anti-counterfeiting mark system is arranged on the pasted object, and the pasted object is an anti-counterfeiting object or a package of the anti-counterfeiting object.
The above description is only a part of the preferred embodiments of the present invention, but the scope of the present invention is not limited thereto, and any modifications or alternative embodiments that can be easily conceived by those skilled in the art within the technical scope of the present invention are included in the scope of the present invention, and the scope of the present invention shall be subject to the claims.

Claims (17)

1. The utility model provides a magnifying glass for equipment of shooing discernment is anti-fake, includes magnifying lens, its characterized in that, magnifying lens's bottom cross-section is non-circular, equipment of shooing is the cell-phone.
2. An anti-counterfeiting mark system comprises a magnifying glass and an anti-counterfeiting mark, and is characterized in that the magnifying glass is the magnifying glass used for photographing and identifying the anti-counterfeiting mark of the photographing equipment according to claim 1, and the anti-counterfeiting function characteristic of the anti-counterfeiting mark cannot be distinguished by human eyes under the condition of no magnification.
3. The system of claim 2, wherein the functional security feature comprises security fibers or security textures.
4. The system according to claim 3, wherein the anti-counterfeit fibers are randomly distributed in the anti-counterfeit label, and the randomly distributed features of the randomly distributed anti-counterfeit fibers cannot be distinguished by human eyes without amplification, and the randomly distributed features refer to the distribution image and/or the features of the distribution image of the anti-counterfeit fibers randomly distributed in the anti-counterfeit label;
the texture elements of the anti-counterfeiting texture are randomly distributed, under the condition of no amplification, human eyes cannot distinguish the random texture distribution characteristics formed by the random distribution of the texture elements, and the random texture distribution characteristics refer to the distribution images and/or the characteristics of the distribution images of the texture elements randomly distributed in the anti-counterfeiting functional layer.
5. The system of claim 2, wherein the security feature is a textured security feature, the functional security feature is a texture, and the texture is formed by textured elements.
6. The system according to claim 5, wherein the textured anti-counterfeit mark comprises a carrier and the textured elements randomly distributed on the carrier, and a random texture distribution feature formed by the randomly distributed textured elements cannot be distinguished by human eyes without amplification, and the random texture distribution feature refers to a distribution image and/or a feature of the distribution image of the randomly distributed textured elements on the carrier.
7. The system of claim 6, wherein the textured security feature further comprises a code that is indistinguishable by the human eye without magnification.
8. The system of claim 7, wherein the texture elements of the texture anti-counterfeit mark are randomly formed during the encoding process, the random texture patterns formed by the random distribution of the texture elements are different and correspond to the codes, the random texture patterns do not affect the identification of the codes, the texture elements are the random details of the codes, and the random details are the saw teeth at the edges of the codes or the fine white dots of the codes.
9. The system according to claim 7, wherein the texture elements are randomly distributed in the code pattern, the random texture pattern formed by the random distribution of the texture elements has a gray scale or color difference from the code pattern, and the difference can be distinguished by image recognition and/or human eyes.
10. The system according to claim 7, wherein said textured elements are randomly distributed in and out of the coded pattern, the random textured pattern formed by the random distribution of said textured elements in the coded pattern has a difference in gray scale or color from the coded pattern, and said difference can be distinguished by image recognition and/or human eyes.
11. The system according to claim 7, wherein the textured elements are randomly distributed outside the coded pattern.
12. A security marking system as claimed in any one of claims 6 to 11 wherein said carrier is a transparent viewing substrate.
13. The identification system of claim 12 wherein the textured element is disposed on the upper or lower surface of the transparent viewing substrate.
14. The authentication mark system of claim 12 wherein said transparent viewing substrate is glass.
15. The system according to any one of claims 7 to 11, wherein the code is a two-dimensional code.
16. A security feature system comprising an adherend and further comprising the security marking system of any of claims 2 to 15, the security marking of the security marking system being provided on the adherend.
17. A security feature system as claimed in claim 16 in which the substrate is a security object or a package for a security object.
CN202022897892.3U 2019-12-12 2020-12-05 Magnifying glass, anti-counterfeiting mark system and anti-counterfeiting structure system Active CN216133400U (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN2019222229957 2019-12-12
CN201922222995 2019-12-12

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CN216133400U true CN216133400U (en) 2022-03-25

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