JP5935429B2 - Identification method of anti-counterfeit media - Google Patents

Identification method of anti-counterfeit media Download PDF

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JP5935429B2
JP5935429B2 JP2012064015A JP2012064015A JP5935429B2 JP 5935429 B2 JP5935429 B2 JP 5935429B2 JP 2012064015 A JP2012064015 A JP 2012064015A JP 2012064015 A JP2012064015 A JP 2012064015A JP 5935429 B2 JP5935429 B2 JP 5935429B2
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牛腸 智
智 牛腸
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Toppan Inc
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本発明は、偽造防止策が必要な媒体に適用して好適な偽造防止部材が貼付された偽造防止媒体の識別方法に関する。 The present invention relates to a method of identifying anti-counterfeit medium suitable anti-counterfeit member applied is attached to the medium requiring anti-counterfeiting measures.

近年、電子写真技術を利用した複写機が普及し、これを利用して誰でも簡単に紙などに印刷された文字や画像を複写することができるようになった。特に最近のカラーデジタル複写機によれば、原稿か複写物か見分けが極めて困難な複写物さえも容易に作成することができるようになった。   In recent years, copying machines using electrophotographic technology have become widespread, and anyone can easily copy characters and images printed on paper using this. In particular, with recent color digital copying machines, it has become possible to easily create even a copy that is extremely difficult to distinguish between a manuscript and a copy.

そのため、カラー複写機では再現不可能な特殊部分を有価証券など偽造防止が必要な媒体に設けておく技術が提案されている。このうち、ホログラム箔などのOVD(Optical Variable Device)箔(特許文献1、2参照)を有価証券等の表面上に設ける技術が既に実用化されている。これによれば、ホログラムの銀面の光が鏡面反射するため、Y(イエロー)、M(マジェンダ)、C(シアン)のカラートナーの掛け合わせでは再現できず、原稿で銀面だった部分が複写物では黒色に再現されるもの、あるいは、屈折率の異なるセラミックを適当な膜厚を持つ複数層に積層すると、見る角度によって色が変化する特殊な光学薄膜が形成され(特許文献1参照)、かかる性質は、複写物では得ることができないので、容易に真偽判定が可能であるもの、さらにまた、この方法で形成された薄膜を鱗片状に砕き、この破片をインキバインダーに混入して印刷を行う方法も提案されている。   For this reason, a technique has been proposed in which a special portion that cannot be reproduced by a color copying machine is provided on a medium such as securities that requires anti-counterfeiting. Among these, a technique of providing an OVD (Optical Variable Device) foil (see Patent Documents 1 and 2) such as a hologram foil on the surface of securities or the like has already been put into practical use. According to this, since the light on the silver surface of the hologram is specularly reflected, it cannot be reproduced by combining Y (yellow), M (magenta), and C (cyan) color toners. When a copy is reproduced in black or ceramics with different refractive indexes are laminated on a plurality of layers having an appropriate film thickness, a special optical thin film whose color changes depending on the viewing angle is formed (see Patent Document 1). Since this property cannot be obtained with a copy, the authenticity can be easily determined. Furthermore, the thin film formed by this method is crushed into a scaly shape, and the fragments are mixed into an ink binder. A method for printing is also proposed.

しかしながら、ホログラムはエンボス技術が発達したため、レリーフ型の回折光を用いた反射層の形成が以前より低難易度化していること、及び多層膜フィルムが一般の包装用フィルムとして販売され始めたことなどから、偽造防止効果が低下してきた。   However, because of the development of embossing technology for holograms, the formation of reflective layers using relief-type diffracted light has become more difficult than before, and multilayer films have begun to be sold as general packaging films. Therefore, the forgery prevention effect has been reduced.

この為、近年のホログラムでは、回折光を発生させる領域を部分的に備え、例えば、ホログラムによるマイクロ文字やマイクロパターンを表現することで、偽造防止効果を向上させる方法が提案されている(特許文献2参照)。   For this reason, in recent holograms, a method has been proposed in which a region for generating diffracted light is partially provided and, for example, a forgery prevention effect is improved by expressing micro characters or micro patterns by the hologram (Patent Literature). 2).

このような回折光を発生させる領域を部分的に備えるホログラムは、一般的にレリーフ型の回折構造に対し、パターン状の金属等の反射層を設ける方法で製造される。金属等の反射層のパターン化は、下記の4種の方法が一般的である(特許文献3参照)。   A hologram that partially includes such a region that generates diffracted light is generally manufactured by a method in which a reflective layer such as a patterned metal is provided on a relief type diffractive structure. The following four methods are generally used for patterning a reflective layer of metal or the like (see Patent Document 3).

1)水洗インキを基材状にポジパターンで印刷し、マスク剤で印刷されていない部分を腐食剤で腐食させることによりパターンを形成するエッチング加工。
2)金属反射層上にマスク剤をポジパターンで印刷し、マスク剤で印刷されていない部分を腐食剤で腐食させることによりパターンを形成するエッチング加工。
3)金属反射層の除去したい部分に強いレーザーを当てて金属等の反射層を選択的に破壊することによりパターンを形成するレーザー加工。
4)金属反射層上にフォトレジスト剤を全面に印刷し、ポジパターンでフォトレジストした後、ネガパターン部のフォトレジスト剤を溶解除去し、同時に、または別工程で金属反射層を腐食させることによりパターンを形成するフォトレジスト加工。
しかしながら、上記のようにパターン状の金属等の反射層の作製方法は様々なものがあることより、パターン形成による偽造防止効果が向上したとは一概に言えない。
1) An etching process in which a washing ink is printed in a positive pattern on a substrate and a pattern is formed by corroding a portion not printed with a mask agent with a corrosive agent.
2) An etching process in which a mask agent is printed as a positive pattern on the metal reflective layer, and a pattern is formed by corroding a portion not printed with the mask agent with a corrosive agent.
3) Laser processing for forming a pattern by applying a strong laser to a portion of the metal reflective layer to be removed and selectively destroying the reflective layer of metal or the like.
4) By printing a photoresist agent on the entire surface of the metal reflective layer, photoresist with a positive pattern, dissolving and removing the photoresist agent in the negative pattern portion, and corroding the metal reflective layer simultaneously or in a separate process Photoresist processing to form a pattern.
However, as described above, since there are various methods for producing a reflective layer made of a patterned metal or the like, it cannot be said that the effect of preventing forgery by pattern formation has been improved.

一方、紙等の基材に微小な孔を開け、微小孔を一定間隔の集合体としてパターン状に形成することにより、見た目では孔が見え難いが、光をかざしてみると微小孔を通して見える光が拡散し、形成されたパターンを目視にて見ることができる。微小孔を基材に開けるためには、針若しくはレーザーを用いるため、孔の形状は通常円形若しくは楕円形となるが、照射するレーザー光にマスクをすることで、任意の形状の孔を開け、それをルーペで見て真偽判定する方法がある(特許文献4参照)。   On the other hand, by forming microscopic holes in a substrate such as paper and forming the microholes in a pattern as a set of fixed intervals, it is difficult to see the holes visually, but light that can be seen through the micropores when light is held over Diffuses and the formed pattern can be visually observed. In order to open a minute hole in a substrate, since a needle or a laser is used, the shape of the hole is usually circular or elliptical, but by masking the laser beam to be irradiated, a hole of an arbitrary shape is opened, There is a method of judging authenticity by looking at it with a loupe (see Patent Document 4).

しかしながら、この方法において真偽判定にルーペを使う必要があり、特殊形状を施した目視ではわからない大きさの微小孔をルーペで見て形状を判断するためには、時間と技術が必要となり、作業に煩雑さを伴う。   However, in this method, it is necessary to use a loupe for true / false judgment, and it takes time and technology to judge the shape by looking at the micro holes with a special shape that cannot be seen with the loupe. Is complicated.

特開2004−505158号公報JP 2004-505158 A 特開2005−99090号公報JP-A-2005-99090 特開2003―255115号公報JP 2003-255115 A 特開2002−254868号公報JP 2002-254868 A

本発明は、偽造防止部材を適用した媒体の真偽判定を比較的簡単に実施できる偽造防止媒体の識別方法を提供することを目的とする。 The present invention aims at providing a method for identifying the medium for preventing forgery of the authenticity determination of the medium according to the counterfeit preventing member can be relatively simple to implement.

上記課題を達成すべくなされた請求項1に係る発明は、基材上に偽造防止部材の設けられた偽造防止媒体の識別方法であって、前記偽造防止部材は、少なくとも金属反射層が設けられた転写箔若しくはシール形状の部材であり、前記金属反射層には、幅および高さが0.25mm以下の微小文字または記号状に金属が除かれた部分が等間隔に配置されており、さらに前記微小文字または記号の集合体の配列によって文字または記号が形成されており、前記偽造防止媒体において、前記偽造防止部材が添付されている部分に光をかざすことにより前記微小文字または記号で形成された集合体による文字または記号が出現し、かつ前記微小文字または記号の配列間隔と同じピッチで構成された凸レンズアレイを重ねることで、前記微小文字または記号が拡大されて出現することを特徴とする。 The invention according to claim 1 to achieve the above object is a method for identifying an anti-counterfeit medium provided with a forgery prevention member on a substrate, wherein the anti-counterfeit member is provided with at least a metal reflection layer. A transfer foil or a seal-shaped member, and the metal reflective layer has a portion in which the metal is removed in the form of minute characters or symbols having a width and height of 0.25 mm or less at equal intervals; wherein there is formed a character or symbol by the sequence of collection of micro-characters or symbols in said anti-counterfeit medium, the formed in the fine lower case or symbols by holding the light in the portion where the forgery preventing member is attached characters or symbols appearing by aggregates, and by superimposing the convex lens array composed of the same pitch as the arrangement interval of the minute characters or symbols, the fine lower, or No. characterized in that the appearance is enlarged.

本発明によれば、偽造防止部材を適用した媒体の真偽判定を比較的簡単に実施できる偽造防止媒体の識別方法を提供することができる。 According to the present invention can provide a method for identifying the medium for preventing forgery it can be relatively easily carried out authenticity determination of the medium according to the counterfeit preventing member.

偽造防止媒体において基材上に貼付された偽造防止部材は、見た目は金属光沢がある回折格子状のパッチ若しくはストライプであるが、光をかざして見ると金属光沢が除かれた微小孔から光が漏れて、通常では見えない微小孔が文字若しくは記号のパターンとして認識され、さらにこの状態で微小孔の配列と同じピッチで並べられたマイクロレンズアレイフィルムを重ねると、微小孔が形成している文字若しくは記号等の模様が浮かび上がる。これにより、簡単な検証方法による真偽判定を可能にし、さらに簡単な検証器を用いるこ
とで、さらなる真偽判定を可能にして、転写箔やシールとして、有価証券や証書に添付し、セキュリティを向上させることができる。
The anti- counterfeiting member affixed on the base material in the anti-counterfeit medium is a diffraction grating-like patch or stripe with a metallic luster, but when viewed through the light, the light is emitted from the minute holes from which the metallic luster has been removed. Leaked and micro holes that are not normally visible are recognized as a pattern of characters or symbols, and in this state, if microlens array films arranged at the same pitch as the micro hole array are overlaid, the characters formed with the micro holes Or patterns such as symbols emerge. This makes it possible to determine authenticity using a simple verification method, and by using a simpler verifier, further authenticity determination is possible, and it is attached to securities and certificates as a transfer foil or seal, ensuring security. Can be improved.

本発明の実施形態にて用いられる偽造防止部材の一例を一部を拡大して示す平面図。The top view which expands and shows a part of an example of the forgery prevention member used in embodiment of this invention. 上記実施形態にて用いられる偽造防止部材を有価証券に貼付した一例を示す平面図。The top view which shows an example which stuck the forgery prevention member used in the said embodiment on securities. 図2に示す偽造防止媒体の真偽判定方法を説明するための概略図。Schematic for demonstrating the authenticity determination method of the forgery prevention medium shown in FIG. 上記実施形態に係る偽造防止部材の真偽判定に使用する検証フィルムの構造を示した概念図。The conceptual diagram which showed the structure of the verification film used for the authenticity determination of the forgery prevention member which concerns on the said embodiment. 図2に示す偽造防止媒体の真偽判定方法を説明するための概略図。Schematic for demonstrating the authenticity determination method of the forgery prevention medium shown in FIG.

以下図面を参照して本発明の実施形態を説明する。   Embodiments of the present invention will be described below with reference to the drawings.

本発明に用いられる偽造防止部材の一形態は、金属反射層を有する転写箔若しくはシール形状の偽造防止部材であり、図1に示した偽造防止部材1は、金属蒸着部12および窓開き部13から構成されている。さらに部材の形態によって、金属蒸着部12の上面若しくは下面に回折格子層、剥離保護層、粘着層若しくは接着層が設けることもできる(図示せず)。偽造防止部材1中に設けられた窓開き部13は、図1の拡大図で示したように文字若しくは記号を形成しており、かつ窓開き部13は一定間隔で整列している。さらに整列された窓開き部13は偽造防止部材1の中でさらに文字若しくは記号を形成している。 One form of the forgery prevention member used in the present invention is a transfer foil having a metal reflection layer or a seal-shaped forgery prevention member. The forgery prevention member 1 shown in FIG. It is composed of Further, depending on the form of the member, a diffraction grating layer, a peeling protective layer, an adhesive layer, or an adhesive layer can be provided on the upper surface or the lower surface of the metal vapor deposition section 12 (not shown). The window opening 13 provided in the forgery prevention member 1 forms characters or symbols as shown in the enlarged view of FIG. 1, and the window openings 13 are aligned at regular intervals. Furthermore, the aligned window openings 13 further form letters or symbols in the forgery prevention member 1.

窓開き部13の形成方法は、従来の技術で説明した方法の他に、例えば特開2009−63703号公報に記載のように、微細隆起構造部を設けることにより撥水性を高めてマスク層が形成されない部分を作り、金属蒸着部12をエッチングする方法もある。   In addition to the method described in the prior art, the method for forming the window opening portion 13 can improve the water repellency by providing a fine raised structure portion as described in JP 2009-63703 A, for example. There is also a method in which a portion not formed is formed and the metal vapor deposition portion 12 is etched.

窓開き部13の一つの文字または記号の大きさは幅、高さ共に0.25mm以下であり、これ以上大きい場合、目視でも窓開き部13が視認できてしまうため、信頼性の高い偽造防止効果が期待できない。逆に小さすぎる場合、強い光を照射しないと光が漏れてこないことより偽造防止部材1に隠された文字が出現しないか、金属蒸着部12が強い光のため遮蔽ができず、偽造防止部材1に隠された文字が視認できなくなる可能性がある。従って、窓開き部13の一つの大きさは、幅、高さ共に0.02〜0.25mmの範囲であることが好ましい。   The size of one character or symbol of the window opening portion 13 is 0.25 mm or less in both width and height, and if it is larger than this, the window opening portion 13 can be visually recognized. The effect cannot be expected. On the other hand, if it is too small, the characters hidden in the anti-counterfeiting member 1 will not appear unless strong light is irradiated, or the metal deposition part 12 cannot be shielded due to the strong light, and the anti-counterfeiting member There is a possibility that characters hidden in 1 cannot be visually recognized. Therefore, it is preferable that one size of the window opening 13 is in the range of 0.02 to 0.25 mm in both width and height.

本発明に用いられる偽造防止部材の他の形態は、図1に示した偽造防止部材1において、金属蒸着部12が回折格子となっているものである。回折格子を設けることで、目視による真偽判定機能も加わり、より偽造防止効果が高くなる。この回折格子として、レリーフ型エンボスホログラムが一般的に用いられているが、それ以外の方法でも目視による偽造防止効果が出るものであればよい。 Another form of the anti-counterfeit member used in the present invention is the anti-counterfeit member 1 shown in FIG. By providing the diffraction grating, a function of visually judging whether the image is true or false is added, and the effect of preventing forgery is further enhanced. As this diffraction grating, a relief-type embossed hologram is generally used. However, any other method may be used as long as it has a visual forgery prevention effect.

本発明に用いられる偽造防止媒体の一形態は、図2に示した偽造防止媒体2において、基材上に印刷部21が設けられ、かつ偽造防止部材1が貼付された形態となっている。基材は、紙、プラスチックシート、ガラス、木材、ゴム等の単独若しくは組み合わせであれば特に指定はないが、真偽判定する際に基材の裏面から光を照射した際に表側に光が見え
るものである必要がある。
One form of an anti-counterfeit medium used in the present invention is an anti-counterfeit medium 2 shown in FIG. 2 in which a printing unit 21 is provided on a base material and an anti-counterfeit member 1 is attached. The base material is not specified as long as it is a single or combination of paper, plastic sheet, glass, wood, rubber, etc., but light is visible on the front side when light is irradiated from the back surface of the base material when judging authenticity. It needs to be a thing.

発明の実施形態は、図3および図5に示した偽造防止媒体2の真偽判定方法についてである。偽造防止媒体2は、通常の目視で見た場合、偽造防止部1は金属光沢若しくはホログラム等の回折格子を成した箔若しくはシールであり、目視による真偽判定が可能なものである。しかしながら従来の技術で説明したとおり、回折格子の製造が低難易度化していることより、さらなる真偽判定手段として、偽造防止媒体2は図3に示したような方法で真偽判定が可能である。図3において、偽造防止媒体2の裏面から光源31を照射する。その際、偽造防止部1の窓開き部13から光が漏れて金属蒸着部12との間で明暗のコントラストができ、窓開き部13で形成された文字パターンが出現する(裏面から光を当てた状態の見え方13a)。裏面を照射する光源31が無い場合、室内の照明や太陽光で代用することもできる。 The embodiment of the present invention relates to the authenticity determination method for the forgery prevention medium 2 shown in FIGS. When the anti-counterfeit medium 2 is viewed with normal visual observation, the anti-counterfeit portion 1 is a foil or a seal formed of a diffraction grating such as a metallic luster or a hologram, and the authenticity determination by visual inspection is possible. However, as explained in the prior art, since the manufacturing of the diffraction grating has become difficult, as a further authenticity determination means, the anti-counterfeit medium 2 can determine the authenticity by the method shown in FIG. is there. In FIG. 3, the light source 31 is irradiated from the back surface of the forgery prevention medium 2. At that time, light leaks from the window opening 13 of the forgery prevention section 1 to create a contrast of light and dark with the metal vapor deposition section 12, and a character pattern formed by the window opening 13 appears (light is applied from the back side). (13a). When there is no light source 31 for irradiating the back surface, indoor lighting or sunlight can be substituted.

また、図4は偽造防止媒体2のさらなる真偽判定を行う際に使用する検証フィルム4の概略図を示したもので、検証フィルム4の表面はある一定間隔で敷き詰められた凸レンズアレイ41で形成されている。この凸レンズアレイ41のピッチと窓開き部13のピッチを一致させることで、特許第2761861号明細書や特許第4907049号明細書で紹介されているような現象が起こり、図5に示したように窓開き部13の形状が拡大されて目視で見えるようになる(検証フィルム4を重ね、裏面から光を当てた状態の見え方13b)。この窓開き部13の形状は、ルーペで拡大してみることもできるが、ピント合わせ等に時間がかかるため、一度に大量には検証できないが、本方式をとれば、比較的短時間に真偽判定が可能となる。   FIG. 4 is a schematic view of the verification film 4 used when further determination of the authenticity of the anti-counterfeit medium 2 is performed. The surface of the verification film 4 is formed by a convex lens array 41 spread at a certain interval. Has been. By causing the pitch of the convex lens array 41 and the pitch of the window opening 13 to coincide with each other, a phenomenon as introduced in Japanese Patent Nos. 2761861 and 4907049 occurs, as shown in FIG. The shape of the window opening 13 is enlarged and can be seen with the eyes (the appearance 13b in a state where the verification film 4 is overlaid and light is applied from the back surface). Although the shape of the window opening 13 can be enlarged with a magnifying glass, it takes time to focus, etc., so it cannot be verified in large quantities at once. False determination is possible.

12μm厚の透明PET基材上にポリウレタン系樹脂を乾燥膜厚2μm塗工し、ホログラム形成層を作製した。次いで、ロールエンボス法により、レリーフ構造形成層の表面に回折格子を形成してホログラムエンボスを得た。次に真空蒸着法により純アルミを80nm蒸着した。このアルミ蒸着層を、YAGレーザーにて文字高さ75μm、線幅10μmでアルミを飛ばし、“¥”のマークを形成した。このマークを上下方向および左右方向で150μmピッチで形成し、また全体としては“T”の文字を形成し、その上からアクリル系粘着層を乾燥膜厚20μm塗布し、所定の大きさに切り、100g/m2厚の上質紙に絵柄が印刷された印刷物上に貼付して偽造防止媒体を得た。 A polyurethane-based resin was applied to a 12 μm thick transparent PET substrate with a dry film thickness of 2 μm to produce a hologram forming layer. Subsequently, a diffraction grating was formed on the surface of the relief structure forming layer by a roll embossing method to obtain a hologram embossing. Next, 80 nm of pure aluminum was deposited by vacuum deposition. The aluminum deposited layer was blown with a YAG laser at a character height of 75 μm and a line width of 10 μm to form a “¥” mark. This mark is formed at a pitch of 150 μm in the vertical direction and the horizontal direction, and the letter “T” is formed as a whole, and an acrylic adhesive layer is applied thereon with a dry film thickness of 20 μm, cut into a predetermined size, A forgery prevention medium was obtained by pasting on a printed material having a pattern printed on high-quality paper having a thickness of 100 g / m 2 .

実施例1の偽造防止媒体は、目視ではホログラムパッチが施されており、これにより真偽判定ができるが、この偽造防止媒体の裏面から光を照射すると、目視ではわからなかったホログラム上の窓開き部から光が漏れて、“T”の文字が視認できた。さらに裏面から光を当てた状態で、150μmピッチの凸レンズアレイがエンボスされた検証フィルムを重ねると、“¥”の文字が拡大されて視認できた。   The anti-counterfeit medium of Example 1 is visually provided with a hologram patch, so that authenticity can be determined. However, when light is irradiated from the back of the anti-counterfeit medium, a window opening on the hologram that was not visually observed Light leaked from the part, and the letter “T” was visible. Further, when a verification film with an embossed convex lens array with a pitch of 150 μm was stacked in a state where light was applied from the back surface, the character “¥” was enlarged and visually recognized.

本発明は、偽造防止媒体において、目視による真偽判定の他に、複数の検証方法が可能な偽造防止媒体の識別方法を提供する。 The present invention provides a medium for preventing forgery, in addition to the authenticity determination by visual, provides a method of identifying counterfeit prevention medium capable multiple validation methods.

目視での検証の他、簡単な方法でさらなる真偽判定ができることより、より一層の偽造防止効果が期待できる。   In addition to the visual verification, a further anti-counterfeiting effect can be expected from the fact that a simple method can be used for further authenticity determination.

1…偽造防止部材、2…偽造防止媒体、4…検証フィルム、12…金属蒸着部、13…窓開き部、13a…裏面から光を当てた状態の見え方、13b…検証フィルムを重ね、裏面から光を当てた状態の見え方、21…印刷部、31…光源、41…凸レンズアレイ。   DESCRIPTION OF SYMBOLS 1 ... Anti-counterfeit member, 2 ... Anti-counterfeit medium, 4 ... Verification film, 12 ... Metal vapor deposition part, 13 ... Window opening part, 13a ... How the light is applied from the back surface, 13b ... Overlay the verification film , 21 ... printing part, 31 ... light source, 41 ... convex lens array.

Claims (1)

基材上に偽造防止部材の設けられた偽造防止媒体の識別方法であって、
前記偽造防止部材は、少なくとも金属反射層が設けられた転写箔若しくはシール形状の部材であり、前記金属反射層には、幅および高さが0.25mm以下の微小文字または記号状に金属が除かれた部分が等間隔に配置されており、さらに前記微小文字または記号の集合体の配列によって文字または記号が形成されており、
前記偽造防止媒体において、前記偽造防止部材が添付されている部分に光をかざすことにより前記微小文字または記号で形成された集合体による文字または記号が出現し、かつ前記微小文字または記号の配列間隔と同じピッチで構成された凸レンズアレイを重ねることで、前記微小文字または記号が拡大されて出現することを特徴とする偽造防止媒体の識別方法。
A method for identifying an anti-counterfeit medium provided with an anti-counterfeit member on a substrate,
The anti-counterfeiting member is a transfer foil or a seal-shaped member provided with at least a metal reflective layer, and the metal reflective layer has a width and height of 0.25 mm or less, and the metal is removed in the form of small letters or symbols. Are arranged at equal intervals, and further, a character or symbol is formed by an array of a collection of the minute characters or symbols,
In the anti-counterfeit medium, the characters or symbols by aggregate formed by fine lowercase or symbols appearing by holding the light in the portion where the forgery preventing member is attached, and the arrangement interval of the minute characters or symbols An anti-counterfeit medium identification method, wherein the minute characters or symbols appear in an enlarged manner by overlapping convex lens arrays configured at the same pitch.
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