WO2017131447A1 - Procédé de production d'un film d'image de sécurité à base de microlentille présentant une épaisseur de l'ordre du micron - Google Patents

Procédé de production d'un film d'image de sécurité à base de microlentille présentant une épaisseur de l'ordre du micron Download PDF

Info

Publication number
WO2017131447A1
WO2017131447A1 PCT/KR2017/000905 KR2017000905W WO2017131447A1 WO 2017131447 A1 WO2017131447 A1 WO 2017131447A1 KR 2017000905 W KR2017000905 W KR 2017000905W WO 2017131447 A1 WO2017131447 A1 WO 2017131447A1
Authority
WO
WIPO (PCT)
Prior art keywords
layer
ultraviolet
pattern
security image
curable resin
Prior art date
Application number
PCT/KR2017/000905
Other languages
English (en)
Korean (ko)
Inventor
김종엽
Original Assignee
주식회사 비주얼넷
주식회사 우리옵토
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 주식회사 비주얼넷, 주식회사 우리옵토 filed Critical 주식회사 비주얼넷
Publication of WO2017131447A1 publication Critical patent/WO2017131447A1/fr

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C59/00Surface shaping of articles, e.g. embossing; Apparatus therefor
    • B29C59/02Surface shaping of articles, e.g. embossing; Apparatus therefor by mechanical means, e.g. pressing
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29DPRODUCING PARTICULAR ARTICLES FROM PLASTICS OR FROM SUBSTANCES IN A PLASTIC STATE
    • B29D11/00Producing optical elements, e.g. lenses or prisms
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41MPRINTING, DUPLICATING, MARKING, OR COPYING PROCESSES; COLOUR PRINTING
    • B41M3/00Printing processes to produce particular kinds of printed work, e.g. patterns
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B1/00Optical elements characterised by the material of which they are made; Optical coatings for optical elements
    • G02B1/10Optical coatings produced by application to, or surface treatment of, optical elements
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B3/00Simple or compound lenses

Definitions

  • the present invention relates to a method for manufacturing a microlens-based security image film, and more particularly, to a microlens-based security image film that can be formed into a thin thickness that can be attached to a target product using an auto labeling device. It relates to a manufacturing method.
  • a three-dimensional film manufacturing method has been developed and used that the lower pattern is enlarged through a microlens such as a lenticular lens made of transparent plastic, so that the naked eye can be identified as a three-dimensional image.
  • a three-dimensional film manufacturing method is applied to a label or various security projects for displaying the genuine, and is manufactured in a micro-optic security film method using a high-precision micro mold.
  • a set of transparent plastic lenticular lenses is precisely superimposed on a printing surface, and the three-dimensional image appears by the action of the lenticular lens.
  • each image is shown by the difference in the direction of the left and right eyes, thereby obtaining a three-dimensional effect, which is called a lenticular stereo system.
  • This is a special camera (binocular camera) that photographs a subject with a perspective, and the manuscript is offset printed on a flat panel of 300-line screen.
  • the thickness of the three-dimensional film is considerable, so that an apparatus which automatically attaches to the actual product such as an auto labeler can be used. There is no problem.
  • Korean Patent Nos. 10-1341072 and 10-1384717 disclose a three-dimensional lens sheet including a plurality of nanostructures, respectively, and a label for authenticity verification using a plurality of nanostructures and three-dimensional lenses.
  • a three-dimensional lens layer including a lenticular lens in which a plurality of semi-circular convex lenses are arranged in parallel, or a micro lens in which a plurality of semi-circular convex lenses are arranged in series, and a lower portion of the three-dimensional lens layer.
  • An identification mark forming unit including a focal length layer provided and an image forming layer disposed below the focal length layer; And a coupling member for allowing the identification mark forming portion to be coupled with the corresponding article, wherein the image forming layer includes a plurality of nano structures periodically and regularly arranged to protrude at intervals and heights of 50 to 200 nanometers. And between the nanostructure and the focal length layer, the nanostructure and the focal length layer are composed of a medium having a different refractive index.
  • a base layer film between the lens layer and the image pattern layer
  • such a base layer film is formed of an optical layer such as a lens layer and an image pattern layer
  • the thickness and refractive index of the lens are limited, and the lens layer, the base layer film, and the base layer film and the image pattern layer cause a deformation of the image due to the difference in refractive index, which is not clear and blurry.
  • the overall thickness becomes thick during the formation of each layer, and the intermediate process material is formed during the manufacturing process because the lens layer and the image pattern layer should be formed on the top and bottom surfaces of the base layer film.
  • the manufacturing process is difficult and product yield is also poor because it must be turned over.
  • the present invention has been invented to solve the above problems, the technical problem to be achieved by the present invention is to freely select the refractive index of the ultraviolet curing resin of each layer in the optical film of the multi-layer structure to provide a security image pattern film of various forms and specifications It is possible to manufacture, it is not necessary to invert the intermediate process without using the base film type base material, so that the thickness is thin and the yield is high, as well as a clearer pattern can be obtained, and it is attached to the target product using the auto labeling device. It is to provide a micro lens-based security image film manufacturing method that can be formed to a thin thickness as possible.
  • Micro lens-based security image film manufacturing method having a micron unit thickness according to the present invention for achieving the above object
  • step (b) placing the patterned surface of the first mold 22 on which the first microlens pattern 220 is formed, on the first ultraviolet curing resin 21 coated in step (a), and pressing and irradiating ultraviolet rays. Transferring the microlens pattern 220 to an upper surface of the first ultraviolet curing resin 21;
  • the printing material 27 including colored nanopowder and ultraviolet curable resin in the recessed portion of the security image pattern 260 formed on the second ultraviolet curing resin 23 so that the security image pattern 260 is visible. Impregnating and UV curing, or coating a reflective layer on the entire security image pattern 260 formed on the second ultraviolet curing resin 23 or coating a material having a refractive index difference of at least a certain amount. do.
  • the step (a) may be a step of applying a liquid first ultraviolet curable resin 21 on the release layer.
  • the manufacturing method may further include forming an additional pattern layer on the pattern layer formed by the step (e ') (e') after the step (e).
  • the refractive index difference between the 1st ultraviolet curing resin 21 and the 2nd ultraviolet curing resin 23 is 0.125-0.3.
  • the manufacturing method is applied between the step (c) and the step (d) and (c ') of the second ultraviolet curable resin 23 two times and between the lens layer and the security image pattern layer More preferably, the method further includes forming the breakdown layer 212 by partially coating the transparent silicon.
  • the refractive index of the ultraviolet curable resin of each layer can be freely selected from the optical film of the multilayer structure composed of the first lens layer and the composite layer, so that it is possible to manufacture security image pattern films of various shapes and specifications.
  • the refractive indices of the 1 ultraviolet curing resin 21 and the 2nd ultraviolet curing resin 23 and the shape of the lens it is possible to deepen the depth of focus and to display the inside of the product in three dimensions even with a relatively thin thickness. It is possible to represent a security image, which is relatively remarkably clear compared to that produced by the prior art.
  • the security image pattern layer should be formed on the other side of the substrate, resulting in increased product defects and a lower yield. In addition, it is difficult to obtain a clear pattern.
  • the microlens-based security image film manufacturing method having a micron unit thickness according to the present invention as described above is made by sequential lamination on only one surface of the surface substrate. Therefore, it is not necessary to turn over the intermediate process, the yield is higher than the conventional method, and a clearer pattern can be obtained.
  • the surface substrate serves only to support the first lens layer and the composite layer to be stacked thereon, and the surface substrate can be removed thereafter. Because of this, a remarkably thin security image pattern label can be manufactured and formed to a thickness thin enough to be attached to a target product using an auto labeling device.
  • FIG. 1 is a flow chart showing the main process of the microlens-based security image film manufacturing method having a micron unit thickness according to a preferred embodiment of the present invention
  • FIG. 2 is a view for explaining a process of forming a first lens layer by UV molding through steps S101 to S104 in the flowchart of FIG. 1;
  • FIG. 3 is a view for explaining a process of forming a composite layer of a second lens layer and a focal length layer through steps S106 to S110 in the flowchart of FIG. 1;
  • FIG. 5 is a view for explaining a pressure roll that can be applied to coat the ultraviolet curing resin and its adjustable coating conditions in the production method according to the invention
  • microlens-based security image film manufactured according to another embodiment of the method for manufacturing a microlens-based security image film having a micron unit thickness according to the present invention, having a release layer on a surface substrate to separate the surface substrate.
  • FIG. 7 is a cross-sectional view for explaining the effect of the embodiment having a fracture layer and the surface substrate is removed by the release layer separation, and
  • FIG. 8 is a sectional view for explaining the effect of the breaking layer formed by step S107 in the flowchart of FIG. 1; FIG.
  • a method of manufacturing a microlens-based security image film having a micron unit thickness according to the present invention may include a substrate such as PC (poly-carbonate) or PET (poly-ethylene) as shown in FIG. 2.
  • the pattern surface of (22) is placed on the first ultraviolet curing resin 21 coated in the step S100, pressurized and irradiated with ultraviolet rays (step S102). Transfer of the microlens pattern 220 is finished on the upper surface of the first ultraviolet curing resin 21 by ultraviolet curing (step S104). As a result, the first lens layer is formed on the surface substrate 20 by UV molding.
  • FIG. 3 is a view illustrating a process of forming a composite layer of a second lens layer and a focal length layer through steps S106 to S110 in the flowchart of FIG. 1.
  • the second ultraviolet curing resin 23 is coated on the microlens pattern 220 (step S106), and the pattern surface of the second mold 26 having the security image pattern 260 is formed.
  • step S106 Located on the upper surface of the second ultraviolet curing resin 23 applied in the step (S106) and pressurized and irradiated with ultraviolet (step S108).
  • the cured second ultraviolet curing resin 23 includes a security image pattern 220.
  • the refractive index difference between the first ultraviolet curable resin 21 and the second ultraviolet curable resin 23 is formed as a composite layer that acts as a second lens layer and serves as a focal length layer.
  • step S112 shows an example of the intermediate workpiece structure in which step S112 is completed.
  • a release layer 202 is provided on the surface substrate 20 to be removed after forming the lens layers and the focal length layer.
  • the thickness of the transparent substrate can be freely selected within 3 to 30 microns.
  • the surface substrate including the release layer it may be freely selected from 3 to 30 microns, and when the surface substrate is not removed, a surface substrate having a thickness of up to 3 microns may also be used.
  • the stereoscopic image pattern 260 is visually observed through the microlenses made on the bottom of the transparent substrate, and the thickness of the product is virtually determined by the second ultraviolet curing resin layer 23 serving as the substrate 20 and the focal length layer.
  • the thickness of the second ultraviolet curable resin 23 in the present invention can be implemented to about 60 to 70 microns and may be implemented in less than 90 microns.
  • the thickness of the second ultraviolet curable resin 23 may be about 60 to 70 microns, and the third ultraviolet curable resin may be less than 20 microns, which is illustrated in FIG. 5. It is possible by appropriately adjusting the thickness T, the pressurization pressure P of the press roll, the rotational speed V, and the viscosity V of the ultraviolet curable resin.
  • FIG. 6 is a microlens-based security image film manufactured according to another embodiment of a method for manufacturing a microlens-based security image film having a micron unit thickness according to the present invention, having a release layer on a surface substrate to separate a surface substrate.
  • the figure for explaining that it is possible and color representation by multilayer printing is shown.
  • the surface substrate 20 serves only to support the first lens layer, the second lens layer, the third lens layer, and the composite layer to be stacked thereon.
  • the product label thickness after removing the surface substrate can be implemented to less than 90 microns. Therefore, the manufacturing method according to the present invention is to be able to manufacture a product label having a security image pattern to a thickness thin enough to be automatically attached to the target product using the auto labeling device.
  • the multi-layer printing may be performed by further coating the fourth ultraviolet curable resin 28, forming the security image pattern 290, and filling the printing material 29. It is possible. Since the fourth ultraviolet curable resin 28 is less than 20 microns and can be positioned within the depth of focus range, the security image pattern 260 and the security image pattern 290 are represented as being located at the same focus, thereby enabling color implementation.
  • a breakdown layer 212 is provided between the lens layer and the security image pattern layer, which are layers formed by the second UV curable resin 23.
  • the breakdown layer 212 is formed by preferably partially coating transparent silicon between step S106 and step S108, for which the second ultraviolet curing resin 23 is applied and cured twice. And is formed between them. Since the destructive layer 212 is made of, for example, transparent silicon, the security image pattern is displayed. However, since the destructive layer 212 is not large, the destructive layer 212 may adversely affect the optically clear image.
  • the substrate is mass-produced in the form of a base film, not only the refractive index can not be freely selected, but also the selection of its thickness is considerably limited. As a result, in the prior art, the thickness of the entire label becomes relatively thick, which makes it impossible to attach using the autolabeler.
  • the method of manufacturing a microlens-based security image film having a micron unit thickness according to the present invention is based on UV molding as in the formation of the first lens layer without using a base film-type base material for the layer corresponding to the focal length layer.
  • a composite layer serving as the second lens layer and the focal length layer is laminated.
  • the base film type substrate is not used by stacking a composite layer that serves as the second lens layer and the focal length layer. Since the composite layer serving as the focal length layer is made of the same ultraviolet curable resin as the first lens layer and the security image pattern layer, the optical characteristics such as refractive index are the same, so that a clear image can be obtained without unnecessary optical loss.
  • the thickness of the transparent substrate can be freely selected within 3 to 30 microns.
  • the surface substrate including the release layer it may be freely selected from 3 to 30 microns, and when the surface substrate is not removed, a surface substrate having a thickness of up to 3 microns may also be used.
  • the refractive index of the ultraviolet curable resin can be selected relatively easily, so that the focal length layer can be freely designed to reduce the thickness of the focal length layer.
  • the thickness of the product label is 90 micron except for the surface substrate. It is possible to manufacture below.
  • the release layer it is possible to remove the surface substrate for supporting the lens layers and the focal length layer to be formed, so that it is possible to manufacture even thinner, for example, less than 50 microns.
  • the refractive index difference between the first ultraviolet curable resin 21 and the second ultraviolet curable resin 23 is preferably set to 0.125 to 0.3.
  • FIG. 8 is a cross-sectional view illustrating the effect of the breaking layer formed by step S107 in the flowchart of FIG. 1.
  • a product such as when immersed in chemicals or hot water, separates the lens layer and the security image pattern layer by a destructive layer 212 and is very thin, less than 100 microns.
  • the lens layer is easily irreversibly destroyed, completely losing its function as a security image pattern film.
  • the thickness of the security image film is not only thickened by the thickness of the base film itself, but also suitable for the refractive index and thickness of the substrate. Since the refractive index and thickness of the layer must be determined, the manufacturing process is limited, and various patterns cannot be freely produced, and the security image pattern is not clearly displayed.
  • the shapes of the first ultraviolet curable resin 21, the second ultraviolet curable resin 23 and the lens it is possible to deepen the depth of focus. It is possible to express, and the security image is relatively remarkably clear compared to that produced by the prior art.
  • the security image pattern layer should be formed on the other side of the substrate, resulting in increased product defects and a lower yield. In addition, it is difficult to obtain a clear pattern.
  • the microlens-based security image film manufacturing method having a micron unit thickness according to the present invention as described above is made by sequential lamination on only one surface of the surface substrate. Therefore, it is not necessary to turn over the intermediate process, the yield is higher than the conventional method, and a clearer pattern can be obtained.
  • the surface substrate serves only to support the first lens layer, the second lens layer, the third lens layer, and the composite layer to be stacked thereon, and then Since the surface substrate can be separated and removed, a remarkably thin security image pattern label can be produced and formed to a thickness thin enough to be attached to a target product using an auto labeling device.

Landscapes

  • Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Manufacturing & Machinery (AREA)
  • Health & Medical Sciences (AREA)
  • Ophthalmology & Optometry (AREA)
  • Casting Or Compression Moulding Of Plastics Or The Like (AREA)
  • Stereoscopic And Panoramic Photography (AREA)

Abstract

La présente invention concerne un procédé de production d'un film d'image de sécurité à base d'une microlentille présentant une taille de l'ordre du micron. Le procédé de production d'un film d'image stéréoscopique selon la présente invention comprend les étapes suivantes : (a) l'application d'une première résine durcissable par rayonnement ultraviolet (21) sur un substrat (20) ; (b) le positionnement de la surface de motif d'un premier moule (22) sur la première résine durcissable par rayonnement ultraviolet (21) appliquée dans l'étape (a), sa soumission à une pressurisation et un rayonnement ultraviolet, et de là le transfert d'un motif de microlentille (220) vers la surface supérieure de la première résine durcissable par rayonnement ultraviolet (21) ; (c) l'application d'une seconde résine durcissable par rayonnement ultraviolet (23) sur la première résine durcissable par rayonnement ultraviolet (21) ; et (d) le transfert de la surface de motif d'un second moule (26), sur laquelle un second motif d'image de sécurité (260) est formé, vers la surface supérieure de la seconde résine durcissable par rayonnement ultraviolet (23). La présente invention permet la production de films de motif d'image de sécurité présentant diverses formes et spécifications, dans la mesure où l'indice de réfraction d'une résine durcissable par rayonnement ultraviolet sur chaque couche d'un film optique multicouche peut être librement sélectionné ; peut permettre d'obtenir un motif plus vivant tout en étant fin et de présenter un rendement élevé sans utiliser de substrat sous une forme de film de base ni nécessiter le renversement d'un produit intermédiaire ; et peut être formé assez fin afin d'être fixé à un produit cible à l'aide d'un appareil d'étiquetage automatique.
PCT/KR2017/000905 2016-01-29 2017-01-25 Procédé de production d'un film d'image de sécurité à base de microlentille présentant une épaisseur de l'ordre du micron WO2017131447A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
KR1020160011738A KR101644830B1 (ko) 2016-01-29 2016-01-29 미크론 단위 두께를 가지는 마이크로 렌즈 기반의 보안 이미지 필름 제조 방법
KR10-2016-0011738 2016-01-29

Publications (1)

Publication Number Publication Date
WO2017131447A1 true WO2017131447A1 (fr) 2017-08-03

Family

ID=56714274

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/KR2017/000905 WO2017131447A1 (fr) 2016-01-29 2017-01-25 Procédé de production d'un film d'image de sécurité à base de microlentille présentant une épaisseur de l'ordre du micron

Country Status (2)

Country Link
KR (1) KR101644830B1 (fr)
WO (1) WO2017131447A1 (fr)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101861655B1 (ko) * 2017-08-25 2018-05-28 주식회사 비주얼넷 마이크로 패턴층 기반의 이미지 필름
CN111986557A (zh) * 2020-08-28 2020-11-24 江阴通利光电科技有限公司 采用定域涂布制造标签防伪膜的方法
KR102474270B1 (ko) * 2021-04-28 2022-12-05 주식회사 윈글로벌 위조방지용 광학 보안 라벨 및 이의 접착 방법

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20080023302A (ko) * 2005-05-18 2008-03-13 나노벤션스 홀딩스 엘엘씨 화상 표시 및 마이크로-광학 보안 시스템
KR20110053011A (ko) * 2009-11-13 2011-05-19 주식회사 미성포리테크 서로 다른 굴절률 표면을 구비한 입체 시트 및 그 입체 시트 제조방법
KR101168415B1 (ko) * 2006-12-29 2012-07-31 엘지이노텍 주식회사 광학 시트
KR20130085310A (ko) * 2012-01-19 2013-07-29 한국조폐공사 입체 보안필름 및 입체 보안필름을 구비한 사출품과 그 제조방법
KR101384717B1 (ko) * 2013-09-04 2014-04-16 주식회사 렌텍코리아 복수의 나노 구조물을 포함하여 히든 이미지를 표현하는 입체 렌즈시트

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20080023302A (ko) * 2005-05-18 2008-03-13 나노벤션스 홀딩스 엘엘씨 화상 표시 및 마이크로-광학 보안 시스템
KR101168415B1 (ko) * 2006-12-29 2012-07-31 엘지이노텍 주식회사 광학 시트
KR20110053011A (ko) * 2009-11-13 2011-05-19 주식회사 미성포리테크 서로 다른 굴절률 표면을 구비한 입체 시트 및 그 입체 시트 제조방법
KR20130085310A (ko) * 2012-01-19 2013-07-29 한국조폐공사 입체 보안필름 및 입체 보안필름을 구비한 사출품과 그 제조방법
KR101384717B1 (ko) * 2013-09-04 2014-04-16 주식회사 렌텍코리아 복수의 나노 구조물을 포함하여 히든 이미지를 표현하는 입체 렌즈시트

Also Published As

Publication number Publication date
KR101644830B1 (ko) 2016-08-11

Similar Documents

Publication Publication Date Title
JP5934388B2 (ja) 立体の保安要素が備えられた射出品とその製作方法
KR102380371B1 (ko) 은행권과 같은 중합체 보안 문서의 제조에 사용하기 위한 개선된 중합체 시트 재료
AU2009278275C1 (en) Method for producing microlenses
US6373636B1 (en) Heat stabilized and dimensionally stable thin lenticular film
WO2017131447A1 (fr) Procédé de production d'un film d'image de sécurité à base de microlentille présentant une épaisseur de l'ordre du micron
EP1206767B1 (fr) Composite d'affichage optique
CN101115611B (zh) 图案形成方法及图案形成装置
WO2015034190A1 (fr) Étiquette permettant d'identifier un article authentique au moyen d'une pluralité de nanostructures et d'une lentille tridimensionnelle
CN109903672A (zh) 一种微透镜防伪膜
CN106324846B (zh) 悬浮成像光学薄膜
CN109982835B (zh) 基于微图案层的图像薄膜
CN103154802B (zh) 立体图像显示器的多功能滤光片和包括其的立体图像显示装置
AU2009278274A1 (en) Security arrangement
WO2017131446A1 (fr) Procédé de production d'un film d'image de sécurité à base d'une lentille lenticulaire présentant une épaisseur de l'ordre du micron
KR102183210B1 (ko) 합지로 제조되는 보안요소, 그 제조방법 및 제조장치
WO2017005204A1 (fr) Film optique
JPH0766155B2 (ja) レンズ付印刷物の製造方法及びレンズ付印刷物
CN112630989A (zh) 立体二维码成像薄膜及二维码层的制备方法
CN115981025A (zh) 微光学成像系统及其制作方法
WO2015030563A1 (fr) Film optique composite dans lequel des anneaux de newton sont empêchés et procédé de sa fabrication
CN209785407U (zh) 一种微透镜防伪膜
CN110596796A (zh) 用于成像的聚合物薄膜及其制备方法
KR101035201B1 (ko) 표면 처리된 렌티큘러시트
CN219143212U (zh) 微光学成像系统及微光学成像系统模板
WO2019146871A1 (fr) Feuille de film et matériau de transfert

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 17744568

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 17744568

Country of ref document: EP

Kind code of ref document: A1