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公开(公告)号:US20230244184A1
公开(公告)日:2023-08-03
申请号:US17773126
申请日:2020-10-30
Applicant: ACR II GLASS AMERICA INC.
Inventor: Markus Walter Pohlen , Steven Scott Christman , Emily Anne Curtis , Yu Matsuda
IPC: G03H1/02
CPC classification number: G03H1/0276 , G03H2250/37 , G03H2270/11 , G02B27/0103
Abstract: A replication tool for use in preparing a holographic film by replication, comprising a base structure having a structure body and a channel configured to receive at least one of a laminated glazing and a master holographic film assembly.
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公开(公告)号:US11679649B2
公开(公告)日:2023-06-20
申请号:US17282535
申请日:2019-10-03
Applicant: ACR II GLASS AMERICA INC.
Inventor: Olivier Farreyrol , Yu Matsuda , Markus Walter Pohlen
CPC classification number: B60J1/001 , B32B7/023 , B32B17/10036 , B32B17/10504 , B32B17/10513 , B32B17/10761 , B60J3/04 , B32B17/10201 , B32B17/10532 , B32B2255/10 , B32B2255/20 , B32B2307/42 , B32B2605/006
Abstract: The present disclosure relates to a laminated glazing comprising a first glass substrate and a second glass substrate laminated together having first and second polymer intermediate films therebetween, and a layered film laminated between the polymer intermediate films, wherein the layered film comprises at least three carrier layers positioned parallel to one another with a second carrier layer positioned between first and third carrier layers, wherein a first surface of the first carrier layer is coated with a first transparent conductive coating and a first surface of the second carrier layer is coated with a second transparent conductive coating, wherein the first surface of the first carrier layer faces the first surface of the second carrier layer, and wherein a second surface of the second carrier layer is coated with a third transparent conductive coating and a first surface of the third carrier layer is coated with a fourth transparent conductive coating, wherein the second surface of the second carrier layer faces the first surface of the third carrier layer; a first switchable layer positioned between the first and second carrier layers; and a second switchable layer positioned between the second and third carrier layers.
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公开(公告)号:US12263724B2
公开(公告)日:2025-04-01
申请号:US17282273
申请日:2019-10-03
Applicant: ACR II GLASS AMERICA INC.
Inventor: Michael Bard , Olivier Farreyrol , Christina Hill , Yu Matsuda
IPC: B60J3/04 , B32B17/10 , B60J1/00 , C03C17/36 , G02F1/1334
Abstract: An antireflective switchable laminated glass construction having a switchable functional film formed of a switchable material layer, a first polymer substrate with a first transparent conductive coating, and a second polymer substrate with a second transparent conductive coating. The switchable functional film is sandwiched between first adhesive polymer interlayer and glass substrate and second adhesive polymer interlayer and glass substrate. The switchable laminated glass construction in an ON (transparent) state has a total light transmittance higher than 50% and a reflectance equal to or less than 13%, as measured from at least one side of the switchable laminated glass construction.
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公开(公告)号:US20220371306A1
公开(公告)日:2022-11-24
申请号:US17774505
申请日:2020-11-02
Applicant: ACR II GLASS AMERICA INC.
Inventor: Markus Walter Pohlen , Steven Scott Christman , Emily Anne Curtis , Yu Matsuda
Abstract: A disclosed laminated glazing comprises a first glass sheet, a first interlayer, a holographic film, a second interlayer having a light transmission of at least 70% at a light wavelength in the range of 250 nm to 400 nm, a second glass sheet, and an ultraviolet light absorbing coating and a method of making such a laminated glazing.
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公开(公告)号:US12117405B2
公开(公告)日:2024-10-15
申请号:US17641635
申请日:2020-09-11
Applicant: ACR II GLASS AMERICA INC.
Inventor: Michael Bard , Markus Walter Pohlen , Donald Philip Michelotti , Yu Matsuda , Linda Anne Leonard
IPC: G01N21/958 , B60R11/00 , G01N21/88 , G01N21/93
CPC classification number: G01N21/958 , B60R11/00 , G01N21/8851 , G01N21/93 , B60R2011/0026 , G01N2021/9586
Abstract: Systems and methods for providing optical distortion information of a vehicle glazing are disclosed. In one example, a method comprises obtaining and analyzing, via at least one processor of a computing device, optical characteristics of the vehicle glazing; generating digitized optical distortion information for the vehicle glazing based on analysis results; generating identification information for the vehicle glazing; and associating the digitized optical distortion information with the identification information.
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