Patents by Inventor Cornelius Daniel Niculas
Cornelius Daniel Niculas has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Publication number: 20260153851Abstract: The present disclosure is directed to correcting toolpath errors in ultra-precision machining of optical parts and mold inserts. A method includes machining a known optical surface to serve as a reference surface and capturing surface error data of the known optical surface using a metrology instrument. The surface error data may include an error map representing deviations from an intended design of the known optical surface. The method also includes smoothing the error map to reduce noise and highlight deviations, thereby creating a smoothed error map; deriving incident angles at which a cutting tool interacts with the known optical surface. The method also includes converting the smoothed error map into a derived angle space corresponding to the incident angles. The method also includes generating a corrected toolpath based on the derived angle space and applying the corrected toolpath to the machining equipment to correct the surface deviations.Type: ApplicationFiled: December 2, 2025Publication date: June 4, 2026Inventors: David Andrew Icenogle, Cornelius Daniel Niculas
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Publication number: 20260118700Abstract: Certain aspects of the present disclosure provide a contact lens with a stepped-transition diffractive design. An example contact lens has an optical zone on its anterior or posterior surface. The optical zone has a circular diffractive zone that has a stepped-transition diffractive surface profile that provides at least one first refractive optical element and at least one diffractive optical element and optionally an annular refractive zone comprising a second refractive optical element. The at least one diffractive optical element comprises a plurality of concentric annular transition surface zones surrounding a central circular area of the contact lens. The stepped-transition surface profile has a monotonically increasing surface sagitta (SAG) in a direction radiating from the central axis of the contact lens.Type: ApplicationFiled: October 28, 2025Publication date: April 30, 2026Inventors: Ying Pi, Cornelius Daniel Niculas, Joseph Michael Lindacher, Gregory L. Herron, David Borja
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Patent number: 12570784Abstract: A method for producing embedded hydrogel contact lenses comprises at least the following steps: depositing a small drop of a viscous lens-forming composition in the center of a female lens mold half; placing a preformed insert on top of the small drop precisely in the center of the female lens mold half so that the insert is held by capillary forces due to the presence of a thin layer of the viscous lens-forming composition between the insert and the molding surface of the female lens mold half; dosing an amount of another less viscous lens-forming composition on top of the insert to immerse the insert in the female lens mold half; closing tightly a male lens mold half onto the top of the female lens mold half halves to form a molding assembly; curing both the lens-forming compositions in the molding assembly to form an embedded hydrogel lens precursor.Type: GrantFiled: May 8, 2023Date of Patent: March 10, 2026Assignee: Alcon Inc.Inventors: Newton T. Samuel, Cornelius Daniel Niculas, Richard Charles Breitkopf, Nicholas Gober, Chandana Kolluru, Zahra Bassampour, Steve Yun Zhang
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Publication number: 20260061635Abstract: A flexible gripper head for gripping an ophthalmic lens, comprises a gripping portion arranged at a distal longitudinal end of the gripper head and comprising a convex contact surface for contacting the ophthalmic lens to be gripped, a mounting portion arranged proximal to the gripping portion, a pivot portion arranged between the mounting portion and the gripping portion, wherein the gripping portion is flexibly pivotable with respect to the mounting portion about the pivot portion, and a principal vacuum supply channel. The gripping portion comprises at least three suction openings arranged in the ophthalmic surface of the gripper head. The gripper head further comprises a plurality of secondary vacuum supply channels comprising a proximal end fluidically connected to the principal vacuum supply channel and a distal end fluidically connected to one of the at least three suction openings arranged in the convex contact surface.Type: ApplicationFiled: August 27, 2025Publication date: March 5, 2026Inventors: Nicholas Gollas, Melissa Coreen Grytdal, Eduard Jetzlaff, David Andrew Icenogle, Cornelius Daniel Niculas, Felix Brinckmann, Benjamin Leneschmidt, Phil Sauerwein, Johannes Neumann, Matthias Braun
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Publication number: 20250319678Abstract: Systems, devices, and methods are disclosed for fabricating a hybrid contact lens product having a lens insert embedded at a precisely controlled location within a lens body. A mold engagement and support base engages and retains a lens forming mold in a substantially fixed position. An insert placement and positioning device includes an insert pickup head with a contact face configured for releasable engagement of the lens insert and at least one suction opening in the contact face for applying suction to engage the insert on the contact face. A positioning housing interacts with the mold and/or the support base to provide precise locational positioning of the lens insert within the mold. A lens body forming material is delivered to the mold to encapsulate the lens insert.Type: ApplicationFiled: June 25, 2025Publication date: October 16, 2025Inventors: Yang Zheng, Cornelius Daniel Niculas, Yuan Chang, Junhao Ge, Steve Yun Zhang, Justin Joel Aguayo, David Andrew Icenogle, Muhammad Waqas Asif, Daryl Reece
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Publication number: 20250306246Abstract: The invention is directed to an embedded hydrogel contact lens, which comprises an insert sandwiched between two layers of hydrogel materials and can be produced according to a cast molding method including the procedures involving two females halves (FC1 and FC2) and two male halves (BC1 and BC2) and three consequential molding steps involving three molding assemblies: the 1st one formed between FC1 and BC1 for molding an insert; the 2nd one formed between FC1 and BC2 for molding a lens precursor having the molded insert embedded in a layer of a hydrogel material in a way that the front surface of the molded insert merges with the convex surface of the lens precursor; and the 3rd one formed between FC2 and BC2 for molding an embedded hydrogel contact of the invention.Type: ApplicationFiled: June 9, 2025Publication date: October 2, 2025Inventors: Yuan Chang, Junhao Ge, Ying Pi, Cornelius Daniel Niculas, Yang Zheng, Steve Yun Zhang, Michelle Plavnik, Ethan Leveillee, Jing Cheng, Augustine Twum Kumi
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Publication number: 20250303615Abstract: The invention relates to a method for producing embedded hydrogel contact lenses each having an insert that comprises alignment features capable of capable of aligning the insert in depth and radial position in a female mold half during cast molding of an embedded hydrogel contact lens. The alignment features protrude from the front surface, are rotationally symmetric with respect to the central axis of the insert and independently have a shape having a curvature being greater than 2 folds of the curvature of the molding surface so as to minimize contacting area between the alignment features and the molding surface. The use of such an insert can simplify the process for producing embedded hydrogel contact lenses and enable the process to be implemented readily in an automatic production.Type: ApplicationFiled: June 9, 2025Publication date: October 2, 2025Inventors: Cornelius Daniel Niculas, David Andrew Icenogle, Zahra Bassampour, Chandana Kolluru
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Patent number: 12358245Abstract: Systems, devices, and methods are disclosed for fabricating a hybrid contact lens product having a lens insert embedded at a precisely controlled location within a lens body. A mold engagement and support base engages and retains a lens forming mold in a substantially fixed position. An insert placement and positioning device includes an insert pickup head with a contact face configured for releasable engagement of the lens insert and at least one suction opening in the contact face for applying suction to engage the insert on the contact face. A positioning housing interacts with the mold and/or the support base to provide precise locational positioning of the lens insert within the mold. A lens body forming material is delivered to the mold to encapsulate the lens insert.Type: GrantFiled: November 28, 2022Date of Patent: July 15, 2025Assignee: Alcon Inc.Inventors: Yang Zheng, Cornelius Daniel Niculas, Yuan Chang, Junhao Ge, Steve Yun Zhang, Justin Joel Aguayo, David Andrew Icenogle, Muhammad Waqas Asif, Daryl Reece
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Patent number: 12358188Abstract: The invention relates to a method for producing embedded hydrogel contact lenses each having an insert that comprises alignment features capable of capable of aligning the insert in depth and radial position in a female mold half during cast molding of an embedded hydrogel contact lens. The alignment features protrude from the front surface, are rotationally symmetric with respect to the central axis of the insert and independently have a shape having a curvature being greater than 2 folds of the curvature of the molding surface so as to minimize contacting area between the alignment features and the molding surface. The use of such an insert can simplify the process for producing embedded hydrogel contact lenses and enable the process to be implemented readily in an automatic production.Type: GrantFiled: April 25, 2023Date of Patent: July 15, 2025Assignee: Alcon Inc.Inventors: Cornelius Daniel Niculas, David Andrew Icenogle, Zahra Bassampour, Chandana Kolluru
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Patent number: 12360289Abstract: The invention is directed to an embedded hydrogel contact lens, which comprises an insert sandwiched between two layers of hydrogel materials and can be produced according to a cast molding method including the procedures involving two females halves (FC1 and FC2) and two male halves (BC1 and BC2) and three consequential molding steps involving three molding assemblies: the 1st one formed between FC1 and BC1 for molding an insert; the 2nd one formed between FC1 and BC2 for molding a lens precursor having the molded insert embedded in a layer of a hydrogel material in a way that the front surface of the molded insert merges with the convex surface of the lens precursor; and the 3rd one formed between FC2 and BC2 for molding an embedded hydrogel contact of the invention.Type: GrantFiled: March 31, 2022Date of Patent: July 15, 2025Assignee: Alcon Inc.Inventors: Yuan Chang, Junhao Ge, Ying Pi, Cornelius Daniel Niculas, Yang Zheng, Steve Yun Zhang, Michelle Plavnik, Ethan Leveillee, Jing Cheng, Augustine Twum Kumi
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Patent number: 12194699Abstract: The invention relates to a method for producing embedded hydrogel contact lenses involving a set of 3-mold halves consisting essentially of: one female lens mold half having a molding surface defining the anterior surface of a contact lens; one male lens mold half having a molding surface defining the posterior surface of the contact lens; and an insert mold half having a molding surface defining one of the front and back surfaces of an insert. One of the lens mold halves is used twice: first with the insert mold half for molding an insert during first curing process and then with the other lens mold half for molding an embedded hydrogel contact lens with the molded insert embedded partially or fully therein during second curing process. The invention also relates to embedded hydrogel contact lenses produced from a method of the invention.Type: GrantFiled: March 31, 2022Date of Patent: January 14, 2025Assignee: Alcon Inc.Inventors: Zahra Bassampour, Chandana Kolluru, Steve Yun Zhang, Junhao Ge, Yang Zheng, Cornelius Daniel Niculas, David Andrew Icenogle, Jing Cheng, Yuan Chang, Augustine Twum Kumi, Michelle Plavnik
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Publication number: 20230357478Abstract: A method for producing embedded hydrogel contact lenses comprises at least the following steps: depositing a small drop of a viscous lens-forming composition in the center of a female lens mold half; placing a preformed insert on top of the small drop precisely in the center of the female lens mold half so that the insert is held by capillary forces due to the presence of a thin layer of the viscous lens-forming composition between the insert and the molding surface of the female lens mold half; dosing an amount of another less viscous lens-forming composition on top of the insert to immerse the insert in the female lens mold half; closing tightly a male lens mold half onto the top of the female lens mold half halves to form a molding assembly; curing both the lens-forming compositions in the molding assembly to form an embedded hydrogel lens precursor.Type: ApplicationFiled: May 8, 2023Publication date: November 9, 2023Inventors: Newton T. Samuel, Cornelius Daniel Niculas, Richard Charles Breitkopf, Nicholas Gober, Chandana Kolluru, Zahra Bassampour, Steve Yun Zhang
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Publication number: 20230339148Abstract: The invention relates to a method for producing embedded hydrogel contact lenses each having an insert that comprises alignment features capable of capable of aligning the insert in depth and radial position in a female mold half during cast molding of an embedded hydrogel contact lens. The alignment features protrude from the front surface, are rotationally symmetric with respect to the central axis of the insert and independently have a shape having a curvature being greater than 2 folds of the curvature of the molding surface so as to minimize contacting area between the alignment features and the molding surface. The use of such an insert can simplify the process for producing embedded hydrogel contact lenses and enable the process to be implemented readily in an automatic production.Type: ApplicationFiled: April 25, 2023Publication date: October 26, 2023Inventors: Cornelius Daniel Niculas, David Andrew Icenogle, Zahra Bassampour, Chandana Kolluru
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Publication number: 20230166467Abstract: Systems, devices, and methods are disclosed for fabricating a hybrid contact lens product having a lens insert embedded at a precisely controlled location within a lens body. A mold engagement and support base engages and retains a lens forming mold in a substantially fixed position. An insert placement and positioning device includes an insert pickup head with a contact face configured for releasable engagement of the lens insert and at least one suction opening in the contact face for applying suction to engage the insert on the contact face. A positioning housing interacts with the mold and/or the support base to provide precise locational positioning of the lens insert within the mold. A lens body forming material is delivered to the mold to encapsulate the lens insert.Type: ApplicationFiled: November 28, 2022Publication date: June 1, 2023Inventors: Yang Zheng, Cornelius Daniel Niculas, Yuan Chang, Junhao Ge, Steve Yun Zhang, Justin Joel Aguayo, David Andrew Icenogle, Muhammad Waqas Asif, Daryl Reece
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Publication number: 20220326412Abstract: The invention is directed to an embedded hydrogel contact lens, which comprises an insert sandwiched between two layers of hydrogel materials and can be produced according to a cast molding method including the procedures involving two females halves (FC1 and FC2) and two male halves (BC1 and BC2) and three consequential molding steps involving three molding assemblies: the 1st one formed between FC1 and BC1 for molding an insert; the 2nd one formed between FC1 and BC2 for molding a lens precursor having the molded insert embedded in a layer of a hydrogel material in a way that the front surface of the molded insert merges with the convex surface of the lens precursor; and the 3rd one formed between FC2 and BC2 for molding an embedded hydrogel contact of the invention.Type: ApplicationFiled: March 31, 2022Publication date: October 13, 2022Inventors: Yuan Chang, Junhao Ge, Ying Pi, Cornelius Daniel Niculas, Yang Zheng, Steve Yun Zhang, Michelle Plavnik, Ethan Leveillee, Jing Cheng, Augustine Twum Kumi
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Publication number: 20220324187Abstract: The invention relates to a method for producing embedded hydrogel contact lenses involving a set of 3-mold halves consisting essentially of: one female lens mold half having a molding surface defining the anterior surface of a contact lens; one male lens mold half having a molding surface defining the posterior surface of the contact lens; and an insert mold half having a molding surface defining one of the front and back surfaces of an insert. One of the lens mold halves is used twice: first with the insert mold half for molding an insert during first curing process and then with the other lens mold half for molding an embedded hydrogel contact lens with the molded insert embedded partially or fully therein during second curing process. The invention also relates to embedded hydrogel contact lenses produced from a method of the invention.Type: ApplicationFiled: March 31, 2022Publication date: October 13, 2022Inventors: Zahra Bassampour, Chandana Kolluru, Steve Yun Zhang, Junhao Ge, Yang Zheng, Cornelius Daniel Niculas, David Andrew Icenogle, Jing Cheng, Yuan Chang, Augustine Twum Kumi, Michelle Plavnik
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Patent number: 11207854Abstract: A method of manufacturing of an astigmatic contact lens having a toric portion and a thickness differential feature to provide lens orientation on eye portion such that said thickness differential causes the toric portion of the contact lens to properly orient in the eye of the wearer. The toric lenses are manufactured by an effective process control method for cylinder power in toric lens production by determining an amount of a mold cylinder compensation which is caused by processes in a toric lens manufacturing system including tool making, injection molding, casting and curing, wherein the mold cylinder is defined as the difference in measured radius of curvature at two orthogonal directions. A control metric is established by using the amount of a mold cylinder compensation and tolerance range and reject mold out of the control limits and improve the production yield for toric lens manufacturing.Type: GrantFiled: December 10, 2019Date of Patent: December 28, 2021Assignee: Alcon Inc.Inventors: Yeming Gu, Curtis Dean McKenney, Cornelius Daniel Niculas
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Patent number: 10994505Abstract: A method of manufacturing of an astigmatic contact lens having a toric portion and a ballast portion such that said ballast portion causes the toric portion of the contact lens to properly orient in the eye of the wearer. The toric lenses are manufactured by an effective process control method for cylinder axis angle in toric lens production by modifying the target cylinder angle for mold rotation by eliminating the accumulative cylinder axis error from all previous steps including tool making, tool assembly, and molding. The amount modifying the target angle is determined by accurately determine the true cylinder axis on the corresponding mold by using a high-resolution interferometer, such as FISBA FS10M or equivalent models from Trioptics ?Shape® vertical series.Type: GrantFiled: December 12, 2018Date of Patent: May 4, 2021Assignee: Alcon Inc.Inventors: Yeming Gu, Curtis Dean McKenney, Cornelius Daniel Niculas
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Publication number: 20200183192Abstract: A method of manufacturing of an astigmatic contact lens having a toric portion and a thickness differential feature to provide lens orientation on eye portion such that said thickness differential causes the toric portion of the contact lens to properly orient in the eye of the wearer. The toric lenses are manufactured by an effective process control method for cylinder power in toric lens production by determining an amount of a mold cylinder compensation which is caused by processes in a toric lens manufacturing system including tool making, injection molding, casting and curing, wherein the mold cylinder is defined as the difference in measured radius of curvature at two orthogonal directions. A control metric is established by using the amount of a mold cylinder compensation and tolerance range and reject mold out of the control limits and improve the production yield for toric lens manufacturing.Type: ApplicationFiled: December 10, 2019Publication date: June 11, 2020Inventors: Yeming Gu, Curtis Dean McKenney, Cornelius Daniel Niculas
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Publication number: 20190193350Abstract: A method of manufacturing of an astigmatic contact lens having a toric portion and a ballast portion such that said ballast portion causes the toric portion of the contact lens to properly orient in the eye of the wearer. The toric lenses are manufactured by an effective process control method for cylinder axis angle in toric lens production by modifying the target cylinder angle for mold rotation by eliminating the accumulative cylinder axis error from all previous steps including tool making, tool assembly, and molding. The amount modifying the target angle is determined by accurately determine the true cylinder axis on the corresponding mold by using a high-resolution interferometer, such as FISBA FS10M or equivalent models from Trioptics ?Shape® vertical series.Type: ApplicationFiled: December 12, 2018Publication date: June 27, 2019Inventors: Yeming Gu, Curtis Dean McKenney, Cornelius Daniel Niculas