Patents by Inventor Sean STONE
Sean STONE 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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Patent number: 12668023Abstract: Described herein are methods of operating ECAM systems comprising modular cartridge assemblies. A modular cartridge assembly comprises a base, a cover, an ECAM printhead, a support unit, and a control board. The base has an opening providing access to the support unit (e.g., for heat transfer and fluidic connections), which is sealed against the base around this opening. The cover also has an opening exposing the electrode array of the ECAM printhead. The ECAM printhead is also sealed against the cover around this opening. The control board selectively activates the electrode of the array and is positioned within a cavity formed by the base and cover. The modular cartridge assembly allows replacing the ECAM printhead when the electrode array is damaged (e.g., dissolved during the ECAM process), while other assembly components can be reused. Furthermore, the support unit provides alignment and heat transfer for the ECAM printhead.Type: GrantFiled: July 31, 2024Date of Patent: June 30, 2026Assignee: Fabric8Labs, Inc.Inventors: Michelle Man, Sean Stone, Andrew Edmonds, Michael Korody, Paul Doyon
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Publication number: 20260062828Abstract: Described herein are methods and systems for additive manufacturing of parts comprising electrolytic deposits and electrophoretic deposits. Such methods and methods provide various new ways for integrating different materials into composite parts. Specifically, an additive manufacturing system comprises an electrode array with individually-addressable electrodes. Each individually-addressable electrode is coupled to a separate deposition control circuit, which selectively connects this electrode to a power supply. When forming a composite part, the electrode array can control the location of each electrolytic deposit (by controlling the current flow through each individually-addressable electrode) and each electrophoretic deposit (by controlling the electric field distribution). An electrolyte solution or an electrophoretic suspension is provided between the electrode array and deposition electrode to form corresponding deposits.Type: ApplicationFiled: November 6, 2025Publication date: March 5, 2026Inventors: Michael Matthews, David Pain, Sean Stone, Kareemullah Shaik, Charles Nicholas Pateros, Shiv Shailendar
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Publication number: 20260034727Abstract: Described herein are methods of operating ECAM systems comprising modular cartridge assemblies. A modular cartridge assembly comprises a base, a cover, an ECAM printhead, a support unit, and a control board. The base has an opening providing access to the support unit (e.g., for heat transfer and fluidic connections), which is sealed against the base around this opening. The cover also has an opening exposing the electrode array of the ECAM printhead. The ECAM printhead is also sealed against the cover around this opening. The control board selectively activates the electrode of the array and is positioned within a cavity formed by the base and cover. The modular cartridge assembly allows replacing the ECAM printhead when the electrode array is damaged (e.g., dissolved during the ECAM process), while other assembly components can be reused. Furthermore, the support unit provides alignment and heat transfer for the ECAM printhead.Type: ApplicationFiled: July 31, 2024Publication date: February 5, 2026Applicant: Fabric8Labs, Inc.Inventors: Michelle Man, Sean Stone, Andrew Edmonds, Michael Korody, Paul Doyon
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Publication number: 20260035823Abstract: Described herein are modular cartridge assemblies for ECAM systems. A modular cartridge assembly comprises a base, a cover, an ECAM printhead, a support unit, and a control board. The base has an opening providing access to the support unit (e.g., for heat transfer and fluidic connections), which is sealed against the base around this opening. The cover also has an opening exposing the electrode array of the ECAM printhead. The ECAM printhead is also sealed against the cover around this opening. The control board selectively activates the electrode of the array and is positioned within a cavity formed by the base and cover. The modular cartridge assembly allows replacing the ECAM printhead when the electrode array is damaged (e.g., dissolved during the ECAM process), while other assembly components can be reused. Furthermore, the support unit provides alignment and heat transfer for the ECAM printhead.Type: ApplicationFiled: July 31, 2024Publication date: February 5, 2026Applicant: Fabric8Labs, Inc.Inventors: Sean Stone, Michelle Man, Andrew Edmonds, Michael Korody, Paul Doyon
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Patent number: 12486589Abstract: Described herein are methods and systems for additive manufacturing of parts comprising electrolytic deposits and electrophoretic deposits. Such methods and methods provide various new ways for integrating different materials into composite parts. Specifically, an additive manufacturing system comprises an electrode array with individually-addressable electrodes. Each individually-addressable electrode is coupled to a separate deposition control circuit, which selectively connects this electrode to a power supply. When forming a composite part, the electrode array can control the location of each electrolytic deposit (by controlling the current flow through each individually-addressable electrode) and each electrophoretic deposit (by controlling the electric field distribution). An electrolyte solution or an electrophoretic suspension is provided between the electrode array and deposition electrode to form corresponding deposits.Type: GrantFiled: June 27, 2023Date of Patent: December 2, 2025Assignee: Fabric8Labs, Inc.Inventors: Michael Matthews, David Pain, Sean Stone, Kareemullah Shaik, Charles Nicholas Pateros, Shiv Shailendar
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Publication number: 20240218545Abstract: Described herein are methods and systems for additive manufacturing of parts comprising electrolytic deposits and electrophoretic deposits. Such methods and methods provide various new ways for integrating different materials into composite parts. Specifically, an additive manufacturing system comprises an electrode array with individually-addressable electrodes. Each individually-addressable electrode is coupled to a separate deposition control circuit, which selectively connects this electrode to a power supply. When forming a composite part, the electrode array can control the location of each electrolytic deposit (by controlling the current flow through each individually-addressable electrode) and each electrophoretic deposit (by controlling the electric field distribution). An electrolyte solution or an electrophoretic suspension is provided between the electrode array and deposition electrode to form corresponding deposits.Type: ApplicationFiled: June 27, 2023Publication date: July 4, 2024Applicant: Fabric8Labs, Inc.Inventors: Michael Matthews, David Pain, Sean Stone, Kareemullah Shaik, Charles Nicholas Pateros, Shiv Shailendar
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Publication number: 20240218546Abstract: Described herein are electrochemical-additive manufacturing (ECAM) systems comprising electrophoretically-deposited masks selectively covering a set of individually-addressable electrodes (pixels) in the electrode arrays (printheads). For example, an electrophoretically-deposited mask, comprising one or more patches, can be used to block the electric current through certain array portions thereby preventing electrolytic deposition on the corresponding portions of the deposition electrode during ECAM processes. In some examples, electrode array portions can be masked to cover damaged portions (e.g., stuck-on control circuits, electrically and/or ionically conductive passages in the electrode array) and/or to form special patterns of inactive array portions (that no longer need to be controlled using deposition control circuits). Such electrophoretically-deposited masks can be formed in an ECAM system or an external system. The mask forming can be a single-stage process or a multi-stage process.Type: ApplicationFiled: June 21, 2023Publication date: July 4, 2024Applicant: Fabric8Labs, Inc.Inventors: Sean Stone, Kareemullah Shaik, Shiv Shailendar
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Patent number: 11850698Abstract: An automatic knife sharpening machine may include a vice to grip a blade of a knife and a pair of grind wheels to grind material from the blade. The machine may include a scanner to determine a profile of an edge of the blade, and a sharpness sensor to determine a sharpness level of the edge. The machine may include a controller. The controller may perform a first sharpening pass on the knife by moving the grind wheels into contact with the blade, and advancing the grind wheels longitudinally along the blade from adjacent the vice towards a tip of the blade with the grind wheels in contact with the blade. The controller may determine, using the sharpness sensor, the sharpness level of the edge after the first sharpening pass and perform at least one second sharpening pass when the determined sharpness level is less than a threshold sharpness level.Type: GrantFiled: January 29, 2020Date of Patent: December 26, 2023Assignee: The Hillman Group, Inc.Inventors: Whitfield Janes Fowler, Sean Stone, Ari Bennett, Jeffrey Kastenbaum, David Frederick Lyons, Dmitriy Kolchin
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Publication number: 20200246933Abstract: An automatic knife sharpening machine may include a vice to grip a blade of a knife and a pair of grind wheels to grind material from the blade. The machine may include a scanner to determine a profile of an edge of the blade, and a sharpness sensor to determine a sharpness level of the edge. The machine may include a controller. The controller may perform a first sharpening pass on the knife by moving the grind wheels into contact with the blade, and advancing the grind wheels longitudinally along the blade from adjacent the vice towards a tip of the blade with the grind wheels in contact with the blade. The controller may determine, using the sharpness sensor, the sharpness level of the edge after the first sharpening pass and perform at least one second sharpening pass when the determined sharpness level is less than a threshold sharpness level.Type: ApplicationFiled: January 29, 2020Publication date: August 6, 2020Applicant: THE HILLMAN GROUP, INC.Inventors: Whitfield Janes FOWLER, Sean STONE, Ari BENNETT, Jeffrey KASTENBAUM, David Frederick LYONS, Dmitriy KOLCHIN