Patents by Inventor Armando Garza
Armando Garza 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: 12290458Abstract: An intravascular stent and method of making an intervascular stent having a hybrid pattern a. The hybrid pattern comprises a plurality of circumferentially self-expansible members comprising a plurality of interconnected, geometrically deformable closed cells, adjacent self-expansible members interconnected by a plurality of bridge members linking a first interconnection between two closed cells in a first self-expansible member to a second interconnection between two closed cells in a second self-expansible member, wherein the second interconnection is circumferentially offset and non-adjacent to the first interconnection.Type: GrantFiled: July 17, 2023Date of Patent: May 6, 2025Assignee: Vactronix Scientific, LLCInventors: Armando Garza, Julio C. Palmaz, Michael Poor
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Publication number: 20240369171Abstract: The disclosure relates to a gripping plug for use in a pipe wherein the pipe defines an inside radius, having a body of the gripping plug; an angled slot defined on the body; a first discrete gripping device slidably engaged with the angled slot and biased beyond the inside radius of the pipe; a wedge cone of the gripping plug; and a second discrete gripping device slidably engaged with the wedge code, wherein the second discrete gripping device is disengaged with the inside radius of the pipe.Type: ApplicationFiled: July 17, 2024Publication date: November 7, 2024Inventors: Armando Garza, JR., John Rey De Leon, Richard Sallee, Casey Sue
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Patent number: 12072054Abstract: The disclosure relates to a gripping plug for use in a pipe wherein the pipe defines an inside radius, having: a wedge cone; a first plurality of discrete gripping devices slidably engaged with the wedge cone; a second plurality of discrete gripping devices slidably engaged with the wedge cone; a first plurality of studs connected to each of the first plurality of discrete gripping devices, where each of the first plurality of studs define a first stud length; and a second plurality of studs connected to each of the second plurality of discrete gripping devices, wherein each of the second plurality of studs define a second stud length.Type: GrantFiled: February 18, 2022Date of Patent: August 27, 2024Assignee: USA Industries, LLCInventors: Casey Sue, Armando Garza, Jr., John Rey De Leon, Richard Sallee, Austin Cornelius, Tracy Sue
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Patent number: 11911040Abstract: An embolic device for treating aneurysms or other vascular disorders may be more compliant than conventional devices, while still achieving desired porosity. In particular, the device may achieve the desired porosity only at discrete sections along the length of the device where such a porosity is required (e.g., sections that will block the neck of the aneurysm upon deployment). The remaining sections of the device can be configured to increase the device's compliance. For example, the remaining sections can be formed from less material than the sections with the desired porosity. In some instances, the sections with the desired porosity are formed from mesh-screen segments and the remaining sections are formed from coil segments. In some instances, the mesh-screen segments are configured to further enhance the device's compliance. For example, the mesh-screen segment can be formed from a layered structure that achieves greater compliance than conventional braided structures.Type: GrantFiled: June 8, 2021Date of Patent: February 27, 2024Assignee: Arissa Medical, Inc.Inventors: Armando Garza, Be Thi Le, Tae Hee Cho, Regina Coeli Velasco
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Publication number: 20240016630Abstract: An intravascular stent and method of making an intervascular stent having a hybrid pattern a. The hybrid pattern comprises a plurality of circumferentially self-expansible members comprising a plurality of interconnected, geometrically deformable closed cells, adjacent self-expansible members interconnected by a plurality of bridge members linking a first interconnection between two closed cells in a first self-expansible member to a second interconnection between two closed cells in a second self-expansible member, wherein the second interconnection is circumferentially offset and non-adjacent to the first interconnection.Type: ApplicationFiled: July 17, 2023Publication date: January 18, 2024Inventors: Armando Garza, Julio C. Palmaz, Michael Poor
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Patent number: 11701246Abstract: An intravascular stent and method of making an intervascular stent having a hybrid pattern a. The hybrid pattern comprises a plurality of circumferentially self-expansible members comprising a plurality of interconnected, geometrically deformable closed cells, adjacent self-expansible members interconnected by a plurality of bridge members linking a first interconnection between two closed cells in a first self-expansible member to a second interconnection between two closed cells in a second self-expansible member, wherein the second interconnection is circumferentially offset and non-adjacent to the first interconnection.Type: GrantFiled: October 8, 2019Date of Patent: July 18, 2023Assignee: Vactronix Scientific, LLC.Inventors: Armando Garza, Julio C. Palmaz, Michael Poor
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Patent number: 11661290Abstract: A system for forming horizontally stacked groups of containers includes an infeed screw set, an orienting screw set, and a grouping mechanism. Containers are presented to the infeed screw in a vertical orientation, and are progressed from the infeed screw set to the orienting screw set via a transitioning pocket defined by overlapping pockets of the infeed and orienting screw sets. As containers are progressed through the orienting screw the containers are rotated via a series of orienting pockets to a horizontal orientation and progressed via a series of nesting pockets to form a series of horizontally nested containers. The series is discharged to a grouping mechanism which separates a predefined number of containers from the series to form a horizontally stacked group, which is outfed from the stacking system.Type: GrantFiled: November 2, 2021Date of Patent: May 30, 2023Assignee: Morrison Timing Screw CompanyInventors: Ryan Finke, Nick Lynn Wilson, Mark Burk, Lee Kuipers, Timothy J. Dupin, Armando Garza, Chris L J Wilson
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Publication number: 20220170581Abstract: The disclosure relates to a gripping plug for use in a pipe wherein the pipe defines an inside radius, having: a wedge cone; a first plurality of discrete gripping devices slidably engaged with the wedge cone; a second plurality of discrete gripping devices slidably engaged with the wedge cone; a first plurality of studs connected to each of the first plurality of discrete gripping devices, where each of the first plurality of studs define a first stud length; and a second plurality of studs connected to each of the second plurality of discrete gripping devices, wherein each of the second plurality of studs define a second stud length.Type: ApplicationFiled: February 18, 2022Publication date: June 2, 2022Inventors: Casey Sue, Armando Garza, JR., John Rey De Leon, Richard Sallee, Austin Cornelius, Tracy Sue
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Publication number: 20220135350Abstract: A system for forming horizontally stacked groups of containers includes an infeed screw set, an orienting screw set, and a grouping mechanism. Containers are presented to the infeed screw in a vertical orientation, and are progressed from the infeed screw set to the orienting screw set via a transitioning pocket defined by overlapping pockets of the infeed and orienting screw sets. As containers are progressed through the orienting screw the containers are rotated via a series of orienting pockets to a horizontal orientation and progressed via a series of nesting pockets to form a series of horizontally nested containers. The series is discharged to a grouping mechanism which separates a predefined number of containers from the series to form a horizontally stacked group, which is outfed from the stacking system.Type: ApplicationFiled: November 2, 2021Publication date: May 5, 2022Applicant: Morrison Timing Screw Company dba Morrison Container Handling SolutionsInventors: Ryan Finke, Nick Lynn Wilson, Mark Burk, Lee Kuipers, Timothy J. Dupin, Armando Garza, Chris LJ Wilson
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Patent number: 11291569Abstract: The monolithic device comprises a plurality of scaffolding members and a mesh patterned members webbed between the scaffolding members; the mesh patterned member webbed between the scaffolding members surround a lumen and generally expands from a contracted state to an expanded state; and mesh patterned members including a plurality of openings traversing the thickness of the mesh patterned member, and the mesh patterned members including a surface on which a pattern of openings is formed.Type: GrantFiled: November 15, 2018Date of Patent: April 5, 2022Assignee: Vactronix Scientific, LLC.Inventors: Michael Poor, Armando Garza, Scott Carpenter, Julio C. Palmaz
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Publication number: 20220000489Abstract: An embolic device for treating aneurysms or other vascular disorders may be more compliant than conventional devices, while still achieving desired porosity. In particular, the device may achieve the desired porosity only at discrete sections along the length of the device where such a porosity is required (e.g., sections that will block the neck of the aneurysm upon deployment). The remaining sections of the device can be configured to increase the device's compliance. For example, the remaining sections can be formed from less material than the sections with the desired porosity. In some instances, the sections with the desired porosity are formed from mesh-screen segments and the remaining sections are formed from coil segments. In some instances, the mesh-screen segments are configured to further enhance the device's compliance. For example, the mesh-screen segment can be formed from a layered structure that achieves greater compliance than conventional braided structures.Type: ApplicationFiled: June 8, 2021Publication date: January 6, 2022Inventors: Armando Garza, Be Thi Le, Tae Hee Cho, Regina Coeli Velasco
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Patent number: 11071551Abstract: An embolic device for treating aneurysms or other vascular disorders may be more compliant than conventional devices, while still achieving desired porosity. In particular, the device may achieve the desired porosity only at discrete sections along the length of the device where such a porosity is required (e.g., sections that will block the neck of the aneurysm upon deployment). The remaining sections of the device can be configured to increase the device's compliance. For example, the remaining sections can be formed from less material than the sections with the desired porosity. In some instances, the sections with the desired porosity are formed from mesh-screen segments and the remaining sections are formed from coil segments. In some instances, the mesh-screen segments are configured to further enhance the device's compliance. For example, the mesh-screen segment can be formed from a layered structure that achieves greater compliance than conventional braided structures.Type: GrantFiled: August 10, 2018Date of Patent: July 27, 2021Assignee: INCUMEDx, Inc.Inventors: Armando Garza, Be Thi Le, Tae Hee Cho, Regina Coeli Velasco
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Patent number: 10843278Abstract: An automatic milling machine mills a gasket. The automatic milling machine controls the position of a cutter head relative a table. The automatic milling machine rotates the gasket with a motor. Parameters of the motor are monitored to determine the amount of rotation of the gasket.Type: GrantFiled: November 14, 2018Date of Patent: November 24, 2020Assignee: LAMONS GASKET COMPANYInventors: Armando Garza, Jr., Albert Wright Genther, Brian Edward McGehee, Jerel T. Rumbley
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Patent number: 10669645Abstract: This invention is directed to a new method of mass-transfer/fabrication of micro-sized features/structures onto the inner diameter (ID) surface of a stent. This new approach is provided by technique of through mask electrical micro-machining. One embodiment discloses an application of electrical micro-machining to the ID of a stent using a customized electrode configured specifically for machining micro-sized features/structures.Type: GrantFiled: April 16, 2019Date of Patent: June 2, 2020Assignee: Vactronix Scientific, LLCInventor: Armando Garza
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Publication number: 20200069447Abstract: An intravascular stent and method of making an intervascular stent having a hybrid pattern a. The hybrid pattern comprises a plurality of circumferentially self-expansible members comprising a plurality of interconnected, geometrically deformable closed cells, adjacent self-expansible members interconnected by a plurality of bridge members linking a first interconnection between two closed cells in a first self-expansible member to a second interconnection between two closed cells in a second self-expansible member, wherein the second interconnection is circumferentially offset and non-adjacent to the first interconnection.Type: ApplicationFiled: October 8, 2019Publication date: March 5, 2020Inventors: Armando Garza, Julio C. Palmaz, Michael Poor
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Patent number: 10433989Abstract: An intravascular stent and method of making an intervascular stent having a hybrid pattern a. The hybrid pattern comprises a plurality of circumferentially self-expansible members comprising a plurality of interconnected, geometrically deformable closed cells, adjacent self-expansible members interconnected by a plurality of bridge members linking a first interconnection between two closed cells in a first self-expansible member to a second interconnection between two closed cells in a second self-expansible member, wherein the second interconnection is circumferentially offset and non-adjacent to the first interconnection.Type: GrantFiled: February 14, 2017Date of Patent: October 8, 2019Assignee: Vactronix Scientific, LLCInventors: Armando Garza, Julio C. Palmaz, Michael Poor
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Publication number: 20190290809Abstract: This invention is directed to a new method of mass-transfer/fabrication of micro-sized features/structures onto the inner diameter (ID) surface of a stent. This new approach is provided by technique of through mask electrical micro-machining. One embodiment discloses an application of electrical micro-machining to the ID of a stent using a customized electrode configured specifically for machining micro-sized features/structures.Type: ApplicationFiled: April 16, 2019Publication date: September 26, 2019Inventor: Armando Garza
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Publication number: 20190151962Abstract: An automatic milling machine mills a gasket. The automatic milling machine controls the position of a cutter head relative a table. The automatic milling machine rotates the gasket with a motor. Parameters of the motor are monitored to determine the amount of rotation of the gasket.Type: ApplicationFiled: November 14, 2018Publication date: May 23, 2019Inventors: Armando Garza, Jr., Albert Wright Genther, Brian Edward McGehee, Jerel T. Rumbley
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Patent number: 10258719Abstract: This invention is directed to a new method of mass-transfer/fabrication of micro-sized features/structures onto the inner diameter (ID) surface of a stent. This new approach is provided by technique of through mask electrical micro-machining. One embodiment discloses an application of electrical micro-machining to the ID of a stent using a customized electrode configured specifically for machining micro-sized features/structures.Type: GrantFiled: March 28, 2018Date of Patent: April 16, 2019Assignee: Vactronix Scientific, LLCInventor: Armando Garza
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Patent number: D887003Type: GrantFiled: January 15, 2019Date of Patent: June 9, 2020Assignee: Vactronix Scientific, LLCInventors: Armando Garza, Julio C. Palmaz, Michael Poor