Patents Assigned to Miltec Corporation
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Patent number: 11043336Abstract: A process for manufacturing an electrode utilizing electron beam (EB) or actinic radiation to cure the electrode binder is provided. A process is also disclosed for mixing specific actinic or EB radiation curable polymer precursors with electrode solid particles to form an aqueous mixture, application of the mixture to an electrode current collector, followed by the application of actinic or EB radiation to the current collector for curing the polymer, thereby binding the electrode binder to the current collector. Lithium ion batteries, electric double layer capacitors, and components produced therefrom are also provided.Type: GrantFiled: September 13, 2018Date of Patent: June 22, 2021Assignee: Miltec CorporationInventors: Gary Voelker, John Arnold, Joseph Fasolo
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Patent number: 10102979Abstract: A process for manufacturing an electrode utilizing electron beam (EB) or actinic radiation to cure the electrode binder is provided. A process is also disclosed for mixing specific actinic or EB radiation curable polymer precursors with electrode solid particles to form an aqueous mixture, application of the mixture to an electrode current collector, followed by the application of actinic or EB radiation to the current collector for curing the polymer, thereby binding the electrode binder to the current collector. Lithium ion batteries, electric double layer capacitors, and components produced therefrom are also provided.Type: GrantFiled: May 16, 2014Date of Patent: October 16, 2018Assignee: Miltec CorporationInventors: Gary Voelker, John Arnold, Joseph Fasolo
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Patent number: 9543565Abstract: A process for manufacturing an electrode utilizing electron beam (EB) or actinic radiation to cure electrode binding polymers is provided. A process is also disclosed for mixing specific actinic or EB radiation curable chemical precursors with electrode solid particles, application of the mixture to an electrode current collector, followed by the application of actinic or EB radiation to the current collector for curing the polymer, thereby binding the electrode material to the current collector. Lithium ion batteries, electric double layer capacitors, and components produced therefrom are also provided.Type: GrantFiled: March 6, 2014Date of Patent: January 10, 2017Assignees: MILTEC CORPORATION, ACTEGA RADCURE, INC.Inventors: Gary E. Voelker, John Arnold
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Patent number: 9132448Abstract: Devices and methods for curing materials with radiant energy are described. The devices include a first reflector and a second reflector that are semi-ellipses. The ellipses that define the first reflector and the second reflector have axes of different lengths, and the reflectors are aligned such that the focal points of the reflectors are overlaid. A radiative energy source at a near focal point of a reflector can provide energy to cure a coating on a substrate at a far focal point of the reflector. The different sizes of the two reflectors decrease focusing error of the radiative energy and provide improved efficiency to the curing system.Type: GrantFiled: January 8, 2014Date of Patent: September 15, 2015Assignee: Miltec CorporationInventors: John Gunter, Jerome Kreman
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Publication number: 20150108370Abstract: Devices and methods for curing materials with radiant energy are described. The devices include a first reflector and a second reflector that are semi-ellipses. The ellipses that define the first reflector and the second reflector have axes of different lengths, and the reflectors are aligned such that the focal points of the reflectors are overlaid. A radiative energy source at a near focal point of a reflector can provide energy to cure a coating on a substrate at a far focal point of the reflector. The different sizes of the two reflectors decrease focusing error of the radiative energy and provide improved efficiency to the curing system.Type: ApplicationFiled: January 8, 2014Publication date: April 23, 2015Applicant: Miltec CorporationInventors: John Gunter, Jerome Kreman
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Patent number: 8906548Abstract: A process for manufacturing an electrode utilizing electron beam (EB) or actinic radiation to cure electrode binding polymers is provided. A process is also disclosed for mixing specific actinic or EB radiation curable chemical precursors with electrode solid particles, application of the mixture to an electrode current collector, followed by the application of actinic or EB radiation to the current collector for curing the polymer, thereby binding the electrode material to the current collector. Lithium ion batteries, electric double layer capacitors, and components produced therefrom are also provided.Type: GrantFiled: October 6, 2010Date of Patent: December 9, 2014Assignees: Miltec Corporation, Actega Radcure, Inc.Inventors: Gary E. Voelker, John Arnold
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Publication number: 20140342223Abstract: A process for manufacturing an electrode utilizing electron beam (EB) or actinic radiation to cure the electrode binder is provided. A process is also disclosed for mixing specific actinic or EB radiation curable polymer precursors with electrode solid particles to form an aqueous mixture, application of the mixture to an electrode current collector, followed by the application of actinic or EB radiation to the current collector for curing the polymer, thereby binding the electrode binder to the current collector. Lithium ion batteries, electric double layer capacitors, and components produced therefrom are also provided.Type: ApplicationFiled: May 16, 2014Publication date: November 20, 2014Applicant: Miltec CorporationInventors: Gary Voelker, John Arnold, Joseph Fasolo
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Publication number: 20140245599Abstract: A process for manufacturing an electrode utilizing electron beam (EB) or actinic radiation to cure electrode binding polymers is provided. A process is also disclosed for mixing specific actinic or EB radiation curable chemical precursors with electrode solid particles, application of the mixture to an electrode current collector, followed by the application of actinic or EB radiation to the current collector for curing the polymer, thereby binding the electrode material to the current collector. Lithium ion batteries, electric double layer capacitors, and components produced therefrom are also provided.Type: ApplicationFiled: March 6, 2014Publication date: September 4, 2014Applicants: ACTEGA Radcure, Inc., Miltec CorporationInventors: Gary E. Voelker, John Arnold
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Patent number: 8101931Abstract: An RF screen for microwave powered UV lamp systems is provided. The RF screen is formed of a single sheet of conductive material in which a mesh pattern has been formed. The screen includes a non-traditional mesh pattern including individual openings with 3 or more nodes. The RF screen is generally configured to optimize the balance between light transmission and RF energy leakage desired for the particular application. Generally, it is desired that the RF screen has an open area percentage greater than about 80% while limiting RF energy leakage from the microwave powered lamp system to acceptable levels.Type: GrantFiled: April 5, 2010Date of Patent: January 24, 2012Assignee: Miltec CorporationInventor: Joseph Bernard Blandford, III
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Publication number: 20110241546Abstract: An RF screen for microwave powered UV lamp systems is provided. The RF screen is formed of a single sheet of conductive material in which a mesh pattern has been formed. The screen includes a non-traditional mesh pattern including individual openings with 3 or more nodes. The RF screen is generally configured to optimize the balance between light transmission and RF energy leakage desired for the particular application. Generally, it is desired that the RF screen has an open area percentage greater than about 80% while limiting RF energy leakage from the microwave powered lamp system to acceptable levels.Type: ApplicationFiled: April 5, 2010Publication date: October 6, 2011Applicant: MILTEC CORPORATIONInventor: Joseph Bernard Blandford, III
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Publication number: 20110081575Abstract: A process for manufacturing an electrode utilizing electron beam (EB) or actinic radiation to cure electrode binding polymers is provided. A process is also disclosed for mixing specific actinic or EB radiation curable chemical precursors with electrode solid particles, application of the mixture to an electrode current collector, followed by the application of actinic or EB radiation to the current collector for curing the polymer, thereby binding the electrode material to the current collector. Lithium ion batteries, electric double layer capacitors, and components produced therefrom are also provided.Type: ApplicationFiled: October 6, 2010Publication date: April 7, 2011Applicants: MILTEC CORPORATION, ACTEGA RADCURE, INC.Inventors: Gary E. Voelker, John Arnold
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Patent number: 7587277Abstract: Disclosed is a system and method for onboard optimal estimation of heading, pitch, and roll through real-time measurement of magnetic field, acceleration and angular motion in three dimensions. Magnetometer information is used to create an initial reference from which movement is measured. Thus, the process does not have to start when the body is in a known position. Further, the device does not have to continually rely on accelerometer data to get roll and pitch. To do this magnetic field data is used to complement gyro information. The magnetic data is used to estimate pitch, roll, and heading.Type: GrantFiled: November 21, 2005Date of Patent: September 8, 2009Assignee: Miltec CorporationInventor: Randy Wells
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Patent number: 6841790Abstract: A UV lamp system and a reflector and RF screen assembly are provided. The UV lamp system includes a power supply and an irradiator that is powered by the power supply through a cable. An RF screen is releasably attached to the irradiator by a snap-fit fit connection. The snap-fit connection between the RF screen and the irradiator is provided by a snap-fit fastener. The reflector and RF screen assembly includes a reflector with a curved reflecting surface and a pair of flanges. An RF screen that has a screen retained by a frame is provided, and is releasably attached to the reflector by a snap-fit connection between the frame and the pair of flanges. At least one snap-fit fastener is used to effect releasable attachment between the frame and one of the flanges, and at least one snap-fit fastener is used to effect releasable attachment between the frame and the other one of the flanges.Type: GrantFiled: October 7, 2003Date of Patent: January 11, 2005Assignee: Miltec CorporationInventors: John Thomas Phillips, Jeffrey Scott Mobley, Derek Steven Matheson
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Patent number: 6720566Abstract: A shutter for use with a light source is provided. The shutter includes a first section that has an inner receiving surface for receiving at least part of a reflector liner. A second section is present and has an inner receiving surface for receiving at least part of the reflector liner. The second section is removably securable to the first section. The sections cooperate to provide adequate force to the reflector liner to cause the reflector liner to be retained on the inner receiving surfaces between engaging projections on the sections during attachment between the first and second sections. Detachment of the second section from the first section allows for the removal of the reflector liner from the receiving surfaces.Type: GrantFiled: August 20, 2002Date of Patent: April 13, 2004Assignee: Miltec CorporationInventor: Robert Michael Blandford
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Publication number: 20040037081Abstract: A shutter for use with a light source is provided. The shutter includes a first section that has an inner receiving surface for receiving at least part of a reflector liner. A second section is present and has an inner receiving surface for receiving at least part of the reflector liner. The second section is removably securable to the first section. The sections cooperate to provide adequate force to the reflector liner to cause the reflector liner to be retained on the inner receiving surfaces between engaging projections on the sections during attachment between the first and second sections. Detachment of the second section from the first section allows for the removal of the reflector liner from the receiving surfaces.Type: ApplicationFiled: August 20, 2002Publication date: February 26, 2004Applicant: Miltec CorporationInventor: Robert Michael Blandford