Patents by Inventor John A. Lawler
John A. Lawler 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: 12255514Abstract: A bearing assembly for a linear electromagnetic machine includes a sleeve having a surface configured to provide a bearing between the surface and a translator, a front plate coupled to the sleeve, a support block, and a plurality of flexures coupled to the support block. Each flexure is coupled between the support block and one of the front plate or a stator. For example, a load path extends from a stator to the support block via a first set of flexures of the plurality of flexures, from the support block to the front plate via a second set of flexures of the plurality of flexures, and from the front plate to the sleeve. In the example of four flexures, two flexures are affixed to the support block and front plate, while two other flexures are affixed to the support block and the stator.Type: GrantFiled: July 29, 2022Date of Patent: March 18, 2025Assignee: Mainspring Energy, Inc.Inventors: John Lawler, Neil Watters, Samuel Sherman, Matthew Svrcek, David DeGraaff
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Publication number: 20250030317Abstract: An integrated linear generator system includes, for example, a generator assembly, a control system, a frame system, an exhaust system, an intake system, a cooling system, a bearing system, one or more auxiliary systems, or a combination thereof. The generator system is configured to generate power, as controlled by the control system. The generator assembly may include an opposed- and free-piston linear generator, configured to operate on a two-stroke cycle. The intake and exhaust systems are configured to provide reactants to and remove products from the generator assembly, respectively. The cooling system is configured to effect heat transfer, material temperature, or both, of components of the integrated linear generator system. The bearing system is configured to constrain the off-axis motion of translators of the generator assembly without applying significant friction forces.Type: ApplicationFiled: May 24, 2024Publication date: January 23, 2025Inventors: Matt Svrcek, David DeGraaff, Kevin Walters, Cameron Wylie, John Powers, John Lawler, Sam Sherman, Jodie Prudhomme, Scott Coakley
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Patent number: 12027956Abstract: An integrated linear generator system includes, for example, a generator assembly, a control system, a frame system, an exhaust system, an intake system, a cooling system, a bearing system, one or more auxiliary systems, or a combination thereof. The generator system is configured to generate power, as controlled by the control system. The generator assembly may include an opposed- and free-piston linear generator, configured to operate on a two-stroke cycle. The intake and exhaust systems are configured to provide reactants to and remove products from the generator assembly, respectively. The cooling system is configured to effect heat transfer, material temperature, or both, of components of the integrated linear generator system. The bearing system is configured to constrain the off-axis motion of translators of the generator assembly without applying significant friction forces.Type: GrantFiled: June 23, 2023Date of Patent: July 2, 2024Assignee: Mainspring Energy, Inc.Inventors: Matt Svrcek, David DeGraaff, Kevin Walters, Cameron Wylie, John Powers, John Lawler, Sam Sherman, Jodie Prudhomme, Scott Coakley
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Publication number: 20240055946Abstract: An integrated linear generator system includes, for example, a generator assembly, a control system, a frame system, an exhaust system, an intake system, a cooling system, a bearing system, one or more auxiliary systems, or a combination thereof. The generator system is configured to generate power, as controlled by the control system. The generator assembly may include an opposed- and free-piston linear generator, configured to operate on a two-stroke cycle. The intake and exhaust systems are configured to provide reactants to and remove products from the generator assembly, respectively. The cooling system is configured to effect heat transfer, material temperature, or both, of components of the integrated linear generator system. The bearing system is configured to constrain the off-axis motion of translators of the generator assembly without applying significant friction forces.Type: ApplicationFiled: June 23, 2023Publication date: February 15, 2024Inventors: Matt Svrcek, David DeGraaff, Kevin Walters, Cameron Wylie, John Powers, John Lawler, Sam Sherman, Jodie Prudhomme, Scott Coakley
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Patent number: 11750065Abstract: An integrated linear generator system includes, for example, a generator assembly, a control system, a frame system, an exhaust system, an intake system, a cooling system, a bearing system, one or more auxiliary systems, or a combination thereof. The generator system is configured to generate power, as controlled by the control system. The generator assembly may include an opposed- and free-piston linear generator, configured to operate on a two-stroke cycle. The intake and exhaust systems are configured to provide reactants to and remove products from the generator assembly, respectively. The cooling system is configured to effect heat transfer, material temperature, or both, of components of the integrated linear generator system. The bearing system is configured to constrain the off-axis motion of translators of the generator assembly without applying significant friction forces.Type: GrantFiled: June 24, 2022Date of Patent: September 5, 2023Assignee: Mainspring Energy, Inc.Inventors: Matt Svrcek, David DeGraaff, Kevin Walters, Cameron Wylie, John Powers, John Lawler, Sam Sherman, Jodie Prudhomme, Scott Coakley
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Publication number: 20230198367Abstract: A linear electromagnetic machine includes a stator, a translator, and a bearing system. The bearing system maintains alignment against lateral displacement of the translator relative to the stator, as the translator reciprocates axially. More particularly, the bearing system maintains a motor air gap between the stator and a magnetic section of the translator. The stator includes a plurality of stator teeth and windings, which form a plurality of phases. The stator teeth and windings are arranged using a hoop stack with spines to form a stator bore and define the motor air gap. The bearing system can include bearing housings that are configured to form a bearing interface with a surface of the translator. The bearing interface can include a contact bearing or a non-contact bearing, such as a gas bearing. Current is controlled in the phases to convert between electrical energy and kinetic energy of the translator.Type: ApplicationFiled: February 22, 2023Publication date: June 22, 2023Inventors: John Lawler, John Powers, Scott Coakley, Alan Crapo, David DeGraaff, Christopher David Gadda, Andrew Hancock, Shannon Miller, Samuel Sherman, Matthew Svrcek, Kevin Walters
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Patent number: 11616428Abstract: A linear electromagnetic machine includes a stator, a translator, and a bearing system. The bearing system maintains alignment against lateral displacement of the translator relative to the stator, as the translator reciprocates axially. More particularly, the bearing system maintains a motor air gap between the stator and a magnetic section of the translator. The stator includes a plurality of stator teeth and windings, which form a plurality of phases. The stator teeth and windings are arranged using a hoop stack with spines to form a stator bore and define the motor air gap. The bearing system can include bearing housings that are configured to form a bearing interface with a surface of the translator. The bearing interface can include a contact bearing or a non-contact bearing, such as a gas bearing. Current is controlled in the phases to convert between electrical energy and kinetic energy of the translator.Type: GrantFiled: April 9, 2021Date of Patent: March 28, 2023Assignee: Mainspring Energy, Inc.Inventors: John Lawler, John Powers, Scott Coakley, Alan Crapo, David DeGraaff, Christopher David Gadda, Andrew Hancock, Shannon Miller, Samuel Sherman, Matthew Svrcek, Kevin Walters
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Publication number: 20230034504Abstract: A bearing assembly for a linear electromagnetic machine includes a sleeve having a surface configured to provide a bearing between the surface and a translator, a front plate coupled to the sleeve, a support block, and a plurality of flexures coupled to the support block. Each flexure is coupled between the support block and one of the front plate or a stator. For example, a load path extends from a stator to the support block via a first set of flexures of the plurality of flexures, from the support block to the front plate via a second set of flexures of the plurality of flexures, and from the front plate to the sleeve. In the example of four flexures, two flexures are affixed to the support block and front plate, while two other flexures are affixed to the support block and the stator.Type: ApplicationFiled: July 29, 2022Publication date: February 2, 2023Inventors: John Lawler, Neil Watters, Samuel Sherman, Matthew Svrcek, David DeGraaff
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Publication number: 20220399784Abstract: An integrated linear generator system includes, for example, a generator assembly, a control system, a frame system, an exhaust system, an intake system, a cooling system, a bearing system, one or more auxiliary systems, or a combination thereof. The generator system is configured to generate power, as controlled by the control system. The generator assembly may include an opposed- and free-piston linear generator, configured to operate on a two-stroke cycle. The intake and exhaust systems are configured to provide reactants to and remove products from the generator assembly, respectively. The cooling system is configured to effect heat transfer, material temperature, or both, of components of the integrated linear generator system. The bearing system is configured to constrain the off-axis motion of translators of the generator assembly without applying significant friction forces.Type: ApplicationFiled: June 24, 2022Publication date: December 15, 2022Inventors: Matt Svrcek, David DeGraaff, Kevin Walters, Cameron Wylie, John Powers, John Lawler, Sam Sherman, Jodie Prudhomme, Scott Coakley
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Patent number: 11404937Abstract: An integrated linear generator system includes, for example, a generator assembly, a control system, a frame system, an exhaust system, an intake system, a cooling system, a bearing system, one or more auxiliary systems, or a combination thereof. The generator system is configured to generate power, as controlled by the control system. The generator assembly may include an opposed- and free-piston linear generator, configured to operate on a two-stroke cycle. The intake and exhaust systems are configured to provide reactants to and remove products from the generator assembly, respectively. The cooling system is configured to effect heat transfer, material temperature, or both, of components of the integrated linear generator system. The bearing system is configured to constrain the off-axis motion of translators of the generator assembly without applying significant friction forces.Type: GrantFiled: December 18, 2019Date of Patent: August 2, 2022Assignee: Mainspring Energy, Inc.Inventors: Matt Svrcek, David DeGraaff, Kevin Walters, Cameron Wylie, John Powers, John Lawler, Sam Sherman, Jodie Prudhomme, Scott Coakley
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Patent number: 11297781Abstract: Method, apparatus, and system for operation of a timber-working device configured to perform at least one operation having an associated hazard zone. At least one signal from at least one orientation sensor associated with the timber-working head may indicate whether a predetermined location is within the hazard zone based on the orientation of the timber-working head. Operation of the timber-working head can be controlled based on the signal.Type: GrantFiled: July 18, 2017Date of Patent: April 12, 2022Assignee: Deere & CompanyInventors: Brett James Kaye, Clinton Charles Marriage, Michael Francis James, Richard John Lawler
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Publication number: 20210288570Abstract: A linear electromagnetic machine includes a stator, a translator, and a bearing system. The bearing system maintains alignment against lateral displacement of the translator relative to the stator, as the translator reciprocates axially. More particularly, the bearing system maintains a motor air gap between the stator and a magnetic section of the translator. The stator includes a plurality of stator teeth and windings, which form a plurality of phases. The stator teeth and windings are arranged using a hoop stack with spines to form a stator bore and define the motor air gap. The bearing system can include bearing housings that are configured to form a bearing interface with a surface of the translator. The bearing interface can include a contact bearing or a non-contact bearing, such as a gas bearing. Current is controlled in the phases to convert between electrical energy and kinetic energy of the translator.Type: ApplicationFiled: April 9, 2021Publication date: September 16, 2021Inventors: John Lawler, John Powers, Scott Coakley, Alan Crapo, David DeGraaff, Christopher David Gadda, Andrew Hancock, Shannon Miller, Samuel Sherman, Matthew Svrcek, Kevin Walters
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Patent number: 10985641Abstract: A linear electromagnetic machine includes a stator, a translator, and a bearing system. The bearing system maintains alignment against lateral displacement of the translator relative to the stator, as the translator reciprocates axially. More particularly, the bearing system maintains a motor air gap between the stator and a magnetic section of the translator. The stator includes a plurality of stator teeth and windings, which form a plurality of phases. The stator teeth and windings are arranged using a hoop stack with spines to form a stator bore and define the motor air gap. The bearing system can include bearing housings that are configured to form a bearing interface with a surface of the translator. The bearing interface can include a contact bearing or a non-contact bearing, such as a gas bearing. Current is controlled in the phases to convert between electrical energy and kinetic energy of the translator.Type: GrantFiled: July 24, 2019Date of Patent: April 20, 2021Assignee: MAINSPRING ENERGY, INC.Inventors: John Lawler, John Powers, Scott Coakley, Alan Crapo, David DeGraaff, Christopher David Gadda, Andrew Hancock, Shannon Miller, Samuel Sherman, Matthew Svrcek, Kevin Walters
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Publication number: 20200195093Abstract: An integrated linear generator system includes, for example, a generator assembly, a control system, a frame system, an exhaust system, an intake system, a cooling system, a bearing system, one or more auxiliary systems, or a combination thereof. The generator system is configured to generate power, as controlled by the control system. The generator assembly may include an opposed- and free-piston linear generator, configured to operate on a two-stroke cycle. The intake and exhaust systems are configured to provide reactants to and remove products from the generator assembly, respectively. The cooling system is configured to effect heat transfer, material temperature, or both, of components of the integrated linear generator system. The bearing system is configured to constrain the off-axis motion of translators of the generator assembly without applying significant friction forces.Type: ApplicationFiled: December 18, 2019Publication date: June 18, 2020Inventors: Matt Svrcek, David DeGraaff, Kevin Walters, Cameron Wylie, John Powers, John Lawler, Sam Sherman, Jodie Prudhomme, Scott Coakley
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Publication number: 20200036273Abstract: A linear electromagnetic machine includes a stator, a translator, and a bearing system. The bearing system maintains alignment against lateral displacement of the translator relative to the stator, as the translator reciprocates axially. More particularly, the bearing system maintains a motor air gap between the stator and a magnetic section of the translator. The stator includes a plurality of stator teeth and windings, which form a plurality of phases. The stator teeth and windings are arranged using a hoop stack with spines to form a stator bore and define the motor air gap. The bearing system can include bearing housings that are configured to form a bearing interface with a surface of the translator. The bearing interface can include a contact bearing or a non-contact bearing, such as a gas bearing. Current is controlled in the phases to convert between electrical energy and kinetic energy of the translator.Type: ApplicationFiled: July 24, 2019Publication date: January 30, 2020Inventors: John Lawler, John Powers, Scott Coakley, Alan Crapo, David DeGraaff, Christopher David Gadda, Andrew Hancock, Shannon Miller, Samuel Sherman, Matthew Svrcek, Kevin Walters
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Patent number: 10006401Abstract: A piston engine may include a clearance gap between a piston assembly and a cylinder. The piston may be configured to translate in a bore of the cylinder. The clearance gap between the piston assembly and the bore may be actively or passively controlled. A control system may provide one or more adjustments based on, for example, a detected temperature, pressure, flow rate, work metric, and/or other indicator. The adjustments may include, for example, adjusting a cylinder liner, adjusting a flow through a bearing element, adjusting a coolant flow, adjusting a heat pipe property, and/or other adjustments. One or more auxiliary systems may be used to provide the adjustments.Type: GrantFiled: December 21, 2012Date of Patent: June 26, 2018Assignee: ETAGEN, INC.Inventors: John Lawler, Matt Svrcek
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Publication number: 20170311558Abstract: Method, apparatus, and system for operation of a timber-working device configured to perform at least one operation having an associated hazard zone. At least one signal from at least one orientation sensor associated with the timber-working head may indicate whether a predetermined location is within the hazard zone based on the orientation of the timber-working head. Operation of the timber-working head can be controlled based on the signal.Type: ApplicationFiled: July 18, 2017Publication date: November 2, 2017Inventors: Brett James Kaye, Clinton Charles Marriage, Michael Francis James, Richard John Lawler
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Patent number: 9169797Abstract: A piston engine may include a piston and cylinder assembly. A piston assembly may be configured to translate in a cylinder liner, which may form a bore in the cylinder. The cylinder liner may be deformable, and deformations of the cylinder liner may affect the clearance gap between the piston assembly and the cylinder. A liner fluid may be supplied to the cylinder liner to create a pressure differential across the liner, and a resulting deformation. The liner fluid may be used to provide cooling as well as liner deformation to control the clearance gap. A cylinder may include one or more fluid passages configured to provide heating, cooling, or both. A cylinder may include one or more localized heat sources such as, for example, electric resistance heaters or heating fluid passages.Type: GrantFiled: December 29, 2011Date of Patent: October 27, 2015Assignee: EtaGen, Inc.Inventors: John Lawler, Matt Svrcek
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Patent number: 9097203Abstract: A piston engine may include a clearance gap between a piston assembly and a cylinder. The piston may be configured to translate in a bore of the cylinder. The clearance gap between the piston assembly and the bore may be actively or passively controlled. A control system may provide one or more adjustments based on, for example, a detected temperature, pressure, flow rate, work metric, and/or other indicator. The adjustments may include, for example, adjusting a cylinder liner, adjusting a flow through a bearing element, adjusting a coolant flow, adjusting a heat pipe property, and/or other adjustments. One or more auxiliary systems may be used to provide the adjustments.Type: GrantFiled: December 29, 2011Date of Patent: August 4, 2015Assignee: EtaGen, Inc.Inventors: John Lawler, Matt Svrcek
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Patent number: RE49259Abstract: A piston engine may include a clearance gap between a piston assembly and a cylinder. The piston may be configured to translate in a bore of the cylinder. The clearance gap between the piston assembly and the bore may be actively or passively controlled. A control system may provide one or more adjustments based on, for example, a detected temperature, pressure, flow rate, work metric, and/or other indicator. The adjustments may include, for example, adjusting a cylinder liner, adjusting a flow through a bearing element, adjusting a coolant flow, adjusting a heat pipe property, and/or other adjustments. One or more auxiliary systems may be used to provide the adjustments.Type: GrantFiled: November 30, 2020Date of Patent: October 25, 2022Assignee: Mainspring Energy, Inc.Inventors: John Lawler, Matt Svrcek