Patents by Inventor Jeffrey Earls
Jeffrey Earls 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: 20240026803Abstract: Flow from a gas well is conditioned prior to a production pipeline. A flow line is coupled to a gas well to receive the gas and coupled to a production pipeline to direct the received gas away from the production site, the flow line residing at a production site and comprising an electric power generation system. The electric power generation system has a turbine generator. The inlet nozzle and the turbine wheel of the turbine generator is configured to reduce the pressure and temperature of the received gas to conditions associated with the production pipeline.Type: ApplicationFiled: February 22, 2023Publication date: January 25, 2024Inventors: Jeffrey Earl, Archie Andonian, Diego Guimaraes Ferreira
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Patent number: 11880067Abstract: In an example, an integrated optical circuit (IOC) includes a first substrate formed of a first material and a first waveguide formed of a second material and positioned on the first substrate. The first waveguide includes a plurality of branches and is configured to polarize light beams that propagate through the first waveguide. The IOC further includes a second substrate formed of a third material, the second substrate coupled to or positioned on the first substrate. The IOC further includes a plurality of straight waveguides formed in the second substrate, each of the plurality of straight waveguides optically coupled to a respective branch of the plurality of branches of the first waveguide. The IOC further includes a plurality of electrodes positioned proximate to the plurality of straight waveguides, the plurality of electrodes configured to modulate the phase of light beams that propagate through the plurality of straight waveguides.Type: GrantFiled: April 4, 2022Date of Patent: January 23, 2024Assignee: Honeywell International Inc.Inventors: Jeffrey Earl Lewis, Matthew Wade Puckett, Neil A. Krueger, Chellappan Narayanan
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Publication number: 20230335763Abstract: A fuel cell system includes a gas fuel source, a fuel cell stack fluidly connected to the gas fuel source by a first pathway, and a turboexpander generator fluidly connected to the gas fuel source by a bypass fluid pathway in parallel with at least a portion of the first pathway. The first pathway transmits a first amount of gas fuel from the gas fuel source to the fuel cell stack. The turboexpander generator receives a second amount of gas fuel from the gas fuel source and reduces a pressure and temperature of the second amount of the gas fuel. The fuel cell system also includes a motor electrically connected to the fuel cell stack and the turboexpander generator, where the fuel cell stack and the turboexpander generator each supply electrical power to the motor.Type: ApplicationFiled: April 19, 2022Publication date: October 19, 2023Inventors: Jeffrey Earl, Freddie Sarhan
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Publication number: 20230328934Abstract: A system includes an electric generator, a power electronics system, and a heat exchanger. The electric generator includes a turbine wheel, a rotor, and a stator. The turbine wheel is configured to receive process gas and rotate in response to expansion of the process gas flowing into an inlet of the turbine wheel and out of an outlet of the turbine wheel. The rotor is configured to rotate with the turbine wheel. The electric generator is configured to generate electrical power upon rotation of the rotor within the stator. The power electronics system is configured to convert the electrical power to specified power characteristics. The heat exchanger includes a first side in fluid communication with the process gas and a second side in fluid communication with a fluid stream from a second system. The heat exchanger is configured to cool the fluid stream using the process gas.Type: ApplicationFiled: April 7, 2022Publication date: October 12, 2023Inventors: Jeffrey Earl, Jeremy Liu
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Publication number: 20230323785Abstract: A first turboexpander generator defines a portion of a first conduit flow passage. The first turboexpander generator is configured to decrease a temperature or pressure of a process stream flowing through the first turboexpander generator by generating electrical power from the process stream. A second turboexpander generator defines a portion of a second conduit flow passage. The second turboexpander generator is configured to decrease a temperature or pressure of a process stream flowing through the second turboexpander generator by generating electrical power from the process stream. The first and second conduit flow passages are arranged to carry fluid flow in parallel to one another. The first and the second turboexpander generator are substantially identical in critical dimensions and performance.Type: ApplicationFiled: May 4, 2022Publication date: October 12, 2023Inventors: Jeffrey Earl, Freddie Sarhan, Jeremy Liu
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Publication number: 20230323774Abstract: A first turboexpander generator is configured to decrease a temperature or pressure of a process stream flowing through the first turboexpander generator by generating electrical power from the process stream. A second turboexpander generator is configured to decrease a temperature or pressure of a process stream flowing through the second turboexpander generator by generating electrical power from the process stream. The second turboexpander generator is downstream of and receives a flow output from the first turboexpander generator. The first turboexpander generator and the second turboexpander generator each include the following features. An electric stator surrounds an electric rotor. An annulus defined by the electric rotor and the electric stator is configured to receive a process fluid flow. Magnetic bearings carry the rotor within the stator. A housing encloses the rotor and stator. The housing is hermetically sealed between an inlet and an outlet of each turboexpander generator.Type: ApplicationFiled: April 8, 2022Publication date: October 12, 2023Inventors: Jeffrey Earl, Freddie Sarhan, Jeremy Liu
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Patent number: 11743282Abstract: Devices, systems, and methods are provided for cloud-based entity reputation scoring. A method may include determining, based on domain name service (DNS) data associated with entities of the cloud-based environment, a k-partite graph with nodes and edges, a node including a first elastic computing instance. The method may include generating features associated with the first elastic computing instance. The method may include determining, based on the features, a minimum value, a maximum value, and an average value, and generating a feature vector comprising the minimum value, the maximum value, and the average value. The method may include determining, based on the feature vector, a reputation score associated with the first elastic computing instance. The method may include communicating based on the reputation score.Type: GrantFiled: September 24, 2020Date of Patent: August 29, 2023Assignee: Amazon Technologies, Inc.Inventors: MohamadAli Torkamani, Baris Coskun, Jeffrey Earl Bickford, Shane Anil Pereira
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Publication number: 20230253807Abstract: The specification describes a charging device that includes a housing forming one or more cylindrical cavities that each receive a rechargeable battery, the one or more cylindrical cavities each having a magnet and an end that includes both a positive terminal and a negative terminal. The charging device further includes a status indicator for one or more of the rechargeable batteries a status indicator for one or more of the rechargeable batteries. The charging device further includes an antenna. The charging device further includes an induction charging system.Type: ApplicationFiled: February 4, 2022Publication date: August 10, 2023Applicant: Pale Blue Earth IncInventors: Thomas BISHOP, Jeffrey Earl, Kevin Horsburgh, David Vogt
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Patent number: 11619140Abstract: A first turboexpander generator is configured to decrease a temperature or pressure of a process stream flowing through the first turboexpander generator by generating electrical power from the process stream. A second turboexpander generator is configured to decrease a temperature or pressure of a process stream flowing through the second turboexpander generator by generating electrical power from the process stream. The second turboexpander generator is downstream of and receives a flow output from the first turboexpander generator. The first turboexpander generator and the second turboexpander generator each include the following features. An electric stator surrounds an electric rotor. An annulus defined by the electric rotor and the electric stator is configured to receive a process fluid flow. Magnetic bearings carry the rotor within the stator. A housing encloses the rotor and stator. The housing is hermetically sealed between an inlet and an outlet of each turboexpander generator.Type: GrantFiled: May 4, 2022Date of Patent: April 4, 2023Assignee: Sapphire Technologies, Inc.Inventors: Jeffrey Earl, Freddie Sarhan, Jeremy Liu
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Patent number: 11611263Abstract: An electric power generation system receives a gas flow at a heater, heats the gas flow at the heater with a heated fluid from a waste heat process, and directs the heated gas flow to a turbine wheel of an electric generator. The heated gas flow drives rotation of the turbine wheel, and in response to rotating the turbine wheel, electrical current is generated by the electric generator. Generated electrical current is then directed to power electronics.Type: GrantFiled: April 28, 2022Date of Patent: March 21, 2023Assignee: Sapphire Technologies, Inc.Inventors: Freddie Sarhan, Jeffrey Earl, Jeremy Liu
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Patent number: 11594937Abstract: A system includes an electric generator, a power electronics system, and a heat exchanger. The electric generator includes a turbine wheel, a rotor, and a stator. The turbine wheel is configured to receive process gas and rotate in response to expansion of the process gas flowing into an inlet of the turbine wheel and out of an outlet of the turbine wheel. The rotor is configured to rotate with the turbine wheel. The electric generator is configured to generate electrical power upon rotation of the rotor within the stator. The power electronics system is configured to convert the electrical power to specified power characteristics. The heat exchanger includes a first side in fluid communication with the process gas and a second side in fluid communication with a fluid stream from a second system. The heat exchanger is configured to cool the fluid stream using the process gas.Type: GrantFiled: May 4, 2022Date of Patent: February 28, 2023Assignee: Sapphire Technologies, Inc.Inventors: Jeffrey Earl, Jeremy Liu
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Publication number: 20220229231Abstract: In an example, an integrated optical circuit (IOC) includes a first substrate formed of a first material and a first waveguide formed of a second material and positioned on the first substrate. The first waveguide includes a plurality of branches and is configured to polarize light beams that propagate through the first waveguide. The IOC further includes a second substrate formed of a third material, the second substrate coupled to or positioned on the first substrate. The IOC further includes a plurality of straight waveguides formed in the second substrate, each of the plurality of straight waveguides optically coupled to a respective branch of the plurality of branches of the first waveguide. The IOC further includes a plurality of electrodes positioned proximate to the plurality of straight waveguides, the plurality of electrodes configured to modulate the phase of light beams that propagate through the plurality of straight waveguides.Type: ApplicationFiled: April 4, 2022Publication date: July 21, 2022Applicant: Honeywell International Inc.Inventors: Jeffrey Earl Lewis, Matthew Wade Puckett, Neil A. Krueger, Chellappan Narayanan
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Patent number: 11294120Abstract: In an example, an integrated optical circuit (IOC) includes a first substrate formed of a first material and a first waveguide formed of a second material and positioned on the first substrate. The first waveguide includes a plurality of branches and is configured to polarize light beams that propagate through the first waveguide. The IOC further includes a second substrate formed of a third material, the second substrate coupled to or positioned on the first substrate. The IOC further includes a plurality of straight waveguides formed in the second substrate, each of the plurality of straight waveguides optically coupled to a respective branch of the plurality of branches of the first waveguide. The IOC further includes a plurality of electrodes positioned proximate to the plurality of straight waveguides, the plurality of electrodes configured to modulate the phase of light beams that propagate through the plurality of straight waveguides.Type: GrantFiled: May 7, 2020Date of Patent: April 5, 2022Assignee: Honeywell International Inc.Inventors: Jeffrey Earl Lewis, Matthew Wade Puckett, Neil A. Krueger, Chellappan Narayanan
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Patent number: 11256607Abstract: Disclosed herein is a system for providing a test environment, composed of one or more virtual machines, to a developer instantly in response to a checkout request from the developer. To do this, a sandbox service implements a smart, tiered approach to creating and provisioning virtual machines that compose the test environments. The approach is flexible and elastic in nature, so that the developers do not have to wait an extended period of time for a test environment, yet the costs associated with configuring the virtual machines (e.g., storage and compute costs) are minimized. For example, the sandbox service can use historical data to predict a number of checkout requests expected for a first time interval (e.g., one day), a second time interval (e.g., thirty minutes), and a third time interval (e.g., five minutes). The sandbox service can then configure virtual machines into different states based on the predicted numbers.Type: GrantFiled: January 18, 2021Date of Patent: February 22, 2022Assignee: Microsoft Technology Licensing, LLCInventors: Raj Moizbhai Dhrolia, Jianfeng Cai, Nir Zvi Yurman, Sophie Dasinger, Peter Kenneth Harwood, Jeffrey Earl Steinbok, Peter Erling Hauge, Nicola Greene Alfeo, Sandeep Kumar
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Publication number: 20210349262Abstract: In an example, an integrated optical circuit (IOC) includes a first substrate formed of a first material and a first waveguide formed of a second material and positioned on the first substrate. The first waveguide includes a plurality of branches and is configured to polarize light beams that propagate through the first waveguide. The IOC further includes a second substrate formed of a third material, the second substrate coupled to or positioned on the first substrate. The IOC further includes a plurality of straight waveguides formed in the second substrate, each of the plurality of straight waveguides optically coupled to a respective branch of the plurality of branches of the first waveguide. The IOC further includes a plurality of electrodes positioned proximate to the plurality of straight waveguides, the plurality of electrodes configured to modulate the phase of light beams that propagate through the plurality of straight waveguides.Type: ApplicationFiled: May 7, 2020Publication date: November 11, 2021Applicant: Honeywell International Inc.Inventors: Jeffrey Earl Lewis, Matthew Wade Puckett, Neil A. Krueger, Chellappan Narayanan
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Patent number: 11105845Abstract: An integrated circuit (IC) chip for providing a safety-critical value includes first and second processing paths. The first processing path includes a first processing element and is coupled to receive a first input signal on a first input pin and to provide a first output signal that provides the safety-critical value on an output pin. The second processing path includes a second processing element and is coupled to receive a second input signal and to provide a second output signal. The first processing path and the second processing path are independent of each other. A smart comparator on the IC chip receives the first output signal and the second output signal and initiates a remedial action responsive to a difference between the first output signal and the second output signal reaching a configurable threshold.Type: GrantFiled: April 13, 2020Date of Patent: August 31, 2021Assignee: Texas Instruments IncorporatedInventors: Jeffrey Earl Stafford, Prasanth Viswanathan Pillai, Ashish Arvind Vanjari
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Patent number: 10961778Abstract: A boat or recreational vehicle ladder apparatus is provided. One aspect of the present ladder apparatus includes an elongated extension handle including a slot adjacent a lower end thereof. Another aspect of a boat or recreational vehicle ladder apparatus provides a snap-on step tread which can be mounted to a dual-tubular ladder step structure. Another aspect of a boat or recreational vehicle ladder apparatus employs a laterally expandable ladder step which can be retrofit onto an existing ladder. A further aspect employs clasps or hooks to attach and retain a ladder step to generally vertical ladder rails in a tool-free and fastener-free manner.Type: GrantFiled: February 27, 2019Date of Patent: March 30, 2021Assignee: Bobo Ladders LLCInventors: Wayne Lawrence Soucie, Michael Herbert Schmidt, Jeffrey Earl Tayon, Larry Brian Champ
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Publication number: 20200388984Abstract: A micro femtosecond laser with reduced radiation and temperature sensitivity is provided. The laser includes a housing with a radiation shield. Optical components that include a micro gain element are received within the housing. An input end of a pump light delivering fiber is positioned outside the housing. An output end of the pump light delivering fiber is positioned within the housing to deliver input beams to the optical components. A light signal generating pump is used to generate the input beams that are communicated to the input end of the pump light delivering fiber. A first end of a hollow core fiber is positioned within the housing to be in optical communication with the optical components. A second end of the hollow core fiber is positioned outside the housing. A partially reflective output coupling mirror is in optical communication with the second end of the hollow core fiber.Type: ApplicationFiled: June 7, 2019Publication date: December 10, 2020Applicant: Honeywell International Inc.Inventors: Tiequn Qiu, Chellappan Narayanan, Jeffrey Earl Lewis, Sorin Mosor
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Patent number: 10858887Abstract: A boat or recreational vehicle ladder apparatus is provided. One aspect of the present ladder apparatus includes an elongated extension handle including a slot adjacent a lower end thereof. Another aspect of a boat or recreational vehicle ladder apparatus provides a snap-on step tread which can be mounted to a dual-tubular ladder step structure. Another aspect of a boat or recreational vehicle ladder apparatus employs a laterally expandable ladder step which can be retrofit onto an existing ladder. A further aspect employs clasps or hooks to attach and retain a ladder step to generally vertical ladder rails in a tool-free and fastener-free manner.Type: GrantFiled: August 9, 2017Date of Patent: December 8, 2020Assignee: Bobo Ladders LLCInventors: Robert J. Orscheln, Jeffrey Earl Tayon, Wayne Lawrence Soucie, Larry Brian Champ, Michael Herbert Schmidt, Michael Lee Ashton
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Patent number: D1000950Type: GrantFiled: February 16, 2022Date of Patent: October 10, 2023Inventors: Thomas Bishop, Jeffrey Earl, Kevin Horsburgh, David Vogt