Patents by Inventor Samuel Cohen

Samuel Cohen 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).

  • Patent number: 11838292
    Abstract: In one embodiment, a method is provided. The method includes receive, by a networking device, a request from a first computing device, to connect to the networking device. The method also includes creating a first network. The first network is one of a set of networks of the networking device. The first computing device is one of a set of computing devices that are connected to the network device. Each network of the set of networks is initially isolated from other networks of the set of networks when the network is created. Each network of the set of networks comprises a respective computing device of the set of computing devices. The method further includes assigning the first computing device to the first network.
    Type: Grant
    Filed: March 4, 2021
    Date of Patent: December 5, 2023
    Assignee: MASTERPEACE SOLUTIONS LTD.
    Inventors: Andrew Samuel Cohen, Daniel Curtis Weller, Thomas Wasyl Martz, Kevin Michael Yeich, Raemar Antwarn Horne, Tyler James Bryant
  • Publication number: 20220286454
    Abstract: In one embodiment, a method is provided. The method includes receive, by a networking device, a request from a first computing device, to connect to the networking device. The method also includes creating a first network. The first network is one of a set of networks of the networking device. The first computing device is one of a set of computing devices that are connected to the network device. Each network of the set of networks is initially isolated from other networks of the set of networks when the network is created. Each network of the set of networks comprises a respective computing device of the set of computing devices. The method further includes assigning the first computing device to the first network.
    Type: Application
    Filed: March 4, 2021
    Publication date: September 8, 2022
    Inventors: Andrew Samuel Cohen, Daniel Curtis Weller, Thomas Wasyl Martz, Kevin Michael Yeich, RaeMar Antwarn Horne, Tyler James Bryant
  • Publication number: 20220286457
    Abstract: In one embodiment, a method is provided. The method includes receiving a registration message from a network device. The registration request indicates that a first computing device has connected to the computing devices. The method also includes determining a category for the first computing device based on the registration message. The method further includes determining a set of rules for the computing device based on the category. The method further includes transmitting the set of rules to the network device. The set of rules indicates permissions for the first computing device. Each network of the set of networks is initially isolated from other networks of the set of networks when the network is created. Each network of the set of networks comprises a respective computing device of the set of computing devices.
    Type: Application
    Filed: March 4, 2021
    Publication date: September 8, 2022
    Inventors: Andrew Samuel Cohen, Daniel Curtis Weller, Thomas Wasyl Martz, Kevin Michael Yeich, RaeMar Antwarn Horne, Tyler James Bryant
  • Patent number: 11322265
    Abstract: According to some embodiments, a system for widening and densifying a scrape-off layer (SOL) in a field reversed configuration (FRC) fusion reactor is disclosed. The system includes a gas box at one end of the reactor including a gas inlet system and walls of suitable heat bearing materials. The system further includes an exit orifice adjoining the gas box, wherein the exit orifice has a controllable radius and length to allow plasma to flow out from the gas box to populate the SOL with the plasma. The system may also include fusion products, which decrease in speed in the plasma in the SOL, allowing energy to be extracted and converted into thrust or electrical power and further allowing ash to be extracted to reduce neutron emissions and maintain high, steady-state fusion power.
    Type: Grant
    Filed: February 4, 2021
    Date of Patent: May 3, 2022
    Assignee: THE TRUSTEES OF PRINCETON UNIVERSITY
    Inventors: Samuel A. Cohen, Matthew K. Chu Cheong
  • Patent number: 11164681
    Abstract: According to various embodiments, an FRC fusion reactor is disclosed. The FRC fusion reactor includes a main chamber containing an FRC core and an energy and ash removal shell (EARS). The FRC fusion reactor further includes at least one divertor chamber connected to the main chamber via a divertor throat. The divertor chamber includes a plasma extruder positioned on a major axis of the FRC fusion reactor and a controllable distance along the major axis from the divertor throat. The plasma extruder has a diameter approximately ½ a diameter of the divertor throat and is configured to block plasma flow towards the FRC core to create a gap region between the FRC core and the EARS.
    Type: Grant
    Filed: March 4, 2020
    Date of Patent: November 2, 2021
    Assignee: THE TRUSTEES OF PRINCETON UNIVERSITY
    Inventor: Samuel A. Cohen
  • Publication number: 20210158977
    Abstract: According to some embodiments, a system for widening and densifying a scrape-off layer (SOL) in a field reversed configuration (FRC) fusion reactor is disclosed. The system includes a gas box at one end of the reactor including a gas inlet system and walls of suitable heat bearing materials. The system further includes an exit orifice adjoining the gas box, wherein the exit orifice has a controllable radius and length to allow plasma to flow out from the gas box to populate the SOL with the plasma. The system may also include fusion products, which decrease in speed in the plasma in the SOL, allowing energy to be extracted and converted into thrust or electrical power and further allowing ash to be extracted to reduce neutron emissions and maintain high, steady-state fusion power.
    Type: Application
    Filed: February 4, 2021
    Publication date: May 27, 2021
    Applicant: THE TRUSTEES OF PRINCETON UNIVERSITY
    Inventors: SAMUEL A. COHEN, MATTHEW K. CHU CHEONG
  • Publication number: 20210145802
    Abstract: A thiazolidinedione or rhodanine compound or a pharmaceutically acceptable salt, tautomer, solvate, hydrate, prodrug, derivative, stereoisomer, analog or isotopically labelled derivative thereof, for use in the treatment and/or prevention of an ophthalmological condition, wherein said compound is not Pioglitazone, Rosiglitazone, Rivoglitazone, Balaglitazone or Mitoglitazone.
    Type: Application
    Filed: April 4, 2019
    Publication date: May 20, 2021
    Inventors: Johnny HABCHI, Xiaoting YANG, Kerry JENKINS, Michele PERNI, Sunehera SARWAT, Joseph MENZIES, Cristina CAMPERO PEREDO, Andrea POSSENTI, Sara LINSE, Tuomas KNOWLES, Christopher DOBSON, Samuel COHEN, Michele VENDRUSCOLO
  • Publication number: 20210145801
    Abstract: A thiazolidinedione or rhodanine compound or a pharmaceutically acceptable salt, tautomer, solvate, hydrate, prodrug, derivative, stereoisomer, analog or isotopically labelled derivative thereof, for use in the treatment and/or prevention of a protein misfolding disease, wherein said compound is not Pioglitazone, Rosiglitazone, Rivoglitazone, Balaglitazone or Mitoglitazone.
    Type: Application
    Filed: April 4, 2019
    Publication date: May 20, 2021
    Inventors: Johnny HABCHI, Xiaoting YANG, Kerry JENKINS, Michele PERNI, Sunehera SARWAT, Joseph MENZIES, Cristina CAMPERO PEREDO, Andrea POSSENTI, Sara LINSE, Tuomas KNOWLES, Christopher DOBSON, Samuel COHEN, Michele VENDRUSCOLO
  • Patent number: 10923236
    Abstract: According to some embodiments, a system for widening and densifying a scrape-off layer (SOL) in a field reversed configuration (FRC) fusion reactor is disclosed. The system includes a gas box at one end of the reactor including a gas inlet system and walls of suitable heat bearing materials. The system further includes an exit orifice adjoining the gas box, wherein the exit orifice has a controllable radius and length to allow plasma to flow out from the gas box to populate the SOL with the plasma. The system may also include fusion products, which decrease in speed in the plasma in the SOL, allowing energy to be extracted and converted into thrust or electrical power and further allowing ash to be extracted to reduce neutron emissions and maintain high, steady-state fusion power.
    Type: Grant
    Filed: September 3, 2020
    Date of Patent: February 16, 2021
    Assignee: THE TRUSTEES OF PRINCETON UNIVERSITY
    Inventors: Samuel A. Cohen, Matthew K. Chu-Chueong
  • Publication number: 20200402677
    Abstract: According to some embodiments, a system for widening and densifying a scrape-off layer (SOL) in a field reversed configuration (FRC) fusion reactor is disclosed. The system includes a gas box at one end of the reactor including a gas inlet system and walls of suitable heat bearing materials. The system further includes an exit orifice adjoining the gas box, wherein the exit orifice has a controllable radius and length to allow plasma to flow out from the gas box to populate the SOL with the plasma. The system may also include fusion products, which decrease in speed in the plasma in the SOL, allowing energy to be extracted and converted into thrust or electrical power and further allowing ash to be extracted to reduce neutron emissions and maintain high, steady-state fusion power.
    Type: Application
    Filed: September 3, 2020
    Publication date: December 24, 2020
    Applicant: THE TRUSTEES OF PRINCETON UNIVERSITY
    Inventors: SAMUEL A. COHEN, MATTHEW CHU-CHUEONG
  • Publication number: 20200357527
    Abstract: According to various embodiments, an FRC fusion reactor is disclosed. The FRC fusion reactor includes a main chamber containing an FRC core and an energy and ash removal shell (EARS). The FRC fusion reactor further includes at least one divertor chamber connected to the main chamber via a divertor throat. The divertor chamber includes a plasma extruder positioned on a major axis of the FRC fusion reactor and a controllable distance along the major axis from the divertor throat. The plasma extruder has a diameter approximately ½ a diameter of the divertor throat and is configured to block plasma flow towards the FRC core to create a gap region between the FRC core and the EARS.
    Type: Application
    Filed: March 4, 2020
    Publication date: November 12, 2020
    Applicant: The Trustees of Princeton University
    Inventor: Samuel A. Cohen
  • Patent number: 10811143
    Abstract: The invention is for a startup system for nuclear fusion engines in space. The combustion of hydrogen and oxygen produces heat that is used by a heat engine to produce electricity. This can be supplemented by electricity from other operating engines. The exhaust from the combustion is condensed and electrolyzed to produce hydrogen and oxygen once the engine is in operation. This provides a constant source of energy for future startups. The engine is started up at partial power in electricity generation mode and this power replaces the power from the combustion as it grows. The combustor uses the same heat engine as the nuclear engine uses for power generation.
    Type: Grant
    Filed: January 17, 2019
    Date of Patent: October 20, 2020
    Assignee: PRINCETON SATELLITE SYSTEMS, INC.
    Inventors: Michael A. Paluszek, Eric M. Ham, Yosef Razin, Samuel A. Cohen
  • Patent number: 10811159
    Abstract: A system and method for fueling a fusion reactor. The system includes a reactor chamber containing a stable plasma including a fusion fuel; a heating system configured to heat the plasma and increase an ion energy of the plasma to a level sufficient for producing net power from fusion reactions in the stable plasma; a plurality of magnets coaxial to the reactor chamber, the plurality of magnets producing a magnetic field sufficient to confine the stable plasma and promote rapid loss of fusion products into a scrape off layer; and a neutral beam injection system configured to inject additional quantities of the fusion fuel to sustain the power output of the fusion reaction.
    Type: Grant
    Filed: September 4, 2014
    Date of Patent: October 20, 2020
    Assignee: THE TRUSTEES OF PRINCETON UNIVERSITY
    Inventors: Samuel A. Cohen, Daren Stotler, Michael Buttolph
  • Patent number: 10670504
    Abstract: Methods for determining the lateral diffusion of one or more components are provided.
    Type: Grant
    Filed: March 15, 2018
    Date of Patent: June 2, 2020
    Assignee: Cambridge Enterprise Limited
    Inventors: Samuel Cohen, Tuomas Knowles, Christopher Dobson, Luke Rajah, Duncan White
  • Publication number: 20200027570
    Abstract: The invention is for a startup system for nuclear fusion engines in space. The combustion of hydrogen and oxygen produces heat that is used by a heat engine to produce electricity. This can be supplemented by electricity from other operating engines. The exhaust from the combustion is condensed and electrolyzed to produce hydrogen and oxygen once the engine is in operation. This provides a constant source of energy for future startups. The engine is started up at partial power in electricity generation mode and this power replaces the power from the combustion as it grows. The combustor uses the same heat engine as the nuclear engine uses for power generation.
    Type: Application
    Filed: January 17, 2019
    Publication date: January 23, 2020
    Applicants: PRINCETON SATELLITE SYSTEMS, INC., THE TRUSTEES OF PRINCETON UNIVERSITY
    Inventors: Michael A. Paluszek, Eric M. Ham, Yosef Razin, Samuel A. Cohen
  • Publication number: 20200005958
    Abstract: A system and method for fueling a fusion reactor. The system includes a reactor chamber containing a stable plasma including a fusion fuel; a heating system configured to heat the plasma and increase an ion energy of the plasma to a level sufficient for producing net power from fusion reactions in the stable plasma; a plurality of magnets coaxial to the reactor chamber, the plurality of magnets producing a magnetic field sufficient to confine the stable plasma and promote rapid loss of fusion products into a scrape off layer; and a neutral beam injection system configured to inject additional quantities of the fusion fuel to sustain the power output of the fusion reaction.
    Type: Application
    Filed: September 4, 2014
    Publication date: January 2, 2020
    Inventors: Samuel A. Cohen, Daren Stotler, Michael Buttolph
  • Publication number: 20190110622
    Abstract: A garment hanger having a central region defining a boundary of an opening through the thickness of the hanger. A web of material extends across the opening, between contact points with the boundary to depict an image formed of the web of material across the opening. Flocking can be applied to the hanger.
    Type: Application
    Filed: October 13, 2017
    Publication date: April 18, 2019
    Inventor: SAMUEL COHEN
  • Patent number: 10229756
    Abstract: The invention is for a startup system for nuclear fusion engines in space. The combustion of hydrogen and oxygen produces heat that is used by a heat engine to produce electricity. This can be supplemented by electricity from other operating engines. The exhaust from the combustion is condensed and electrolyzed to produce hydrogen and oxygen once the engine is in operation. This provides a constant source of energy for future startups. The engine is started up at partial power in electricity generation mode and this power replaces the power from the combustion as it grows. The combustor uses the same heat engine as the nuclear engine uses for power generation.
    Type: Grant
    Filed: August 22, 2014
    Date of Patent: March 12, 2019
    Assignees: PRINCETON SATELLITE SYSTEMS, INC., THE TRUSTEES OF PRINCETON UNIVERSITY
    Inventors: Michael A. Paluszek, Eric M. Ham, Yosef Razin, Samuel A. Cohen
  • Publication number: 20180328831
    Abstract: Methods for determining the lateral diffusion of one or more components are provided.
    Type: Application
    Filed: March 15, 2018
    Publication date: November 15, 2018
    Applicant: Cambridge Enterprise Limited
    Inventors: Samuel Cohen, Tuomas Knowles, Christopher Dobson, Luke Rajah, Duncan White
  • Patent number: 9958369
    Abstract: A method for determining the diffusion of one or more components, the method includes the steps of (i) providing a component fluid flow having one or more components; (ii) providing a blank fluid flow; (iii) bringing the flow (i) into contact with the flow (ii) in a large cross section channel, thereby to generate two laminar flows; (iv) permitting the laminar flows generated in (iii) to flow from the large cross section channel into a small cross section channel; measuring the lateral diffusion of the one or more components from the component flow into the blank fluid flow in the small cross section channel. Also provided is a diffusion method having the steps of measuring the lateral diffusion of the one or more components from the component flow into the blank fluid flow at a plurality of diffusion times.
    Type: Grant
    Filed: October 22, 2013
    Date of Patent: May 1, 2018
    Assignee: Cambridge Enterprise Limited
    Inventors: Samuel Cohen, Tuomas Knowles, Christopher Dobson, Luke Rajah, Duncan White