Patents by Inventor Lawrence Rhodes

Lawrence Rhodes 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: 11298762
    Abstract: A table saw and miter saw combination apparatus for combining the functionalities of table saws and miter saws includes a table housing having a table blade slot extending through to a table inside. A table saw is coupled to the table housing within the table inside and has a table blade extending through the table blade slot. The table saw has a power switch coupled to the table front side. A miter housing is coupled to the table housing. The miter top side has a base cutout. A miter base is coupled to the miter housing being pivotably coupled within the base cutout. The miter base has a miter blade slot extending therethrough. A miter saw is coupled to the miter housing. The miter saw has a miter arm. The miter saw has a miter handle coupled the miter arm. The miter handle has a power trigger.
    Type: Grant
    Filed: July 18, 2019
    Date of Patent: April 12, 2022
    Inventor: Lawrence Rhodes
  • Publication number: 20210016373
    Abstract: A table saw and miter saw combination apparatus for combining the functionalities of table saws and miter saws includes a table housing having a table blade slot extending through to a table inside. A table saw is coupled to the table housing within the table inside and has a table blade extending through the table blade slot. The table saw has a power switch coupled to the table front side. A miter housing is coupled to the table housing. The miter top side has a base cutout. A miter base is coupled to the miter housing being pivotably coupled within the base cutout. The miter base has a miter blade slot extending therethrough. A miter saw is coupled to the miter housing. The miter saw has a miter arm. The miter saw has a miter handle coupled the miter arm. The miter handle has a power trigger.
    Type: Application
    Filed: July 18, 2019
    Publication date: January 21, 2021
    Inventor: Lawrence Rhodes
  • Patent number: 8375719
    Abstract: The present invention is directed to a turbine seal system. The turbine seal system captures working fluid which is escaping from a closed loop thermodynamic cycle system, condenses the captured working fluid, and returns the condensate back to the thermodynamic cycle system. The turbine seal system is configured to apply nitrogen, or other non-condensable, or other material, to capture or mix with the escaping working fluid. The combined mixture of working fluid which escapes the turbine and the nitrogen utilized to capture the working fluid is evacuated by an exhaust compressor which maintains a desired vacuum in a gland seal compartment of the turbine seal. The combined mixture can then be sent to a condenser to condense the working fluid vapor and evacuate the non-condensables, forming a working stream. Once the non-condensables have been evacuated, the working stream is pumped to a higher pressure, and prepared to be re-introduced into the thermodynamic cycle system.
    Type: Grant
    Filed: May 10, 2006
    Date of Patent: February 19, 2013
    Assignee: Recurrent Engineering, LLC
    Inventors: Lawrence Rhodes, Yakov Lerner
  • Patent number: 8117844
    Abstract: The present invention relates to systems and methods for implementing a closed loop thermodynamic cycle utilizing a multi-component working fluid to acquire heat from two or more external heat source streams in an efficient manner utilizing countercurrent exchange. The liquid multi-component working stream is heated by a first external heat source stream at a first heat exchanger and is subsequently divided into a first substream and a second substream. The first substream is heated by the first working stream at a second external heat source stream at a second heat exchanger. The second substream is heated by the second working stream at a third heat exchanger. The first substream and the second substream are then recombined into a single working stream. The recombined working stream is heated by the second external heat source stream at a fourth heat exchanger.
    Type: Grant
    Filed: July 17, 2007
    Date of Patent: February 21, 2012
    Assignee: Recurrent Engineering, LLC
    Inventors: Mark D. Mirolli, Lawrence Rhodes, Yakov Lerner, Richard I. Pelletier
  • Publication number: 20080011457
    Abstract: The present invention relates to systems and methods for implementing a closed loop thermodynamic cycle utilizing a multi-component working fluid to acquire heat from two or more external heat source streams in an efficient manner utilizing countercurrent exchange. The liquid multi-component working stream is heated by a first external heat source stream at a first heat exchanger and is subsequently divided into a first substream and a second substream. The first substream is heated by the first working stream at a second external heat source stream at a second heat exchanger. The second substream is heated by the second working stream at a third heat exchanger. The first substream and the second substream are then recombined into a single working stream. The recombined working stream is heated by the second external heat source stream at a fourth heat exchanger.
    Type: Application
    Filed: July 17, 2007
    Publication date: January 17, 2008
    Inventors: Mark Mirolli, Lawrence Rhodes, Yakov Lerner, Richard Pelletier
  • Patent number: 7305829
    Abstract: The present invention relates to systems and methods for implementing a closed loop thermodynamic cycle utilizing a multi-component working fluid to acquire heat from two or more external heat source streams in an efficient manner utilizing countercurrent exchange. The liquid multi-component working stream is heated by a first external heat source stream at a first heat exchanger and is subsequently divided into a first substream and a second substream. The first substream is heated by the first working stream at a second external heat source stream at a second heat exchanger. The second substream is heated by the second working stream at a third heat exchanger. The first substream and the second substream are then recombined into a single working stream. The recombined working stream is heated by the second external heat source stream at a fourth heat exchanger.
    Type: Grant
    Filed: May 7, 2004
    Date of Patent: December 11, 2007
    Assignee: Recurrent Engineering, LLC
    Inventors: Mark D. Mirolli, Lawrence Rhodes, Yakov Lerner, Richard I. Pelletier
  • Publication number: 20060277911
    Abstract: The present invention is directed to a turbine seal system. The turbine seal system captures working fluid which is escaping from a closed loop thermodynamic cycle system, condenses the captured working fluid, and returns the condensate back to the thermodynamic cycle system. The turbine seal system is configured to apply nitrogen, or other non-condensable, or other material, to capture or mix with the escaping working fluid. The combined mixture of working fluid which escapes the turbine and the nitrogen utilized to capture the working fluid is evacuated by an exhaust compressor which maintains a desired vacuum in a gland seal compartment of the turbine seal. The combined mixture can then be sent to a condenser to condense the working fluid vapor and evacuate the non-condensables, forming a working stream. Once the non-condensables have been evacuated, the working stream is pumped to a higher pressure, and prepared to be re-introduced into the thermodynamic cycle system.
    Type: Application
    Filed: May 10, 2006
    Publication date: December 14, 2006
    Inventors: Lawrence Rhodes, Yakov Lerner
  • Publication number: 20050066660
    Abstract: The present invention relates to systems and methods for implementing a closed loop thermodynamic cycle utilizing a multi-component working fluid to acquire heat from two or more external heat source streams in an efficient manner utilizing countercurrent exchange. The liquid multi-component working stream is heated by a first external heat source stream at a first heat exchanger and is subsequently divided into a first substream and a second substream. The first substream is heated by the first working stream at a second external heat source stream at a second heat exchanger. The second substream is heated by the second working stream at a third heat exchanger. The first substream and the second substream are then recombined into a single working stream. The recombined working stream is heated by the second external heat source stream at a fourth heat exchanger.
    Type: Application
    Filed: May 7, 2004
    Publication date: March 31, 2005
    Inventors: Mark Mirolli, Lawrence Rhodes, Yakov Lerner, Richard Pelletier