Patent Assignment
Reel/Frame 065265/0848
Security Agreement
Recorded: 2023-09-21
Pages: 18
Assignor
ECHOGEN POWER SYSTEMS (DELAWARE), INC.
Executed: 2023-04-12
Assignee
MTERRA VENTURES, LLC
1990 MAIN STREET, SARASOTA, FLORIDA, 34236
Covered Properties
(138)
Thermodynamic Power Converion Cycle and Methods of Use
PCT:
PCT/US2006/049623 ↗
High Efficiency Absorption Heat Pump and Methods of Use
PCT:
PCT/US2007/001120 ↗
Hybrid Power Generation and Energy Storage System
PCT:
PCT/US2007/079318 ↗
System and Method for Managing Thermal Issues in Gas Turbine Engines
PCT:
PCT/US2010/031614 ↗
System and Method for Managing Thermal Issues in One or More Industrial Processes
PCT:
PCT/US2010/039559 ↗
Heat Pump with Integral Solar Collector
PCT:
PCT/US2010/044476 ↗
Solar Collector with Expandable Fluid Mass Management System
PCT:
PCT/US2010/044681 ↗
Heat Engine and Heat to Electricity Systems and Methods
PCT:
PCT/US2010/049042 ↗
Heat Engines with Cascade Cycles
PCT:
PCT/US2011/029486 ↗
Parallel Cycle Heat Engines
PCT:
PCT/US2011/062198 ↗
Driven Starter Pump and Start Sequence
PCT:
PCT/US2011/062201 ↗
Hot Day Cycle
PCT:
PCT/US2011/062204 ↗
Heat Engine Cycles for High Ambient Conditions
PCT:
PCT/US2011/062207 ↗
Heat Engines with Cascade Cycles
PCT:
PCT/US2011/062266 ↗
Carbon Dioxide Refrigeration Cycle
PCT:
PCT/US2012/000470 ↗
Heat Engine and Heat to Electricity Systems and Methods with Working Fluid Mass Management Control
PCT:
PCT/US2012/061151 ↗
Turbine Drive Absorption System
PCT:
PCT/US2012/061159 ↗
Heat Engine System with a Supercritical Working Fluid and Processes Thereof
PCT:
PCT/US2013/064470 ↗
Bypass and Throttle Valves for a Supercritical Working Fluid Circuit
PCT:
PCT/US2013/064475 ↗
Methods for Reducing Wear on Components of a Heat Engine System at Startup
PCT:
PCT/US2014/013154 ↗
Process for Controlling a Power Turbine Throttle Valve During a Supercritical Carbon Dioxide Rankine Cycle
PCT:
PCT/US2014/013170 ↗
Heat Engine Systems with High Net Power Supercritical Carbon Dioxide Circuits
PCT:
PCT/US2014/020242 ↗
Pump and Valve System for Controlling a Supercritical Working Fluid Circuit in a Heat Engine System
PCT:
PCT/US2014/023026 ↗
Management of Working Fluid During Heat Engine System Shutdown
PCT:
PCT/US2014/023567 ↗
Controlling Turbopump Thrust in a Heat Engine System
PCT:
PCT/US2014/023990 ↗
Turbine Dry Gas Seal System and Shutdown Process
PCT:
PCT/US2014/024254 ↗
Control System for a Heat Engine System Utilizing Supercritical Working Fluid
PCT:
PCT/US2014/024548 ↗
Charging Pump System for Supplying a Working Fluid to Bearings in a Supercritical Working Fluid Circuit
PCT:
PCT/US2014/026173 ↗
Heat Engine System Having a Selectively Configurable Working Fluid Circuit
PCT:
PCT/US2014/053994 ↗
Control Methods for Heat Engine Systems Having a Selectively Configurable Working Fluid Circuit
PCT:
PCT/US2014/053995 ↗
Valve Network and Method for Controlling Pressure Within a Supercritical Working Fluid Circuit in a Heat Engine System with a Turbopump
PCT:
PCT/US2015/057701 ↗
Active Thrust Management of a Turbopump Within a Supercritical Working Fluid Circuit in a Heat Engine System
PCT:
PCT/US2015/057756 ↗
Passive Alternator Depressurization and Cooling System
PCT:
PCT/US2015/064212 ↗
Heat Engine System Including an Integrated Cooling Circuit
PCT:
PCT/US2016/046069 ↗
Systems and Methods for Controlling the Pressure of a Working Fluid at an Inlet of a Pressurization Device of a Heat Engine System
PCT:
PCT/US2018/034289 ↗
Split Expansion Heat Pump Cycle
PCT:
PCT/US2021/026825 ↗
Three Reservoir Electric Thermal Energy Storage System
PCT:
PCT/US2021/062675 ↗
Enhanced Energy Conversion and Manufacturing Method
Application:
11/161,144 →
High Efficiency Absorption Heat Pump and Methods of Use
Thermodynamic Power Conversion Cycle and Methods of Use
Hybrid Power Generation and Energy Storage System
Electrostatic Lubricant and Methods of Use
Application:
12/239,811 →
Publication:
US 2010/0077792
Heat Engine and Heat to Electricity Systems and Methods
Thermal Energy Conversion Method
Thermal Energy Conversion Device
System and Method for Constructing Heat Exchanger
Application:
12/716,021 →
Publication:
US 2010/0218930
Hybrid Power Systems
Patent:
8,616,323 →
Application:
12/722,125 →
Heat Engine and Heat to Electricity Systems and Methods with Working Fluid Fill System
Driven Starter Pump and Start Sequence
Parallel Cycle Heat Engines
System and Method for Managing Thermal Issues in Gas Turbine Engines
Heat Engine and Heat to Electricity Systems and Methods with Working Fluid Mass Management Control
Hot Day Cycle
Heat Engine Cycles for High Ambient Conditions
Heat Engines with Cascade Cycles
System and Method for Managing Thermal Issues in One or More Industrial Processes
Solar Collector with Expandable Fluid Mass Management System
Application:
13/389,023 →
Publication:
US 2012/0247455
Heat Pump with Integral Solar Collector
Automated Mass Management Control
Heat Engine and Heat to Electricity Systems and Methods for Working Fluid Fill System
Carbon Dioxide Refrigeration Cycle
Supercritical Working Fluid Circuit with a Turbo Pump and a Start Pump in Series Configuration
Heat Engine System with a Supercritical Working Fluid and Processes Thereof
Supercritical Carbon Dioxide Power Cycle for Waste Heat Recovery
Bypass and Throttle Valves for a Supercritical Working Fluid Circuit
Application:
14/051,435 →
Publication:
US 2014/0102098
Heat Engine and Heat to Electricity Systems and Methods with Working Fluid Mass Management Control
Driven Starter Pump and Start Sequence
Methods for Reducing Wear on Components of a Heat Engine System at Startup
Process for Controlling a Power Turbine Throttle Valve During a Supercritical Carbon Dioxide Rankine Cycle
Thermal Energy Conversion Method
Automated Mass Management Control
Heat Engine System Having a Selectively Configurable Working Fluid Circuit
Control Methods for Heat Engine Systems Having a Selectively Configurable Working Fluid Circuit
Waste Heat Recovery Systems Having Magnetic Liquid Seals
Application:
14/707,041 →
Publication:
US 2015/0330261
Heat Engine Systems with High Net Power Supercritical Carbon Dioxide Circuits
Management of Working Fluid During Heat Engine System Shutdown
Application:
14/773,767 →
Publication:
US 2016/0017758
Control System for a Heat Engine System Utilizing Supercritical Working Fluid
Application:
14/774,209 →
Publication:
US 2016/0061055
Mass Management System for a Supercritical Working Fluid Circuit
Supercritical Working Fluid Circuit with a Turbo Pump and a Start Pump in Series Configuration
Heat Engine System with a Supercritical Working Fluid and Processes Thereof
Heat Engine System Including an Integrated Cooling Circuit
Valve Network and Method for Controlling Pressure Within a Supercritical Working Fluid Circuit in a Heat Engine System with a Turbopump
Active Thrust Management of a Turbopump Within a Supercritical Working Fluid Circuit in a Heat Engine System
Passive Alternator Depressurization and Cooling System
Application:
15/536,404 →
Publication:
US 2017/0362963
Systems and Methods for Controlling the Pressure of a Working Fluid at an Inlet of a Pressurization Device of a Heat Engine System
Systems and Methods for Generating Electricity Via a Pumped Thermal Energy Storage System
Systems and Methods for Generating Electricity Via a Pumped Thermal Energy Storage System
Active Thrust Management of a Turbopump Within a Supercritical Working Fluid Circuit in a Heat Engine System
Split Expansion Heat Pump Cycle
Three Reservoir Electric Thermal Energy Storage System
High-Temperature, Dual Rail Heat Pump Cycle for High Performance at High-Temperature Lift and Range
High Efficiency Absorption Heat Pump and Methods of Use
Application:
60/593,485 →
Thermodynamic Power Conversion Cycle and Methods of Use
Application:
60/766,013 →
Hybrid Power Generation and Energy Storage System
Application:
60/826,899 →
System and Method for Managing Thermal Issues in Gas Turbine Engines
Application:
61/170,364 →
System and method for constructing heat exchanger
Application:
61/209,055 →
Hybrid power systems
Application:
61/209,760 →
System and Method for Managing Thermal Issues in Gas Turbine Engines
Application:
61/219,195 →
Heat Pump with Integral Solar Collector
Application:
61/231,238 →
Solar Collector with Expandable Fluid Mass Management System
Application:
61/231,674 →
Heat Engine and Heat to Electricity System
Application:
61/243,200 →
Heat Engine with Cascade Cycle
Application:
61/316,507 →
Heat Engines with Cascade Cycles
Application:
61/417,775 →
Parallel Cycle Heat Engines
Application:
61/417,789 →
CO2 Jet Pump Refrigeration Cycle
Application:
61/542,478 →
Turbine Drive Absorption System
Application:
61/550,017 →
Supercritical Working Fluid Circuit with a Turbo Pump and a Start Pump in Series Configuration
Application:
61/684,933 →
Supercritical Carbon Dioxide Power Cycle for Waste Heat Recovery
Application:
61/712,907 →
Bypass and Throttle Valves for a Supercritical Working Fluid Circuit
Application:
61/712,914 →
Heat Engine System with a Supercritical Working Fluid and Processes Thereof
Application:
61/712,929 →
Process for Controlling a Power Turbine Throttle Valve During a Supercritical Carbon Dioxide Rankine Cycle
Application:
61/757,590 →
Method for Maintaining Carbon Dioxide in Supercritical State at Startup of Heat Engine System
Application:
61/757,612 →
Waste Heat Exchanger Bypass in a Supercritical System
Application:
61/757,629 →
Power Cycles and Heat Engine Systems
Application:
61/772,204 →
Pump and Valve System for Controlling a Supercritical Working Fluid Circuit in a Heat Engine System
Application:
61/776,567 →
Management of Working Fluid During Heat Engine System Shutdown
Application:
61/777,014 →
Control System for a Heat Engine System Utilizing Supercritical Working Fluid
Application:
61/779,275 →
Turbine Dry Gas Seal System and Shutdown Process
Application:
61/779,310 →
Charging Pump System for Supplying a Working Fluid to Bearings in a Supercritical Working Fluid Circuit
Application:
61/779,686 →
Turbine Case Vent System and Shutdown Process
Application:
61/780,276 →
Mass Management System for a Supercritical Working Fluid Circuit
Application:
61/782,366 →
Heat Engine Systems with High Net Power Supercritical Carbon Dioxide Circuits
Application:
61/782,400 →
Controlling Turbopump Thrust in a Heat Engine System
Application:
61/782,578 →
Heat Engine Systems with a Dual Turbocompressor Split Cycle
Application:
61/818,355 →
Highly Efficient Heat Engine System with a Supercritical Carbon Dioxide Circuit
Application:
61/874,321 →
Waste Heat Recovery Systems Having Magnetic Liquid Seals
Application:
61/993,530 →
Heat Engine System Having a Selectively Configurable Working Fluid Circuit
Application:
62/010,706 →
Control Methods for Heat Engine Systems Having a Selectively Configurable Working Fluid Circuit
Application:
62/010,731 →
Systems and Methods for Balancing Thrust Loads in a Heat Engine System
Application:
62/011,678 →
Systems and Methods for Controlling Backpressure in a Heat Engine System Having Hydrostatic Bearings
Application:
62/011,690 →
Valve Network and Method for Controlling Pressure within a Supercritical Working Fluid Circuit in a Heat Engine System with a Turbopump
Application:
62/074,182 →
Active Thrust Management of a Turbopump within a Supercritical Working Fluid Circuit in a Heat Engine System
Application:
62/074,192 →
Passive Alternator Depressurization and Cooling System
Application:
62/093,544 →
Heat Engine System Including an Integrated Cooling Circuit
Application:
62/204,962 →
Systems and Methods for Controlling the Pressure of a Working Fluid at an Inlet of a Pressurization Device of a Heat Engine System
Application:
62/511,806 →
Systems and Methods for Generating Electricity Via a Pumped Thermal Energy Storage System
Application:
62/690,803 →
Heat Pump Steam Generator
Application:
63/392,646 →
Waste Heat Integration into Pumped Thermal Energy Storage
Application:
63/443,775 →
Related Assignments
(10)
Other recorded transfers of the patents in this record — the chain of ownership.
Assignment of Assignor's Interest
Jul 31, 2009
From: GURIN, MICHAEL H.
To: REXORCE THERMIONICS, INC.
Reel/Frame 023039/0395 →
Assignment of Assignor's Interest
Mar 1, 2010
From: HELD, TIMOTHY J.; HOSTLER, STEPHEN; MILLER, JASON D.; HUME, BRIAN F.
To: REXORCE THERMIONICS, INC.
Reel/Frame 024004/0220 →
Corrective Assignment to Correct the Serial Number Previously Recorded on Reel 024004 Frame 0220. Assignor(S) Hereby Confirms the Correct Serial Number Is: 12631379.
Mar 9, 2010
From: HELD, TIMOTHY J.; HOSTLER, STEPHEN; MILLER, JASON D.; HUME, BRIAN F.
To: REXORCE THERMIONICS, INC.
Reel/Frame 024048/0296 →
Change of Name
Mar 9, 2010
From: HELD, TIMOTHY J.; HOSTLER, STEPHEN; MILLER, JASON D.; HUME, BRIAN F.
To: ECHOGEN POWER SYSTEMS
Reel/Frame 024050/0419 →
Change of Name
Aug 9, 2010
From: REXORCE THERMIONICS, INC.
To: ECHOGEN POWER SYSTEMS, INC.
Reel/Frame 024807/0701 →
Assignment of Assignor's Interest
Sep 13, 2010
From: GURIN, MICHAEL H.
To: ECHOGEN POWER SYSTEMS, INC.
Reel/Frame 024972/0705 →
Assignment of Assignor's Interest
Sep 13, 2010
From: GURIN, MICHAEL H.
To: ECHOGEN POWER SYSTEMS, INC.
Reel/Frame 024972/0736 →
Assignment of Assignor's Interest
Sep 13, 2010
From: HELD, TIMOTHY J.
To: ECHOGEN POWER SYSTEMS, INC.
Reel/Frame 024974/0106 →
Assignment of Assignor's Interest
Sep 13, 2010
From: HELD, TIMOTHY J.
To: ECHOGEN POWER SYSTEMS, INC.
Reel/Frame 024974/0125 →
License
Mar 24, 2015
From: ECHOGEN POWER SYSTEMS, LLC
To: DRESSER-RAND COMPANY
Reel/Frame 035245/0190 →