SolarLogic, LLC

United States of America

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IPC Class
G05D 23/19 - Control of temperature characterised by the use of electric means 3
C02F 1/02 - Treatment of water, waste water, or sewage by heating 2
E03B 7/04 - Domestic or like local pipe systems 2
F24D 17/00 - Domestic hot-water supply systems 2
F24D 19/10 - Arrangement or mounting of control or safety devices 2
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Found results for  patents

1.

Dynamic fluid pasteurization

      
Application Number 14532428
Grant Number 09896347
Status In Force
Filing Date 2014-11-04
First Publication Date 2015-05-07
Grant Date 2018-02-20
Owner SolarLogic, LLC (USA)
Inventor
  • Stickney, Bristol
  • Milder, Fredric

Abstract

A method for performing pasteurization cycles in a hot water system according to a time-temperature profile is provided. The hot water system includes a plurality of temperature sensors configured to measure temperatures of at least one fluid in the hot water system. The time-temperature profile is stored. A predefined modification criteria is stored. Fluid temperature data associated with the plurality of temperature sensors is determined. A determination is made whether the fluid temperature data meets a predefined modification criteria. The time-time temperature profile for performing a next pasteurization cycle is modified based at least in part on the determination that the fluid temperature data meets the predefined modification criteria. The next pasteurization cycle is performed in accordance with the modified time-temperature profile.

IPC Classes  ?

  • F16K 11/00 - Multiple-way valves, e.g. mixing valvesPipe fittings incorporating such valvesArrangement of valves and flow lines specially adapted for mixing fluid
  • B01D 35/18 - Heating or cooling the filters
  • B01D 21/30 - Control equipment
  • C02F 1/00 - Treatment of water, waste water, or sewage
  • C02F 1/02 - Treatment of water, waste water, or sewage by heating
  • F24D 17/00 - Domestic hot-water supply systems
  • F24D 19/10 - Arrangement or mounting of control or safety devices
  • G05D 23/19 - Control of temperature characterised by the use of electric means
  • E03B 7/04 - Domestic or like local pipe systems

2.

DYNAMIC FLUID PASTEURIZATION

      
Application Number US2014063834
Publication Number 2015/066682
Status In Force
Filing Date 2014-11-04
Publication Date 2015-05-07
Owner SOLARLOGIC, LLC (USA)
Inventor
  • Stickney, Bristol
  • Milder, Fredric

Abstract

A method for performing pasteurization cycles in a hot water system according to a time-temperature profile is provided. The hot water system includes a plurality of temperature sensors configured to measure temperatures of at least one fluid in the hot water system. The time-temperature profile is stored. A predefined modification criteria is stored. Fluid temperature data associated with the plurality of temperature sensors is determined. A determination is made whether the fluid temperature data meets a predefined modification criteria. The time-time temperature profile for performing a next pasteurization cycle is modified based at least in part on the determination that the fluid temperature data meets the predefined modification criteria. The next pasteurization cycle is performed in accordance with the modified time-temperature profile.

IPC Classes  ?

  • F24D 17/00 - Domestic hot-water supply systems
  • C02F 1/02 - Treatment of water, waste water, or sewage by heating
  • E03B 7/04 - Domestic or like local pipe systems
  • F24D 19/10 - Arrangement or mounting of control or safety devices
  • G05D 23/19 - Control of temperature characterised by the use of electric means

3.

ENERGY MEASUREMENT SYSTEM FOR FLUID SYSTEMS

      
Application Number US2013032919
Publication Number 2013/151781
Status In Force
Filing Date 2013-03-19
Publication Date 2013-10-10
Owner SOLARLOGIC, LLC (USA)
Inventor
  • Milder, Fredric
  • Stickney, Bristol

Abstract

A primary fluid flow loop and a secondary fluid flow loop fluidly coupled to the primary fluid flow loop. The secondary fluid flow loop exchanges heat with at least one of a heat source and a heat load. The secondary fluid flow loop includes an inlet and an outlet fluidly coupling the primary fluid flow loop to the secondary fluid flow loop. A fluid flow meter coupled to the primary fluid flow loop. A first temperature sensor coupled to the primary fluid flow loop, the first temperature sensor measures the temperature of a fluid flowing in the primary fluid flow loop upstream of the inlet of the secondary fluid flow loop. A second temperature sensor coupled to the primary fluid flow loop, the second temperature sensor measures the temperature of the fluid flowing in the primary fluid flow loop downstream of the outlet of the secondary fluid flow loop.

IPC Classes  ?

  • F24H 1/22 - Water heaters other than continuous-flow or water-storage heaters, e.g. water heaters for central heating

4.

System and method for controlling hydronic systems having multiple sources and multiple loads

      
Application Number 13069085
Grant Number 08041462
Status In Force
Filing Date 2011-03-22
First Publication Date 2011-07-14
Grant Date 2011-10-18
Owner Solarlogic, LLC (USA)
Inventor
  • Milder, Fredric
  • Soifer, Boaz
  • Stickney, Bristol

Abstract

A method and system for designing and controlling a hydronic apparatus. In one aspect of the invention, the system includes a computing device having a first receiver that receives input data, in which the input data includes environmental data and hydronic apparatus data. The computing device also includes a first processor that communicates with the first receiver. The first processor processes the received input data into configuration data that includes a hydronic apparatus layout. The hydronic apparatus layout indicates a plurality of hydronic components and fluid connections between the hydronic components. The computing device also includes a transmitter that transmits the configuration data. The system also includes a controller that has a stored set of rules and a second receiver that receives the configuration data. The controller includes a second processor that processes the received configuration data to correlate the configuration data with the default rules and select a corresponding subset of the set of default rules.

IPC Classes  ?

  • G05D 7/00 - Control of flow
  • G05D 11/00 - Control of flow ratio
  • G05D 9/00 - Level control, e.g. controlling quantity of material stored in vessel
  • G05B 11/01 - Automatic controllers electric
  • G06F 19/00 - Digital computing or data processing equipment or methods, specially adapted for specific applications (specially adapted for specific functions G06F 17/00;data processing systems or methods specially adapted for administrative, commercial, financial, managerial, supervisory or forecasting purposes G06Q;healthcare informatics G16H)

5.

Solar fluid heating and cooling system

      
Application Number 12960683
Grant Number 08459248
Status In Force
Filing Date 2010-12-06
First Publication Date 2011-06-16
Grant Date 2013-06-11
Owner SolarLogic, LLC (USA)
Inventor
  • Milder, Fredric
  • Soifer, Boaz
  • Stickney, Bristol

Abstract

A solar water heating and cooling system including a solar energy collection assembly having a heat absorbing element, a heat exchanger and a shield. The system also includes a cooling assembly, the cooling assembly is integral with the shield. The system has a check valve in fluid communication with the solar collection assembly and the cooling assembly, and a fluid pump in fluid communication with the solar energy collection assembly. A working fluid is disposed within the solar energy collection assembly, the cooling assembly, the check valve and the fluid pump. A cooling loop is defined by the solar energy collection assembly, the cooling assembly and the check valve. When the fluid pump is off, the working fluid circulates through the cooling loop, but when the fluid pump is on, the working fluid circulates through a heating loop that is defined by the solar energy collection assembly and the fluid pump.

IPC Classes  ?

  • F24J 2/04 - Solar heat collectors having working fluid conveyed through collector
  • F24J 2/05 - surrounded by a transparent enclosure, e.g. evacuated solar collectors
  • F24J 2/24 - the working fluid being conveyed through tubular heat absorbing conduits

6.

System and method for controlling hydronic systems having multiple sources and multiple loads

      
Application Number 12960652
Grant Number 08041461
Status In Force
Filing Date 2010-12-06
First Publication Date 2011-03-31
Grant Date 2011-10-18
Owner Solarlogic, LLC (USA)
Inventor
  • Milder, Fredric
  • Soifer, Boaz
  • Stickney, Bristol

Abstract

A system and method are provided to control hydronic systems having a plurality of sources, including at least one of an on-demand source, a semi-on-demand source, and an intermittent source that are fluidly or thermally coupled to a plurality of load zones. The hydronic system device obtains performance measurements for system components to provide system metrics, including failure diagnostics, energy capture, and usage optimization. The hydronic system device may also calculate British Thermal Units produced and used by the plurality of sources and loads to calculate incentives, including renewable energy credits.

IPC Classes  ?

  • G01M 1/38 - Combined machines or devices for both determining and correcting imbalance
  • G05B 13/00 - Adaptive control systems, i.e. systems automatically adjusting themselves to have a performance which is optimum according to some preassigned criterion
  • G05B 15/00 - Systems controlled by a computer
  • G05D 23/00 - Control of temperature

7.

SYSTEM AND METHOD FOR CONTROLLING HYDRONIC SYSTEMS HAVING MULTIPLE SOURCES AND MULTIPLE LOADS

      
Application Number US2010027810
Publication Number 2010/111114
Status In Force
Filing Date 2010-03-18
Publication Date 2010-09-30
Owner SOLARLOGIC, LLC (USA)
Inventor
  • Milder, Fredric
  • Soifer, Boaz
  • Stickney, Bristol

Abstract

A system and method are provided to control hydronic systems having a plurality of on-demand sources, semi-on-demand sources, and intermittent sources that are fluidly or thermally coupled to a plurality of load zones. The hydronic system device obtains performance measurements for system components to provide system metrics, including failure diagnostics, energy capture, and usage optimization. The hydronic system device may also calculate British Thermal Units produced and used by the plurality of sources and loads to calculate incentives, including renewable energy credits.

IPC Classes  ?

  • G05D 23/19 - Control of temperature characterised by the use of electric means
  • H04L 12/28 - Data switching networks characterised by path configuration, e.g. LAN [Local Area Networks] or WAN [Wide Area Networks]

8.

System and method for controlling hydronic systems having multiple sources and multiple loads

      
Application Number 12411055
Grant Number 07848853
Status In Force
Filing Date 2009-03-25
First Publication Date 2009-11-19
Grant Date 2010-12-07
Owner SolarLogic, LLC (USA)
Inventor
  • Milder, Fredric
  • Soifer, Boaz
  • Stickney, Bristol

Abstract

A system and method are provided to control hydronic systems having a plurality of on-demand sources, semi-on-demand sources, and intermittent sources that are fluidly or thermally coupled to a plurality of load zones. The hydronic system device obtains performance measurements for system components to provide system metrics, including failure diagnostics, energy capture, and usage optimization. The hydronic system device may also calculate British Thermal Units produced and used by the plurality of sources and loads to calculate incentives, including renewable energy credits.

IPC Classes  ?

  • G01M 1/38 - Combined machines or devices for both determining and correcting imbalance
  • G05B 13/00 - Adaptive control systems, i.e. systems automatically adjusting themselves to have a performance which is optimum according to some preassigned criterion
  • G05B 15/00 - Systems controlled by a computer
  • G05D 23/00 - Control of temperature
  • F03H 1/00 - Use of plasma to produce a reactive propulsive thrust
  • F24J 2/42 - Solar heat systems not otherwise provided for
  • F24J 2/00 - Use of solar heat, e.g. solar heat collectors (distillation or evaporation of water using solar energy C02F 1/14;roof covering aspects of energy collecting devices E04D 13/18;devices for producing mechanical power from solar energy F03G 6/00;semiconductor devices specially adapted for converting solar energy into electrical energy H01L 31/00;photovoltaic [PV] cells including means directly associated with the PV cell to utilise heat energy H01L 31/525;PV modules including means associated with the PV module to utilise heat energy H02S 40/44)
  • F24H 1/00 - Water heaters, e.g. boilers, continuous-flow heaters or water-storage heaters
  • F24C 3/10 - Arrangement or mounting of ignition devices