IP Library Granted Patent US 11,486,631
Granted Patent B2
US 11,486,631 · App. 17/700,353 · Granted Nov 1, 2022

Rapidly cooling food and drinks

Inventors: Matthew Fonte (Concord, MA); Robert Devaney (Auburndale, MA); John Heymans (Hampstead, NH); Nicholas Fonte (Sudbury, MA); Benjamin Fichera (Newburyport, MA); Ian McGinty (Chelmsford, MA); Jason Hugenroth (Baton Rouge, LA); Max Louis Lemoine (Baton Rouge, LA); Daniel Ross Stelly (Baton Rouge, LA)
Assignee: ColdSnap, Corp.
F25D25/005A23G9/12A23G9/224A23G9/28F25D23/12
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Quick Facts
Patent No.
US 11,486,631
App. No.
17/700,353
Granted
Nov 1, 2022
Kind
B2
Abstract

Systems and methods have demonstrated the capability of rapidly cooling the contents of pods containing the ingredients for food and drinks.

Claims (61)

1. A machine for reducing the temperature of ingredients in pods containing the ingredients and a mixing paddle, the machine including:

a condenser of a refrigeration system;

a plurality of evaporators of the refrigeration system fluidly connected in series with the condenser, each evaporator defining a receptacle sized to receive a pod and having an open position and a closed position, expansion of refrigeration fluid of the refrigeration system controlled based on loads and operating conditions;

at least one first motor operable to move the mixing paddle of a pod in a receptacle of one of the evaporators when the evaporator is in the closed position;

a compressor disposed in the refrigeration system downstream of the plurality of evaporators and upstream of the condenser; and

a plurality of driveshafts mechanically connected with the at least one first motor, each driveshaft of the plurality of driveshafts associated with a corresponding evaporator of the plurality of evaporators and positioned to engage with a pod positioned in the corresponding receptacle to rotate the mixing paddle of the pod positioned in the corresponding receptacle.

2. The machine of claim 1 , further comprising a plurality of second motors, each second motor of the plurality of second motors associated with a corresponding evaporator of the plurality of evaporators and positioned to be engaged with a pod positioned in the corresponding receptacle to rotate a cap disposed on the pod positioned in the corresponding receptacle.

3. The machine of claim 2 , further comprising a housing containing the condenser and the at least one motor.

4. The machine of claim 1 , wherein each evaporator of the plurality of evaporators can operate independently of other evaporators of the plurality of evaporators.

5. The machine of claim 1 , further comprising an expansion subsystem in communication with the controller, the expansion subsystem comprising a first expansion valve or capillary tube, a second expansion valve or capillary tube, and a control valve with the control valve and the second expansion valve or capillary tube arranged in parallel with the first expansion valve or capillary tube.

6. The machine of claim 5 , further comprising a first bypass line that directly connects the discharge of the compressor to the inlet of the compressor and/or a second bypass line that extends from the working fluid loop between the compressor and the condenser to the working fluid loop between the expansion subsystem and the evaporator.

7. The machine of claim 6 , wherein the expansion sub-system includes more than two expansion valves or capillary tubes and has more than two modes.

8. The machine of claim 5 , further comprising a sensor to an RFID, QR code, or barcode to identify a speed profile for the at least one first motor.

9. A machine for reducing the temperature of ingredients in pods containing the ingredients and a mixing paddle, the machine including:

a condenser of a refrigeration system;

a plurality of evaporators of the refrigeration system fluidly connected with the condenser, each evaporator defining a receptacle sized to receive a pod, expansion of refrigeration fluid of the refrigeration system controlled based on loads and operating conditions;

at least one first motor operable to move the mixing paddle of a pod in a receptacle of one of the evaporators; and

a plurality of driveshafts mechanically connected with the at least one first motor, each driveshaft of the plurality of driveshafts associated with a corresponding evaporator of the plurality of evaporators and positioned to engage with a pod positioned in the corresponding receptacle to rotate the mixing paddle of the pod positioned in the corresponding receptacle;

wherein the plurality of evaporators of the refrigeration system are fluidly connected in series with the condenser.

10. The machine of claim 9 , further comprising a plurality of second motors, each second motor of the plurality of second motors associated with a corresponding evaporator of the plurality of evaporators and positioned to be engaged with a pod positioned in the corresponding receptacle to rotate a cap disposed on the pod positioned in the corresponding receptacle.

11. The machine of claim 10 , further comprising a housing containing the condenser and the at least one motor.

12. The machine of claim 9 , wherein each evaporator of the plurality of evaporators can operate independently of other evaporators of the plurality of evaporators.

13. The machine of claim 9 , further comprising an expansion subsystem in communication with the controller, the expansion subsystem comprising a first expansion valve or capillary tube, a second expansion valve or capillary tube, and a control valve with the control valve and the second expansion valve or capillary tube arranged in parallel with the first expansion valve or capillary tube.

14. The machine of claim 13 , further comprising a first bypass line that directly connects the discharge of the compressor to the inlet of the compressor and/or a second bypass line that extends from the working fluid loop between the compressor and the condenser to the working fluid loop between the expansion subsystem and the evaporator.

15. The machine of claim 14 , wherein the expansion sub-system includes more than two expansion valves or capillary tubes and has more than two modes.

16. The machine of claim 15 , further comprising a sensor to an RFID, QR code, or barcode to identify a speed profile for the at least one first motor.

17. A machine for reducing the temperature of ingredients in pods containing the ingredients and a mixing paddle, the machine including:

a condenser of a refrigeration system;

a plurality of evaporators of the refrigeration system fluidly connected with the condenser, each evaporator defining a receptacle sized to receive a pod and having an open position and a closed position, expansion of refrigeration fluid of the refrigeration system controlled based on loads and operating conditions;

a plurality of driveshafts mechanically connected with at least one first motor, each driveshaft of the plurality of driveshafts associated with a corresponding evaporator of the plurality of evaporators and positioned to engage with a pod positioned in the corresponding receptacle to rotate the mixing paddle of the pod positioned in the corresponding receptacle; and

a compressor disposed in the refrigeration system downstream of the plurality of evaporators and upstream of the condenser.

18. The machine of claim 17 , further comprising a plurality of second motors, each second motor of the plurality of second motors associated with a corresponding evaporator of the plurality of evaporators and positioned to be engaged with a pod positioned in the corresponding receptacle to rotate a cap disposed on the pod positioned in the corresponding receptacle.

19. The machine of claim 17 , wherein each evaporator of the plurality of evaporators can operate independently of other evaporators of the plurality of evaporators.

20. The machine of claim 17 , further comprising an expansion subsystem in communication with the controller, the expansion subsystem comprising a first expansion valve or capillary tube, a second expansion valve or capillary tube, and a control valve with the control valve and the second expansion valve or capillary tube arranged in parallel with the first expansion valve or capillary tube.

21. The machine of claim 20 , further comprising a first bypass line that directly connects the discharge of the compressor to the inlet of the compressor and/or a second bypass line that extends from the working fluid loop between the compressor and the condenser to the working fluid loop between the expansion subsystem and the evaporator.

22. The machine of claim 21 , wherein the expansion sub-system includes more than two expansion valves or capillary tubes and has more than two modes.

23. The machine of claim 22 , further comprising a sensor to an RFID, QR code, or barcode to identify a speed profile for the at least one first motor.

24. A machine for reducing the temperature of ingredients in pods containing the ingredients and a mixing paddle, the machine including:

a condenser of a refrigeration system;

a plurality of evaporators of the refrigeration system fluidly connected with the condenser, each evaporator defining a receptacle sized to receive a pod and having an open position and a closed position, expansion of refrigeration fluid of the refrigeration system controlled based on loads and operating conditions;

a plurality of motors, each motor of the plurality of motors associated with a corresponding evaporator of the plurality of evaporators and positioned to be engaged with a pod positioned in the corresponding receptacle to rotate a cap disposed on the pod positioned in the corresponding receptacle; and

a compressor disposed in the refrigeration system downstream of the plurality of evaporators and upstream of the condenser.

25. The machine of claim 24 , further comprising a plurality of second motors, each second motor of the plurality of second motors associated with a corresponding evaporator of the plurality of evaporators and positioned to be engaged with a pod positioned in the corresponding receptacle to rotate a cap disposed on the pod positioned in the corresponding receptacle.

26. The machine of claim 24 , wherein each evaporator of the plurality of evaporators can operate independently of other evaporators of the plurality of evaporators.

27. The machine of claim 24 , further comprising an expansion subsystem in communication with the controller, the expansion subsystem comprising a first expansion valve or capillary tube, a second expansion valve or capillary tube, and a control valve with the control valve and the second expansion valve or capillary tube arranged in parallel with the first expansion valve or capillary tube.

28. The machine of claim 27 , further comprising a first bypass line that directly connects the discharge of the compressor to the inlet of the compressor and/or a second bypass line that extends from the working fluid loop between the compressor and the condenser to the working fluid loop between the expansion subsystem and the evaporator.

29. The machine of claim 28 , wherein the expansion sub-system includes more than two expansion valves or capillary tubes and has more than two modes.

30. The machine of claim 29 , further comprising a sensor to an RFID, QR code, or barcode to identify a speed profile for the at least one first motor.

31. A machine for reducing the temperature of ingredients in pods containing the ingredients and a mixing paddle, the machine including:

a condenser of a refrigeration system;

a plurality of evaporators of the refrigeration system fluidly connected with the condenser, each evaporator defining a receptacle sized to receive a pod, expansion of refrigeration fluid of the refrigeration system controlled based on loads and operating conditions;

a compressor disposed in the refrigeration system downstream of the plurality of evaporators and upstream of the condenser;

at least one first motor operable to move the mixing paddle of a pod in a receptacle of one of the evaporators;

a plurality of driveshafts mechanically connected with the at least one first motor, each driveshaft of the plurality of driveshafts associated with a corresponding evaporator of the plurality of evaporators and positioned to engage with a pod positioned in the corresponding receptacle to rotate the mixing paddle of the pod positioned in the corresponding receptacle.

32. The machine of claim 31 , further comprising a plurality of second motors, each second motor of the plurality of second motors associated with a corresponding evaporator of the plurality of evaporators and positioned to be engaged with a pod positioned in the corresponding receptacle to rotate a cap disposed on the pod positioned in the corresponding receptacle.

33. The machine of claim 32 , further comprising a housing containing the condenser and the at least one motor.

34. The machine of claim 31 , wherein each evaporator of the plurality of evaporators can operate independently of other evaporators of the plurality of evaporators.

35. The machine of claim 31 , further comprising an expansion subsystem in communication with the controller, the expansion subsystem comprising a first expansion valve or capillary tube, a second expansion valve or capillary tube, and a control valve with the control valve and the second expansion valve or capillary tube arranged in parallel with the first expansion valve or capillary tube.

36. The machine of claim 35 , further comprising a first bypass line that directly connects the discharge of the compressor to the inlet of the compressor and/or a second bypass line that extends from the working fluid loop between the compressor and the condenser to the working fluid loop between the expansion subsystem and the evaporator.

37. The machine of claim 36 , wherein the expansion sub-system includes more than two expansion valves or capillary tubes and has more than two modes.

38. The machine of claim 37 , further comprising a sensor to an RFID, QR code, or barcode to identify a speed profile for the at least one first motor.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 26, 2022
From: FONTE, MATTHEW; DEVANEY, ROBERT; HEYMANS, JOHN; FONTE, NICHOLAS; FICHERA, BENJAMIN; MCGINTY, IAN; HUGENROTH, JASON; LEMOINE, MAX LOUIS; STELLY, DANIEL ROSS
To: SIGMA PHASE, CORP.
Reel/Frame 060199/0236 →
CHANGE OF NAME Recorded May 26, 2022
From: SIGMA PHASE, CORP.
To: COLDSNAP, CORP.
Reel/Frame 060201/0778 →
Continuity (12)
Continuation 17359141 · Jun 25, 2021
Continuation 17031425 · Sep 24, 2020
Continuation 16824483 · Mar 19, 2020
Continuation 16459176 · Jul 1, 2019
Continuation In Part 16104758 · Aug 17, 2018
Provisional Application 62831600 · Apr 9, 2019
Provisional Application 62831646 · Apr 9, 2019
Provisional Application 62831666 · Apr 9, 2019
Provisional Application 62831657 · Apr 9, 2019
Provisional Application 62801587 · Feb 5, 2019
Provisional Application 62758110 · Nov 9, 2018
Related Publication 20220282906A1 · Sep 8, 2022
Cited By (6)
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