Table top water dispenser having a refrigerator-cooled cold plate
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
B67D-005/56
B67D-001/00
B67D-001/06
B67D-001/08
F25D-031/00
출원번호
US-0234789
(2011-09-16)
등록번호
US-8938987
(2015-01-27)
발명자
/ 주소
Schroeder, A. A. “Jud”
Edwards, William
출원인 / 주소
Schroeder Industries, Inc.
대리인 / 주소
Jackson Walker, LLP
인용정보
피인용 횟수 :
1인용 특허 :
80
초록▼
Applicants provide a portable, modular table top system for dispensing chilled carbonated water, chilled non-carbonated water, and ambient (non-chilled) non-carbonated water therefrom. The table top water dispenser includes a cold plate that is chilled by evaporation of a refrigerant, which is part
Applicants provide a portable, modular table top system for dispensing chilled carbonated water, chilled non-carbonated water, and ambient (non-chilled) non-carbonated water therefrom. The table top water dispenser includes a cold plate that is chilled by evaporation of a refrigerant, which is part of a cold plate cooling circuit, which includes a compressor and a condenser. A pump and a motor move non-carbonated water through the cold plate to a dispensing valve engaged therewith. The same motor and pump typically drive non-carbonated water through the cold plate, through the carbonator where it becomes carbonated, and through the cold plate again, and out a second dispensing valve. A third dispensing valve is engaged to the remote source of pressurized water and bypasses the cold plate and, also, typically the pump for dispensing from a third dispensing valve.
대표청구항▼
1. A water dispenser for engaging a remote source of pressurized ambient water, a remote source of electricity, and a remote source of CO2 gas, the dispenser comprising: a refrigeration circuit adapted to engage the remote source of electricity;a cold plate adapted to engage the refrigeration circui
1. A water dispenser for engaging a remote source of pressurized ambient water, a remote source of electricity, and a remote source of CO2 gas, the dispenser comprising: a refrigeration circuit adapted to engage the remote source of electricity;a cold plate adapted to engage the refrigeration circuit;a carbonator for engaging the source of CO2 gas;a pump for engaging the source of electricity, the pump having a high end and a low end;a housing defining an interior space, the housing having a vertical front panel, the front panel having an upper portion, the housing including walls for substantially enclosing the elements of dispenser;a first fluid circuit engaging the remote source of water, the pump, the cold plate a first time, the carbonator, the cold plate a second time, and a first dispensing valve located adjacent the front panel of the housing for dispensing twice chilled carbonated water therefrom;a second fluid circuit engaging the remote source of water, the second fluid circuit for carrying water and adapted to engage the cold plate a first time, and a second dispensing valve on the front panel to dispense chilled, non-carbonated water therefrom; anda third fluid circuit, the third fluid circuit for engaging the remote source of water, for carrying the water, but bypassing the cold plate, to a third dispensing valve located on the front panel to dispense non-chilled, ambient water therefrom. 2. The water dispenser of claim 1, wherein the first dispensing valve is engaged directly with the cold plate and wherein the second dispensing valve is engaged directly with the cold plate; and wherein the first and second dispensing valves extend outward from the upper portion of the front panel, the two dispensing valves aligned with one another; and wherein the third dispensing valve is not engaged with the cold plate. 3. The water dispenser of claim 2, wherein the housing includes a vertical rear wall and wherein the refrigeration circuit includes a condenser having a vertical axis, and wherein the condenser is placed vertically adjacent the rear wall. 4. The water dispenser of claim 1, wherein the housing is substantially rectangular and has a height of about 18.9 inches, a width of about 18.9 inches, and depth of about 22.2 inches. 5. The water dispenser of claim 1, wherein both the first and second fluid circuits are adapted to engage the high end of the pump. 6. The water dispenser of claim 1, wherein the second fluid circuit is adapted to engage the cold plate a second time, to further chill the non-carbonated water dispensed from the second dispensing valve. 7. The water dispenser of claim 1, wherein the cold plate includes a core, a cold plate housing, and insulation between the core and the housing. 8. The water dispenser of claim 1, wherein the cold plate is placed vertically adjacent an inner surface of the front wall; wherein the first dispensing valve is engaged directly with the cold plate and wherein the second dispensing valve is engaged directly with the cold plate; and wherein the first and second dispensing valves pass through and extend outward from the upper portion of the front panel, the two dispensing valves aligned with one another; and wherein the third dispensing valve is not engaged with the cold plate, and extends outward from the front panel and is aligned with the first and second valves. 9. The water dispenser of claim 8, wherein the housing is substantially rectangular and has a height between about 15 and 24 inches, a width between about 15 and 24 inches, and a depth between about 18 to 28 inches. 10. The water dispenser of claim 8, wherein both the first and second fluid circuits are adapted to engage the high end of the pump. 11. The water dispenser of claim 8, wherein the second fluid circuit is adapted to engage the cold plate a second time, to further chill the non-carbonated water dispensed from the second dispensing valve. 12. The water dispenser of claim 8, wherein the cold plate includes a core, a cold plate housing, and foam insulation. 13. The water dispenser of claim 1, wherein the second and third circuits are without a pump. 14. A water dispenser for engaging a remote source of pressurized ambient water, a remote source of electricity, and a remote source of CO2 gas, the dispenser including: a refrigeration circuit adapted to engage the remote source of electricity;a cold plate adapted to engage the refrigeration circuit;a carbonator for engaging the source of CO2 gas;a pump for engaging the source of electricity, the pump having a high end and a low end;a housing defining an interior space, the housing having a vertical front panel, the front panel having an upper portion, the housing including walls for substantially enclosing the elements of dispenser;a first fluid circuit engaging the remote source of water, the first fluid circuit engaging the pump, the cold plate a first time, the carbonator, the cold plate a second time, and a first dispensing valve located adjacent the front panel of the housing for dispensing twice chilled carbonated water therefrom;a second fluid circuit engaging the remote source of water, the second fluid circuit for carrying water and adapted to engage the cold plate a first time, and to engage a second dispensing valve on the front panel to dispense chilled, non-carbonated water therefrom; anda third fluid circuit, the third fluid circuit for engaging the remote source of water, for carrying the water and for bypassing the cold plate, and for engaging a third dispensing valve located on the front panel to dispense non-chilled, ambient water therefrom; wherein the cold plate is placed vertically adjacent an inner surface of the front wall; wherein the first dispensing valve is engaged directly with the cold plate; wherein the second dispensing valve is engaged directly with the cold plate; wherein the first and second dispensing valves pass through and extend outward from the upper portion of the front panel, the two dispensing valves aligned with one another; wherein the third dispensing valve is not engaged with the cold plate, and extends outward from the front panel and is aligned with the first and second valves; wherein the housing includes a vertical rear wall and wherein the refrigeration circuit includes a condenser having a vertical axis, and wherein the condenser is placed vertically adjacent the rear wall; wherein the housing is substantially rectangular and has a height between about 15 and 24 inches, a width between about 15 and 24 inches, and a length between about 18 to 28 inches; wherein both the first and second fluid circuits are adapted to engage the high end of the pump; wherein the second fluid circuit is adapted to engage the cold plate a second time, to further chill the non-carbonated water dispensed from the second dispensing valve; and wherein the cold plate includes a cold plate housing and foam insulation. 15. A beverage dispensing device for engaging a remote pressurized water source, a remote source of pressurized CO2 and a remote source of electricity, the beverage dispensing device comprising: a refrigeration system, including at least a compressor and a condenser;a cold plate adapted to engage the refrigeration system;a housing having a top wall, a front panel, a rear panel, two side walls, and a bottom wall;a pump having a low end and a high end, the pump for engaging at the low end the remote source of pressurized water;a carbonator for engaging the remote source of pressurized CO2 gas, the carbonator with a water input and a water output;a first line engaging the high end of the pump, the first line engaging the cold plate and configured for serpentine, heat exchange engagement with the cold plate, the first line leaving the cold plate;a first junction for receiving the first line, the first junction engaging a second and a third line, the second line carrying water from the first line and engaging the cold plate and configured for serpentine, heat exchange engagement therewith, the third line for carrying water from the first line to the water input of the carbonator;a fourth line for engaging the carbonator water output, the fourth line for engaging the cold plate and configured for serpentine, heat exchange engagement therewith;a fifth line, the fifth line adapted to engage the remote pressurized water source, the fifth line bypassing the pump, the carbonator, and the cold plate;a first dispensing valve adapted to receive water from a removed end of the second line, for dispensing chilled, non-carbonated water therefrom;a second dispensing valve adapted to receive carbonated water from a removed end of the fourth line for dispensing chilled, carbonated water therefrom; anda third dispensing valve adapted to receive water from a removed end of the fifth line for dispensing non-carbonated water at ambient temperature. 16. The beverage dispensing device of claim 15, wherein the first dispensing valve is engaged directly with the cold plate and wherein the second dispensing valve is engaged directly with the cold plate; and wherein the first and second dispensing valves extend outward from the upper portion of the front panel, the two dispensing valves aligned with one another; and wherein the third dispensing valve is not engaged with the cold plate, and extends outward from the front panel and is aligned with the first and second valves. 17. The beverage dispensing device of claim 15, wherein the cold plate includes a core, a cold plate housing, and insulation between the core and the cold plate housing. 18. The beverage dispensing device of claim 15, wherein the housing is substantially rectangular and has a height between about 15 and 24 inches, a width between about 15 and 24 inches, and a depth between about 18 to 28 inches. 19. The beverage dispensing device of claim 15, wherein the first dispensing valve is engaged directly with the cold plate and wherein the second dispensing valve is engaged directly with the cold plate; and wherein the first and second dispensing valves extend outward from the upper portion of the front panel, the two dispensing valves aligned with one another; and wherein the third dispensing valve is not engaged with the cold plate, and extends outward from the front panel and is aligned with the first and second valves; wherein the cold plate includes a core, a cold plate housing, and insulation between the core and the housing; and wherein the housing is substantially rectangular and has a height between about 15 and 24 inches, a width between about 15 and 24 inches, and a depth between about 18 to 28 inches.
Groover Phillip B. (Woodstock GA) Charles Kirk W. (Austell GA) Gillespie Lionel D. (Atlanta GA) Durham Samuel (San Antonio TX) Wandrick Lisa C. (Atlanta GA), Beverage dispenser.
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Wolski,Peter F.; Jablonski,Thaddeus M.; Elsom,Kyle B.; Schertz,Eric; Leaver,Daniel C.; Brandt,Kevin; Manisco,Todd, Cold carbonation system for beverage dispenser with remote tower.
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Wolski,Peter F.; Jablonski,Thaddeus M.; Elsom,Kyle B.; Schertz,Eric; Leaver,Daniel C.; Brandt,Kevin; Manisco,Todd, Cold carbonation system for beverage dispenser with remote tower.
Gaunt Loraine E. (Marietta GA) Crosby Samuel C. (Decatur GA) Saunders William J. (Stone Mountain GA) Bruffey ; Jr. Robert D. (Lilburn GA), Low-cost post-mix beverage dispenser and syrup supply system therefor.
Nakayama Shunichi (Takasaki JPX) Takayanagi Yasushi (Akabori JPX), Mixing apparatus in which mixing is effectively carried out about various beverages supplied from beverage paths into a.
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