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    • 73. 发明申请
    • BOTTOM LOADING WATER COOLER
    • 底部装载水冷却器
    • US20100252570A1
    • 2010-10-07
    • US12416781
    • 2009-04-01
    • George M. Yui
    • George M. Yui
    • B67D1/00B67D5/62B67D5/64B65D83/00
    • B67D1/0004B67D1/0431B67D1/06B67D1/0801B67D1/0857B67D1/0871B67D1/0888B67D1/1243
    • Bottom loading water coolers are disclosed, which include (1) a cabinet having an exterior portion and an interior portion; (2) a water bottle disposed in the bottom half of the interior portion of the cabinet; (3) a cold tank disposed in the top half of the interior portion of the cabinet and above the water bottle; (4) a bottle tray disposed in the bottom half of the interior portion of the cabinet that is configured to receive the water bottle in an upright position, such that the bottle tray may be reversibly pulled out of, and pushed into, the interior portion of the cabinet; (5) a pump that injects air into the water bottle at defined and periodic intervals; and (6) a specialized probe for transferring water from the water bottle to the cold tank (and for delivering air from a pump to the water bottle).
    • 公开了底部装载水冷却器,其包括(1)具有外部部分和内部部分的机壳; (2)设置在机柜内部的下半部的水瓶; (3)设置在机柜内部上半部并位于水瓶上方的冷箱; (4)设置在机柜内部的下半部分中的瓶托架,其配置成以直立位置接收水瓶,使得瓶托盘可以被可逆地拉出并被推入内部部分 的柜子 (5)以定义和周期性间隔将空气注入到水瓶中的泵; 和(6)专用探头,用于将水从水瓶转移到冷箱(并将水从泵送到水瓶中)。
    • 74. 发明申请
    • Controller-based management of a fluid dispensing system
    • 流体分配系统的基于控制器的管理
    • US20070095859A1
    • 2007-05-03
    • US11264585
    • 2005-10-31
    • Bryan MaserRobert MayKelly Doyle
    • Bryan MaserRobert MayKelly Doyle
    • B67D1/08B67D5/08
    • B67D1/0406B67D1/04B67D1/07B67D1/0884B67D1/0888B67D1/1243B67D1/1247B67D1/1272B67D2210/00089
    • A beverage dispensing system having control-based functionality for managing a beverage dispensing process and a cleaning process for fluid dispensing system is disclosed. The beverage dispensing system has one or more beverage containers that supply beverage(s) to beverage line(s), which in turn, supply the beverage(s) to dispense unit(s), or tap(s). A controller manages overall functionality of the system. Each beverage container includes a beverage port through which a beverage is output to an associated beverage line for communication to an associated tap. A coupler is affixed to the container and interfaces the associated beverage line to the beverage port on the container. The controller monitors flow through the beverage lines to determine whether any of the couplers are malfunctioning by allowing fluid to flow when the beverage dispensing process is disabled. The beverage lines also include fob detectors that are configured to facilitate the cleaning process.
    • 公开了一种具有用于管理饮料分配过程和用于流体分配系统的清洁过程的基于控制的功能的饮料分配系统。 饮料分配系统具有一个或多个饮料容器,该饮料容器向饮料管线提供饮料,饮料管路又供应饮料以分配单元或分接头。 控制器管理系统的整体功能。 每个饮料容器包括饮料端口,通过该饮料端口将饮料输出到相关联的饮料管线以与相关联的水龙头通信。 联接器固定在容器上并将相关联的饮料管线接合到容器上的饮料端口。 控制器监视通过饮料管线的流动,以通过在饮料分配过程被禁用时允许流体流动来确定任何耦合器是否发生故障。 饮料线还包括配置成便于清洁过程的抽油烟机检测器。
    • 75. 发明授权
    • Drink dispensing cart and water packaging and supply system
    • 饮料分送车和水包装供应系统
    • US06926170B2
    • 2005-08-09
    • US10318716
    • 2002-12-12
    • R. Clay Groesbeck
    • R. Clay Groesbeck
    • B67D1/00B67D1/12A47B77/08A47J31/00
    • B67D1/1243B67D1/0021B67D2001/0827
    • A drink dispensing cart includes a drink dispensing machine that is normally plumbed directly into a municipal water pipe at a fixed location. The cart includes a container of water, preferably a disposable container of water such as a bag-in-box container of water, and a pump to pump water from the container of water to the drink dispensing machine. A controller controls operation of the pump to operate the pump only when water is needed by the drink dispensing machine and to provide an indication when the container of water is empty and needs changing. A pressure sensor in an outlet line extending between the pump and drink dispensing machine senses when water is needed by the dispenser and a pressure sensor in an inlet line extending between the pump and the container of water senses when the container of water is empty and needs replacing. A time delay circuit delays start of operation of the pump when water is needed by the drink dispenser to avoid pulsing of the pump. The bag-in-box container of water is sized for efficient packing and shipping.
    • 饮料分配车包括饮料分配机,其通常在固定位置直接灌注到市政水管中。 该手推车包括水的容器,优选地是水的一次性容器,例如水箱的袋内容器,以及将水从容器的水泵送到饮料分配机器的泵。 只有当饮料分配机需要水时,控制器控制泵的操作才能操作泵,并且当水的容器为空且需要改变时提供指示。 在泵和饮料分配机之间延伸的出口管线中的压力传感器感测分配器需要何时水,并且当水容器和水容器之间延伸的入口管线中的压力传感器感测到当水容器为空时,需要 替换。 当饮料分配器需要水以避免泵的脉冲时,延时电路延迟泵的运行开始。 袋装袋装水箱的尺寸适合高效的包装和运输。
    • 76. 发明授权
    • Beverage dispenser sensor system
    • 饮料分配器传感器系统
    • US06299020B1
    • 2001-10-09
    • US09425648
    • 1999-10-22
    • Paul S. SudolcanThomas J. Chadwell
    • Paul S. SudolcanThomas J. Chadwell
    • B67B700
    • B67D1/1243B67D1/1247
    • A beverage dispenser sensor system for detecting beverage fluid in a beverage dispenser includes at least a first sensing unit in engagement with the beverage dispenser for measuring fluid and for generating a first sensing unit measurement signal and a processor linked with the first sensing unit for receiving the first sensing unit measurement signals. The beverage dispenser sensor system further includes an indicator that announces the beverage fluid needs replenishing if the processor assesses from the first sensing unit measurement signal little or a lack of beverage fluid in the beverage dispenser. Furthermore, the beverage dispenser sensor system may include a second sensing unit in engagement with the beverage dispenser for measuring fluid and for generating a second sensing unit measurement signal received by the processor to determine little or a lack of beverage fluid in the beverage dispenser.
    • 一种用于在饮料分配器中检测饮料流体的饮料分配器传感器系统,至少包括与饮料分配器接合的用于测量流体并用于产生第一感测单元测量信号的第一感测单元和与第一感测单元相连接的处理器, 第一感测单元测量信号。 饮料分配器传感器系统还包括指示器,其指示如果处理器从第一感测单元测量信号评估饮料分配器中的饮料流体很少或缺乏饮料流体,则该饮料流体需要补充。 此外,饮料分配器传感器系统可以包括与饮料分配器接合的第二感测单元,用于测量流体并产生由处理器接收的第二感测单元测量信号,以确定饮料分配器中饮料流体的很少或缺乏。
    • 77. 发明授权
    • Bottled water pumping apparatus
    • 瓶装水抽水设备
    • US4941806A
    • 1990-07-17
    • US283502
    • 1988-12-12
    • Toran S. BrownWilliam T. McGregor
    • Toran S. BrownWilliam T. McGregor
    • B67D7/62
    • B67D1/0888B67D1/1243
    • A bottled water supply system comprises a base unit into which a standard five gallon water bottle may be installed. The cover of the base unit supports the bottle in an inverted position such that the neck of the bottle projects into a water reservoir within the unit. A pump, also housed within the unit, draws water from the reservoir and pumps it to the water supply line of an appliance. Power for the pump is controlled by a pressure actuated switch so that the pressure in the supply line is maintained a predetermined level. A pair of magnetic reed switches are housed within a water tight tube in the reservoir below the normal water level. A magnetic float surrounding the tube actuates one of the reed switches when the water level falls below the neck of the water bottle, thereby actuating an alarm indicating that the bottle is empty. The second switch is actuated just before the water level drops to the level of the pump supply tube and interrupts power to the water pump. The water bottle may include a seal over the neck of the bottle which is left in place on the bottle during installation to prevent spillage. A sharpened tube is disposed within the reservoir so that it will pierce the seal when a fresh bottle of water is installed in the unit.
    • 瓶装水供应系统包括可以安装标准五加仑水瓶的基座单元。 基座的盖子将瓶子支撑在倒置的位置,使得瓶子的颈部突出到单元内的储水器中。 同样安装在设备内的泵将水从储存器中抽出并将其泵送到设备的供水管线上。 泵的功率由压力致动的开关控制,使得供应管线中的压力保持在预定水平。 一对磁簧开关容纳在储存器内的防水管内,低于正常水位。 当水位低于水瓶颈口时,围绕管子的磁浮子驱动簧片开关中的一个,从而启动指示瓶子为空的报警器。 在水位下降到泵供应管的水位之前,第二个开关被致动并且中断给水泵的电力。 水瓶可以包括在瓶颈上的密封件,其在安装期间留在瓶子上的位置以防止溢出。 一个锋利的管子设置在储存器内,使得当一瓶新鲜的水装在该装置中时,它将刺穿密封件。
    • 78. 发明授权
    • Unified assembly for control of fluid flow and a liquid dispensing
system which includes such an assembly
    • 用于控制流体流动的统一组装和包括这种组件的液体分配系统
    • US4811862A
    • 1989-03-14
    • US186614
    • 1988-04-27
    • Brian R. RuttyJohn J. Walshe
    • Brian R. RuttyJohn J. Walshe
    • F16K21/00B67D1/12F04B49/00
    • B67D1/1243
    • A liquid dispensing system and a unified assembly for control of fluid flow in such a system has a container 1 from which liquid such as beer is drawn by an electrically controlled pump 2 to be supplied through a unified assembly 4 to a dispensing tap 5. The assembly 4 has an inlet 6 which communicates through a pressure biased non-return valve 8 with a high pressure chamber 9 and an outlet 11 to the tap 5. A piston 14 responds to high pressure in the chamber 9 to be displaced and pivot a rocking lever 26 to operate a microswitch 28 which is normally closed to operate the pump 2 but is opened in response to said displacement of the piston 14 to deactivate the pump 2. A low pressure chamber 35 communicates with the inlet passage 6 and the pressure of liquid in the system expands the chamber 35 to maintain a plunger 38 against its spring biasing. Upon entry of froth or foam into the passage 6 the low pressure thereof permits the chamber 35 to contract under the spring biasing of plunger 38 and displacement of the latter pivots the rocking lever 26 to open the microswitch 28 and deactivate the pump 2. With froth or foam in the passage 6 a normally closed bleed valve 48 is manually displaced to open communication between passage 6 and bleed outlet 47. Displacement of the valve 48 abuts and displaces the plunger 38 against its spring biasing to relieve pressure of the plunger on the rocking lever 26 so that the microswitch 28 reverts to its normal closed condition to operate pump 2 which can draw liquid from a fresh supply to displace the froth or foam from the passage 6 through the bleed outlet 47 and prime said passage with liquid for further dispensing when the bleed valve 48 reverts to its normal closed condition.