BOTTOM-LOADING BOTTLED WATER DISPENSERS WITH HOT WATER SANITIZING FEATURES
    3.
    发明申请
    BOTTOM-LOADING BOTTLED WATER DISPENSERS WITH HOT WATER SANITIZING FEATURES 审中-公开
    底部加载水分配器,具有热水消毒功能

    公开(公告)号:US20160362286A1

    公开(公告)日:2016-12-15

    申请号:US14857521

    申请日:2015-09-17

    申请人: George Yui Andrei Yui

    发明人: George Yui Andrei Yui

    IPC分类号: B67D1/00 B67D1/07 B67D1/08

    摘要: Bottom-loading bottled water dispensers are disclosed that include hot water sanitizing capabilities (and, optionally, UV light sanitizing features). The dispensers include a water bottle that is operably connected to a pump that is configured to extract water from the bottle and force the water through one or more tubes and into a cold tank. The cold tank includes an evaporator that is configured to chill the water in the cold tank. The dispensers further include a hot tank that is fluidly coupled to the cold tank through one or more tubes, with the hot tank being attached to a heating element that is configured to heat the water in the hot tank. In addition, the dispensers include an electronic control board that is configured to heat a volume of water contained in the cold tank above a defined threshold temperature and for a defined period of time that is effective to sanitize the internal surfaces of the cold tank.

    摘要翻译: 公开了底部装载的瓶装水分配器,其包括热水消毒能力(以及可选地,UV光消毒特征)。 分配器包括可操作地连接到泵的水瓶,其构造成从瓶中提取水并且迫使水通过一个或多个管并进入冷箱。 冷水箱包括一个蒸发器,该蒸发器被配置为冷却冷水箱中的水。 分配器还包括通过一个或多个管流体地联接到冷箱的热水箱,其中热水箱附接到被配置为加热热水箱中的水的加热元件。 此外,分配器包括电子控制板,该电子控制板被配置为将冷藏箱中容纳的一定量的水加热到高于规定的阈值温度,并且在有效消毒冷藏箱内表面的限定时间段内。

    Automatic Water Supply Device
    5.
    发明申请

    公开(公告)号:US20180201492A1

    公开(公告)日:2018-07-19

    申请号:US15742776

    申请日:2016-07-06

    IPC分类号: B67D1/12 B67D3/00 B01D35/04

    摘要: An embodiment relates to an automatic water supply device comprising: a container seating portion, one side of which is open such that a container is placed; a water intake member arranged on the upper portion of the container seating portion so as to supply the container with a liquid; a container height measuring unit and a water level measuring unit arranged to be adjacent to the water intake member, respectively; and a control unit for comparing the height of the container, which is measured by the container height measuring unit, and the water level, which is measuring by the water level measuring unit, thereby checking whether the water level inside the container reaches a preset height or not, and adjusting the water level inside the container using the result of the checking, wherein the container height measuring unit comprises a plurality of first optical sensors for sensing both ends of the upper end of the container, and can measure the height of the container in response to the result of sensing by the first optical sensors.

    Beverage dispenser with automatic cup-filling control
    9.
    发明授权
    Beverage dispenser with automatic cup-filling control 有权
    饮料分配器,自动灌杯控制

    公开(公告)号:US07171993B2

    公开(公告)日:2007-02-06

    申请号:US11118657

    申请日:2005-04-29

    IPC分类号: B65B1/30

    摘要: A beverage dispenser for filling a container preferably has a nozzle through which the beverage is discharged and a pivoting lever located underneath the nozzle that detects the placement of a container so as to regulate the actuation of the dispenser. A conductive probe is in line with the discharged beverage stream, the lever also being conductive. A signal generator generates a varying-over-time signal that is applied to the probe or lever. As a result of beverage overflowing the container, the beverage stream establishes a conductive path between the probe and lever. The signal through this conductive path is compared to the signal produced by the signal generator. If the signals are substantially identical for a select period of time, the dispensing system is considered to be in an overflow state, and beverage dispensing is terminated.

    摘要翻译: 用于填充容器的饮料分配器优选地具有喷嘴,饮料通过该喷嘴排出,以及位于喷嘴下方的枢转杆,其检测容器的放置以调节分配器的致动。 导电探针与排出的饮料流一致,该杆也是导电的。 信号发生器产生施加到探头或杠杆的变化超时信号。 由于饮料溢出容器的结果,饮料流在探针和杠杆之间建立导电路径。 通过该导电路径的信号与由信号发生器产生的信号进行比较。 如果信号在选择的时间段内基本相同,则认为分配系统处于溢出状态,并且终止饮料分配。