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    • 2. 发明申请
    • Water changeover manifold for beverage dispenser and method
    • 饮料分配器换水歧管及方法
    • US20060071015A1
    • 2006-04-06
    • US11197660
    • 2005-08-04
    • Thaddeus JablonskiMichael Scheurich
    • Thaddeus JablonskiMichael Scheurich
    • G01F11/00
    • B67D1/1245B67D1/0021B67D2210/0006B67D2210/00086
    • A system for selectively supplying either a first or second diluent to a beverage dispensing valve is characterized by a manifold having first and second diluent outlet ports. Two different selection fittings plug, one at a time, into the manifold outlet ports. One, a first diluent selection fitting, when plugged into the manifold outlet ports delivers the first diluent from the manifold first diluent outlet port to the beverage valve while simultaneously closing the manifold second diluent outlet port. The other, a second diluent selection fitting, when plugged into the manifold outlet ports delivers the second diluent from the manifold second diluent outlet port to the beverage valve while simultaneously closing the manifold first diluent outlet port. The two selection fittings are keyed to connect with the manifold in one orientation only, so neither can be used to serve the purpose of the other.
    • 用于选择性地将第一或第二稀释剂供应到饮料分配阀的系统的特征在于具有第一和第二稀释剂出口的歧管。 两个不同的选择配件插头,一次一个插入歧管出口。 一个,当插入歧管出口端口时,第一稀释剂选择配件将第一稀释剂从歧管第一稀释剂出口端口传送到饮料阀,同时关闭歧管第二稀释剂出口。 另一个第二稀释剂选择配件当插入歧管出口端口时,将第二稀释剂从歧管第二稀释剂出口端口传送到饮料阀,同时关闭歧管第一稀释剂出口。 两个选择配件只能以一个方向与歧管连接,因此也不能用于另一个方向的目的。
    • 3. 发明申请
    • Ice dispensing chute
    • US20050006406A1
    • 2005-01-13
    • US10825576
    • 2004-04-15
    • Thaddeus JablonskiMichael Scheurich
    • Thaddeus JablonskiMichael Scheurich
    • F25C5/00B67D1/16
    • F25C5/24
    • An ice dispensing chute mechanism is characterized by an ice chute adapted for attachment at an upper ice inlet end to an ice retaining bin at an ice outlet from the bin. An actuating arm is pivotally mounted on the ice chute and has a lower end for being contacted and moved by a receptacle into which ice is to be dispensed from a lower ice discharge end of the chute and an upper end for contacting and moving a linkage mechanism upon rotation of the actuating arm by the receptacle. The linkage mechanism is pivotally mounted on the ice chute and is coupled to an ice gate that is linearly moved by the linkage mechanism between open and closed positions that establish and interrupt communication between the upper inlet to the chute and the ice outlet opening from the bin. Movement of the linkage mechanism by the actuating arm operates the linkage mechanism to translate the rotational movement of the actuating arm into linear movement of the ice gate between its open and closed positions to dispense ice and to cease dispensing ice into the receptacle. The ice chute consists of two halves that snap together in a releasable manner to permit easy disassembly of the ice chute for cleaning, repair or replacement of parts. The upper inlet to the ice chute is configured to impart to ice particles a trajectory through the chute that guides the ice particles into the receptacle while preventing the vast majority of the ice particles from contacting interior surfaces of the chute.