Abstract:
An apparatus for nitrogenizing a beverage utilizing a container having a chamber with a plurality of baffles. The container also includes a gas controller regulator in the form of a collapsible orifice at the base of the container. An agitator in the form of a rotating shaft creates a shear on the beverage during delivery of a stream of nitrogen gas into the container.
Abstract:
The disclosure is directed to a beverage nozzle for mixing at least a first beverage ingredient and a second beverage ingredient into a homogeneous mixture. The beverage nozzle comprising a housing comprising a first portion and a second portion and a first inlet in fluid communication with the housing. The first inlet is configured to provide the first beverage ingredient to the housing. The beverage nozzle also includes a second inlet in fluid communication with the housing. The second inlet is configured to provide the second beverage ingredient to the housing. In addition, the beverage nozzle includes a mixing core disposed within the housing. The mixing core is configured to mix the first beverage ingredient and the second beverage ingredient into the homogeneous mixture. Further, the beverage nozzle includes an outlet disposed about the housing, wherein the homogeneous mixture exits the housing by way of the outlet.
Abstract:
A high diluent to concentrate volumetric ratio post-mix drink dispenser includes a mixer and a nozzle housing. The mixer defines a mixing pathway adapted to receive a diluent flow from a diluent source and a concentrate pathway adapted to receive a concentrate flow from a concentrate source. The concentrate pathway communicates with the mixing pathway to deliver concentrate therein. The mixing pathway manipulates the diluent flow therein to decrease the pressure thereof, thereby creating a low pressure region at the concentrate pathway that promotes introduction of the concentrate into the diluent for mixing therewith. The nozzle housing couples with the mixer such that the nozzle housing receives mixed diluent and concentrate from the mixing pathway and delivers the mixed diluent and concentrate therefrom.
Abstract:
Systems and methods of custom condiment dispensing include a reservoir of base condiment and a plurality of flavoring reservoirs. A first pump is pneumatically connected to the reservoir of base condiment. The second pump is pneumatically connected to at least one flavoring reservoir of the plurality of flavoring reservoirs. A nozzle is fluidly connected to the reservoir of base condiment and fluidly connected to the plurality of flavoring reservoirs. The nozzle is configured to simultaneously dispense the base condiment and at least one flavoring therethrough. A controller receives the user selections of the base condiment and the at least one flavoring and operates the first pump and the second pump to dispense base condiment and at least one flavoring.
Abstract:
A postmix juice dispensing system for dispensing a finished beverage directly from a pliable beverage concentrate having an ice point at or near freezer temperatures, with little or no conditioning. The system preferably uses a one-piece, unitary, disposable package that includes both the concentrate container and a positive displacement metering pump. The disposable package is placed in the dispenser which automatically connects the pump to a pump motor. A mixing nozzle is connected to the metering pump and a water line is connected to the mixing nozzle. Upon pushing a load button, the dispenser automatically feeds compressed air on top of a piston in the concentrate container to force concentrate into the pump. The dispenser automatically reads an indicator on the package to set the pump speed in response to the type of concentrate in the package. The dispenser requires no cleanup or sanitization and allows rapid flavor change.
Abstract:
A postmix valve for a beverage dispenser, including a volumetric ratio control device incorporated therein to provide positive ratio control. The device includes a syrup piston and a soda piston linked together, syrup and soda chambers, and valve means for controlling the flow to and from the chambers. The soda pressure drives the pistons. The valve means preferably includes four solenoid valves for the water circuit and four one-way valves and a pressure regulator for the syrup circuit. The valve includes means for varying the total flow rate of the beverage being dispensed.
Abstract:
A post-mix dispensing valve for a beverage dispenser, including a self-contained volumetric ratio control device incorporated therein to provide positive ratio control. The device includes a single piston in a single cyinder, syrup and soda chambers, and self-contained direct acting electrical solenoid valve for controlling the flow through the volumetric ratio control device and the reciprocating action of the piston. The soda pressure drives the piston. This post-mix dispensing valve can be used with any of a figal, a bag-in-box, a gravity tank, or a non-returnable container under no pressure or under a low pressure of 5 to 10 psig. This invention also includes a non-returnable, pressurizable syrup container.
Abstract:
A liquid dispenser mixing nozzle comprising a housing defining a chamber, a dispensing orifice in the housing communicating with the chamber at a first end, a liquid supply source in fluid connection with the chamber at a second end of the chamber, a plurality of baffles substantially perpendicular to the side wall of the housing, and removable circumferential support members for suspending the baffles within the chamber. A method for mixing and dispensing liquid is also provided.
Abstract:
Cartridge loaders for fluid mixture dispensing systems are disclosed. One disclosed fluid mixture dispensing system comprises an interface surface, a cartridge receiver carriage, and an actuator configured to depress the cartridge receiver carriage towards the interface surface to load a cartridge. The fluid mixture dispensing system is configured to apply continuous downward pressure on the cartridge towards the interface surface when the cartridge is loaded and is in contact with the interface surface.