Patent classifications
A47J31/54
COMBINED HOT WATER DISPENSER AND BEVERAGE BREWER
A combined hot water dispenser and beverage brewer. The combined hot water dispenser and beverage brewer includes a water heating section and a water storage section. The water heating section includes a boiler reservoir, a heating element, a first water discharge mechanism, and a second discharge mechanism. The water storage section includes a cold water reservoir and a hot water reservoir disposed above the boiler reservoir.
COMBINED HOT WATER DISPENSER AND BEVERAGE BREWER
A combined hot water dispenser and beverage brewer. The combined hot water dispenser and beverage brewer includes a water heating section and a water storage section. The water heating section includes a boiler reservoir, a heating element, a first water discharge mechanism, and a second discharge mechanism. The water storage section includes a cold water reservoir and a hot water reservoir disposed above the boiler reservoir.
Non-electric powered, off-grid, beverage brewer
This disclosure provides methods and apparatus for a beverage brewer. The beverage brewer including a burner, a reservoir, a controller, and a thermoelectric generator. The burner produces combustible heat across a surface. The reservoir stores a brewing fluid. The controller controls a brewing process. The thermoelectric generator is structured with a supply side, a waste side and a power output. The supply side is directed towards the surface of the burner. The waste side contacts the reservoir. The power output powers the controller.
Non-electric powered, off-grid, beverage brewer
This disclosure provides methods and apparatus for a beverage brewer. The beverage brewer including a burner, a reservoir, a controller, and a thermoelectric generator. The burner produces combustible heat across a surface. The reservoir stores a brewing fluid. The controller controls a brewing process. The thermoelectric generator is structured with a supply side, a waste side and a power output. The supply side is directed towards the surface of the burner. The waste side contacts the reservoir. The power output powers the controller.
CONTROLLABLE BREWER
The present disclosure includes a beverage making device including a heated water tank and a reservoir for controllably dispensing water over a beverage making substance to create a beverage. The beverage making device includes a vent valve coupled to the reservoir and heated water tank, a pump coupled to the reservoir for moving water from the reservoir to the heated water tank, a flow meter associated with the heated water tank for determining the water dispensed into the heated water tank, a spray head coupled to the heated water tank for distributing water over a beverage making substance. A controller coupled to the relevant portions of the system for controllably operating the system.
CONTROLLABLE BREWER
The present disclosure includes a beverage making device including a heated water tank and a reservoir for controllably dispensing water over a beverage making substance to create a beverage. The beverage making device includes a vent valve coupled to the reservoir and heated water tank, a pump coupled to the reservoir for moving water from the reservoir to the heated water tank, a flow meter associated with the heated water tank for determining the water dispensed into the heated water tank, a spray head coupled to the heated water tank for distributing water over a beverage making substance. A controller coupled to the relevant portions of the system for controllably operating the system.
Group for supplying hot water for a machine for making espresso coffee or the like and associated machine
A group (6) for supplying hot water in a machine for preparing and dispensing a beverage, for example espresso coffee, comprising: a water accumulation chamber (14) with an inlet (11) for receiving water and an outlet (12); and a heating path (9, 13). The heating path comprises an inlet for receiving water from the outlet (12) of the accumulation chamber (14) and an outlet (15) for dispensing heated water into a brewing chamber (16) for preparing a beverage. The heating path comprises a path bounded by a heatable outer surface (13) and an inner core (9). The inner core (9) comprises a temperature probe (8) located in proximity of the outlet (15) for dispensing heated water.
AUTOMATIC BEVERAGE PREPARATION MACHINE WITH ELECTROMAGNETIC-INDUCTION, CONTINUOUS-FLOW FLUID HEATER
In an automatic beverage preparation machine operable to dispense a beverage in a container, a fluid for preparing the beverage is heated by an electromagnetic-induction, continuous-flow heater having a tubular body delimiting a flow path form the fluid to be heated. The tubular body has an end outlet segment leading into a chamber closed by a plug-shaped body that is removable to allow access to the flow path. The plug-shaped body is arranged outside a casing or is uncouplable and extractable from the casing through an opening formed in the casing to allow direct access from the outside to the flow path.
AUTOMATIC BEVERAGE PREPARATION MACHINE WITH ELECTROMAGNETIC-INDUCTION, CONTINUOUS-FLOW FLUID HEATER
In an automatic beverage preparation machine operable to dispense a beverage in a container, a fluid for preparing the beverage is heated by an electromagnetic-induction, continuous-flow heater having a tubular body delimiting a flow path form the fluid to be heated. The tubular body has an end outlet segment leading into a chamber closed by a plug-shaped body that is removable to allow access to the flow path. The plug-shaped body is arranged outside a casing or is uncouplable and extractable from the casing through an opening formed in the casing to allow direct access from the outside to the flow path.
Apparatus for preparing a coffee beverage
A coffee brewer contains a brewing unit in which coffee grounds having been poured in are compressed by a plunger driven by an actuator. Heated water flows through the compressed coffee grounds. A control device controls the actuator in accordance with signals of an angle of rotation sensor. The control device first moves the plunger against a stop in an ejection position to calibrate the sensor, then moves the plunger by a predetermined distance in a downwards direction into a pouring-in position. Afterwards the control device moves the plunger by a second distance into the brewing position, a length of the predetermined distance and the second distance corresponds to a number of pulses of the sensor which are stored in the memory. The control device subsequently moves the plunger by a third distance back into the ejection position in which the coffee grounds are removed from the plunger.