Patent classifications
A47J31/02
Coffee Filter Holder
A coffee filter holder for a coffee filter element used with a coffee cup that has a base, a surrounding sidewall extending from the base, and the coffee cup surrounding sidewall terminating in a coffee cup rim defining a coffee cup interior, the coffee filter holder comprising a first surrounding sidewall, thus forming a cone shape about a first longitudinal axis for the first surrounding sidewall, a second surrounding sidewall about a second longwise axis that has an aperture disposed therethrough the second surrounding sidewall in two places along the first longitudinal axis such that the cone narrow end is disposed therethrough the aperture, with the second surrounding sidewall placed on a coffee cup rim with the wide end of the cone facing upward. Wherein the wide end of the cone received the coffee filter and ground coffee to pour hot water into that drips to the cup interior.
Coffee Filter Holder
A coffee filter holder for a coffee filter element used with a coffee cup that has a base, a surrounding sidewall extending from the base, and the coffee cup surrounding sidewall terminating in a coffee cup rim defining a coffee cup interior, the coffee filter holder comprising a first surrounding sidewall, thus forming a cone shape about a first longitudinal axis for the first surrounding sidewall, a second surrounding sidewall about a second longwise axis that has an aperture disposed therethrough the second surrounding sidewall in two places along the first longitudinal axis such that the cone narrow end is disposed therethrough the aperture, with the second surrounding sidewall placed on a coffee cup rim with the wide end of the cone facing upward. Wherein the wide end of the cone received the coffee filter and ground coffee to pour hot water into that drips to the cup interior.
Pour over coffee maker with TDS measurement
This invention provides a coffee maker having: an upper structure with a filter (1) and a measurement chamber (2); the measurement chamber (2) has TDS sensor (8), a temperature sensor (9) and a fluid transfer system (7); a lower structure with a weight sensor (52); a plurality of connecting elements (4) enacting the upper structure above the lower structure; and carafe (6) to be placed between the upper structure and lower structure; and a display panel (51) showing data from the TDS sensor, temperature sensor, or weight sensor.
Pour over coffee maker with TDS measurement
This invention provides a coffee maker having: an upper structure with a filter (1) and a measurement chamber (2); the measurement chamber (2) has TDS sensor (8), a temperature sensor (9) and a fluid transfer system (7); a lower structure with a weight sensor (52); a plurality of connecting elements (4) enacting the upper structure above the lower structure; and carafe (6) to be placed between the upper structure and lower structure; and a display panel (51) showing data from the TDS sensor, temperature sensor, or weight sensor.
Foldable pour over coffee dripper
A foldable pour over coffee dripper is disclosed herein. It comprises a standing wall, a supporting frame pivotally connected to a first end of the standing wall, a basal plate pivotally connected to a second end of the standing wall, and a filter unit connected at a bottom of the supporting frame, wherein the filter unit has a first end connected to a bottom of the supporting frame, plural turns and a second end and is gradually tapered from the first end to the second end thereof in an axial direction.
Foldable pour over coffee dripper
A foldable pour over coffee dripper is disclosed herein. It comprises a standing wall, a supporting frame pivotally connected to a first end of the standing wall, a basal plate pivotally connected to a second end of the standing wall, and a filter unit connected at a bottom of the supporting frame, wherein the filter unit has a first end connected to a bottom of the supporting frame, plural turns and a second end and is gradually tapered from the first end to the second end thereof in an axial direction.
Beverage brewing assembly
A beverage brewing assembly includes a body defining a cavity. An insert is removably positioned within the cavity of the body. The insert defines a plurality of compartments. A lid is operably coupled with the body and defines a plurality of through-holes. The plurality of through-holes are positioned to facilitate a consistent and evenly distributed flow through each of the plurality of compartments of the insert.
Beverage brewing assembly
A beverage brewing assembly includes a body defining a cavity. An insert is removably positioned within the cavity of the body. The insert defines a plurality of compartments. A lid is operably coupled with the body and defines a plurality of through-holes. The plurality of through-holes are positioned to facilitate a consistent and evenly distributed flow through each of the plurality of compartments of the insert.
Beverage press and pressure-activated filter assembly
A beverage press is described which includes a pressure-activated valve in a pressurized brewing chamber. The pressure-activated valve opens when pressure within the chamber rises above a cracking pressure. A filter in the brewing chamber may filter out solids while passing liquids out of the pressure-activated valve. In some embodiments, a high-pressure beverage filter assembly is disclosed which is configured to mate to a beverage press. Also disclosed is an integrated beverage press incorporating a high-pressure beverage filter assembly and features of a beverage press in a single unit.
COLD BREW COFFEE BREWING SYSTEM AND METHOD
A cold brew coffee brewing system to prepare cold brew coffee by extraction of coffee grounds with brew water in a single-past, non-immersion extraction operation uses a tower unit with first and second receiving locations to receive a pre-infusion container for preparation of a pre-infusion mixture of coffee grounds during a pre-infusion operation and to receive an extraction vessel containing the transferred pre-infusion mixture for extraction processing to prepare cold brew coffee product, which is collected in a collection container received in the second receiving location of the tower unit. A brew control system controls operation of the water dispensing system during a cold brewing process cycle, and including a controller unit having stored therein multiple profiles for different cold-brew coffee product that may be prepared at the direction of the controller unit. A network may include multiple such cold brew coffee brewing systems connected with a central server.