Abstract:
FIG. 1 is a front-right perspective view of a food processing attachment according to the design; and, FIG. 2 is a back-right perspective view thereof. Dash-dot-dash broken lines are environmental only and form no part of the claimed design. The portions of the article shown in even broken line form no part of the claimed design with broken lines adjacent un-shaded areas representing bounds of the claimed design.
Abstract:
A food processing device includes a gear housing, a frame arm extending from the gear housing on a first lateral side thereof to a support end, a drive screw extending between and operably coupled on respective ends thereof with a first face of the gear housing and the support end of the frame arm, and a retention hub operably coupled with the gear housing and extending generally parallel with and adjacent a portion of drive screw. The drive screw and the retention hub are linearly arranged with respect to the frame arm in sequential positions away from the first lateral side of the gear housing. The device further includes a carrier slidably coupled with the frame arm and operably engageable with the drive screw such that the rotational movement thereof drives corresponding linear movement of the carrier along the frame arm. The carrier defines at least one cutting implement thereon.
Abstract:
A food processor includes a bowl with a removable lid. Food items are advanced into the bowl through a feed tube formed in the lid where they are cut by a blade assembly. A rotating disk is adjustable relative to the blade assembly to vary the thickness of the food items cut by the blade assembly.
Abstract:
A cooking and processing appliance includes a container having a lid and a stirring mechanism for rotating at least one processing attachment of a plurality of processing attachments, a housing having a receptacle for receiving the container and having a motor in communication with the stirring mechanism, a heating structure disposed within the housing and a wall of the container, a heating activation system included within the housing and the container, wherein the heating structure defines a heating-active state when the container is received within the receptacle, a mixing activation system, wherein the motor defines a mixing active state when the container is received within the receptacle and the lid is in a closed position and a control in communication with the heating structure and the stirring mechanism.
Abstract:
A blending appliance includes a housing with a jar receiving area defined between an upper housing and a support base. A blender jar includes a base portion and a receptacle portion, and is configured to be laterally received within the jar receiving area of the housing. A magnetic coupling system includes an upper magnetic coupler disposed in the base portion of the blender jar and a lower magnetic coupler disposed in the support base of the housing. The upper and lower magnetic couplers are magnetically coupled to one another for driving a blade assembly disposed in the receptacle portion of the blender jar. A brake mechanism is disposed on the upper magnetic coupler and is configured to stop rotation of the upper magnetic coupler when the blender jar is removed from the jar receiving area.
Abstract:
A cooking and processing appliance includes a container having a lid and a stirring mechanism for rotating at least one processing attachment of a plurality of processing attachments, a housing having a receptacle for receiving the container and having a motor in communication with the stirring mechanism, a heating structure disposed within the housing and a wall of the container, a heating activation system included within the housing and the container, wherein the heating structure defines a heating-active state when the container is received within the receptacle, a mixing activation system, wherein the motor defines a mixing active state when the container is received within the receptacle and the lid is in a closed position and a control in communication with the heating structure and the stirring mechanism.
Abstract:
A juicing system with a drive mechanism and a juicer assembly, where the juicer assembly includes a main housing defining a cavity. A lid encloses a top portion of the cavity and has an opening therethrough. An auger is disposed within the cavity and has a top portion and a bottom portion. The auger is operably connected at one of the top portion or the bottom portion to the drive mechanism to rotate the auger. A rotatable cutting blade is disposed at the top portion of the auger. The rotatable cutting blade cuts foods inserted into the cavity through the opening. A juicing basket is disposed within the cavity, radially outwardly from the auger. The juicing basket has at least one screen with apertures therethrough of varying sizes. Food is pressed by the auger against the juicing basket to squeeze juice and pulp through the apertures.
Abstract:
A juicing system with a drive mechanism and a juicer assembly, where the juicer assembly includes a main housing defining a cavity. A lid encloses a top portion of the cavity and has an opening therethrough. An auger is disposed within the cavity and has a top portion and a bottom portion. The auger is operably connected at one of the top portion or the bottom portion to the drive mechanism to rotate the auger. A rotatable cutting blade is disposed at the top portion of the auger. The rotatable cutting blade cuts foods inserted into the cavity through the opening. A juicing basket is disposed within the cavity, radially outwardly from the auger. The juicing basket has at least one screen with apertures therethrough of varying sizes. Food is pressed by the auger against the juicing basket to squeeze juice and pulp through the apertures.
Abstract:
A partially transparent cooking appliance includes first and second plates defining an externally accessible cavity therebetween. The first and second plates are at least partially translucent. A base is pivotally coupled with the first and second plates. The first and second plates are operable between a horizontal position and a vertical position relative to the base and an electrically resistive coating disposed on at least a portion of the first and second plates. The electrically resistive coating is in thermal communication with the cavity. A cam mechanism is operably coupled with at least one of the first and second plates. The first and second plates are operable between first and second distances relative to one another and a user interface is disposed on an exterior surface of an outer plate. The user interface is in electrical communication with the electrically resistive coating.