Abstract:
An ignition control system for an appliance is disclosed. The appliance includes a gas burner, a user actuable valve for controlling a flow of fuel to the burner and an electrical resistance igniter for igniting fuel at the burner. The system includes a user actuable control interface having an off state and an on state, coupled to the valve operative to control the valve and provide a control signal indicative of the state of the control interface. The system also includes a controller having a timer circuit responsive to the control signal and a boost circuit coupled to the timer circuit. The timer circuit selectively activates the boost circuit for a predetermined period of time. A first DC power supply is selectively coupled to the igniter to provide power to the igniter through the boost circuit. A second DC power supply is coupled to the igniter and control interface.
Abstract:
A gas burner for a cooking appliance having a base portion and a side wall extending from the base portion. A cap is disposed on the side wall. The cap includes a substantially conical interior surface facing the base portion. The substantially conical interior surface is configured to substantially eliminate creation of turbulent flow eddies in a gaseous fuel mixture passing through the gas burner.
Abstract:
An apparatus including a frame forming an internal cavity, the frame having an opening for accessing the internal cavity, a first door and a second door mounted to the frame and a door coupling mechanism for effecting a substantially simultaneous movement of the first door and second door relative to the frame, the door coupling mechanism including a first door link, a second door link and at least one ternary link, the first door link being rotatably coupled to the first door and the at least one ternary link, the second door being rotatably coupled to the second door and the at least one ternary link.
Abstract:
A gas cooktop includes a burner box assembly having a top surface with a plurality of air inlets and gas burners disposed therethrough. A partition is disposed between the top surface and a bottom surface, the partition defining a plurality of segregated air paths that each leading from at least one of the plurality of air inlets to one of the plurality of gas burners.
Abstract:
A cooktop for a cooking appliance includes a glass ceramic plate, the glass ceramic plate providing a cooking surface and having an instrumentation opening. A low thermal expansion metallic sleeve is inserted into the opening and a high temperature ceramic cement is used to bond the sleeve to the glass ceramic plate.
Abstract:
An oven has a plurality of walls defining an oven cavity, a light source disposed outside of a wall of the oven cavity, and an optical light pipe in optical communication with the light source. The light pipe has a central body portion disposed within the oven cavity, and an end portion extending from the central body portion, the end portion extending outside of the oven cavity and being in optical communication with the light source. The central body distributes light from the light source within the oven cavity.
Abstract:
An apparatus including a frame forming an internal cavity, the frame having an opening for accessing the internal cavity, a first door and a second door mounted to the frame and a door coupling mechanism for effecting a substantially simultaneous movement of the first door and second door relative to the frame, the door coupling mechanism including a first door link, a second door link and at least one ternary link, the first door link being rotatably coupled to the first door and the at least one ternary link, the second door being rotatably coupled to the second door and the at least one ternary link.
Abstract:
A voltage switching microswitch is provided for supplying power to a hot surface igniter in a gas burning system. The microswitch is configured to operate concurrently with manual operation of a gas control valve such that rotation of an operating stem of the gas control valve produces rotation of a cam within the microswitch. The cam is configured to operate a pair of reed switches so that a relatively high voltage from a power supply is applied to the hot surface igniter following a first predetermined amount of rotation of the cam and a relatively lower voltage is applied to the hot surface igniter following a second predetermined amount of rotation of the cam to maintain the temperature of the igniter.
Abstract:
An apparatus including a frame, a door and a compliant hinge mechanism hingably mounting the door to the frame, the compliant hinge mechanism including a resistance configured to provide a preload to balance the door in a first open position and an increasing force resisting further opening of the door when the preload is overcome and the door is opened past the first open position.
Abstract:
A vent hood is disclosed. The vent hood includes an enclosure having an inlet and a fluid passage, a first stage fluid moving device disposed adjacent to the inlet and configured to provide a substantially uniform inflow of fluid across the inlet, and a second stage fluid moving device disposed within the enclosure and downstream of the first stage fluid moving device.