Abstract:
A cooking apparatus including a cooktop including an inlet; a chamber housing to which a duct is connectable, the chamber housing coupled to the cooktop to form a chamber under the inlet; and a fan device inside the chamber housing, the fan device including a fan and a fan housing, the fan housing including a first housing inlet opening towards the cooktop, and a second housing inlet opening in an opposite direction, wherein the fan device is operable to, with the duct being connected to the chamber housing, draw air through the inlet into the chamber, so that some of the air drawn into the chamber is drawn through the first housing inlet into the fan housing, and other of the air drawn into the chamber is drawn through the second housing inlet into the fan housing, and discharge the air in the fan housing through the duct.
Abstract:
A food waste disposer including a housing, a container disposed inside the housing and provided to accommodate food waste, an exhaust duct communicating with the container and provided to allow exhaust gas generated in the container to flow therein, a filter device including a catalytic filter part configured to filter the exhaust gas passed through the exhaust duct, and a deodorizing filter part configured to filter the exhaust gas passed through the catalytic filter part and communicating with an outside of the housing, and a condensation chamber configured to remove moisture in the exhaust gas flowing from the exhaust duct into the catalytic filter part of the filter device.
Abstract:
A hood system including a main body comprising an exhaust duct, a fan configured to generate airflow in the exhaust duct, an arm including an intake port and configured to allow air to be sucked into the intake port so as to pass through the arm and thereafter in the exhaust duct, a driving unit configured to be driven to move the arm, a sensor module configured to sense an environmental state of the hood system, and at least one processor configured to control driving of the driving unit based on the sensed environmental state to move the arm and thereby position the intake port based on the sensed environmental state.
Abstract:
A cooking device includes a main body including an upper side and a lower side opposing each other, a cooking surface at the upper side of the main body, and an air shield generator which draws air from outside the main body, at the lower side of the main body, and provides the air to outside of the main body as an air shield which is at the upper side of the main body, adjacent to the cooking surface and flowing in a direction away from the cooking surface.
Abstract:
A cooking device according to the present disclosure comprises: a body in which a cooking chamber including an inlet and an outlet is formed; a heater for heating air; a fan configured to selectively change a discharge direction of the heated air to provide the heated air to the cooking chamber; and a processor configured to control a motor to provide a driving force to the fan such that the fan alternately changes the discharge direction, wherein the processor controls the motor such that a predetermined discharge direction among multiple discharge directions is maintained for a longer time than the other discharge directions.
Abstract:
An electronic device comprises a first camera capable of photographing a designated direction, a second camera capable of photographing a direction different from the designated direction, a memory, and a processor, wherein the processor can be configured to acquire first images by using the first camera and second images by using the second camera, confirm at least one reflective object having a reflective attribute related to the light reflection in the first images, and synthesize, on the basis of the reflective attribute, at least a part of the second images with at least a part of an area corresponding to the at least one reflective object.
Abstract:
A screen output control method and system and a mobile terminal supporting the same are provided. The screen output control system includes a screen output device and a mobile terminal. The screen output device is connected with the mobile terminal so as to output screen data rendered by the mobile terminal. When the screen output device is connected, the mobile terminal renders screen data for the screen output device, writes the rendered screen data to a buffer assigned to the screen output device, and outputs screen data written in the buffer to the screen output device.
Abstract:
An electronic device is provided. The electronic device includes at least one processor and a memory. The memory may store at least one instruction that, when executed by the at least one processor, enables the electronic device to obtain a first image frame and a second image frame. The memory may store at least one instruction that, when executed by the at least one processor, enables the electronic device to identify a first interpolation-applied object and a first interpolation non-applied object among objects included in the first image frame and identify a second interpolation-applied object and a second interpolation non-applied object among objects included in the second image frame. The memory may store at least one instruction that, when executed by the at least one processor, enables the electronic device to provide an interpolation image frame including a result of interpolation on the first interpolation-applied object and the second interpolation-applied object and the first interpolation non-applied object or the second interpolation non-applied object.
Abstract:
A ventilation hood includes a main frame which faces an appliance accessible from a front of the appliance, the main frame defining a through-hole passing through the main frame, a motor module on the main frame and configured to suck in air through the through-hole, the motor module including a duct, a motor having an axis, and an exhaust fan driven by the motor and defining a blowing direction perpendicular to the axis of the motor, and a controller configured to control operation of the ventilation hood and a rotation velocity of the exhaust fan. The axis of the motor is in a direction from the front of the appliance to a rear of the appliance which is opposite to the front. The controller is on the main frame and at a front of the duct which corresponds to the front of the appliance.
Abstract:
A method and apparatus for controlling desktop virtualization function, per-display device window layout provision function, and user input-based external display device utilization function are provided.