Abstract:
The present invention relates to a cooker and methods of manufacturing and controlling the same. In the present invention, the first coating layer that is a general ceramic enamel layer and the second coating layer that includes phosphate-based components are coated on the surface of the cavity corresponding to the inner surface of the cooking chamber. Therefore, with the present invention, the inside of the cooking chamber can be more easily cleaned.
Abstract:
The present disclosure relates to a watch type mobile terminal which includes a main body, an infrared communication unit configured to generate an infrared signal, a communication unit configured to perform communication in a wireless manner, a sensing unit configured to sense an attachment of the main body to a first device, the first device configured to receive the infrared signal, and a controller configured to control the infrared communication unit to generate an infrared signal for the first device on the basis of a control signal associated with the first device, received from a second device through the communication unit, when the attachment of the main body to the first device is sensed, and configured to transmit the generated infrared signal to the first device through the infrared communication unit.
Abstract:
The present invention includes a cooking appliance with an enamel composition. The enamel composition includes a heat resistance, chemical resistance, wear resistance, and pollution resistance, such that the cooking appliance withstands high temperature, acid or alkali and is readily cleaned.
Abstract:
The vacuum suctioning unit of the present invention includes: a cover provided with an air entrance; an impeller for circulating air that enters the air entrance; a motor provided with a shaft connected to the impeller; a guide device for guiding the flow of air that exits an exit of the impeller; and a motor housing that houses the motor and is provided with an air exit. The guide device includes: a guide body disposed below the impeller; a first guide vane formed on a side surface of the guide body and guiding air discharged from the impeller; and a second guide vane formed on the bottom surface of the guide body and connected to the first guide vane to guide air that is moved by the first guide vane. The entrance angle of the first guide vane is within the range of 10 to 27 degrees.
Abstract:
The present disclosure relates to a fan motor that includes a housing, a housing, a stator assembly installed inside the housing, a rotor assembly rotatably mounted inside the stator assembly, an impeller configured to generate a flow of air by receiving power from the rotor assembly, a first housing cover installed on one side of the housing and provided therein with a first bearing, a second housing cover installed on another side of the housing and provided therein with a second bearing, and a vane installed at a lower portion of the second housing cover to guide flowing of air introduced from the second housing cover. The impeller is configured as a diagonal flow type and the second housing cover is configured as an axial flow type, allowing the impeller and the second housing cover to be arranged vertically.
Abstract:
An electric motor includes an impeller, a stator assembly, a rotor assembly, an inner flow path, and a bypass flow path. The impeller creates a flow of air introduced into the housing. The stator assembly is accommodated inside the housing. The rotor assembly is rotatably mounted inside the stator assembly. The bypass flow path is defined between an inner side of the housing and an outer side of the stator assembly, allowing the air to bypass the stator assembly along the bypass flow path. This configuration may result in minimizing flow resistance and flow loss of the air passing through the inner flow path of the electric motor.
Abstract:
The present disclosure relates to a watch type mobile terminal which includes a main body, an infrared communication unit configured to generate an infrared signal, a communication unit configured to perform communication in a wireless manner, a sensing unit configured to sense an attachment of the main body to a first device, the first device configured to receive the infrared signal, and a controller configured to control the infrared communication unit to generate an infrared signal for the first device on the basis of a control signal associated with the first device, received from a second device through the communication unit, when the attachment of the main body to the first device is sensed, and configured to transmit the generated infrared signal to the first device through the infrared communication unit.
Abstract:
A vacuum suction unit (1) is provided. The vacuum suction unit (1) includes a cover (10), an impeller (20), a motor, a guide device (30) which includes a guide body (310) and a guide vane (330), a flow guide (50) which is disposed below the guide device (30) and guides the air guided by the guide device (30) toward the stator (80), and a motor housing (60) which accommodates the motor and includes an air outlet (602). Here, a guide surface (501) at least a part of which has a diameter reduced as getting downward is formed at a bottom surface of the flow guide (50), the guide vane (330) includes a first guide vane (331) which is provided on a side of the guide body (310) and guides the air ejected from the impeller (20), and an inlet angle (θ1) of the first guide vane (331) is within a range from 10 to 25 degrees.
Abstract:
A cooker and methods of manufacturing and controlling the same. The cooker including a first coating layer that is a general ceramic enamel layer and a second coating layer that includes phosphorus oxide-based components are coated on a surface of a cavity corresponding to the inner surface of the cooking chamber. Therefore, the inside of the cooking chamber can be more easily cleaned.
Abstract:
Disclosed is a laundry treating apparatus, and the laundry treating apparatus of an embodiment of the disclosure comprises a cabinet and a drum which is provided in the cabinet and accommodates clothing, wherein the cabinet comprises a front panel forming the front surface of the cabinet and a top panel forming the upper surface of the cabinet. The top panel comprises an upper surface portion defining the upper surface, and the upper surface portion is disposed at a position higher than the upper end of the front panel.