Abstract:
Disclosed is a wireless headset including: a main body; sub-bodies detachably attached to both lateral ends of the main body by a retractable cable; earpieces detachably attached to the sub-bodies and configured to output a sound when supportedly installed in the sub-bodies; and a controller configured to output the sound wirelessly through the earpieces when the earpieces are separated from the sub-bodies.
Abstract:
A headset is provided. The headset includes: a hook hung on a user's neck; a pair of sound output units connected to both end parts of the hook; and a clipping module provided to at least one sound output unit and coupled to a cap worn by the user to allow the at least one sound output unit to be detachable.
Abstract:
Provided is a nozzle of a cleaner. The a nozzle of a cleaner includes a nozzle body provided with a suction passage configured to suction air, a rotation cleaning part rotatably disposed below the nozzle body and provided with a rotation plate to which a rag is attached, a driving device provided in the nozzle body and comprising a driving motor configured to drive the rotation cleaning part, a water tank separably mounted on an upper portion of the nozzle body, the water tank being configured to store water to be supplied to the rotation cleaning part, a water supply passage provided in the nozzle body and configured to communicate with the water tank, the water supply passage being configured to supply the water of the water tank to the rotation cleaning part, a water pump disposed on the water supply passage, the water pump being connected to a pump motor and configured to generate a flow while rotating and a water adjusting unit mounted on the nozzle body and of which at least a portion of the water adjusting unit is exposed through a rear surface or a top surface of the nozzle body at a rear of the nozzle body thereby enabling a user standing on the same floor as the nozzle body to manipulate the water adjusting unit by using a foot of the user, the water adjusting unit being configured to adjust an on/off operation and a rotation speed (rpm) of the pump motor.
Abstract:
Provided is a nozzle of a cleaner. The a nozzle of a cleaner includes a nozzle body provided with a suction passage configured to suction air, a rotation cleaning part rotatably disposed below the nozzle body and provided with a rotation plate to which a rag is attached, a driving device provided in the nozzle body and comprising a driving motor configured to drive the rotation cleaning part, a water tank separably mounted on an upper portion of the nozzle body, the water tank being configured to store water to be supplied to the rotation cleaning part, a water supply passage provided in the nozzle body and configured to communicate with the water tank, the water supply passage being configured to supply the water of the water tank to the rotation cleaning part, a water pump disposed on the water supply passage, the water pump being connected to a pump motor and configured to generate a flow while rotating and a water adjusting unit mounted on the nozzle body and of which at least a portion of the water adjusting unit is exposed through a rear surface or a top surface of the nozzle body at a rear of the nozzle body thereby enabling a user standing on the same floor as the nozzle body to manipulate the water adjusting unit by using a foot of the user, the water adjusting unit being configured to adjust an on/off operation and a rotation speed (rpm) of the pump motor.
Abstract:
Disclosed is a method of controlling laundry treating apparatus (100) including supplying power to a driving unit configured to rotate a drum (5), an input unit (911) configured to input a control command and a communication unit configured to receive a remote control command transmitted from a remote control device, setting a remote control mode so as to operate the driving unit (71) if the communication unit (97) receives the remote control command, and executing a standby operation so as to cut off power supply to the driving unit and to maintain power supplied to the communication unit, when the remote control mode is set.
Abstract:
A heat exchanger according to the present disclosure includes: a heat transfer tube configured to guide a refrigerant; and a plurality of fins each having a through-hole through which the heat transfer tube is vertically installed, the plurality of fins being spaced apart from each other to allow air to pass in a first direction, wherein each of the plurality of fins includes: a corrugated portion formed in a zigzag shape in the first direction; a sheet portion disposed to surround the through-hole; and a connecting portion configured to connect the sheet portion and the corrugated portion, and wherein an inclined contact point, which is the highest position of the connecting portion and the corrugated portion, is located lower than a valley portion contact point, which is the lowest position of the connecting portion and the corrugated portion in a second direction perpendicular to the first direction. Thus, by controlling an angle of a contact point, which is an air stagnation section between a sheet portion through which a through-hole passes and a corrugated portion, the mixing of air passing through the sheet portion and air passing through an inclined portion may be facilitated. In addition, as a coordinate of a contact point, which is the highest point of an inclined portion between the sheet portion and the corrugated portion, is limited within a predetermined range, the flow of air may be induced without causing stagnation to thereby improve the heat transfer performance.
Abstract:
Provided is a nozzle of a cleaner. The a nozzle of a cleaner includes a nozzle body provided with a suction passage configured to suction air, a rotation cleaning part rotatably disposed below the nozzle body and provided with a rotation plate to which a rag is attached, a driving device provided in the nozzle body and comprising a driving motor configured to drive the rotation cleaning part, a water tank separably mounted on an upper portion of the nozzle body, the water tank being configured to store water to be supplied to the rotation cleaning part, a water supply passage provided in the nozzle body and configured to communicate with the water tank, the water supply passage being configured to supply the water of the water tank to the rotation cleaning part, a water pump disposed on the water supply passage, the water pump being connected to a pump motor and configured to generate a flow while rotating and a water adjusting unit mounted on the nozzle body and of which at least a portion of the water adjusting unit is exposed through a rear surface or a top surface of the nozzle body at a rear of the nozzle body thereby enabling a user standing on the same floor as the nozzle body to manipulate the water adjusting unit by using a foot of the user, the water adjusting unit being configured to adjust an on/off operation and a rotation speed (rpm) of the pump motor.
Abstract:
Disclosed herein is a remote controller capable of remotely controlling a plurality of devices. According to one embodiment of the present invention, the remote controller includes a transmitter to transmit a transmitting signal, a receiver to receive a reflective signal from a first reflection pattern, an image projector to project an image outward, an input unit provided with a plurality of buttons, and a controller to perform a control operation to enter a remote control mode for a first device corresponding to the first reflection pattern based on the reflective signal from the first reflection pattern and to perform a control operation to project a remote control window for remote control of the first device outward through the image projector. Thereby, remote control may be performed based on image projection.
Abstract:
A heat exchanger includes: a heat transfer pipe to guide a refrigerant; and a plurality of fins spaced apart from each other to allow air to pass in a first direction, the plurality of fins each having a through-hole through which the heat transfer pipe is installed, wherein the plurality of fins each includes: a corrugated portion formed in a zigzag shape proceeding in the first direction, which is an air flow direction; and a sheet portion recessed from the corrugated portion around the through-hole to be parallel with the first direction, and, when dividing a fin, among the plurality of fins, into a plurality of units with respect to one sheet portion, an area of the sheet portion corresponds to 16% or more of an area of one unit, thereby allowing air to be actively mixed in a region adjacent to the corrugated portion and the through-hole.