Abstract:
Provided is a wearable device including a main body that is configured to be worn on a specific portion of a user's body, a sensing unit, provided in the main body, that senses a biological signal of a user, a storage unit that collects log information relating to the biological signal, and in which an index pattern relating to a state of the user included in the collected log information is stored, and a controller that sets a reference driving index, using the stored index pattern, in which when it is sensed that the user gets in a vehicle, the controller determines a current driving index corresponding to the biological signal that is sensed before and after the user gets in the vehicle, based on the reference driving index being set, and outputs feedback that notifies the state of the user that corresponds to a result of the determination.
Abstract:
A mobile terminal and a control method therefor are disclosed. The mobile terminal includes a body, a communication unit configured to externally transmit and receive a signal, an input unit configured to receive user input, a display coupled to the body to vary a display region viewed from a front face of the body according to switching between an enlarged display mode and a reduced display mode, and a controller. The controller outputs a message pop-up window and a button corresponding to a notification upon receiving the notification while a first application is being output on the display, receives a first signal for selecting the button, outputs a preview pop-up window for a second application corresponding to the notification while the first signal is maintained, and outputs the second application in a first region when a dragged distance according to the first signal exceeds a first threshold value.
Abstract:
A mobile terminal and a control method therefor are disclosed. The mobile terminal includes a body, an input unit configured to receive user input, a display coupled to the body to vary a display region viewed from a front face of the body according to switching between an enlarged display mode and a reduced display mode, and a controller. The controller receives a first signal in a state in which at least two applications are being executed in split regions of the display, controls output of an icon according to the first signal, controls selection of at least one region among the split regions based on a second signal for the icon, and controls a function of an application which is being executed in a selected region based on a third signal for the icon.
Abstract:
The present invention relates to a mobile terminal having an image capturing function and a control method therefor. The mobile terminal according to one embodiment of the present invention comprises: a camera; a display unit for outputting images received through the camera; and a control unit for outputting the images to a part of an output area of the display unit and controlling the display unit such that the images are outputted in a preset manner, wherein the control unit outputs the image in a region other than a region in which the image is outputted during the capturing on the basis of capturing of the images, such that different images related to an iris are captured.
Abstract:
The present invention relates to a photovoltaic module. A photovoltaic module according to an embodiment of the present invention comprises a solar cell module, a micro-inverter to convert DC power generated by the solar cell module into AC power, a controller to control the micro-inverter's operation, and an interface unit connected to power grid supplying external electrical power and to provide the AC power to the power grid, the controller to control operation of the micro-inverter such that the AC power is matched to the external electrical power flowing into the power grid. The photovoltaic module according to the present invention can provide electrical power generated at solar cell modules through a simple connection to power grid which supplies electrical power to home, reducing consumption of electrical power flowing into home.
Abstract:
An energy storage device, a power management device, a mobile terminal, and a method for operating the same are discussed. The energy storage device includes a battery pack, a communication module to transmit power-on information or energy storage amount information to a power management device and to receive a charge command or discharge command from the power management device, a connector to receive AC power from the internal power network based on the charge command or to output AC power to the internal power network based on the discharge command, and a power converter to, when the charge command is received from the power management device, convert the AC power from the internal power network into DC power based on the charge command, or, when the discharge command is received from the power management device, convert DC power in the battery pack into AC power based on the discharge command.
Abstract:
A mobile terminal and a control method therefor are disclosed. The mobile terminal includes a body, a display coupled to the body to vary a display region viewed from a front of the body according to switching between an enlarged display mode and a reduced display mode, an input unit configured to sense user input, and a controller. The controller outputs a navigation bar on the display in the enlarged display mode, the navigation bar including at least one indicator, and controls a first application among at least one application which is being output in the enlarged display mode according to an input signal of selecting the indicator.
Abstract:
Provided is a control method of an electronic apparatus, the method including displaying content corresponding to a first application in a first area of a display, displaying content corresponding to a second application in a second area of the display, identifying resource allocation information associated with the first application and the second application, and running the first application and the second application based on the identified resource allocation information.
Abstract:
Energy storage devices, servers, and methods for controlling the same are disclosed. The energy storage device can include at least one battery pack, a network interface configured to exchange data with a server, and a connector that receives alternating current (AC) power from an internal power network or outputs AC power to the internal power network. Energy storage device can also include a power converter configured to convert the AC power from the internal power network into direct current (DC) power based on the information about the power to store when information about power to store is received from the server, or, convert DC power stored in the battery pack into AC power based on the information about the power to output when information about power to output to the internal power network is received from the server. Accordingly, energy may be more efficiently stored.
Abstract:
Energy storage devices, servers, and methods for controlling the same are disclosed. The energy storage device can include at least one battery pack, a network interface configured to exchange data with a server, and a connector that receives alternating current (AC) power from an internal power network or outputs AC power to the internal power network. Energy storage device can also include a power converter configured to convert the AC power from the internal power network into direct current (DC) power based on the information about the power to store when information about power to store is received from the server, or, convert DC power stored in the battery pack into AC power based on the information about the power to output when information about power to output to the internal power network is received from the server. Accordingly, energy may be more efficiently stored.