Abstract:
The described technology relates to a wearable electronic device. The wearable electronic device may include a touch display, a rim surrounding the touch display, a rim touch sensor disposed on at least a portion of the rim, a band portion that allows the wearable electronic device to be worn on a user's wrist, and a control unit configured to receive a rim touch on the rim through the rim touch sensor and generate a control signal for controlling the wearable electronic device based on at least one of attributes of the rim touch.
Abstract:
Disclosed is a remote controller having a dual touch pad and a method of control using the same, the remote controller including a communication unit, a first touch pad, a second touch pad, an elastic layer, a position sensing unit, and a control unit. The first and second touch pads are installed adjacent to each other, and each have the elastic layer formed thereon, to output first and second selection signals, respectively, to control the control target device. The position sensing unit senses whether the first touch pad and the second touch pad are positioned in a longitudinal direction or in a traverse direction and outputs a third selection signal. The control unit receives at least one of the first to third selection signals from the first touch pad, the second touch pad, or the position sensing unit, and transmits a control signal to the control target device.
Abstract:
An electronic device according to an embodiment of the present invention may include a display configured to display a first screen; a force direction sensing unit configured to detect a force direction of a contact applied to one point by an external object; and a control unit configured to sense an occurrence of a predetermined event to logically divide the display into at least two regions including a first region and a second region, acquire a force direction of a first contact associated with the predetermined event from the force direction sensing unit, determine a region from among the at least two regions to display the first screen according to the force direction of the first contact, and display the first screen on the determined region.
Abstract:
An electronic device according to an embodiment of the present invention may include a display configured to display a first screen; a force direction sensing unit configured to detect a force direction of a contact applied to one point by an external object; and a control unit configured to sense an occurrence of a predetermined event to logically divide the display into at least two regions including a first region and a second region, acquire a force direction of a first contact associated with the predetermined event from the force direction sensing unit, determine a region from among the at least two regions to display the first screen according to the force direction of the first contact, and display the first screen on the determined region.
Abstract:
An electronic device according to an embodiment of the present invention may include a flexible display configured to display a first screen in a first state; a force direction sensing unit configured to sense a force direction of a contact applied to one point by an external object; and a control unit configured to sense an occurrence of a specific data reception event, when the flexible display is changed from the first state to a second state, display a second screen including first information of a first group including information regarding the specific data reception event on the flexible display, and when a force direction of a first contact is acquired in the second state through the force direction sensing unit, display a third screen including second information of the first group including the information regarding the specific data reception event on the flexible display or simultaneously display the second screen and the third screen on the flexible display based on the force direction of the first contact.
Abstract:
The described technology relates to a wearable electronic device. The wearable electronic device may include a touch display, a rim surrounding the touch display, a rim touch sensor disposed on at least a portion of the rim, a band portion that allows the wearable electronic device to be worn on a user's wrist, and a control unit configured to receive a rim touch on the rim through the rim touch sensor and generate a control signal for controlling the wearable electronic device based on at least one of attributes of the rim touch.
Abstract:
The present invention relates to a method for providing a user interface using a multi-point touch capable of immediately carrying out various user commands by changing the direction of force applied to two or more different points inside a touch area, and to an apparatus for same, wherein when contact on two or more different points inside the touch area is sensed, directions of force applied to the two or more points are detected while the contact to the two or more points is maintained when the contact on the two or more points is detected, and a predetermined user command is carried out according to a combination of the directions of force detected from the points.
Abstract:
An electronic device according to an embodiment of the present invention may include: a flexible display; a bending sensing unit configured to sense a first bending and a second bending of the flexible display; and a control unit configured to execute a first function based on a first sensing result of the first bending from the bending sensing unit, and execute a second function based on a second sensing result of the second bending from the bending sensing unit, in which, when the first bending and the second bending correspond to a first predetermined condition, the control unit executes a third function based on the first bending and the second bending sensed by the bending sensing unit.