Abstract:
A method and an apparatus for controlling to lock or unlock in the portable terminal having a transparent display that has two display surfaces and is capable of double-sided touch input and double-sided display is provided. The method includes activating the transparent display according to a lock state or an unlock state of the transparent display; displaying a lock or unlock area, which notifies whether a display surface is locked, in a preset area of at least one of display surfaces of the transparent display; and changing the lock state or the unlock state of the at least one of the display surfaces of the transparent display and displaying whether the changed state is the lock state or the unlock state in the lock or unlock area of the at least one display surface, when a touch input is received in the lock or unlock area.
Abstract:
A memory device including: a memory cell array including a plurality of memory blocks; a voltage generator configured to generate an erase voltage and row line voltages to be provided to a target block of the plurality of memory blocks on which an erase operation is to be performed; and a control logic circuit configured to control the memory cell array and the voltage generator, wherein, during the erase operation, after a precharge voltage is applied to a plurality of string select lines connected to the target block, the control logic circuit is further configured to provide the erase voltage to a plurality of bit lines connected to the plurality of string select lines, wherein the plurality of string select lines includes a first string select line and a second string select line, wherein a first distance between the first string select line and ends of a plurality of word lines connected to the target block is less than a second distance between the second string select line and the ends of the plurality of word lines, and wherein a first threshold voltage of a first transistor connected to the first string select line is higher than a second threshold voltage of a second transistor connected to the second string select line.
Abstract:
A non-volatile memory device according to some example embodiments includes a memory block including a plurality of cell strings including a plurality of string selection transistors and a plurality of memory cells, a first string selection line connected to a string selection transistor of a first cell string of the plurality of cell strings, and a second string selection line connected to a string selection transistor of a second cell string of the plurality of cell strings; and a control circuit configured to control a recovery operation to apply a recovery voltage with different driving strengths to the first string selection line and the second string selection line.
Abstract:
A memory device includes a memory cell array having a plurality of memory blocks therein, including a target memory block. A voltage generator is provided, which is configured to generate an erase voltage and row line voltages, which are provided to the target memory block upon which an erase operation is to be performed. Control logic is provided, which is configured to control the memory cell array and the voltage generator. In addition, during operation, the erase voltage is provided to at least one of a bitline or a common source line associated with the target memory block, and a gate line of a transistor provided with the erase voltage is precharged before the erase voltage is provided to the at least one of the bitline or the common source line of the target memory block.
Abstract:
A robot includes: a camera; a driver configured to control a motion of the robot; a memory configured to store information on a plurality of motions of the robot and a plurality of emotional states of a pet corresponding to the plurality of motions of the robot; and a processor connected to the driver, the camera, and the memory, wherein the processor is configured to: obtain at least one image of the pet through the camera, identify, based on the obtained at least one image the pet and the information stored in the memory, an emotional state of the pet from among the plurality of emotional states of the pet, identify, based on the information stored in the memory, a motion of the robot corresponding to the identified emotional state, from among the plurality of motions, and control the driver to cause the robot to perform the identified motion of the robot.
Abstract:
An electronic device is disclosed that includes a display, a display driver IC that drives the display, and at least one processor operationally connected with the display and the display driver IC. The display driver IC moves a display location of one or more pixel data corresponding to an image associated with at least one application from a specified point by a specified distance on an active area of the display. The at least one processor is configured to scale up a first portion of the image by a specified range based on the specified distance, scale down a second portion of the image by the specified range based on the specified distance, and display the image on the active area based on the scaled-up first portion or the scaled-down second portion. In addition, various embodiments recognized through the specification are possible.
Abstract:
Disclosed is an electronic device including a display panel, an oscillator generating a clock signal, a display driving integrated circuit (DDI) generating first time information, using the clock signal, a sensor, and at least one processor identifying a variable measured by using the sensor or second time information corresponding to a reference time. The at least one processor is configured to measure a variable, using the sensor, to correct an error time between the first time information and second time information corresponding to a reference time, based on the variable, and to deliver the corrected error time or the second time information to the DDI such that the DDI corrects the first time information based on the corrected error time to display a screen of the display panel. Besides, various embodiments as understood from the specification are also possible.
Abstract:
An electronic device according to various embodiments may comprise: a display; a processor; a memory; and a display drive circuit for driving the display panel, wherein the display drive circuit is configured to: receive first frame data including at least a part of a second content from the processor while a first content is displayed using the display panel; keep from storing the received first frame data in the memory at least temporarily for a designated period of time; receive second frame data including at least a part of the second content from the processor after the designated period of time; store the received second frame data in the memory; and display the second content on the display panel according to the second frame data.
Abstract:
An electronic device includes a housing, a display, a power management circuit, and a processor. The processor is configured to control the display to operate based on a first designated scheme during operation in a first designated state. The processor is also configured to control the display to operate based on a second designated scheme corresponding to a second designated state when a first event for switching a state of the electronic device is confirmed. The processor is further configured to control the power management circuit to receive a voltage lower than a voltage applied to the processor in the first state. The display is configured to display at least one object in the second designated state. The display also is configured to change and display a display state of the at least one object when information indicating confirmation of a second event with respect to the electronic device is acquired from the processor.
Abstract:
An electronic device and an operating method are provided to determine, based on an orientation of the electronic device, a first display unit facing a first direction and a second display unit disposed on the rear surface of the first display unit; detect, on the basis of the motion of the electronic device, the changing of the direction of the first display unit from the first direction to a second direction; and display content on the second display unit in response to the changing of the direction of the first display unit from the first direction to the second direction.