Abstract:
According to certain embodiments, an electronic device comprises a first housing including a first space; a second housing slidably coupled to the first housing to slide in a first direction in a slid-out state and retract in a second direction opposite the first direction in a slid-in state, the second housing and including a second space; a bendable member connected to the first housing and at least partially accommodated in the second space in the slid-in state and having at least a portion configured to form a substantially same plane as a surface of the first housing in the slid-out state; a flexible display including a first portion disposed so as to be visible from an outside of the electronic device in the slid-in state and a second portion extending from the first portion accommodated in the second space; and at least one electronic component disposed in the first space and exposed to the outside of the electronic device through a first hole in the first housing, wherein the first hole is disposed to overlap at least a portion of the second housing in the slid-in state and is exposed to the outside in the slid-out state.
Abstract:
An electronic apparatus is provided. The electronic apparatus includes a camera, a processor and a memory configured to store at least one instruction executable by the processor where and the processor is configured to input audio data to an artificial intelligence model corresponding to user information, and obtain output audio data from the artificial intelligence model, and the artificial intelligence model is a model learned based on first learning audio data obtained by recording a sound source with a first recording device, second learning audio data obtained by recording the sound source with a second recording device, and information on a recording device for obtaining the second learning audio data, and the second learning audio data is binaural audio data.
Abstract:
The present invention relates to a device and a method for detecting a change in characteristics of a hearing aid and informing a user of the change. In one embodiment, a first input audio signal and an second amplified audio signal transmitted from the a hearing aid are received via a communication unit. Simulation is conducted of amplifying of the first input audio signal according to pre-stored auditory information stored in advance, and the processed simulated amplified first input audio signal is compared with the amplified audio signal. An alarm signal is output when a difference between the processed simulated amplified first input audio signal and the second amplified audio signal is greater than a predetermined threshold.
Abstract:
An electronic device identifies an occurrence of a first event for displaying a first notification message on at least a portion of the display module of the first shape, detects a beginning of shape transformation of the display module from the first shape to the second shape, and maintains the display of the first notification message during the shape transformation of the display module.
Abstract:
An electronic device includes an extendable support including a first structure and a second structure to receive at least a portion of the first structure and guide relative movement of the first structure with respect to the second structure, a display having compact and expanded positions based on the relative movement of the first structure, a motor to generate an output force to cause the relative movement of the first and second structures, a sensor to detect a posture in which the electronic device is positioned, and a processor to change the output force of the motor based on the posture of the electronic device detected by the sensor.
Abstract:
A method of driving a light emitting diode (LED) backlight unit, which includes a plurality of LED elements that are connected to a plurality of gate lines and a plurality of source lines, includes generating a plurality of gate signals applied to the plurality of gate lines. While the plurality of gate signals are generated, a non-overlap interval between activation intervals of two adjacent gate signals is generated. All of the plurality of gate signals are deactivated during the non-overlap interval. A plurality of source signals applied to the plurality of source lines are generated. While the plurality of source signals are generated, a high-impedance (Hi-Z) interval included in the non-overlap interval is generated. At least some of the plurality of source signals have a high-impedance state during the high-impedance interval.
Abstract:
An electronic device including a rollable display is provided. The electronic device includes a housing including a main body, a first planar part disposed at one end of the main body, and a second planar part disposed at another end of the main body and disposed in parallel to the first planar part, a rollable display drawn out from an interior of the housing or inserted into the interior of the housing through a slit formed in a direction perpendicular to the first planar part, and a handler member combined with an end of the rollable display and including a first magnet. A second magnet having a polarity different from a polarity of the first magnet disposed within the main body so that the handler member is attached to a surface of the main body in a state in which a part of the rollable display has been drawn out from the interior of the housing.
Abstract:
An electronic device is provided. The electronic device includes a housing, a first display slidable through the housing, a portion of the first display being exposed to an outside through the housing, a region of the first display being capable of being changed based on a sliding of the first display through the housing, a second display spaced apart from the exposed portion of the first display and forming a flat surface with the exposed portion of the first display, an optical member positioned on a portion of the second housing associated with the exposed part of the first display; and at least one processor configured to output light through a first portion of the first display associated with the optical member, the light being diffused through the optical member.
Abstract:
An electronic device includes a first housing including a first space and including a first support member. The device includes a second housing including a second space, including a second support member, and slidably combined with the first housing. The device includes a bendable member connected to the first housing, being at least partly accommodated in a second space in a slide-in state, and at least partly forming the same plane with the first housing in a slide-out state. The device includes a flexible display including a first part disposed to be seen from an outside in the slide-in state, and a second part not seen from the outside. The device includes at least one first antenna and a wireless communication circuit configured to transmit or receive a wireless signal. The first support member includes a non-overlapping part not overlapping the second support member in the slide-in state.
Abstract:
An electronic device is provided, which may include a first housing; a second housing configured to accommodate at least a portion of the first housing and guide a sliding movement of the first housing; a display including a first display area disposed on the first housing and a second display area extending from the first display area; a PCB configured to accommodate at least one electronic component; a support member configured to support the PCB; a side wall member connected to the support member and facing at least a portion of the first housing; a heat dissipation sheet configured to receive heat from the at least one electronic component, the heat dissipation sheet being disposed on the support member and the side wall member; and a heat dissipation member disposed on the side wall member and facing the heat dissipation sheet.