Abstract:
A method of determining an operation mode of a hearing device and the hearing device may include detecting an input signal of the hearing device, determining the operation mode of the hearing device by determining whether the input signal is a designated signal related to a programming mode of the hearing device, and controlling the hearing device according to the operation mode.
Abstract:
A mobile electronic device includes a display including a flat portion, a first side portion extending from one side of the flat portion, and a second side portion formed extending from another side of the flat portion; and a frame including a flat part disposed under the flat portion of the display, a first side part formed at a first edge of the flat part, and a second side part formed at a second edge of the flat part, the flat part being disposed between the first side part and the second side part. The display includes an external protective layer and a panel module disposed under the external protective layer. The first side part includes a first support portion and a second support portion formed adjacent to the first support portion and having a step difference with the first support portion.
Abstract:
An electronic device having a curved surface display area, the electronic device including: a display including: glass including an edge having a certain curvature; an opaque layer disposed at the edge of the glass; and a panel module layer including a non-display area disposed under the opaque layer; and a housing supporting the display.
Abstract:
An electronic device includes a display module that outputs a screen by using supplied power, and a heat sink with an electric shock prevention function prevents an electric shock accident by using a stable insulation structure. An inner housing is disposed under the display module, and the heat sink is disposed between the display module and the inner housing. A surface of the heat sink faces the inner housing is insulated, and an outer housing is disposed under the inner housing.
Abstract:
Disclosed is a hearing device that may classify sound environment based on a life pattern, and categorize sound information using a sound environment category set based on the life pattern, and control an output of the sound information based on the classified sound environment.
Abstract:
Disclosed are a terminal and a method of pairing a terminal with a hearing apparatus. The method of pairing a terminal involves verifying whether a hearing apparatus is in contact with a terminal, and pairing the terminal with the hearing apparatus in response to a determination that the hearing apparatus is in contact with the terminal.
Abstract:
A hearing apparatus includes a coil and a coil operation mode selector configured to select either a first coil operation mode for communicating with a wireless communication terminal, or a second coil operation mode for wirelessly charging a battery of the hearing apparatus.
Abstract:
An apparatus and method are provided to determine a parameter using an auditory model of a hearing loss patient. The parameter determination apparatus determines a similarity between a neurogram of a normal subject and a neurogram of a hearing loss patient, and determines an optimal frequency band for the hearing loss patient based on the similarity.
Abstract:
A wireless communication method of a hearing aid includes extracting an audio signal through a first hearing aid, determining a beam forming vector as a beam toward a rear of a user wearing the first hearing aid and a second hearing aid. The method may also include pre-coding of the audio signal using the beam forming vector, and transmitting the pre-coded audio signal to the second hearing aid through a first antenna. The first hearing aid may include the first antenna and the second hearing aid includes a second antenna.
Abstract:
A hearing loss compensation apparatus includes a microphone configured to collect an ambient sound and generate an audio signal based on the collected ambient sound. A hearing loss compensation apparatus body inserted into an ear of a hearing impaired patient is configured to compensate for the audio signal based on auditory characteristics of the hearing impaired patient. The hearing loss compensation apparatus body is further configured to output the audio signal in a direction of an eardrum of the hearing impaired patient. A connection member is configured to connect the microphone to the hearing loss compensation apparatus body and fix a position of the microphone to be inside an ear canal of the hearing impaired patient.