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    • 2. 发明授权
    • Method and apparatus for controlling audio output
    • 用于控制音频输出的方法和装置
    • US09414174B2
    • 2016-08-09
    • US14013319
    • 2013-08-29
    • Samsung Electronics Co., Ltd.
    • Hanho KoJeheon Park
    • H04R19/01H04R29/00H03G1/02H04R5/04H04R3/00H04R5/033
    • H04R29/001H03G1/02H04R3/00H04R5/033H04R5/04
    • A method and portable terminal for automatically controlling an output volume of audio output of a head phone when the head phone is connected to a portable terminal are provided. The method of controlling an audio output in a portable terminal, includes outputting a test audio signal to a head phone for a preset playback time when the head phone is connected to the portable terminal; collecting neighboring noise interval information and impedance interval information of the head phone while the test audio signal is output to the head phone; determining impedance of the head phone based on the neighboring noise interval information and the impedance interval information; determining a gain of an audio signal based on the determined impedance; and amplifying the audio signal in proportion to the determined gain, and outputting the amplified audio signal to the head phone.
    • 提供了一种用于在头戴式耳机连接到便携式终端时自动控制头戴式耳机的音频输出的输出音量的方法和便携式终端。 控制便携式终端中的音频输出的方法包括当头戴式电话连接到便携式终端时,将测试音频信号输出到头戴式电话以进行预设播放时间; 在测试音频信号被输出到头戴式电话的同时收集头戴式耳机的相邻噪声间隔信息和阻抗间隔信息; 基于所述相邻噪声间隔信息和所述阻抗间隔信息来确定所述头戴式电话机的阻抗; 基于所确定的阻抗确定音频信号的增益; 并根据所确定的增益放大音频信号,并将放大的音频信号输出到头戴式电话。
    • 5. 发明授权
    • Microphone, electronic apparatus including microphone and method for controlling electronic apparatus
    • US11227619B2
    • 2022-01-18
    • US16645857
    • 2018-10-04
    • Samsung Electronics Co., Ltd.
    • Jeheon ParkKiwon KimSunghoon Kim
    • G10L21/0232G10L25/51H04R1/04H04R1/28H04R1/40H04R3/00H04R19/04H04R29/00G10L21/0216
    • Various embodiments of the present invention relate to a microphone, an electronic apparatus including the microphone and a method for controlling the microphone, the electronic apparatus comprising: a substrate comprising a first hole and a second hole into which an audio signal is input; a case that has a resonance space formed thereinside as a first side thereof is opened, a second side thereof is closed, and the first side is coupled with the substrate; a first audio generation unit that converts an audio signal input through a first hole of the substrate into an electrical signal, and comprises a first plate and a first membrane spaced apart from each other; a second audio generation unit that converts an audio signal input through a second hole of the substrate into an electrical signal, and comprises a second plate and a second membrane spaced apart from each other; a sound insulation wall that is disposed between the first audio generation unit and the second audio generation unit, and separates spaces of the first audio generation unit and the second audio generation unit as a first side thereof is coupled with the case and the second side thereof is coupled with the substrate; a microphone that is electrically connected to the first audio generation unit and the second audio generation unit, and comprises a signal processing unit for removing a noise signal exceeding a threshold value by analyzing the audio signals transmitted through the first audio generation unit and the second audio generation unit; and a processor that is electrically coupled with the microphone, wherein the sensitivity of the first audio generation unit is configured to be lower than the sensitivity of the second audio generation unit, so that the microphone can correctly receive the user's audio command by removing noise greater than or equal to a predetermined level. Various embodiments other than the various embodiments disclosed in the present invention are possible.