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    • 21. 发明公开
    • 구동력이 우수한 3코일 타입의 정원창 구동 진동체
    • 具有卓越驾驶力量的三线圈蜗轮蜗杆蜗杆振动器
    • KR1020120139026A
    • 2012-12-27
    • KR1020110058541
    • 2011-06-16
    • 경북대학교 산학협력단
    • 조진호임형규성기웅이정현
    • H04R9/04H04R25/00
    • H04R9/066H04R25/606
    • PURPOSE: A round window driving vibrator of a three-coil type with improved driving force is provided to reduce the volume of the vibrator and power consumption by obtaining larger driving force than that of an existing electromagnetic vibrator. CONSTITUTION: A round window driving vibrator(100) comprises a permanent magnet(110), a coil member(120), a vibration plate(130), and a supporting plate(140). The round window driving vibrator further includes a vibration transfer member(150) and a vibration control member(152). The permanent magnet comprises a pair of magnets which face each other having the same polarity. The permanent magnet is a 3 pole type of SNS(south, north, south) having a central part of a straight polarity (+) and an upper part and a lower part of a negative polarity (-). The coil member comprises a first coil which is coiled around a central part of the permanent magnet and a second coil and a third coil which are coiled around an upper part and a lower part of the permanent magnet.
    • 目的:提供一种具有改进驱动力的三线圈类型的圆窗驱动振动器,通过获得比现有电磁振动器更大的驱动力来减小振动器的体积和功率消耗。 构成:圆窗驱动振动器(100)包括永磁体(110),线圈构件(120),振动板(130)和支撑板(140)。 圆窗驱动振动器还包括振动传递构件(150)和振动控制构件(152)。 永磁体包括一对具有相同极性的彼此相对的磁体。 永磁体是三极型SNS(南,北,南),具有直极性(+)的中心部分和负极性( - )的上部和下部。 线圈构件包括围绕永磁体的中心部分卷绕的第一线圈和围绕永磁体的上部和下部卷绕的第二线圈和第三线圈。
    • 22. 发明授权
    • 액티브 지연방법 및 이를 이용한 개선된 무선 양이 보청기
    • 主动延迟方法,并使用此改进无线双边听力助听器
    • KR101209126B1
    • 2012-12-06
    • KR1020110062399
    • 2011-06-27
    • 경북대학교 산학협력단
    • 조진호성기웅이정현김명남우상효
    • H04R3/00H04R25/00
    • H04R25/43H04R25/554H04S1/00
    • PURPOSE: An active delay method and an improved wireless binaural hearing aid using the same are provided to estimate a possible delay by checking a state of a wireless channel. CONSTITUTION: A first hearing aid comprises a first microphone, an amplifier, and a wireless transmitting device. The wireless transmitting device receives signals from a second microphone, the amplifier, the wireless transmitting device. An active delay circuit synchronizes the received signals with the signals which are obtained from the second microphone. A neural network circuit synchronizes the delayed signal. A speaker converts the synchronized signal into an audio signal. The active delay circuit comprises a received signal strength measuring unit which obtains intensity of the received signal and an adaptation delaying unit which obtains delay time per wireless data packet of the received signal.
    • 目的:提供一种主动延迟方法和改进的使用其的无线双耳助听器,以通过检查无线信道的状态来估计可能的延迟。 构成:第一助听器包括第一麦克风,放大器和无线发射装置。 无线发送装置从第二麦克风,放大器,无线发送装置接收信号。 有源延迟电路使接收的信号与从第二麦克风获得的信号同步。 神经网络电路同步延迟信号。 扬声器将同步信号转换成音频信号。 有源延迟电路包括获得接收信号强度的接收信号强度测量单元和获得接收信号每无线数据分组的延迟时间的自适应延迟单元。
    • 23. 发明授权
    • 다채널 마이크로폰 및 이를 구비한 이식형 보청기
    • 多通道麦克风和可植入听力装置
    • KR101083771B1
    • 2011-11-18
    • KR1020100090757
    • 2010-09-15
    • 경북대학교 산학협력단
    • 조진호이정현정의성성기웅
    • H04R25/00H04R1/40H04R5/027
    • H04R25/405H04R1/406H04R5/027H04R25/60H04R2225/43H04R2410/01
    • PURPOSE: A multi-channel microphone and a portable hearing aid including the same are provided to transfer only acoustic signal which wants to a vibrator by eliminating noise which is formed at the human body inside. CONSTITUTION: A main body(10) comprises a space having predetermined volume on upper and lower surface. A top sensor(21) changes an external audio signal into an electric signal in the upper surface of the main body. A bottom sensor(22) changes a vivo audio signal into an electric signal in a lower surface space of the main body. A top vibrating film(31) is installed in the top sensor outside. A bottom vibrating film(32) is installed in the bottom sensor outside. A coating part(40) is attached to the outer surface of the vibrating film and the bottom vibrating film. A first output terminal(51) transfers the electric signal which is changed from the top sensor to an adaptive filter. A second terminal transfers the electric signal which is changed from the bottom sensor to the adaptive filter. A first feed-through(61) and a second feed-through(62) respectively surround the first output terminal and the second output terminal.
    • 目的:提供一种多声道麦克风和包括其的便携式助听器,以通过消除在人体内部形成的噪声来仅传输想要振动器的声信号。 构成:主体(10)包括在上表面和下表面上具有预定体积的空间。 顶部传感器(21)将外部音频信号改变为主体上表面的电信号。 底部传感器(22)将体内音频信号改变为主体的下表面空间中的电信号。 顶部传感器外部安装有顶部振动膜(31)。 底部振动膜(32)安装在底部传感器外部。 涂覆部分(40)附着在振动膜的外表面和底部振动膜上。 第一输出端子(51)将从顶部传感器改变的电信号传送到自适应滤波器。 第二端子将从底部传感器改变到自适应滤波器的电信号传送。 第一馈通(61)和第二馈通(62)分别围绕第一输出端子和第二输出端子。
    • 26. 发明授权
    • 링잉을 방지하기 위한 통신 회로 및 그 통신 방법
    • 用于防止振铃的通信电路及其通信方法
    • KR101608725B1
    • 2016-04-04
    • KR1020150088358
    • 2015-06-22
    • 경북대학교 산학협력단
    • 조진호김종훈정의성신동호임형규성기웅
    • H04R25/00
    • 링잉(ringing)을방지하기위한통신회로가개시된다. 본통신회로는, 입력된펄스형태의제1 및제2 음향신호성분을증폭하는증폭부, 증폭된제1 및제2 음향신호성분의공통성분을제거하는필터링부, 체외기코일을구비하며, 체외기코일을이용하여공통성분이제거된증폭된제1 및제2 음향신호성분으로부터전파를생성하는전파생성부및 공통성분이제거된증폭된제1 및제2 음향신호성분의값이동일하여체외기코일의양단에과도전압이발생되면, 체외기코일의양단을단락시켜과도전압을제거하는링잉방지부를포함한다. 그에따라, 사용자편의성이향상된다.
    • 公开了一种用于防止振铃的通信电路。 通信电路包括:放大单元,用于放大输入脉冲形式的第一和第二声音信号分量; 滤波单元,用于去除放大的第一和第二声音信号分量的公共分量; 无线电波发生单元,其具有在身体外部的装置的线圈,并且通过使用身体外部的装置的线圈从放大的第一和第二声音信号分量产生无线电波,通过该线圈除去公共分量; 以及防振单元,用于当身体外部装置的线圈的两端产生过大的电压时,通过使身体外部的线圈的两端短路来去除过大的电压,因为放大的第一和第二声音的值 除去公共部件的信号分量是相同的。 因此,提高了用户的便利性。
    • 28. 发明公开
    • 설치가 용이한 이식형 보청기용 마이크로폰
    • 易于使用的易于安装的麦克风
    • KR1020140104348A
    • 2014-08-28
    • KR1020140013228
    • 2014-02-05
    • 경북대학교 산학협력단
    • 조진호이규엽임형규성기웅이정현우승탁
    • H04R25/00
    • H04R19/005B81B2201/0257H04R25/604H04R25/65
    • The present invention relates to an easily installable microphone for an implantable hearing aid. The present invention includes a body part which includes a cylindrical housing which penetrates myringa and a microphone control part which is installed in the cylindrical housing and changes a sound signal into an electric signal; a sound collection part which is a path for transferring external sound to the inner part of the body and is formed in one end of the body part in the direction of meatus acusticus externus; and a wire connection part which connects the microphone control part and a hearing aid and is formed in the other end of the body part in the direction of tympanum. The present invention easily installs the microphone on the myringa with a noninvasive method compared to an existing method and prevents the sensitivity attenuation of the microphone, thereby improving the availability of an implantable hearing aid in future.
    • 本发明涉及可植入式助听器的易于安装的麦克风。 本发明包括一个主体部分,它包括一个穿过鼓膜的圆柱形壳体和一个安装在圆柱形壳体中的麦克风控制部分,并将一个声音信号改变成电信号; 声音收集部,其是将外部声音传递到身体的内部的路径,并且形成在身体部分的一侧,沿着牙齿外侧的方向; 以及连接麦克风控制部和助听器并且沿着鼓膜的方向形成在主体部的另一端的电线连接部。 本发明与现有方法相比,可以以非侵入性的方法将麦克风轻松地安装在火鸡上,并且防止麦克风的灵敏度衰减,从而提高将来可植入式助听器的可用性。
    • 29. 发明公开
    • 압전특성을 가진 나노와이어와 집적회로를 결합한 초소형 마이크로폰
    • 具有压电纳米线和集成电路的麦克风
    • KR1020130044761A
    • 2013-05-03
    • KR1020110108981
    • 2011-10-24
    • 경북대학교 산학협력단
    • 성기웅조수영임형규
    • H04R17/02H01L41/09
    • H04R17/02H01L41/09H01L2924/13091
    • PURPOSE: A miniature microphone which combines an integrated circuit with a nanowire having a piezoelectric property is provided to maximize a piezoelectric effect. CONSTITUTION: A miniature microphone(100) includes a membrane vibrating plate(110), a piezoelectric nanowire(120), and an integrated circuit part(135). A sound reaches the membrane vibrating plate, and the membrane vibrating plate causes a displacement. The piezoelectric nanowire coverts the vibration of the membrane vibrating plate due to the sound into an electric signal by contacting with the membrane vibrating plate. The integrated circuit part amplifies the signal transformed in the piezoelectric nanowire. The integrated circuit part forms a n+ channel, a source electrode(130), a drain electrode(!40), a resistor(141), a gate electrode(160), a SiO2 layer(165), and a power source terminal(150) on a p type semiconductor substrate(170) which is a n channel MOSFET device.
    • 目的:提供一种结合集成电路和具有压电特性的纳米线的微型麦克风,以最大化压电效应。 构成:微型麦克风(100)包括膜振动板(110),压电纳米线(120)和集成电路部分(135)。 声音到达膜振动板,膜振动板引起位移。 压电纳米线通过与膜振动板接触而将声音由于声音覆盖到电信号中而覆盖膜振动板的振动。 集成电路部分放大在压电纳米线中变换的信号。 集成电路部分形成n +沟道,源电极(130),漏电极(!40),电阻器(141),栅电极(160),SiO 2层(165)和电源端子 150)在作为沟道MOSFET器件的ap型半导体衬底(170)上。