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    • 17. 发明申请
    • Multi-mode Microphones
    • 多模式话筒
    • US20160219374A1
    • 2016-07-28
    • US14604389
    • 2015-01-23
    • Silicon Audio Directional, LLC.
    • Neal A. HallDonghwan Kim
    • H04R17/02H04R19/04H04R25/00H04R1/04
    • H04R17/02H04R1/04H04R19/005H04R19/016H04R19/04H04R25/00H04R2201/003H04R2217/01H04R2225/55H04R2499/11
    • In some embodiments, a sensor system may include a deformable structure and a sensing element. The deformable structure may include at least one layer of piezoelectric material and at least one actuator port disposed on the at least one layer of piezoelectric material. The deformable structure may deform in response to external phenomenon. The at least one actuator port may be configured to actuate the at least one layer of piezoelectric material via application of an electrical signal to the at least one layer of piezoelectric material. The at least one layer of piezoelectric material may be configured to apply a force to the deformable structure when actuated. The sensing element may be configured to sense deformation of the deformable structure capacitively, optically, or via a sensing port according to embodiments.
    • 在一些实施例中,传感器系统可以包括可变形结构和感测元件。 可变形结构可以包括至少一层压电材料和设置在至少一层压电材料上的至少一个致动器端口。 可变形结构可能会因外部现象而变形。 至少一个致动器端口可以被配置为通过将电信号施加到至少一层压电材料来致动至少一层压电材料。 所述至少一层压电材料可被构造成在致动时向可变形结构施加力。 感测元件可以被配置为根据实施例电容地,光学地或经由感测端口感测可变形结构的变形。
    • 18. 发明申请
    • MICROPHONE
    • 麦克风
    • US20160182984A1
    • 2016-06-23
    • US14924015
    • 2015-10-27
    • Hiroshi AKINO
    • Hiroshi AKINO
    • H04R1/02H04R19/04
    • H04R1/026H04R1/04H04R19/016H04R19/04
    • The present invention provides a microphone including: a microphone unit including a vibration plate that vibrates in response to sound; a unit board disposed rearward of the vibration plate; a first ground pattern disposed on the rear surface of the unit board; a unit casing accommodating the microphone unit and the unit board; a contact region of the unit casing, the contact region being in contact with the first ground pattern; a main board having a side face having a second ground pattern, the second ground pattern being in contact with the contact region; and an adhesive joining the side face of the main board to the microphone unit.
    • 本发明提供了一种麦克风,包括:麦克风单元,包括响应于声音振动的振动板; 设置在振动板后方的单元板; 设置在所述单元基板的后表面上的第一接地图案​​; 容纳所述麦克风单元和所述单元板的单元壳体; 所述单元壳体的接触区域,所述接触区域与所述第一接地图案​​接触; 主板,其具有具有第二接地图案的侧面,所述第二接地图案与所述接触区域接触; 以及将主板的侧面接合到麦克风单元的粘合剂。
    • 19. 发明申请
    • STEREOPHONIC FOCUSED HEARING
    • STEREOPHONIC聚焦听力
    • US20160157028A1
    • 2016-06-02
    • US14988526
    • 2016-01-05
    • Acoustic Vision, LLC
    • O. Wendell McCracken
    • H04R25/00H04R1/40H04R1/02
    • H04R25/405G02C7/02G02C11/06G02C11/10G02C2202/16H04R1/028H04R19/005H04R19/016H04R25/552H04R25/554H04R2205/041
    • Eyewear for enhanced hearing includes a first sound detector positioned on or adjacent a first lens of the eyewear, and a second sound detector positioned on or adjacent a second lens of the eyewear. A processing unit positioned on the eyewear is in communication with the first and second sound detectors. The processing unit utilizes software that includes instructions for determining a time differential between detection of a sound by the first sound detector and detection of the same sound by the second sound detector. Because the time differential is proportional to the angular displacement of the sound from directly in front of the eyewear or person wearing the eyewear, sound signals corresponding to detected sounds having an angular displacement less than a stored maximum angular displacement value can be preferentially enhanced and transmitted via a data transmission module to a hearing aid device.
    • 用于增强听力的眼镜包括位于眼镜的第一透镜上或与眼镜的第一透镜相邻的第一声音检测器,以及位于眼镜的第二透镜上或附近的第二声音检测器。 位于眼镜上的处理单元与第一和第二声音检测器连通。 处理单元使用包括用于确定由第一声音检测器检测到声音和由第二声音检测器检测相同声音之间的时间差的指令的软件。 由于时差与眼镜直接或戴着眼镜的人的声音的角度位移成比例,因此可以优先增强和发送与具有小于存储的最大角位移值的角度位移的检测到的声音对应的声音信号 通过数据传输模块到助听器装置。
    • 20. 发明授权
    • Switchable attenuation circuit for MEMS microphone systems
    • 用于MEMS麦克风系统的可切换衰减电路
    • US09357296B2
    • 2016-05-31
    • US14099078
    • 2013-12-06
    • Invensense, Inc.
    • Olafur Mar JosefssonJens Gaarde Henriksen
    • H04B15/00H04R3/00H04R3/06H04R19/00H04R19/01H04R19/04
    • H04R3/00H04R3/06H04R19/005H04R19/016H04R19/04
    • A switch control circuit monitors a signal produced by a MEMS or other capacitor microphone. When a criterion is met, for example when the amplitude of the monitored signal exceeds a threshold or the monitored signal has been clipped or analysis of the monitored signal indicates clipping is imminent or likely, the switch control circuit operates one or more switches so as to selectively connect one or more capacitors to a signal line from the microphone, i.e., so as to connect a selected capacitance to the signal line to attenuate the signal from the microphone and, therefore, avoid clipping. The switches may be MOSFET, MEMS or other types of switches co-located with the microphone in a common semiconductor package. Similarly, the capacitors, a circuit that processes the signals from the microphone and/or the switch control circuit may be co-located with the microphone in a common semiconductor package.
    • 开关控制电路监视由MEMS或其他电容器麦克风产生的信号。 当满足标准时,例如当监视信号的幅度超过阈值或被监视信号被限幅或者监视信号的分析指示剪切即将或可能时,开关控制电路操作一个或多个开关,以便 选择性地将一个或多个电容器连接到来自麦克风的信号线,即,将所选择的电容连接到信号线以衰减来自麦克风的信号,并因此避免限幅。 这些开关可以是MOSFET,MEMS或其它类型的开关,其与麦克风在共同的半导体封装中共同定位。 类似地,电容器,处理来自麦克风和/或开关控制电路的信号的电路可以与公共半导体封装中的麦克风共同定位。