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    • 3. 发明公开
    • ERGONOMIC TUBULAR ANECHOIC CHAMBERS FOR COMMUNICATION DEVICE
    • ERGONOMISCHEROHRFÖRMIGESCHALLTOTE KAMMERNFÜRKOMMUNIKATIONSVORRICHTUNG
    • EP3095116A1
    • 2016-11-23
    • EP14883521.8
    • 2014-12-31
    • Moser, Scott A.
    • Moser, Scott A.
    • G10L21/02H04M9/08H04R1/08
    • G10K11/002G10K11/16H04M1/19H04M9/08H04R1/02H04R1/083H04R1/086H04R1/225H04R1/342H04R2499/11
    • Disclosed, in general, are devices that provide a substantially sound-tight chamber over a sound source while absorbing fields of sounds from the sound source. In general, the devices feature: an anechoic chamber that is configured to receive a sound source in a substantially sound-tight manner; and an anechoic channel that is in fluid communication with the ambient atmosphere. The anechoic chamber is adapted to capture air containing sound energy generated by the sound source, and distribute the air about an internal surface area on the inside of the chamber, wherein the internal surface area is sufficiently large to dampen or otherwise absorb the sound energy. Preferably, the air is directed from the anechoic chamber through an anechoic channel extending therefrom to the ambient to further dampen or absorb the sound energy. In one configuration, the outer wall of the apparatus is configured to reflect ambient sounds.
    • 通常,公开了一种在声源上提供基本上声音密闭的室的装置,同时从声源吸收声场。 通常,这些装置的特征在于:消声室被构造成以基本上非常紧密的方式接收声源; 以及与环境大气流体连通的消声通道。 消声室适于捕获包含由声源产生的声能的空气,并且分布在室内部的内表面区域周围的空气,其中内表面积足够大以阻尼或以其它方式吸收声能。 优选地,空气从无声室引导通过从其延伸到环境的消声通道,以进一步抑制或吸收声能。 在一种配置中,设备的外壁被配置为反射环境声音。
    • 9. 发明申请
    • ERGONOMIC TUBULAR ANECHOIC CHAMBERS FOR COMMUNICATION DEVICE
    • 用于通信设备的人体管状血管通道
    • WO2015126524A1
    • 2015-08-27
    • PCT/US2014/073080
    • 2014-12-31
    • MOSER, Scott, A.
    • MOSER, Scott, A.
    • G10L21/02H04M9/08H04R1/08
    • G10K11/002G10K11/16H04M1/19H04M9/08H04R1/02H04R1/083H04R1/086H04R1/225H04R1/342H04R2499/11
    • Disclosed, in general, are devices that provide a substantially sound-tight chamber over a sound source while absorbing fields of sounds from the sound source. In general, the devices feature: an anechoic chamber that is configured to receive a sound source in a substantially sound-tight manner; and an anechoic channel that is in fluid communication with the ambient atmosphere. The anechoic chamber is adapted to capture air containing sound energy generated by the sound source, and distribute the air about an internal surface area on the inside of the chamber, wherein the internal surface area is sufficiently large to dampen or otherwise absorb the sound energy. Preferably, the air is directed from the anechoic chamber through an anechoic channel extending therefrom to the ambient to further dampen or absorb the sound energy. In one configuration, the outer wall of the apparatus is configured to reflect ambient sounds.
    • 一般来说,公开了一种在声源上提供基本上声音密闭的室的装置,同时从声源吸收声场。 通常,这些装置特征在于:消声室被配置为以基本上非常紧密的方式接收声源; 以及与环境大气流体连通的消声通道。 消声室适于捕获包含由声源产生的声能的空气,并且将空气分布在室内部的内表面区域上,其中内表面积足够大以阻尼或以其他方式吸收声能。 优选地,空气从无声室引导通过从其延伸到环境的消声通道,以进一步抑制或吸收声能。 在一种配置中,设备的外壁被配置为反射环境声音。