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    • 44. 发明申请
    • ENERGY HARVESTER DEVICE FOR IN-EAR DEVICES USING EAR CANAL DYNAMIC MOTION
    • 使用EAR CANAL动态运动的装置的能量捕获装置
    • US20140312740A1
    • 2014-10-23
    • US13867518
    • 2013-04-22
    • Aidin DELNAVAZJérémie Voix
    • Aidin DELNAVAZJérémie Voix
    • H02N2/18
    • H02N2/18A61F11/08H01L41/1134H04R2217/00H04R2460/03
    • An energy harvester device located into an in-ear device and harvesting energy from dynamic motion of the wall of the outer ear canal receiving the in-ear device therein, with an external sheath of the in-ear device generally assuming the contour of the ear canal wall. The energy harvester device has an energy harvesting module mounting on an inner portion of the in-ear device adjacent the external sheath, and is at least partially elastically deformable under a displacement of the ear canal wall to generate energy corresponding to the displacement of the wall. An energy storage module mounts onto the in-ear device and connects to the energy harvesting module to receive energy there from and supplying the stored energy to an electronic device of the in-ear device. The in-ear device having the energy harvester device therein is also part of the present invention.
    • 位于入耳式装置中的能量收集装置,并且通过外耳道的壁的动态运动来收集能量,所述外耳道的入耳装置在其中,入耳装置的外护套通常假设为耳朵的轮廓 运河墙。 能量收集装置具有能量收集模块,该能量收集模块安装在与外部护套相邻的入耳装置的内部部分上,并且在耳道壁的移位下至少部分地弹性变形,以产生对应于壁的位移的能量 。 能量存储模块安装在入耳式设备上,并连接到能量收集模块,以从那里接收能量并将存储的能量提供给入耳式设备的电子设备。 其中具有能量收集器装置的入耳式装置也是本发明的一部分。
    • 48. 发明授权
    • Piezoelectric ceramic dual-frequency earphone structure
    • 压电陶瓷双频耳机结构
    • US09503805B2
    • 2016-11-22
    • US14616169
    • 2015-02-06
    • Jetvox Acoustic Corp.
    • To-Teng HuangMing-Fang Hung
    • H04R1/24H04R1/10H04R1/26H04R17/00H04R9/06
    • H04R1/24H04R1/10H04R1/1091H04R1/26H04R9/06H04R17/00H04R2217/00
    • A piezoelectric ceramic dual-frequency earphone structure includes an earphone housing, a dynamic transducer, a piezoelectric ceramic transducer and a circuit board. The piezoelectric ceramic transducer is installed in the receiving region. The piezoelectric ceramic transducer is connected to the dynamic transducer via a support unit and a positioning unit. The circuit board is assembled in the receiving region and connected to acoustic signal cables. The acoustic signal cables are connected to a dynamic voice coil of the dynamic transducer and the piezoelectric ceramic transducer. When electric signals are applied to a ceramic membrane of the piezoelectric ceramic transducer, a metal sheet of the piezoelectric ceramic transducer is vibrated to generate high frequency sound, and the high frequency sound are then mixed with the sound from the dynamic transducer.
    • 压电陶瓷双频耳机结构包括耳机壳体,动态换能器,压电陶瓷换能器和电路板。 压电陶瓷传感器安装在接收区域。 压电陶瓷传感器通过支撑单元和定位单元连接到动态换能器。 电路板组装在接收区域并连接到声信号电缆。 声信号电缆连接到动态换能器和压电陶瓷换能器的动态音圈。 当将电信号施加到压电陶瓷换能器的陶瓷膜时,压电陶瓷换能器的金属片被振动以产生高频声音,然后将高频声音与来自动态换能器的声音混合。