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    • 5. 发明公开
    • WIRELESS EAR BUDS
    • 无线耳朵BUDS
    • EP3291573A1
    • 2018-03-07
    • EP17189525.3
    • 2017-09-06
    • Apple Inc.
    • HOWELL, Adam S.PHAM, Hung A.KOBASHI, AkifumiHINDIYEH, Rami Y.TAN, XingSINGH ALVARADO, AlexanderJAYARAMAN RAGHURAM, Karthik
    • H04R1/10
    • H04R1/1041H04R1/1016H04R29/001H04R2420/07
    • Ear buds may have optical proximity sensors and accelerometers. Control circuitry may analyze output from the optical proximity sensors and the accelerometers to identify a current operational state for the ear buds. The control circuitry may also analyze the accelerometer output to identify tap input such as double taps made by a user on ear bud housings. Samples in the accelerometer output may be analyzed to determine whether the samples associated with a tap have been clipped. If the samples have been clipped, a curve may be fit to the samples. Optical sensor data may be analyzed in conjunction with potential tap input data from the accelerometer. If the optical sensor data is ordered, a tap input may be confirmed. If the optical sensor data is disordered, the control circuitry can conclude that accelerometer data corresponds to false tap input associated with unintentional contact with the housing.
    • 耳芽可能有光学接近传感器和加速度计。 控制电路可以分析来自光学接近传感器和加速度计的输出以识别耳塞的当前操作状态。 控制电路还可以分析加速度计输出以识别敲击输入,例如用户在耳芽外壳上做出的双击。 可以分析加速计输出中的样本以确定与抽头相关联的样本是否已被剪切。 如果样品已被剪切,则曲线可适合样品。 可以结合来自加速度计的潜在分接头输入数据来分析光学传感器数据。 如果光学传感器数据是有序的,则可以确认轻击输入。 如果光学传感器数据是无序的,则控制电路可以推断加速度计数据对应于与壳体意外接触相关的错误敲击输入。