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    • 71. 发明授权
    • Efficient encoding and detection method and device for binary intensity
modulated optical data signals
    • 用于二进制强度调制光数据信号的高效编码和检测方法及装置
    • US6118567A
    • 2000-09-12
    • US940905
    • 1997-09-30
    • Rachid M. AlamehBruce C. EastmondThomas J. Walczak
    • Rachid M. AlamehBruce C. EastmondThomas J. Walczak
    • H04L25/49H04L27/06H04B10/06H04B1/10H04B10/00
    • H04L25/4902H04L27/06
    • A waveform encoding method and device provide for generating/receiving a power efficient binary intensity modulated optical data signal from a binary source signal which minimizes a time between adjacent pulse transitions and maximizes a pulse peak amplitude for transmission over a low-power wireless infrared link. In generating the signal, the method includes: generating a Q-ary pulse position modulation, Q-PPM, encoded data signal from binary data where Q represents 2.sup.L time slots and L is a predetermined integer representing a predetermined number of binary source bits of the power efficient binary intensity modulated optical data signal; generating an efficient binary intensity modulated signal by increasing the pulse peak amplitude of the Q-PPM encoded data signal by a factor of k, k a predetermined value, and decreasing a pulse width of the Q-PPM encoded data signal by k; and transmitting the efficient binary intensity modulated signal over the low-power wireless infrared link.
    • 波形编码方法和装置提供从二进制源信号产生/接收功率有效的二进制强度调制的光数据信号,其使相邻脉冲转变之间的时间最小化并且最大化用于在低功率无线红外线链路上传输的脉冲峰值幅度。 在产生该信号时,该方法包括:从二进制数据产生Q-ary脉冲位置调制Q-PPM,其中Q表示2L时隙,L是表示预定数量的二进制源位的预定整数 功率有效的二进制强度调制光数据信号; 通过将Q-PPM编码数据信号的脉冲峰值幅度增加k个k个预定值,并且将Q-PPM编码数据信号的脉冲宽度减小k来产生有效的二进制强度调制信号; 并通过低功率无线红外线链路传输有效的二进制强度调制信号。
    • 75. 发明授权
    • Portable electronic device having interchangeable user interfaces and method thereof
    • 便携式电子设备具有可互换的用户界面及其方法
    • US09436301B2
    • 2016-09-06
    • US13172502
    • 2011-06-29
    • John Henry KrahenbuhlRachid M. AlamehJiri Slaby
    • John Henry KrahenbuhlRachid M. AlamehJiri Slaby
    • G09G5/00G06F3/041
    • G06F3/041G06F3/0416
    • A portable electronic device comprising a housing, and a first user interface, a second user interface and one or more sensors supported by the housing, and a method thereof. The first user interface has an active state, and the second user interface has an inactive state while the first user interface is in the active state. The sensor or sensors detect an environmental condition. The second user interface changes from the inactive state to the active state and the first user interface changes from the active state to the inactive state in response to one or more sensors detecting the environmental condition. For another embodiment, the device may detect an energy level of a power source of the portable electronic device. The second user interface of the portable electronic device is then activated and the first user interface of the portable electronic device is deactivated in response to detecting the energy level of the power source.
    • 一种便携式电子设备,包括壳体,第一用户接口,第二用户界面和由壳体支撑的一个或多个传感器及其方法。 第一用户界面具有活动状态,而第二用户界面在第一用户界面处于活动状态时具有非活动状态。 传感器或传感器检测环境状况。 响应于检测环境条件的一个或多个传感器,第二用户界面从非活动状态改变到活动状态,并且第一用户界面从活动状态改变到非活动状态。 对于另一个实施例,设备可以检测便携式电子设备的电源的能级。 响应于检测到电源的能级,便携式电子设备的第二用户接口被激活,便携式电子设备的第一用户界面被停用。
    • 77. 发明授权
    • Wearable device with acoustic user input and method for same
    • 具有声学用户输入的可穿戴设备及其方法
    • US08902713B2
    • 2014-12-02
    • US13597643
    • 2012-08-29
    • Rachid M. AlamehPaul R. SteuerRobert A. Zurek
    • Rachid M. AlamehPaul R. SteuerRobert A. Zurek
    • G10K11/00
    • G04G21/08G01H13/00
    • An electronic device (100) includes a component portion (101) and a strap (102). The strap defines an air chamber (402) therein having a corresponding volume. A driver (403) is disposed in the component portion at a first port (404) between the component portion and the strap. A frequency detector (405) is disposed in the component portion at a second port (406) between the component portion and the strap. A control circuit (407) is operable with the driver and the frequency detector and is configured to determine a peak of a resonant frequency over a frequency range in the air chamber with the frequency detector that are a function of the corresponding volume and are responsive to signals produced by the driver, correlate the frequency of pressure variations determined with a user input, and perform an operation based upon the user input.
    • 电子设备(100)包括组件部分(101)和带(102)。 所述带限定了其中具有相应体积的空气室(402)。 驱动器(403)在部件部分和带之间的第一端口(404)处设置在部件部分中。 频率检测器(405)在组件部分和带之间的第二端口(406)处设置在组件部分中。 控制电路(407)可与驱动器和频率检测器一起操作,并且被配置为通过频率检测器确定在空气室中的频率范围内的谐振频率的峰值,该频率范围是相应体积的函数,并且响应于 由驾驶员产生的信号使用用户输入确定的压力变化的频率相关联,并且基于用户输入执行操作。
    • 78. 发明申请
    • Electronic Device Having Managed Input Components
    • 具有管理输入组件的电子设备
    • US20140043295A1
    • 2014-02-13
    • US13569489
    • 2012-08-08
    • Rachid M. AlamehTimothy DickinsonRobert A. Zurek
    • Rachid M. AlamehTimothy DickinsonRobert A. Zurek
    • G06F3/041G06F3/042
    • G06F3/041G06F3/0416G06F3/0418G06F2203/04105
    • There is described an electronic device having a touch-sensitive sensor and a piezoelectric sensor, and a method of operating the device. The electronic device detects an actuation of the touch-sensitive sensor, and a touch-sensitive signal is produced by the touch-sensitive sensor in response to detecting the actuation of the touch-sensitive sensor. Also, the electronic device detects an actuation of the piezoelectric sensor, and a piezoelectric signal is produced by the piezoelectric sensor in response to detecting the actuation of the piezoelectric sensor. Next, the electronic device determines whether the actuation of the touch-sensitive sensor is invalid based on the touch-sensitive signal and the piezoelectric signal. The electronic device then performs, or refrains from performing, an operation in response to determining that the actuation of the touch-sensitive sensor is invalid.
    • 描述了具有触敏传感器和压电传感器的电子设备以及操作该设备的方法。 电子设备检测触敏传感器的致动,并且触敏传感器响应于检测到触敏传感器的致动而产生触敏信号。 此外,电子设备检测压电传感器的致动,并且响应于检测到压电传感器的致动,压电传感器产生压电信号。 接下来,电子设备基于触敏信号和压电信号来确定触敏传感器的致动是否无效。 响应于确定触敏传感器的致动无效,电子设备然后执行或不执行操作。