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    • 1. 发明授权
    • Touch-sensor-controller sensor hub
    • 触摸传感器控制器传感器集线器
    • US08736551B2
    • 2014-05-27
    • US13548049
    • 2012-07-12
    • Adrian WoolleyJohn LoganKent LongPaul Iannacito
    • Adrian WoolleyJohn LoganKent LongPaul Iannacito
    • G06F3/038G09G5/00
    • G06F3/044G06F3/0416G06F2203/04112
    • In one embodiment, a method includes controlling a touch sensor of a device. The control of the touch sensor includes a first processing cycle executed by the controller that comprises acquisition of touch-sensor signals from the touch sensor; a second processing cycle executed by the controller that comprises pre-processing of the touch-sensor signals; and a third processing cycle executed by the controller that comprises processing of the touch-sensor signals to determine whether a touch or proximity input has occurred with respect to the touch sensor. If the touch or proximity input has occurred with respect to the touch sensor, a location of the touch or proximity input is determined. The method also includes controlling other sensors of the device. The control of the other sensors includes one or more fourth processing cycles executed by the controller concurrently with the first processing cycle or the second processing cycle.
    • 在一个实施例中,一种方法包括控制设备的触摸传感器。 触摸传感器的控制包括由控制器执行的包括从触摸传感器获取触摸传感器信号的第一处理循环; 由所述控制器执行的包括所述触摸传感器信号的预处理的第二处理循环; 以及由所述控制器执行的包括所述触摸传感器信号的处理以确定相对于所述触摸传感器是否已经发生触摸或接近输入的第三处理循环。 如果相对于触摸传感器发生触摸或接近输入,则确定触摸或接近输入的位置。 该方法还包括控制该装置的其它传感器。 其他传感器的控制包括与第一处理周期或第二处理周期同时由控制器执行的一个或多个第四处理周期。
    • 2. 发明申请
    • Touch-Sensor-Controller Sensor Hub
    • 触摸传感器 - 控制器传感器集线器
    • US20140253507A1
    • 2014-09-11
    • US14283428
    • 2014-05-21
    • Adrian WoolleyJohn LoganKent LongPaul Iannacito
    • Adrian WoolleyJohn LoganKent LongPaul Iannacito
    • G06F3/044
    • G06F3/044G06F3/0416G06F2203/04112
    • In one embodiment, a method includes controlling a touch sensor of a device. The control of the touch sensor includes a first processing cycle executed by the controller that comprises acquisition of touch-sensor signals from the touch sensor; a second processing cycle executed by the controller that comprises pre-processing of the touch-sensor signals; and a third processing cycle executed by the controller that comprises processing of the touch-sensor signals to determine whether a touch or proximity input has occurred with respect to the touch sensor. If the touch or proximity input has occurred with respect to the touch sensor, a location of the touch or proximity input is determined. The method also includes controlling other sensors of the device. The control of the other sensors includes one or more fourth processing cycles executed by the controller concurrently with the first processing cycle or the second processing cycle.
    • 在一个实施例中,一种方法包括控制设备的触摸传感器。 触摸传感器的控制包括由控制器执行的包括从触摸传感器获取触摸传感器信号的第一处理循环; 由所述控制器执行的包括所述触摸传感器信号的预处理的第二处理循环; 以及由所述控制器执行的包括所述触摸传感器信号的处理以确定相对于所述触摸传感器是否已经发生触摸或接近输入的第三处理循环。 如果相对于触摸传感器发生触摸或接近输入,则确定触摸或接近输入的位置。 该方法还包括控制该装置的其它传感器。 其他传感器的控制包括与第一处理周期或第二处理周期同时由控制器执行的一个或多个第四处理周期。
    • 5. 发明申请
    • System For Detecting Touch Types
    • 检测触摸类型的系统
    • US20130141339A1
    • 2013-06-06
    • US13310256
    • 2011-12-02
    • Adrian WoolleyJohn Logan
    • Adrian WoolleyJohn Logan
    • G06F3/041
    • G06F3/0418
    • In one embodiment, a system includes a touch sensor, a motion module, and one or more computer-readable non-transitory storage media embodying logic. The logic is operable when executed to receive first information from the touch sensor and third information from the motion module corresponding to a first touch. The logic is operable to receive second information from the touch sensor and fourth information from the motion module corresponding to a second touch. The logic is operable to determine a first set of coordinates corresponding to the first touch and determine a second set of coordinates corresponding to the second touch. The logic is operable to determine whether the first touch corresponds to a first touch type based on the third information and determine whether the second touch corresponds to a second touch type based on the fourth information.
    • 在一个实施例中,系统包括触摸传感器,运动模块和体现逻辑的一个或多个计算机可读的非暂时性存储介质。 当被执行以接收来自触摸传感器的第一信息和来自对应于第一触摸的运动模块的第三信息时,该逻辑是可操作的。 所述逻辑可操作以从所述触摸传感器接收第二信息和从对应于第二触摸的所述运动模块接收第四信息。 逻辑可操作以确定与第一触摸相对应的第一组坐标并且确定与第二触摸相对应的第二组坐标。 逻辑可操作以基于第三信息来确定第一触摸是否对应于第一触摸类型,并且基于第四信息来确定第二触摸是否对应于第二触摸类型。
    • 6. 发明申请
    • SOFTWARE FRAMEWORK AND DEVELOPMENT PLATFORM FOR MULTI-SENSOR SYSTEMS
    • 多传感器系统的软件框架和开发平台
    • US20120151432A1
    • 2012-06-14
    • US13109952
    • 2011-05-17
    • Kent D. LongPaul A. IannacitoJohn LoganAdrian Woolley
    • Kent D. LongPaul A. IannacitoJohn LoganAdrian Woolley
    • G06F9/44
    • G06F8/30
    • The disclosed software framework and development platform facilitates software development for multi-sensor systems. In some implementations, developers can select a sensor board that includes a desired combination of sensor devices. The sensor board can be coupled to a development board that includes a target processor and other circuitry to facilitate development and testing of a system that includes the target processor and the sensors. Various software support tools are provided including an Application Programming Interface (API) that provides API abstractions for software drivers for the sensors on the sensor board. By using the abstractions of the API, a software developer does not have to write code (“glue”) to interact with the various software drivers. Additionally, the API provides access to a variety of software library functions for performing data scaling, unit conversion and mathematical functions and algorithms.
    • 所公开的软件框架和开发平台便于多传感器系统的软件开发。 在一些实现中,开发人员可以选择包括传感器设备的期望组合的传感器板。 传感器板可以耦合到包括目标处理器和其他电路的开发板,以便于包括目标处理器和传感器的系统的开发和测试。 提供了各种软件支持工具,包括应用程序编程接口(API),为传感器板上的传感器的软件驱动程序提供API抽象。 通过使用API​​的抽象,软件开发人员不必编写代码(“胶合”)来与各种软件驱动程序交互。 此外,API提供对各种软件库功能的访问,用于执行数据缩放,单位转换和数学函数和算法。
    • 8. 发明授权
    • Software framework and development platform for multi-sensor systems
    • 多传感器系统的软件框架和开发平台
    • US08869095B2
    • 2014-10-21
    • US13109952
    • 2011-05-17
    • Kent D. LongPaul A. IannacitoJohn LoganAdrian Woolley
    • Kent D. LongPaul A. IannacitoJohn LoganAdrian Woolley
    • G05B11/01G10L15/00G06F15/18G06F15/00G06F15/177G06F1/00G06F3/048G06F9/44G06F9/46G06F3/00G08B1/08
    • G06F8/30
    • The disclosed software framework and development platform facilitates software development for multi-sensor systems. In some implementations, developers can select a sensor board that includes a desired combination of sensor devices. The sensor board can be coupled to a development board that includes a target processor and other circuitry to facilitate development and testing of a system that includes the target processor and the sensors. Various software support tools are provided including an Application Programming Interface (API) that provides API abstractions for software drivers for the sensors on the sensor board. By using the abstractions of the API, a software developer does not have to write code (“glue”) to interact with the various software drivers. Additionally, the API provides access to a variety of software library functions for performing data scaling, unit conversion and mathematical functions and algorithms.
    • 所公开的软件框架和开发平台便于多传感器系统的软件开发。 在一些实现中,开发人员可以选择包括传感器设备的期望组合的传感器板。 传感器板可以耦合到包括目标处理器和其他电路的开发板,以便于包括目标处理器和传感器的系统的开发和测试。 提供了各种软件支持工具,包括应用程序编程接口(API),为传感器板上的传感器的软件驱动程序提供API抽象。 通过使用API​​的抽象,软件开发人员不必编写代码(“胶合”)来与各种软件驱动程序交互。 此外,API提供对各种软件库功能的访问,用于执行数据缩放,单位转换和数学函数和算法。