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    • 1. 发明授权
    • 3D remote control system employing absolute and relative position detection
    • 采用绝对和相对位置检测的三维遥控系统
    • US08291346B2
    • 2012-10-16
    • US11594342
    • 2006-11-07
    • Duncan Robert KerrChad BronsteinWing Kong LowNicholas Vincent King
    • Duncan Robert KerrChad BronsteinWing Kong LowNicholas Vincent King
    • G06F3/048
    • G06F3/0346G06F3/0304G09G5/373
    • The present invention can include three-dimensional remote control systems that can detect an absolute location to which a remote control is pointing in first and second orthogonal axes and an absolute position of the remote control in a third orthogonal axis. Remote control systems of the present invention can employ absolute position detection with relative position detection. Absolute position detection can indicate an initial absolute position of the remote control and relative position detection can indicate changes in the position of the remote control. By combining absolute and relative position detection, remote control systems of the present invention can track remote controls more precisely than systems that only employ absolute position detection. The present invention also can include methods and apparatus for zooming in and out of an image shown on a display based on the absolute position of the remote control in the third axis.
    • 本发明可以包括三维遥控系统,其可以检测遥控器指向第一和第二正交轴的绝对位置以及遥控器在第三正交轴线中的绝对位置。 本发明的遥控系统可以采用相对位置检测的绝对位置检测。 绝对位置检测可以指示遥控器的初始绝对位置,相对位置检测可指示遥控器位置的变化。 通过组合绝对和相对位置检测,本发明的遥控系统可以比仅采用绝对位置检测的系统更精确地跟踪远程控制。 本发明还可以包括基于第三轴中的遥控器的绝对位置来放大和缩小显示器上显示的图像的方法和装置。
    • 2. 发明申请
    • 3D remote control system employing absolute and relative position detection
    • 采用绝对和相对位置检测的三维遥控系统
    • US20080106517A1
    • 2008-05-08
    • US11594342
    • 2006-11-07
    • Duncan Robert KerrChad BronsteinWing Kong LowNicholas Vincent King
    • Duncan Robert KerrChad BronsteinWing Kong LowNicholas Vincent King
    • G06F3/033
    • G06F3/0346G06F3/0304G09G5/373
    • The present invention can include three-dimensional remote control systems that can detect an absolute location to which a remote control is pointing in first and second orthogonal axes and an absolute position of the remote control in a third orthogonal axis. Remote control systems of the present invention can employ absolute position detection with relative position detection. Absolute position detection can indicate an initial absolute position of the remote control and relative position detection can indicate changes in the position of the remote control. By combining absolute and relative position detection, remote control systems of the present invention can track remote controls more precisely than systems that only employ absolute position detection. The present invention also can include methods and apparatus for zooming in and out of an image shown on a display based on the absolute position of the remote control in the third axis.
    • 本发明可以包括三维遥控系统,其可以检测遥控器指向第一和第二正交轴的绝对位置以及遥控器在第三正交轴线中的绝对位置。 本发明的遥控系统可以采用相对位置检测的绝对位置检测。 绝对位置检测可以指示遥控器的初始绝对位置,相对位置检测可指示遥控器位置的变化。 通过组合绝对和相对位置检测,本发明的遥控系统可以比仅采用绝对位置检测的系统更精确地跟踪远程控制。 本发明还可以包括基于第三轴中的遥控器的绝对位置来放大和缩小显示器上显示的图像的方法和装置。
    • 5. 发明申请
    • Feedback responsive input arrangements
    • 反馈响应输入安排
    • US20070043725A1
    • 2007-02-22
    • US11204873
    • 2005-08-16
    • Steve HotellingScott BrennemanBart AndreChad BronsteinBrian HuppiChris LigtenbergEugene WhangZachary Zeliff
    • Steve HotellingScott BrennemanBart AndreChad BronsteinBrian HuppiChris LigtenbergEugene WhangZachary Zeliff
    • G06F17/30
    • G06F3/016
    • Feedback responsive input arrangements are presented where arrangements includes: a sensor in mechanical communication with a surface layer, the sensor configured to generate electronic signals in response to applied forces exerted upon the surface layer; a processing module configured to convert electronic signals into user-defined programmatic dimensions; and a tactile feedback response component configured to actuate in response to electronic signals. In some embodiments, user defined programmatic dimensions are selected from the group consisting of: a state dimension, a magnitude dimension, and a temporal dimension. In some embodiments, the processing module is further configured to process user-defined programmatic dimensions into user-defined programmatic actions. In some embodiments, user-defined programmatic actions are coupled to graphical environments, the graphical environments configured to provide a graphic feedback response based on user-defined programmatic actions. In some embodiments user-defined programmatic actions are coupled to an aural environment, the aural environment configured to provide an aural feedback.
    • 呈现反馈响应输入布置,其中布置包括:与表面层机械连通的传感器,所述传感器被配置为响应施加在表面层上的施加的力产生电子信号; 处理模块,被配置为将电子信号转换成用户定义的程序维度; 以及被配置为响应于电子信号致动的触觉反馈响应部件。 在一些实施例中,从由以下各项组成的组中选择用户定义的程序化维度:状态维度,幅度维度和时间维度。 在一些实施例中,处理模块还被配置为将用户定义的程序化维度处理为用户定义的编程动作。 在一些实施例中,用户定义的编程动作耦合到图形环境,图形环境被配置为基于用户定义的编程动作提供图形反馈响应。 在一些实施例中,将用户定义的编程动作耦合到听觉环境,所述听觉环境被配置为提供听觉反馈。
    • 6. 发明授权
    • Raw data track pad device and system
    • 原始数据追踪装置和系统
    • US07719522B2
    • 2010-05-18
    • US10949060
    • 2004-09-24
    • Benjamin LyonStephanie CinereskiChad BronsteinSteven P. Hotelling
    • Benjamin LyonStephanie CinereskiChad BronsteinSteven P. Hotelling
    • G09G5/00
    • G06F3/044G06F3/0488
    • An input device and system are described that acquires (measures) raw track pad sensor data and transmits this data to a host computer where it is analyzed by an application executing on one or more host computer central processing units. The resulting input processing architecture provides a track pad input device that is both lower in cost to manufacture and more flexible than prior art track pad input devices. Lower costs may be realized by eliminating the prior art's dedicated track pad hardware for processing sensor data (e.g., a processor and associated firmware memory). Increased flexibility may be realized by providing feature set functionality via software that executes on the host computer. In this architecture, track pad functionality may be modified, updated and enhanced through software upgrade procedures.
    • 描述了一种输入设备和系统,其获取(测量)原始轨迹板传感器数据,并将该数据发送到主计算机,在该计算机中,由在一个或多个主机计算机中央处理单元上执行的应用进行分析。 所得到的输入处理架构提供了跟现有技术的轨迹板输入装置相比制造成本更低且更灵活的跟踪板输入装置。 可以通过消除用于处理传感器数据(例如,处理器和相关联的固件存储器)的现有技术的专用轨道硬件来实现较低的成本。 通过在主计算机上执行的软件提供特征集功能可以实现增加的灵活性。 在这种架构中,跟踪板功能可以通过软件升级程序进行修改,更新和增强。
    • 7. 发明申请
    • System and method for processing raw data of track pad device
    • 跟踪垫装置原始数据的系统和方法
    • US20060066588A1
    • 2006-03-30
    • US11232299
    • 2005-09-21
    • Benjamin LyonStephanie CinereskiChad BronsteinSteven Hotelling
    • Benjamin LyonStephanie CinereskiChad BronsteinSteven Hotelling
    • G09G5/00
    • G06F3/044G06F3/0488
    • An input device and system are described that acquires (measures) raw track pad sensor data and transmits this data to a host computer where it is analyzed by an application executing on one or more host computer central processing units. The resulting input processing architecture provides a track pad input device that is both lower in cost to manufacture and more flexible than prior art track pad input devices. Lower costs may be realized by eliminating the prior art's dedicated track pad hardware for processing sensor data (e.g., a processor and associated firmware memory). Increased flexibility may be realized by providing feature set functionality via software that executes on the host computer. In this architecture, track pad functionality may be modified, updated, and enhanced through software upgrade procedures.
    • 描述了一种输入设备和系统,其获取(测量)原始轨迹板传感器数据,并将该数据发送到主计算机,在该计算机中,由在一个或多个主机计算机中央处理单元上执行的应用进行分析。 所得到的输入处理架构提供了跟现有技术的轨迹板输入装置相比制造成本更低且更灵活的跟踪板输入装置。 可以通过消除用于处理传感器数据(例如,处理器和相关联的固件存储器)的现有技术的专用轨道硬件来实现较低的成本。 通过在主计算机上执行的软件提供特征集功能可以实现增加的灵活性。 在此架构中,跟踪板功能可以通过软件升级程序进行修改,更新和增强。
    • 8. 发明授权
    • System and method for processing raw data of track pad device
    • 跟踪垫装置原始数据的系统和方法
    • US07728823B2
    • 2010-06-01
    • US11232299
    • 2005-09-21
    • Benjamin LyonStephanie CinereskiChad BronsteinSteven Hotelling
    • Benjamin LyonStephanie CinereskiChad BronsteinSteven Hotelling
    • G06F3/041
    • G06F3/044G06F3/0488
    • An input device and system are described that acquires (measures) raw track pad sensor data and transmits this data to a host computer where it is analyzed by an application executing on one or more host computer central processing units. The resulting input processing architecture provides a track pad input device that is both lower in cost to manufacture and more flexible than prior art track pad input devices. Lower costs may be realized by eliminating the prior art's dedicated track pad hardware for processing sensor data (e.g., a processor and associated firmware memory). Increased flexibility may be realized by providing feature set functionality via software that executes on the host computer. In this architecture, track pad functionality may be modified, updated, and enhanced through software upgrade procedures.
    • 描述了一种输入设备和系统,其获取(测量)原始轨迹板传感器数据,并将该数据发送到主计算机,在该计算机中,由在一个或多个主机计算机中央处理单元上执行的应用进行分析。 所得到的输入处理架构提供了跟现有技术的轨迹板输入装置相比制造成本更低且更灵活的跟踪板输入装置。 可以通过消除用于处理传感器数据(例如,处理器和相关联的固件存储器)的现有技术的专用轨道硬件来实现较低的成本。 通过在主计算机上执行的软件提供特征集功能可以实现增加的灵活性。 在此架构中,跟踪板功能可以通过软件升级程序进行修改,更新和增强。
    • 9. 发明申请
    • Raw data track pad device and system
    • 原始数据追踪装置和系统
    • US20060066582A1
    • 2006-03-30
    • US10949060
    • 2004-09-24
    • Benjamin LyonStephanie CinereskiChad BronsteinSteven Hotelling
    • Benjamin LyonStephanie CinereskiChad BronsteinSteven Hotelling
    • G09G5/00
    • G06F3/044G06F3/0488
    • An input device and system are described that acquires (measures) raw track pad sensor data and transmits this data to a host computer where it is analyzed by an application executing on one or more host computer central processing units. The resulting input processing architecture provides a track pad input device that is both lower in cost to manufacture and more flexible than prior art track pad input devices. Lower costs may be realized by eliminating the prior art's dedicated track pad hardware for processing sensor data (e.g., a processor and associated firmware memory). Increased flexibility may be realized by providing feature set functionality via software that executes on the host computer. In this architecture, track pad functionality may be modified, updated and enhanced through software upgrade procedures.
    • 描述了一种输入设备和系统,其获取(测量)原始轨迹板传感器数据,并将该数据发送到主计算机,在该计算机中,由在一个或多个主机计算机中央处理单元上执行的应用进行分析。 所得到的输入处理架构提供了跟现有技术的轨迹板输入装置相比制造成本更低且更灵活的跟踪板输入装置。 可以通过消除用于处理传感器数据(例如,处理器和相关联的固件存储器)的现有技术的专用轨道硬件来实现较低的成本。 通过在主计算机上执行的软件提供特征集功能可以实现增加的灵活性。 在这种架构中,跟踪板功能可以通过软件升级程序进行修改,更新和增强。
    • 10. 发明授权
    • Narrow key switch
    • 窄键开关
    • US09024214B2
    • 2015-05-05
    • US12814010
    • 2010-06-11
    • James J. NiuHarold J. WelchChad BronsteinPatrick KesslerChris Ligtenberg
    • James J. NiuHarold J. WelchChad BronsteinPatrick KesslerChris Ligtenberg
    • H01H13/70H01H3/12
    • H01H3/122H01H3/125H01H2215/012Y10T29/49105
    • A narrow key switch for a low travel keyboard and methods of fabrication are described. The low-travel keyboard having narrow keys is suitable for a thin-profile computing device, such as a laptop computer, netbook computer, desktop computer, etc. The keyboard includes a key cap positioned over an elastomeric dome and a two-part scissor mechanism having two separate linkage structures on opposite sides of the dome. A link bar is also provided to transfer a load from a side of a key to the center if the key cap is depressed in an off-center manner. Transferring the load to the center helps to deform the elastomeric dome so that it can activate the switch circuitry of the membrane on printed circuit board underneath the dome. Separating the linkage structures into two separate parts allows for the use of a full-sized elastomeric dome for a narrow key switch. The full-sized dome provides the desired tactile feedback to a user. Thus, the tactile feel of the key is not compromised even thought the key is narrower than a conventional key.
    • 描述了用于低行程键盘的窄键开关和制造方法。 具有窄键的低旅行键盘适用于诸如膝上型计算机,上网本计算机,台式计算机等的薄型计算设备。键盘包括位于弹性圆顶上的键帽和两部分剪刀机构 在圆顶的相对侧上具有两个独立的连接结构。 如果钥匙盖以偏心方式被按压,还提供连杆以将负载从钥匙的一侧传送到中心。 将负载转移到中心有助于使弹性体圆顶变形,从而可以激活圆顶下方印刷电路板上膜的开关电路。 将连接结构分成两个分开的部件允许使用用于窄键开关的全尺寸弹性体圆顶。 全尺寸圆顶可为用户提供所需的触觉反馈。 因此,即使认为钥匙比传统钥匙更窄,钥匙的触感也不会受到影响。