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    • 1. 发明授权
    • Method and apparatus for controlling the operational mode of electronic devices in response to sensed conditions
    • 响应于感测到的条件控制电子设备的操作模式的方法和装置
    • US09009505B2
    • 2015-04-14
    • US12726239
    • 2010-03-17
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • G06F1/32G05B19/042
    • G06F1/3209G05B19/042G05B2219/25291G06F1/3203G06F1/3215G06F1/3287Y02D10/17Y02D10/171Y02D50/20
    • A system is disclosed that senses physical characteristics of an electronic device. The system controls the electronic device in response to the sensed physical characteristics. The system includes a control subsystem. The control subsystem includes a time trigger and an anticipation/latency reduction subsystem. The anticipation/latency reduction subsystem includes additional subsystems such as a time trigger, a position trigger and an attitude trigger. In an alternate embodiment, the anticipation/latency reduction subsystem also includes an activation interval trigger, a repetitive action trigger and a repetitive distance trigger. The various triggers can be implemented using processors that execute software. The system also includes sensing devices, such as a position sensing device and an attitude sensing device, to sense physical characteristics of the particular electronic device being controlled. The control subsystem receives signals from the sensing devices. Physical characteristic information obtained from these signals is provided to the various triggers. In response to this physical characteristic information, the various triggers process the physical characteristic information such that the system controls the electronic device.
    • 公开了一种感测电子设备的物理特性的系统。 该系统响应于感测到的物理特性来控制电子设备。 该系统包括一个控制子系统。 控制子系统包括时间触发和预期/延迟减少子系统。 预期/延迟降低子系统包括附加子系统,例如时间触发,位置触发和姿态触发。 在替代实施例中,预期/等待时间减少子系统还包括激活间隔触发,重复动作触发和重复距离触发。 可以使用执行软件的处理器来实现各种触发器。 该系统还包括诸如位置感测装置和姿态感测装置的感测装置,以感测被控制的特定电子装置的物理特性。 控制子系统从感测装置接收信号。 从这些信号获得的物理特征信息被提供给各种触发。 响应于该物理特性信息,各种触发器处理物理特性信息,使得系统控制电子设备。
    • 3. 发明授权
    • Method and apparatus for controlling electrical devices in response to sensed conditions
    • 用于响应于感测到的条件来控制电子装置的方法和装置
    • US06804726B1
    • 2004-10-12
    • US09628081
    • 2000-07-28
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • G06F1300
    • G06F1/3209G05B19/042G05B2219/25291G06F1/3203G06F1/3215G06F1/3287Y02D10/17Y02D10/171Y02D50/20
    • A system is disclosed that senses physical characteristics of an electronic device. The system controls the electronic device in response to the sensed physical characteristics. The system includes a control subsystem. The control subsystem includes a time trigger and an anticipation/latency reduction subsystem. The anticipation/latency reduction subsystem includes additional subsystems such as a time trigger, a position trigger and an attitude trigger. In an alternate embodiment, the anticipation/latency reduction subsystem also includes an activation interval trigger, a repetitive action trigger and a repetitive distance trigger. The various triggers can be implemented using processors that execute software. The system also includes sensing devices, such as a position sensing device and an attitude sensing device, to sense physical characteristics of the particular electronic device being controlled. The control subsystem receives signals from the sensing devices. Physical characteristic information obtained from these signals is provided to the various triggers. In response to this physical characteristic information, the various triggers process the physical characteristic information such that the system controls the electronic device.
    • 公开了一种感测电子设备的物理特性的系统。 该系统响应于感测到的物理特性来控制电子设备。 该系统包括一个控制子系统。 控制子系统包括时间触发和预期/延迟减少子系统。 预期/延迟降低子系统包括附加子系统,例如时间触发,位置触发和姿态触发。 在替代实施例中,预期/等待时间减少子系统还包括激活间隔触发,重复动作触发和重复距离触发。 可以使用执行软件的处理器来实现各种触发器。 该系统还包括诸如位置感测装置和姿态感测装置的感测装置,以感测被控制的特定电子装置的物理特性。 控制子系统从感测装置接收信号。 从这些信号获得的物理特征信息被提供给各种触发。 响应于该物理特性信息,各种触发器处理物理特性信息,使得系统控制电子设备。
    • 4. 发明授权
    • Method for controlling electronic devices in response to sensed
conditions using physical characteristic signal indicating use or
anticipated use of the electronic device
    • 用于使用指示电子设备的使用或预期使用的物理特性信号来响应感测到的条件来控制电子设备的方法
    • US6098118A
    • 2000-08-01
    • US416093
    • 1999-10-12
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • G06F13/00G05B19/042G06F1/32G06F19/00G06F13/10
    • G06F1/3287G05B19/042G06F1/3203G06F1/3209G06F1/3215G05B2219/25291Y02B60/1282Y02B60/32
    • A system is disclosed that senses physical characteristics of an electronic device. The system controls the electronic device in response to the sensed physical characteristics. The system includes a control subsystem. The control subsystem includes a time trigger and an anticipation/latency reduction subsystem. The anticipation/latency reduction subsystem includes additional subsystems such as a time trigger, a position trigger and an attitude trigger. In an alternate embodiment, the anticipation/latency reduction subsystem also includes an activation interval trigger, a repetitive action trigger and a repetitive distance trigger. The various triggers can be implemented using processors that execute software. The system also includes sensing devices, such as a position sensing device and an attitude sensing device, to sense physical characteristics of the particular electronic device being controlled. The control subsystem receives signals from the sensing devices. Physical characteristic information obtained from these signals is provided to the various triggers. In response to this physical characteristic information, the various triggers process the physical characteristic information such that the system controls the electronic device.
    • 公开了一种感测电子设备的物理特性的系统。 该系统响应于感测到的物理特性来控制电子设备。 该系统包括一个控制子系统。 控制子系统包括时间触发和预期/延迟减少子系统。 预期/延迟降低子系统包括附加子系统,例如时间触发,位置触发和姿态触发。 在替代实施例中,预期/等待时间减少子系统还包括激活间隔触发,重复动作触发和重复距离触发。 可以使用执行软件的处理器来实现各种触发器。 该系统还包括诸如位置感测装置和姿态感测装置的感测装置,以感测被控制的特定电子装置的物理特性。 控制子系统从感测装置接收信号。 从这些信号获得的物理特征信息被提供给各种触发。 响应于该物理特性信息,各种触发器处理物理特性信息,使得系统控制电子设备。
    • 5. 发明申请
    • METHOD AND APPARATUS FOR CONTROLLING THE OPERATIONAL MODE OF ELECTRONIC DEVICES IN RESPONSE TO SENSED CONDITIONS
    • 用于控制电子设备操作模式对感觉条件的响应的方法和装置
    • US20100185303A1
    • 2010-07-22
    • US12726239
    • 2010-03-17
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • G05B11/01
    • G06F1/3209G05B19/042G05B2219/25291G06F1/3203G06F1/3215G06F1/3287Y02D10/17Y02D10/171Y02D50/20
    • A system is disclosed that senses physical characteristics of an electronic device. The system controls the electronic device in response to the sensed physical characteristics. The system includes a control subsystem. The control subsystem includes a time trigger and an anticipation/latency reduction subsystem. The anticipation/latency reduction subsystem includes additional subsystems such as a time trigger, a position trigger and an attitude trigger. In an alternate embodiment, the anticipation/latency reduction subsystem also includes an activation interval trigger, a repetitive action trigger and a repetitive distance trigger. The various triggers can be implemented using processors that execute software. The system also includes sensing devices, such as a position sensing device and an attitude sensing device, to sense physical characteristics of the particular electronic device being controlled. The control subsystem receives signals from the sensing devices. Physical characteristic information obtained from these signals is provided to the various triggers. In response to this physical characteristic information, the various triggers process the physical characteristic information such that the system controls the electronic device.
    • 公开了一种感测电子设备的物理特性的系统。 该系统响应于感测到的物理特性来控制电子设备。 该系统包括一个控制子系统。 控制子系统包括时间触发和预期/延迟减少子系统。 预期/延迟降低子系统包括附加子系统,例如时间触发,位置触发和姿态触发。 在替代实施例中,预期/等待时间减少子系统还包括激活间隔触发,重复动作触发和重复距离触发。 可以使用执行软件的处理器来实现各种触发器。 该系统还包括感测装置,诸如位置感测装置和姿态感测装置,以感测被控制的特定电子装置的物理特性。 控制子系统从感测装置接收信号。 从这些信号获得的物理特征信息被提供给各种触发。 响应于该物理特性信息,各种触发器处理物理特性信息,使得系统控制电子设备。
    • 6. 发明授权
    • Method and apparatus for controlling the operational mode of electronic devices in response to sensed conditions
    • 响应于感测到的条件控制电子设备的操作模式的方法和装置
    • US07696905B2
    • 2010-04-13
    • US10936235
    • 2004-09-08
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • G01C21/00
    • G06F1/3209G05B19/042G05B2219/25291G06F1/3203G06F1/3215G06F1/3287Y02D10/17Y02D10/171Y02D50/20
    • A system is disclosed that senses physical characteristics of an electronic device. The system controls the electronic device in response to the sensed physical characteristics. The system includes a control subsystem. The control subsystem includes a time trigger and an anticipation/latency reduction subsystem. The anticipation/latency reduction subsystem includes additional subsystems such as a time trigger, a position trigger and an attitude trigger. In an alternate embodiment, the anticipation/latency reduction subsystem also includes an activation interval trigger, a repetitive action trigger and a repetitive distance trigger. The various triggers can be implemented using processors that execute software. The system also includes sensing devices, such as a position sensing device and an attitude sensing device, to sense physical characteristics of the particular electronic device being controlled. The control subsystem receives signals from the sensing devices. Physical characteristic information obtained from these signals is provided to the various triggers. In response to this physical characteristic information, the various triggers process the physical characteristic information such that the system controls the electronic device.
    • 公开了一种感测电子设备的物理特性的系统。 该系统响应于感测到的物理特性来控制电子设备。 该系统包括一个控制子系统。 控制子系统包括时间触发和预期/延迟减少子系统。 预期/延迟降低子系统包括附加子系统,例如时间触发,位置触发和姿态触发。 在替代实施例中,预期/等待时间减少子系统还包括激活间隔触发,重复动作触发和重复距离触发。 可以使用执行软件的处理器来实现各种触发器。 该系统还包括诸如位置感测装置和姿态感测装置的感测装置,以感测被控制的特定电子装置的物理特性。 控制子系统从感测装置接收信号。 从这些信号获得的物理特征信息被提供给各种触发。 响应于该物理特性信息,各种触发器处理物理特性信息,使得系统控制电子设备。
    • 9. 发明授权
    • Apparatus for controlling electrical devices in response to sensed
conditions
    • 用于响应于感测到的条件来控制电子装置的装置
    • US5991827A
    • 1999-11-23
    • US859997
    • 1997-05-21
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • John EllenbyPeter Malcolm EllenbyThomas William Ellenby
    • G06F13/00G05B19/042G06F1/32G06F19/00G06F13/10
    • G06F1/3287G05B19/042G06F1/3203G06F1/3209G06F1/3215G05B2219/25291Y02B60/1282Y02B60/32
    • A system is disclosed that senses physical characteristics of an electronic device. The system controls the electronic device in response to the sensed physical characteristics. The system includes a control subsystem. The control subsystem includes a time trigger and an anticipation/latency reduction subsystem. The anticipation/latency reduction subsystem includes additional subsystems such as a time trigger, a position trigger and an attitude trigger. In an alternate embodiment, the anticipation/latency reduction subsystem also includes an activation interval trigger, a repetitive action trigger and a repetitive distance trigger. The various triggers can be implemented using processors that execute software. The system also includes sensing devices, such as a position sensing device and an attitude sensing device, to sense physical characteristics of the particular electronic device being controlled. The control subsystem receives signals from the sensing devices. Physical characteristic information obtained from these signals is provided to the various triggers. In response to this physical characteristic information, the various triggers process the physical characteristic information such that the system controls the electronic device.
    • 公开了一种感测电子设备的物理特性的系统。 该系统响应于感测到的物理特性来控制电子设备。 该系统包括一个控制子系统。 控制子系统包括时间触发和预期/延迟减少子系统。 预期/延迟降低子系统包括附加子系统,例如时间触发,位置触发和姿态触发。 在替代实施例中,预期/等待时间减少子系统还包括激活间隔触发,重复动作触发和重复距离触发。 可以使用执行软件的处理器来实现各种触发器。 该系统还包括诸如位置感测装置和姿态感测装置的感测装置,以感测被控制的特定电子装置的物理特性。 控制子系统从感测装置接收信号。 从这些信号获得的物理特征信息被提供给各种触发。 响应于该物理特性信息,各种触发器处理物理特性信息,使得系统控制电子设备。