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    • 61. 发明授权
    • Data input device
    • 数据输入设备
    • US3816770A
    • 1974-06-11
    • US28330272
    • 1972-08-24
    • SONY CORP
    • NAKAMURA T
    • G06F3/02H01H1/029H01H13/02H03K3/00H03K17/30H03K17/945H03K17/97H03K17/972H03K17/98H03K7/00H03K17/06
    • H03K17/97H01H1/029H03K3/00H03K17/30H03K17/945H03K17/972H03K17/98Y10T307/786
    • A circuit to obtain hysteresis effect in a switch by providing variable impedance controlled by movement of the switch actuator and incorporated in a coupling circuit between a voltage source and a switching circuit. When the voltage coupled from the source to the switching circuit is above a certain level, the coupling circuit has one transfer characteristic controlled by the switching circuit; when the voltage is below that level, the coupling circuit has a different transfer characteristic. The change in transfer characteristic as the coupled voltage passes through that level is such as to enhance the effect of coupled voltage change by a pre-determined amount so that additional reverse movement of the actuator will be required to reverse the status of the switching circuit.
    • 通过提供由开关致动器的移动控制的可变阻抗并结合在电压源和开关电路之间的耦合电路中来在开关中获得滞后效应的电路。 当从源极耦合到开关电路的电压高于一定水平时,耦合电路具有由开关电路控制的一个传输特性; 当电压低于该电平时,耦合电路具有不同的传输特性。 耦合电压通过该电平时的传输特性的变化是为了增强耦合电压变化的预定量的影响,使得需要执行器的额外的反向移动来反转开关电路的状态。
    • 69. 发明授权
    • User interface with proximity sensing
    • 具有接近感测的用户界面
    • US09588628B2
    • 2017-03-07
    • US14946192
    • 2015-11-19
    • GLOBAL TOUCH SOLUTIONS, LLC
    • Frederick Johannes Bruwer
    • G06F3/041G06F3/044H05B37/02H05B39/04H05B39/08
    • G06F3/044G06F2203/04101H05B37/02H05B37/0245H05B37/0281H05B39/041H05B39/044H05B39/085Y02B20/42Y02B20/48Y10T307/735Y10T307/766Y10T307/786
    • An electronic circuit including a microchip for use as an intelligent user interface also comprises touch sensor technology that differentiates between proximity and physical contact events to activate and control various loads including light bulbs, products with radio frequency circuitry or electric motors. An input to the microchip is connected to a switch or sensing structure that does not form a serial link between the power source and the load. The electronic circuit controls various functions in response to user actions including automatic delayed shut-off functions, find-in-the-dark indicator and power source level/product state indications. The microchip allows the user to select specific functions based on the time duration of activation signals, the time duration between activation signals and the number of activation signals at the input. The microchip is further configured to interpret and react to the signals received from a user in a way that enhances ease of use of the product and to use the indicators to provide information to the user that is influenced by the signals received as well as the state of the product.
    • 包括用作智能用户界面的微芯片的电子电路还包括触摸传感器技术,其区分接近和物理接触事件以激活和控制包括灯泡,具有射频电路或电动机的产品的各种负载。 对微芯片的输入连接到不在电源和负载之间形成串行链路的开关或感测结构。 电子电路响应于用户动作来控制各种功能,包括自动延迟切断功能,暗暗指示器和电源电平/产品状态指示。 微芯片允许用户基于激活信号的持续时间,激活信号之间的持续时间和输入端的激活信号数来选择特定的功能。 微芯片还被配置为以增强产品易用性的方式解释并响应从用户接收的信号,并且使用指示符向受到接收的信号和状态影响的用户提供信息 的产品。
    • 70. 发明申请
    • ELECTRONIC DEVICE WITH AUTOMATIC MODE SWITCHING
    • 具有自动模式切换的电子设备
    • US20160328248A1
    • 2016-11-10
    • US15213097
    • 2016-07-18
    • Apple Inc.
    • Fletcher R. Rothkopf
    • G06F9/445G06N5/02G06F1/16
    • G06F9/44505G06F1/1626G06F1/1684G06F1/169G06F1/1694G06F1/3231G06F1/3234G06F3/0346G06N5/022H01H9/00H01H35/006Y02D10/173Y10T307/766Y10T307/773Y10T307/786
    • An automatic hold switch is disclosed. The automatic hold switch provides a means for automatically switching a hold feature on and off. When the hold feature is on, one or more input devices of a portable electronic device are disabled or prevented from providing input signals. When the hold feature is off, one or more input devices of a portable electronic device are enabled or allowed to provide input signals. Because the user no longer has to manually control the hold feature, the number of actions that need to be taken by the user is reduced. In one example, the automatic hold switch is embodied with light sensors that detect when the device is in a dark environment and when the device is in a light environment. A dark environment indicates to the portable electronic device that the user wishes not to input and therefore the hold feature is turned on. A lighted environment indicates to the portable electronic device that the user wishes to input and therefore the hold feature is turned off.
    • 公开了一种自动保持开关。 自动保持开关提供自动切换保持功能的手段。 当保持功能打开时,便携式电子设备的一个或多个输入设备被禁用或防止提供输入信号。 当保持功能关闭时,便携式电子设备的一个或多个输入设备被启用或允许提供输入信号。 因为用户不再需要手动控制保持功能,所以减少了用户需要采取的动作数量。 在一个示例中,自动保持开关实施有光传感器,其检测设备何时处于黑暗环境中以及当设备处于光环境中时。 黑暗的环境向便携式电子设备指示用户希望不输入,因此保持功能被打开。 点亮的环境向便携式电子设备指示用户希望输入,因此保持功能被关闭。