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    • 1. 发明授权
    • Method and system for interfacing with an electronic device via respiratory and/or tactual input
    • 用于通过呼吸和/或触觉输入与电子设备接口的方法和系统
    • US09116544B2
    • 2015-08-25
    • US12056061
    • 2008-03-26
    • Pierre Bonnat
    • Pierre Bonnat
    • G06F3/033G09G5/08G06F3/01G06F3/0482G06F3/0485G06F3/0488
    • G06F3/011G06F3/0482G06F3/0485G06F3/04883G06F2203/04803
    • Aspects of a method and system for interfacing with an electronic device via respiratory and/or tactual input are provided. In this regard, respiratory and tactual input may be utilized to interact with an electronic device via a user interface. The user interface may comprise a control region that may enable navigating and selecting objects, a fixed region that may enable display of information that may be independent of a state of, or activity in, the control region, and a content region that may enable display of information that may depend on a state of, or activity in, the control region. Accordingly, objects and/or information displayed on the electronic device may be affected and/or manipulated via tactual and respiratory input. Additionally, each region of the user interface may comprise one or more zones and a size, shape, and/or location of each region may be customized by a user.
    • 提供了通过呼吸和/或触觉输入与电子设备进行接口的方法和系统的方面。 在这方面,呼吸和触觉输入可以用于经由用户界面与电子设备交互。 用户界面可以包括可以导航和选择对象的控制区域,可以显示可以独立于控制区域的状态或活动的信息的固定区域以及可以使得能够显示的内容区域 可能取决于控制区域的状态或活动的信息。 因此,电子设备上显示的物体和/或信息可能通过触觉和呼吸输入受到影响和/或操纵。 另外,用户界面的每个区域可以包括一个或多个区域,并且每个区域的大小,形状和/或位置可以由用户定制。
    • 5. 发明申请
    • Method And System For Processing Signals For A MEMS Detector That Enables Control Of A Device Using Human Breath
    • 用于处理信号的方法和系统用于使用人体呼吸控制装置的MEMS检测器
    • US20110137433A1
    • 2011-06-09
    • US13027054
    • 2011-02-14
    • Pierre Bonnat
    • Pierre Bonnat
    • G05B15/00
    • G01D21/00G05B2219/23386G06F1/3215G06F3/011
    • A method and system for processing signals for a MEMS detector that enables control of a device using expulsion of air via human breath, a machine and/or a device are provided. A microprocessor may receive one or more signals from the MEMS detector that may comprise various component sensor(s), sensing member(s) or sensing segment(s) that may detect movement of air caused by the expulsion of human breath. The signals may be processed by the microprocessor and an interactive output comprising one or more control signals that may enable control of a user interface such as 107a-107e on the multimedia device 106a-106e may be generated. For each component sensor(s), sensing member(s) or sensing segment(s) in the MEMS detector, ranges or gradients may be measured and evaluated to determine which of the sensor(s), sensing member(s) or sensing segment(s) of the MEMS detector 212 may have been activated, moved or deflected.
    • 提供一种用于处理MEMS检测器的信号的方法和系统,其使得能够通过人体呼吸排出空气来控制设备,机器和/或设备。 微处理器可以接收来自MEMS检测器的一个或多个信号,该信号可以包括各种部件传感器,感测部件或感测部分,其可以检测由呼吸排出引起的空气的运动。 这些信号可以由微处理器处理,并且可以生成包括一个或多个控制信号的交互式输出,这些控制信号可以实现多媒体设备106a-106e上的诸如107a-107e之类的用户界面的控制。 对于每个组件传感器,MEMS检测器中的感测构件或感测段可以被测量和评估,以确定传感器,感测构件或感测段中的哪一个 MEMS检测器212的一个或多个可能已被激活,移动或偏转。
    • 8. 发明授权
    • Musical instrument with free reeds
    • 乐器带自由芦苇
    • US07550662B2
    • 2009-06-23
    • US10496965
    • 2002-11-27
    • Pierre Bonnat
    • Pierre Bonnat
    • G10D7/00
    • G10D11/00G10H2230/245
    • The invention relates to a musical instrument having free reeds set into vibration by a flow of air generated by a supply (17) and capable of flowing from the supply in two directions referred to respectively as in and out, the instrument comprising: at least two boxes (2, 3) that are movable relative to each other by moving towards each other or apart from each other; a series of free reeds (27) mounted inside said boxes; and a valve actuator mechanism (31) where opening and closing the valves enables the reeds to be engaged or not engaged by the flow of air, the mechanism including in particular actuator keys (11) mounted on the moving boxes. The instrument of the invention includes means (5) for supporting and guiding displacement of the boxes relative to each other along a determined trajectory.
    • 本发明涉及一种乐器,其具有通过由电源(17)产生的空气流而被设置成振动的自由簧片,并且能够从所述电源在所述仪器中分别输入和输出的两个方向上流动,所述乐器包括:至少两个 通过彼此移动或彼此分开可相对于彼此移动的盒子(2,3); 一系列自由的芦苇(27)安装在箱内; 和阀致动器机构(31),其中打开和关闭阀使得簧片能够通过空气流动接合或不接合,该机构特别包括安装在移动箱上的致动器键(11)。 本发明的仪器包括用于沿着确定的轨迹相对于彼此支撑和引导箱体的移位的装置(5)。
    • 10. 发明申请
    • Novel musical instrument with free reeds
    • 具有免费芦苇的新乐器
    • US20050126367A1
    • 2005-06-16
    • US10496965
    • 2002-11-27
    • Pierre Bonnat
    • Pierre Bonnat
    • G10D11/00
    • G10D11/00G10H2230/245
    • The invention relates to a musical instrument having free reeds set into vibration by a flow of air generated by a supply (17) and capable of flowing from the supply in two directions referred to respectively as in and out, the instrument comprising: at least two boxes (2, 3) that are movable relative to each other by moving towards each other or apart from each other; a series of free reeds (27) mounted inside said boxes; and a valve actuator mechanism (31) where opening and closing the valves enables the reeds to be engaged or not engaged by the flow of air, the mechanism including in particular actuator keys (11) mounted on the moving boxes. The instrument of the invention includes means (5) for supporting and guiding displacement of the boxes relative to each other along a determined trajectory.
    • 本发明涉及一种乐器,其具有通过由电源(17)产生的空气流而被设置成振动的自由簧片,并且能够从所述电源在所述仪器中分别输入和输出的两个方向上流动,所述乐器包括:至少两个 通过彼此移动或彼此分开可相对于彼此移动的盒子(2,3); 一系列自由的芦苇(27)安装在箱内; 和阀致动器机构(31),其中打开和关闭阀使得簧片能够通过空气流动接合或不接合,该机构特别包括安装在移动箱上的致动器键(11)。 本发明的仪器包括用于沿着确定的轨迹相对于彼此支撑和引导箱体的移位的装置(5)。