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    • 3. 发明申请
    • Digital musical instrument system
    • 数字乐器系统
    • US20050235813A1
    • 2005-10-27
    • US10520223
    • 2003-07-14
    • James Barry
    • James Barry
    • G10H1/00G10H1/053G10H1/26G10H1/34G10H1/38G10H3/00
    • G10H1/342G10H2220/541G10H2240/061G10H2240/285
    • The present invention provides an interactive multimedia apparatus (1, 11, 21) comprising a digital musical instrument (3, 14, 24, 41) and having a plurality of control members (42, 44, 45, 46) including at least one limited state (on/off) control member (44) and one or more dynamic range state control members (42, 45, 46). A central control unit (2, 12, 22) is also provided having a store of digital media stored thereon and a suite of software for interpreting the state of the control members (42, 44, 45, 46) in order to select, open and render the digital media. A control unit is associated with the digital musical instrument (3, 14, 24, 41) and has a CPU and a sensing means for identifying the state of the control members (42, 44, 45, 46). The control unit has means for communicating the current state of the control members (42, 44, 45, 46) to the central control unit (2, 12, 22) and the apparatus is characterised in that the sensing means comprises a plurality of independent transducers each of which monitors the activation of a separate dynamic range state control member (42, 45, 46).
    • 本发明提供了一种交互式多媒体设备(1,11,21),包括数字乐器(3,14,24,41),并且具有多个控制构件(42,44,45,46),包括至少一个有限的 状态(开/关)控制构件(44)和一个或多个动态范围状态控制构件(42,45,46)。 还提供了一个中央控制单元(2,12,22),具有存储在其上的数字媒体存储器和用于解释控制构件(42,44,45,46)的状态的软件套件,以便选择打开 并呈现数字媒体。 控制单元与数字乐器(3,14,24,41)相关联并且具有用于识别控制构件(42,44,45,46)的状态的CPU和感测装置。 控制单元具有用于将控制构件(42,44,45,46)的当前状态传送到中央控制单元(2,12,22)的装置,并且该装置的特征在于,感测装置包括多个独立 换能器,每个换能器监视单独的动态范围状态控制构件(42,45,46)的激活。
    • 4. 发明授权
    • Unitary transducer control system
    • 单一传感器控制系统
    • US06216059B1
    • 2001-04-10
    • US09395671
    • 1999-09-14
    • Paul Francis Ierymenko
    • Paul Francis Ierymenko
    • G01M138
    • H04R29/00G10H3/181G10H3/186G10H3/26G10H2220/171G10H2220/511G10H2220/541G10H2250/031G10H2250/441H04R3/04
    • A control system controls the motion of a physical subject such as a mechanical system to damp or enhance the motion via a single transducer which alternates in a time-discrete manner between the task of reading a signal indicative of the state of the subject and the task of influencing said state by the application of a force. Control of motion or vibration is achieved through a series of actuating pulses interleaved with sensing operations. The same single transducer alternately acts as input to the control system from the subject and output from the control system to the subject. The control system provides full and individual control of all important harmonic modes of vibration of a subject mechanical system.
    • 控制系统控制诸如机械系统的物理对象的运动,以经由单个换能器来阻尼或增强运动,所述单个换能器以时间离散的方式在读取指示对象的状态的信号和任务之间交替 通过施加武力影响该州。 运动或振动的控制是通过一系列与感测操作交错的致动脉冲实现的。 相同的单个换能器交替地作为来自主体的控制系统的输入和从控制系统输出到被摄体。 控制系统可以对主体机械系统的所有重要谐波振动模式进行全面和个别的控制。
    • 10. 发明授权
    • Transducer saddle for stringed instrument
    • 用于弦乐器的传感器鞍座
    • US08507783B1
    • 2013-08-13
    • US13233319
    • 2011-09-15
    • Richard Barbera
    • Richard Barbera
    • G10H1/32
    • G10H3/185G10D3/04G10H2220/485G10H2220/541G10H2220/555
    • A string saddle system for a multi-stringed instrument includes a unitary saddle body having a plurality of integral cavities, each in correspondence with a respective string and defining an area of sensitivity beneath each string extending from a top saddle body surface to the corresponding cavity structure and extending horizontally according to a length of the integral cavity. A flexurally responsive transducer element is located within and mechanically coupled to each integral cavity at mechanical coupling points for converting vibratory energy from the respective string to an electric signal. A first conductor layer is embedded within the saddle body, and, a second conductor layer embedded within the saddle body, the first and second conductor layers configured on a unitary plane, and connected to each transducer such that the transducer element of adjacent integral cavities couple electrical signals of alternating phase.
    • 用于多弦乐器的弦鞍系统包括具有多个整体空腔的整体鞍座体,每个腔体与相应的琴弦相对应,并且在每个琴弦的下面限定了从顶部鞍座体表面延伸到相应腔体结构的灵敏区域 并且根据整体腔的长度水平延伸。 弯曲响应的换能器元件位于机械耦合点处并机械耦合到每个整体腔,用于将来自相应弦的振动能量转换为电信号。 第一导体层嵌入在鞍座体内,并且嵌入在鞍座体内的第二导体层,第一和第二导体层构造在单一平面上,并连接到每个换能器,使得相邻整体腔体的换能器元件 交变相电信号。