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    • 1. 发明授权
    • Coaxial musical instrument transducer
    • 同轴乐器传感器
    • US06677514B2
    • 2004-01-13
    • US10025387
    • 2001-12-19
    • Lawrence R. Fishman
    • Lawrence R. Fishman
    • G10H314
    • G10H3/143G10H3/185G10H2220/471G10H2220/495G10H2220/535Y10S84/24
    • A transducer for a stringed musical instrument utilizes a coaxial structure. An electromechanical film tape is disposed about an inner, electrically conductive core. An outer conductor is formed about the electromechanical film tape. The electromechanical film tape may be provided as a piezoelectric polymer film or an electret film having a permanent electric charge, and is formed about the inner core by wrapping or braiding. Prior to being disposed about the inner core, the film tape may be polarized through the application of a direct current through the film to substantially align the electrical domains in the film. The transducer is configured for placement underneath the saddle in a bridge of a stringed musical instrument.
    • 用于弦乐器的换能器采用同轴结构。 机电薄膜带围绕内部导电芯设置。 在机电薄膜带周围形成外导体。 机电膜带可以设置为压电聚合物膜或具有永久电荷的驻极体膜,并且通过缠绕或编织形成在内芯周围。 在围绕内芯布置之前,胶带可以通过施加直流电流而被极化,以使薄膜中的电畴基本对齐。 传感器被配置为放置在鞍座下方的弦乐器的桥梁中。
    • 3. 发明申请
    • Coaxial musical instrument transducer
    • 同轴乐器传感器
    • US20020117047A1
    • 2002-08-29
    • US10025387
    • 2001-12-19
    • Lawrence R. Fishman
    • G10H003/14
    • G10H3/143G10H3/185G10H2220/471G10H2220/495G10H2220/535Y10S84/24
    • A transducer for a stringed musical instrument utilizes a coaxial structure. An electromechanical film tape is disposed about an inner, electrically conductive core. An outer conductor is formed about the electromechanical film tape. The electromechanical film tape may be provided as a piezoelectric polymer film or an electret film having a permanent electric charge, and is formed about the inner core by wrapping or braiding. Prior to being disposed about the inner core, the film tape may be polarized through the application of a direct current through the film to substantially align the electrical domains in the film. The transducer is configured for placement underneath the saddle in a bridge of a stringed musical instrument.
    • 用于弦乐器的换能器采用同轴结构。 机电薄膜带围绕内部导电芯设置。 在机电薄膜带周围形成外导体。 机电膜带可以设置为压电聚合物膜或具有永久电荷的驻极体膜,并且通过缠绕或编织形成在内芯周围。 在围绕内芯布置之前,胶带可以通过施加直流电流而被极化,以使薄膜中的电畴基本对齐。 传感器被配置为放置在鞍座下方的弦乐器的桥梁中。
    • 5. 发明授权
    • Piezoelectric transducer saddle for stringed musical instruments
    • 用于弦乐器的压电换能器鞍座
    • US5322969A
    • 1994-06-21
    • US855374
    • 1992-03-20
    • Kenneth T. AaroeDonald D. Markley
    • Kenneth T. AaroeDonald D. Markley
    • G10H3/18G01H3/18
    • G10H3/185G10H2220/481G10H2220/485G10H2220/495G10H2220/501G10H2220/531G10H2220/535G10H2220/551Y10S84/24
    • The piezoelectric transducer saddle of the present invention is a thin, generally rectangular member that is designed to fit into the bridge slot of a musical instrument such as a guitar. The piezoelectric element is oriented vertically in the saddle and constitutes a structural member of the saddle. In a first embodiment of the saddle, a piezoelectric element forms the saddle itself. Electrical contacts are engaged to the sides of the piezoelectric element to produce electrical output. A preferred embodiment of the saddle is a laminated structure wherein the laminated layers are disposed vertically, and a vertical layer composed of a piezoelectric material is generally centrally disposed within the laminated structure. A metallic electrical contact is engaged on each side of the piezoelectric material to receive electrical signals generated by the piezoelectric material. In one embodiment, one of the electrical contacts is formed as a metallic layer which rises to the upper surface of the saddle to make contact with the strings of the musical instrument, in order to provide a ground for the metallic musical strings of the instrument. Further embodiments of the present invention utilize multiple piezoelectric elements and shaped piezoelectric elements to produce enhanced performance.
    • 本发明的压电换能器鞍座是薄的,大致矩形的构件,其被设计成装配在诸如吉他的乐器的桥槽中。 压电元件在鞍座中垂直取向并构成鞍座的结构构件。 在鞍座的第一实施例中,压电元件自身形成鞍座。 电触点接合到压电元件的侧面以产生电输出。 鞍座的优选实施例是层压结构,其中层压层垂直设置,并且由压电材料构成的垂直层通常居中地设置在层压结构内。 金属电触点接合在压电材料的每一侧以接收由压电材料产生的电信号。 在一个实施例中,电触点中的一个形成为上升到鞍座的上表面以与乐器的琴弦接触的金属层,以便为乐器的金属琴弦提供地面。 本发明的另外的实施例利用多个压电元件和成形压电元件来产生增强的性能。
    • 6. 发明授权
    • High output film piezolelectric pickup for stringed musical instruments
    • 高输出胶片用于弦乐器的PIEZOLELECTRIC PICKUP
    • US5204487A
    • 1993-04-20
    • US762569
    • 1991-09-17
    • Robert A. Turner
    • Robert A. Turner
    • G10H3/18
    • G10H3/185G10H2220/471G10H2220/495G10H2220/531G10H2220/535Y10S84/24
    • An electro-mechanical pickup for a musical instrument having a plurality of strings. The pickup includes a core, a first piezoelectric transducer element connected in parallel with a second piezoelectric transducer element, and a two-conductor output lead. Using two piezoelectric transducer elements connected in parallel increases the output voltage and capacitance of the pickup compared with using a single piezoelectric transducer element. The core is elongated, and has a first face opposite a second face. The first piezoelectric transducer element includes first and second electrodes on opposite faces of a first piezoelectric film. The second piezoelectric transducer element includes third and fourth electrodes on opposite faces of a second piezoelectric film. The piezoelectric transducer elements are each responsive to more than one string of the musical instrument. The first piezoelectric transducer element is stacked on the core with the second electrode in contact with the first face of the core. The second piezoelectric tranducer element is stacked on the first piezoelectric transducer element with the third electrode in contact with the first electrode. The output lead is attached to the core, with one conductor electrically contacting the first electrode and the third electrode, and the other conductor electrically contacting the second electrode and the fourth electrode.
    • 一种用于具有多个弦的乐器的机电拾音器。 拾取器包括芯,与第二压电换能器元件并联连接的第一压电换能器元件和双导体输出引线。 与使用单个压电换能器元件相比,使用并联连接的两个压电换能器元件增加了拾取器的输出电压和电容。 芯部是细长的,并且具有与第二面相对的第一面。 第一压电换能器元件包括在第一压电膜的相对面上的第一和第二电极。 第二压电换能器元件包括在第二压电膜的相对面上的第三和第四电极。 压电换能器元件各自响应于乐器的多于一个琴弦。 第一压电换能器元件堆叠在芯上,第二电极与芯的第一面接触。 第二压电换能器元件堆叠在第一压电换能器元件上,第三电极与第一电极接触。 输出引线附接到芯,其中一个导体与第一电极和第三电极电接触,另一导体与第二电极和第四电极电接触。