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    • 9. 发明授权
    • Perforated acoustic transport member
    • 穿孔声传输构件
    • US4384633A
    • 1983-05-24
    • US246819
    • 1981-03-23
    • Sigurd Hoyer-Ellefsen
    • Sigurd Hoyer-Ellefsen
    • G06F3/02G01B17/00G10K11/24H03K17/967B41J5/08
    • G10K11/24B41J5/08H03K17/967
    • An improved acoustic transport member for use in a keyboard having key operated strikers individually actuatable for inducing acoustic energy in the form of sound waves which propagate through the member from selected inducing positions therealong. A first portion of the member is fabricated in the form of a series of tabs to provide discrete impact positions for generating sound waves in response to impact actuation of related strikers. A second portion integrally connected with the first portion links all of the tabs and functions as a sound corridor for receiving and transporting all sound waves generated as a result of the selected striker impacting its related tab. An aperture is provided through the tabs. A peripheral rim of the aperture provides sound reflecting boundaries that define sound passages on the tabs for directing the sound waves in different directions in communicating the sound waves from the tabs into the corridor. As a result of the sound waves passing through the passages, distinct wave separation is accomplished. A top portion of the peripheral rim is located along the base of the corridor for reflecting the traveling waves in a manner substantially preventing the waves from entering into areas of passing tabs, thus confining the propagating sound waves within the corridor portion of the member. By controlling the sound waves through the passages and substantially trapping the propagating sound waves within the corridor, dispersion of the sound waves is effectively minimized.
    • 一种用于键盘的改进的声传输构件,其具有可操作的键操作的撞击器,其可独立地致动以引起声波形式的声能,所述声能从其选择的诱导位置传播通过构件。 构件的第一部分以一系列突片的形式制造,以提供响应于相关撞击器的冲击致动而产生声波的离散冲击位置。 与第一部分整体连接的第二部分连接所有突出部并且用作声音走廊,用于接收和传送由于所选择的撞击器影响其相关标签而产生的所有声波。 通过突片提供孔。 孔的周边边缘提供了声音反射边界,其限定了突片上的声音通道,用于在不同方向引导声波,以将声波从突片传送到走廊中。 由于通过声道的声波的结果,完成了不同的波分离。 外围边缘的顶部位于走廊的底部,用于以基本上防止波进入通过突片的区域的方式反射行波,从而将传播的声波限制在构件的走廊部分内。 通过通过通道控制声波并且基本上将传播的声波捕获在走廊内,声波的分散被有效地最小化。