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    • 5. 发明公开
    • Key actuating system
    • Schlüsselbetätigungssystem
    • EP1895503A1
    • 2008-03-05
    • EP07017241.6
    • 2007-09-03
    • YAMAHA CORPORATION
    • Yamashita, MasayoshiSawada, ShuichiSuzuki, HideoHayashi, Yoshinori
    • G10C3/12G10H1/34
    • G10C3/16G10C3/00
    • A key actuating system (1) of a keyboard musical instrument is provided which helps quickly push the keys by reducing reaction force with respect to force of pushing the keys during manual operation, and which supports a person having less strength to play the keyboard musical instrument. The key actuating system for a keyboard musical instrument generates a sound when a key (3) is pushed including; a pressure detection sensor (11) detecting a pushing pressure on the key; a status detection sensor (13) detecting a movement status of the key: an actuator (15) actuating the key in a pushing direction of the key; and a control portion (19), when the pressure detection sensor detects the pushing pressure and the status detection sensor detects motion of the key, controls operations of the actuator in order to maintain the detected pressure by the pressure detection sensor at a pressure threshold which is in a range larger than 0 and smaller than a pushing pressure on the key which is necessary for making a sound.
    • 提供了一种键盘乐器的按键致动系统(1),其通过在手动操作期间相对于推动键的力减小反作用力来帮助快速推动键,并且其支持具有较小强度的人来播放键盘乐器 。 当按下键(3)时,键盘乐器的按键致动系统产生声音,包括: 压力检测传感器(11)检测钥匙上的推压力; 检测钥匙的移动状态的状态检测传感器(13):致动器(15),其在钥匙的推动方向上致动钥匙; 以及控制部(19),当所述压力检测传感器检测到所述推压力并且所述状态检测传感器检测到所述键的运动时,控制所述致动器的动作,以将所述压力检测传感器的检测压力维持在压力阈值 在大于0且小于按键所需的按压压力的范围内。
    • 8. 发明公开
    • INSULATOR FOR AUDIO AND METHOD FOR EVALUATING SAME
    • VERFAHREN ZU SEINER BEWERTUNG的音乐摄影师
    • EP2600348A1
    • 2013-06-05
    • EP11812621.8
    • 2011-07-29
    • Tokkyokiki Corporation
    • MARUYAMA, TeruoOKAMOTO, KozoYAMAGUCHI, SatokiTAJIMA, Akio
    • G11B33/08F16F1/06F16F1/12F16F15/06H04R1/00
    • G10K15/00F16F1/128F16F3/12F16F13/02G10C3/00G10D3/003H04R1/026
    • In the case of a conventional hard material insulator, by selecting a good quality acoustic material, reproduced sound can be tuned with use of characteristics of the material; however, various types of acoustic materials to be applied respectively have specific high frequency characteristics, and therefore there are disadvantages that an acoustic effect does not have diversity or versatility, depends on compatibility with an audio device, and also changes when a placement environment of an audio device, a genre of music, or the like is changed. On the other hand, a wind-bell member (resonant member) is arranged in parallel with a main propagation path of vibration transferred from an audio device to an insulator. On the basis of this, a vibration system of a wind-bell having a tone determined by many factors such as a fundamental tone, harmonic tones, lingering sound, and fluctuation assists (enhances) high frequency vibration propagated from the audio device. As a result, on the basis of the above assist action that is different in principle from a conventional type, acoustic characteristics such as a sense of localization, resolution, a sense of transparency, a sense of scale, and the like of a sound image can be dramatically improved.
    • 在常规硬质材料绝缘体的情况下,通过选择优质的声学材料,可以利用材料的特性来调整再现的声音; 然而,要应用的各种类型的声学材料分别具有特定的高频特性,因此存在声音效果不具有多样性或多功能性的缺点,这取决于与音频装置的兼容性,并且还会在 音频设备,音乐类型等改变。 另一方面,风铃构件(共振构件)与从音频装置传递到绝缘体的振动的主传播路径平行地布置。 在此基础上,具有由音调装置传播的基本色调,谐波音调,延迟声音和波动等多种因素决定的音调的振铃系统有助于(增强)高频振动。 结果,在原理上与常规类型不同的上述辅助动作的基础上,声像的声学特性如定位感,分辨率,透明感,尺度感等等 可以大大提高。