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    • 14. 发明专利
    • Analog-value generating element
    • 模拟元素生成元素
    • JPS54149539A
    • 1979-11-22
    • JP5913578
    • 1978-05-17
    • Mitsubishi Electric Corp
    • HIDA TOSHIOSUGIURA TOSHIOISHII KENJITANIGUCHI KIYOUJI
    • G10H5/00G06G7/26G10H5/10
    • PURPOSE:To obtain an analog-value generating element which can be connected easily to a printed circuit with a voltage application circuit and a voltage scan circuit both mounted, by providing a bump to a connection terminal. CONSTITUTION:Several voltage application electrodes 2 and voltage detection electrodes 3 are provided at fixed positions of resistive coating layer 11 made of a resistive material. Then, conductors 22 and 32 and connection terminals 21 and 31 are led out from respective electrodes, and connection terminals 21 and 31 are provided with bumps 6. Bumps 6 simplify connections to an external circuit. Between layer 11 and conductors, insulating coatings 5 are provided and insulating substrate 4 holds each component part. In this constitution, the potential distribution, generated on layer 11 by applying a fixed voltage to electrodes 2, is detected by individual scanning on each voltage detection electrode, thereby obtaining a fixed analog value.
    • 目的:通过向连接端子提供一个凸块,以获得一个模拟值产生元件,它可以通过一个电压施加电路和一个电压扫描电路容易地连接到印刷电路。 构成:在由电阻材料制成的电阻涂层11的固定位置处设置有多个电压施加电极2和电压检测电极3。 然后,导体22和32以及连接端子21和31从相应的电极引出,并且连接端子21和31设置有凸块6.凸起6简化了与外部电路的连接。 在层11和导体之间,提供绝缘涂层5,并且绝缘基板4保持每个部件。 在这种结构中,通过在每个电压检测电极上进行单独扫描来检测通过对电极2施加固定电压而在层11上产生的电位分布,从而获得固定的模拟值。
    • 15. 发明专利
    • ELECTRONIC MUSICAL INSTRUMENT
    • JPS54105520A
    • 1979-08-18
    • JP1191078
    • 1978-02-07
    • NIPPON MUSICAL INSTRUMENTS MFG
    • TAKEUCHI KAZUFUMI
    • G10H1/053G10H1/06G10H1/14G10H5/10G10H7/08
    • PURPOSE:To obtain the timbre changes approximate to those of natural musical instruments by changing with time each amplitude coefficient applied to basic waves and each component of their higher harmonic waves while mutually associating these. CONSTITUTION:The amplitude coefficient Cn'(t) for each higher harmonic component including basic waves applied to a higher harmonic multiplier 13 at each sampling point of the musical tone waveforms corresponding to touched key pitches become Cn'(t)=EV1(t)+SIGMADn EVm(t) if Dn is let to be the storage constants of the constant memory 20 corresponding to each order of other higher harmonics except the basic waves (first higher harmonic) EV1(t), EVm(t) is let to be the function waveform values outputted from respective function waveform generators 18a, 18a'. Hence, it turns out that the amplitude coefficient for each of other higher harmonic components except the basic waves changes by having always a fixed association to the amplitude coefficient for the basic waves, thus if the characteristics having negative amplitude values along with the lapse of time from the sounding start time are provided to the function waveform values from the generator 18a', the timbres change to those characterizing the base waves and the musical tones resembling to those of natural musical instruments may be obtained.