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    • 5. 发明授权
    • Aqueous glittering ink
    • 水闪光墨水
    • US06770689B1
    • 2004-08-03
    • US09665534
    • 2000-09-19
    • Yasuyuki YoshimuraNaoshi MurataYuki YamamotoTomohiro Sawa
    • Yasuyuki YoshimuraNaoshi MurataYuki YamamotoTomohiro Sawa
    • C09D1118
    • C09D11/18C09D5/36C09D11/16
    • The glittering ink of the present invention contacts scaly glittering particles, a water-soluble resin, a water-soluble organic solvent, colorant and water. The said scaly glittering particles have a median diameter of at least 10 &mgr;m, a ratio of smoothness on the particle surface to a median diameter of not greater than 0.011, and a surface coating ratio of the said colorant in a written mark of not greater than 80% in a state of a dried written mark. In addition, the aqueous glittering ink of the present invention has the thixotropy index (T.I. value) of not less than 1.3, represented by the ratio of V0.5 to V1.0 (V0.5/V1.0), wherein V0.5 is the viscosity with the rotation speed of 0.5 rpm and V1.0 is the viscosity with the rotation speed of 1.0 rpm when the ink is measured by an ELD-typed viscometer (3° R14 cone, at the temperature of 20° C.) and the ink has the V0.5, the viscosity with the rotation speed of 0.5 rpm, of 1000˜15000 mPa·s.
    • 本发明的闪光墨接触鳞片状闪光颗粒,水溶性树脂,水溶性有机溶剂,着色剂和水。 所述鳞片状闪光颗粒的中值粒径至少为10μm,颗粒表面的平滑度与中值直径的比值不大于0.011,并且所述着色剂的书写痕迹的表面涂布比不大于 80%的干书面状态。 此外,本发明的水性闪光油的触变指数(TI值)不小于1.3,以V0.5至V1.0的比例(V0.5 / V1.0)表示,其中V0。 5是旋转速度为0.5rpm的粘度,当通过ELD型粘度计(3°R14锥,温度为20℃)测量墨时,V1.0是转速为1.0rpm的粘度。 ),油墨具有V0.5,转速为0.5rpm的粘度为1000〜15000mPa·s。
    • 9. 发明授权
    • Frequency band extending device and method, encoding device and method, decoding device and method, and program
    • 频带扩展装置及方法,编码装置及方法,解码装置及方法及程序
    • US09208795B2
    • 2015-12-08
    • US13499559
    • 2010-09-29
    • Yuki YamamotoToru ChinenHiroyuki HonmaYuhki Mitsufuji
    • Yuki YamamotoToru ChinenHiroyuki HonmaYuhki Mitsufuji
    • H04J1/00G10L21/038G10L19/02
    • G10L21/0388G10L19/0208G10L21/038
    • The present invention relates to a frequency band extending device and method, an encoding device and method, a decoding device and method, and a program, whereby music signals can be played with higher sound quality due to the extension of frequency bands.A bandpass filter 13 divides an input signal into multiple sub-band signals, a feature amount calculating circuit 14 calculates feature amount using at least one of the multiple divided sub-band signals and the input signal, a high frequency sub-band power estimating circuit 15 calculates an estimated value of a high frequency sub-band power based on the calculated feature amount, a high frequency signal generating circuit 16 generates a high frequency signal component based on the multiple sub-band signals divided by the bandpass filter 13, and the estimated value of the high frequency sub-band power calculated by the high frequency sub-band power estimating circuit 15. A frequency band extending device 10 extends the frequency band of the input signal using a high frequency signal component. The present invention may be applied to a frequency band extending device, for example.
    • 本发明涉及一种频带扩展装置及方法,编码装置和方法,解码装置和方法以及程序,由此可以由于频带的扩展而以更高的音质播放音乐信号。 带通滤波器13将输入信号分割为多个子带信号,特征量计算电路14使用多个分频子带信号和输入信号中的至少一个来计算特征量,高频子带功率估计电路 基于计算出的特征量计算高频子带功率的估计值,高频信号生成电路16基于由带通滤波器13分割的多个子带信号生成高频信号分量, 由高频子带功率估计电路15计算的高频子带功率的估计值。频带扩展装置10使用高频信号分量来扩展输入信号的频带。 例如,本发明可以应用于频带扩展装置。
    • 10. 发明申请
    • ENCODING DEVICE AND METHOD, DECODING DEVICE AND METHOD, AND PROGRAM
    • 编码设备和方法,解码设备和方法以及程序
    • US20140205101A1
    • 2014-07-24
    • US14237933
    • 2012-08-14
    • Yuki YamamotoToru Chinen
    • Yuki YamamotoToru Chinen
    • G10L19/008
    • G10L19/008G10L19/0208G10L19/22G10L21/038
    • The present technology relates to an encoding device and method, a decoding device and method, and a program that enable audio of a high audio quality to be obtained with a smaller code amount.The encoding device multiplexes low frequency encoding data obtained by encoding a low frequency component of an input signal and high frequency encoding data obtained by encoding data including an estimation coefficient to acquire a high frequency component of the input signal by estimation and outputs multiplexed data. When the input signal is encoded, a calculation unit calculates pseudo high frequency subband power to be an estimation value of power of the high frequency component from an estimation coefficient selected in a frame immediately before a frame of a processing target and the high frequency component of the input signal. In addition, a determination unit determines whether reuse of the estimation coefficient of the immediately previous frame is enabled in the frame of the processing target, on the basis of a comparison result of the calculated pseudo high frequency subband power and actual high frequency component power. The present invention can be applied to the encoding device.
    • 本技术涉及编码装置和方法,解码装置和方法以及以较小代码量获得高音频质量的音频的程序。 编码装置对通过对输入信号的低频分量进行编码而获得的低频编码数据和通过对包含估计系数进行编码的数据而获得的高频编码数据进行复用,从而通过推定获取输入信号的高频分量,并输出复用数据。 当输入信号被编码时,计算单元将伪高频子带功率从紧邻处理目标的帧之前的帧中选择的估计系数和高频分量的高频分量计算为高频分量的功率估计值 输入信号。 此外,确定单元基于所计算的伪高频子带功率和实际高频分量功率的比较结果,确定在处理对象的帧中是否启用了紧前一帧的估计系数的再利用。 本发明可以应用于编码装置。