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    • 53. 发明授权
    • Process for producing display device
    • 制造显示装置的方法
    • US06729924B2
    • 2004-05-04
    • US10162599
    • 2002-06-06
    • Tsutomu IkedaMasahiro Nakanishi
    • Tsutomu IkedaMasahiro Nakanishi
    • G03G1316
    • C25D13/12G02F1/167
    • An electrophoretic display device is provided with an improved display quality by distributing an electrophoretic liquid mixture containing electrophoretic particles to respective pixels in substantially equal amounts, thereby obviating a display density fluctuation due to a difference in distributed amount of the electrophoretic particles at the respective pixels. The equal distribution is performed through a process including the use of a temporary adsorbing member carrying the electrophoretic particles in an electrostatically adsorbed form in a pattern corresponding to an arrangement pattern, followed by transfer of the electrophoretic particles to the respective pixels, or a process including distribution of a distribution liquid containing the electrophoretic particles to the respective pixels followed by a step of adding the dispersion liquid.
    • 通过将含有电泳粒子的电泳液体混合物分配到各个像素中,以相当大的量分配电泳显示装置,从而避免了由于各个像素处的电泳粒子的分布量的差异引起的显示密度波动。 通过包括使用以静电吸附形式携带电泳颗粒的临时吸附构件以与排列图案相对应的图案,然后将电泳颗粒转移到各个像素的方法进行等分布,或包括 将含有电泳粒子的分布液分配到各个像素,然后加入分散液。
    • 54. 发明授权
    • Process for producing display device
    • 制造显示装置的方法
    • US06524153B1
    • 2003-02-25
    • US09570692
    • 2000-05-12
    • Tsutomu IkedaMasahiro Nakanishi
    • Tsutomu IkedaMasahiro Nakanishi
    • H05D506
    • C25D13/12G02F1/167
    • An electrophoretic display device distributes an electrophoretic liquid mixture containing electrophoretic particles to respective pixels in substantially equal amounts, thereby obviating a display density fluctuation due to a difference in distributed amount of the electrophoretic particles at the respective pixels. The equal distribution is performed through a process including the use of a temporary adsorbing member carrying the electrophoretic particles in an electrostatically adsorbed form in a pattern corresponding to an arrangement pattern, followed by transfer of the electrophoretic particles to the respective pixels, or a process including distribution of a distribution liquid containing the electrophoretic particles to the respective pixels followed by a step of adding the dispersion liquid.
    • 电泳显示装置将含有电泳粒子的电泳液体混合物以基本相同的量分配到各个像素,从而消除由于各个像素处的电泳粒子的分布量的差异引起的显示密度波动。 通过包括使用以静电吸附形式携带电泳颗粒的临时吸附构件以与排列图案相对应的图案,然后将电泳颗粒转移到各个像素的方法进行等分布,或包括 将含有电泳粒子的分布液分配到各个像素,然后加入分散液。
    • 56. 发明授权
    • Musical tone waveform producing apparatus for electronic musical
instrument
    • 用于电子乐器的乐音波形产生装置
    • US4903564A
    • 1990-02-27
    • US253222
    • 1988-09-28
    • Masahiko HatanakaDaisuke MoriMasahiro Nakanishi
    • Masahiko HatanakaDaisuke MoriMasahiro Nakanishi
    • G10H1/18G10H1/057G10H1/06G10H1/46G10H7/02
    • G10H7/02G10H1/0575G10H1/06
    • In a musical tone waveform producing apparatus having an operating device for receiving an instruction from a user, a waveform memory, a waveform control circuit for reading out tone-color waveform data from the waveform memory, an envelope memory, an envelope control circuit for reading out the envelope data from the envelope memory, and a multiplier for producing a resultant waveform, tone-color waveform data formed of a number of waveform data blocks each having an attenuation flag is prestored in the waveform memory and the attenuation flag is received by the envelope control circuit to produce attenuated envelope data while the attenuation flag is valid and to output the envelope data read out of the envelope memory while the attenuation flag is invalid. As a result, the resultant waveform has no undesirable noise component caused by the following tone-color waveform data.
    • 在具有用于接收来自用户的指令的操作装置的乐音波形产生装置,波形存储器,用于从波形存储器读出音色波形数据的波形控制电路,包络存储器,用于读取的包络控制电路 从包络存储器输出包络数据,并且生成合成波形的乘法器,由多个具有衰减标志的波形数据块形成的色彩波形数据预先存储在波形存储器中,衰减标志由 包络控制电路在衰减标志有效时产生衰减包络数据,并且在衰减标志无效时输出从包络存储器读出的包络数据。 结果,所得到的波形没有由以下音色波形数据引起的不期望的噪声分量。
    • 57. 发明授权
    • Music sound generation apparatus, music sound generation system, and music sound generation method
    • 音乐声音发生装置,音乐声音生成系统和音乐声音生成方法
    • US08492635B2
    • 2013-07-23
    • US13218948
    • 2011-08-26
    • Masahiro Nakanishi
    • Masahiro Nakanishi
    • G10H1/36
    • G10H1/0058G10H1/183G10H1/22G10H2230/041G10H2240/325
    • A music sound generation apparatus generates music-sound data based on sound source data, and outputs the music-sound data in synchronization with audio data obtained separately from the music-sound data. A channel assigner assigns a predetermined number of channels to the audio data and the music-sound data. A read control unit reads the audio data and the music-sound data in accordance with their assigned channels. A signal processing unit generates predetermined music by controlling the sound level of the read audio data and the read music-sound data on each assigned channel and mixing the audio data and the music-sound data. When detecting no unoccupied channel, the channel assigner determines, as an unoccupied channel, a channel selected from channels excluding the channel to which the audio data has been assigned. The signal processing unit performs sound elimination on the unoccupied channel.
    • 音乐声音产生装置基于声源数据生成音乐数据,并且与音乐数据分开地获得的音频数据同步地输出音乐数据。 频道分配器向音频数据和音乐声音数据分配预定数量的频道。 读取控制单元根据其分配的频道读取音频数据和音乐数据。 信号处理单元通过在每个分配的频道上控制读取的音频数据和读出的音乐数据的声级并且混合音频数据和音乐声音数据来产生预定音乐。 当检测到没有未被占用的信道时,信道分配器将未被占用的信道确定从除已分配音频数据的信道之外的信道中选择的信道。 信号处理单元在未占用信道上执行声音消除。
    • 58. 发明授权
    • Nonvolatile storage module, access module, musical sound data file generation module and musical sound generation system
    • 非易失存储模块,访问模块,音乐声音数据文件生成模块和音乐声音生成系统
    • US08450589B2
    • 2013-05-28
    • US12936239
    • 2009-03-16
    • Masahiro Nakanishi
    • Masahiro Nakanishi
    • G10H7/00
    • G10H7/02G10H1/0066G10H2240/145
    • Musical sound data groups are recorded in nonvolatile memory banks by multiplexing the data without being compressed. A data reader reads the musical sound data in parallel from the plurality of nonvolatile memory banks according to reading instructions from an access module. In a musical sound generation system that cannot expect which pitch of the musical sound data is instructed to be read, since a plurality of pieces of data can be read in parallel from the plurality of nonvolatile memory banks, a sound production delay time can fall within an allowable time. Thus, by using a currently dominant large-capacity multi level NAND flash memory as a memory for the musical sound data, a high sound quality and compact musical sound generation system can be realized.
    • 音乐数据组通过在不压缩的情况下复用数据而被记录在非易失性存储体中。 数据读取器根据来自访问模块的读取指令从多个非易失性存储体中并行读取音乐声音数据。 在不能指示音乐声音数据的音高被指示被读取的音乐声音生成系统中,由于可以从多个非易失性存储体并行地读取多条数据,所以声音产生延迟时间可以落在 允许的时间。 因此,通过使用当前主导的大容量多电平NAND闪速存储器作为音乐声音数据的存储器,可以实现高音质和紧凑的音乐声音产生系统。
    • 60. 发明申请
    • NONVOLATILE STORAGE MODULE, ACCESS MODULE, MUSICAL SOUND DATA FILE GENERATION MODULE AND MUSICAL SOUND GENERATION SYSTEM
    • 非易失存储模块,访问模块,音乐声音数据文件生成模块和音乐声音发生系统
    • US20110029583A1
    • 2011-02-03
    • US12936239
    • 2009-03-16
    • Masahiro Nakanishi
    • Masahiro Nakanishi
    • G06F17/30G06F12/00
    • G10H7/02G10H1/0066G10H2240/145
    • Musical sound data groups are recorded in nonvolatile memory banks by multiplexing the data without being compressed. A data reader reads the musical sound data in parallel from the plurality of nonvolatile memory banks according to reading instructions from an access module. In a musical sound generation system that cannot expect which pitch of the musical sound data is instructed to be read, since a plurality of pieces of data can be read in parallel from the plurality of nonvolatile memory banks, a sound production delay time can fall within an allowable time. Thus, by using a currently dominant large-capacity multi level NAND flash memory as a memory for the musical sound data, a high sound quality and compact musical sound generation system can be realized.
    • 音乐数据组通过在不压缩的情况下复用数据而被记录在非易失性存储体中。 数据读取器根据来自访问模块的读取指令从多个非易失性存储体中并行读取音乐声音数据。 在不能指示音乐声音数据的音高被指示被读取的音乐声音生成系统中,由于可以从多个非易失性存储体并行地读取多条数据,所以声音产生延迟时间可以落在 允许的时间。 因此,通过使用当前主导的大容量多电平NAND闪速存储器作为音乐声音数据的存储器,可以实现高音质和紧凑的音乐声音产生系统。