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    • 11. 发明授权
    • Musical tone generating apparatus
    • 音乐发生装置
    • US5194681A
    • 1993-03-16
    • US585381
    • 1990-09-20
    • Masaki Kudo
    • Masaki Kudo
    • G10H5/00G10H7/02
    • G10H7/02G10H5/005G10H2250/621G10H2250/631
    • A tone generated by a tone source is converted to an electric signal and this electric signal is sampled. The converted digital data are stored in a first memory, and parts which are to become a initial portion and a repeating portion of a waveform of the tone source are extracted from the data in the first memory. Next, the attack end sample AES, which is the end of the initial portion, is determined. and a loop-in point (a point at which transfer from the initial portion to the repeating portion is accomplished) LIP which is in agreement with this attack end sample is obtained. Then, the loop end sample LES, which is the end of the repeating portion, is determined, and a loop start point (beginning of the repeating portion) LSP which is in agreement with this loop end sample LES is obtained. Alternatively, the beginning of the repeating portion is determined, and an end of the repeating portion or an end of the initial portion which is in agreement with this is obtained. Data are read out from the first memory in accordance with addresses corresponding to the beginning and the end of the repeating part obtained in the above manner, and these are written to a second memory. At this time, in the case in which addresses necessary for interpolation processing are obtained, reading and writing processes are carried out in accordance with the addresses used for interpolation.
    • 由音源产生的音调被转换为电信号,并对该电信号进行采样。 转换的数字数据被存储在第一存储器中,并且从第一存储器中的数据中提取要成为音源的初始部分和重复部分的部分。 接下来,确定作为初始部分结束的攻击结束样本AES。 并且获得与该攻击结束样本一致的LIP(从初始部分到重复部分的转移)的循环点。 然后,确定作为重复部分结束的循环结束样本LES,并且获得与该循环结束样本LES一致的循环起始点(重复部分的开始)LSP。 或者,确定重复部分的开始,并且获得与此一致的重复部分的结束或初始部分的结束。 根据与以上述方式获得的重复部分的开始和结束对应的地址,从第一存储器中读出数据,并将它们写入第二存储器。 此时,在获得内插处理所需的地址的情况下,根据用于插值的地址进行读取和写入处理。
    • 16. 发明授权
    • Ink set and inkjet recording method
    • 油墨和喷墨记录方法
    • US08956451B2
    • 2015-02-17
    • US13859863
    • 2013-04-10
    • Keita KatohMasaki KudoTomohiro NakagawaAkihiko Gotoh
    • Keita KatohMasaki KudoTomohiro NakagawaAkihiko Gotoh
    • C09D11/02G01D11/00C09D11/40C09D11/324
    • C09D11/40C09D11/324
    • An ink set, used in an inkjet recording apparatus equipped with a recording head including: a plurality of nozzle arrays, each including a plurality of nozzles; and a sucking-and-covering unit for covering the recording head, wherein the black ink is supplied to one of the plurality of the nozzle arrays of the recording head, and the color ink is supplied to the other plurality of the nozzle arrays of the recording head, wherein the black ink includes resin-coated carbon-black particles, surfactant-treated carbon-black particles and water, wherein the color ink includes resin-coated color-pigment particles, surfactant-treated color-pigment particles and water, and wherein the ink set satisfies Expression (1), Expression (2) and Expression (3) below: 5.0% by mass≦P(Bk)≦12.0% by mass  Expression (1) 3.0% by mass≦P(CL)≦10.0% by mass  Expression (2) [R(CL)/S(CL)]
    • 一种用于具有记录头的喷墨记录装置中的油墨组,包括:多个喷嘴阵列,每个喷嘴阵列包括多个喷嘴; 以及用于覆盖记录头的吸取和覆盖单元,其中黑色墨水被供应到记录头的多个喷嘴阵列中的一个,并且彩色墨水被供应到其他多个喷嘴阵列中 记录头,其中所述黑色油墨包括树脂涂覆的炭黑颗粒,经表面活性剂处理的炭黑颗粒和水,其中所述彩色油墨包括树脂涂覆的着色颜料颗粒,表面活性剂处理的颜料 - 颜料颗粒和水,以及 其中,油墨组满足以下表达式(1),表达式(2)和表达式(3):5.0质量%&lt; 1E; P(Bk)&nlE; 12.0质量%表示(1)3.0质量%&lt; 1E; P(CL)& ; 10.0质量%表达式(2)[R(CL)/ S(CL)] <[R(Bk)/ S(Bk)]表达式(3)。
    • 18. 发明授权
    • Tone signal generating device
    • 音频信号发生装置
    • US5383386A
    • 1995-01-24
    • US46394
    • 1993-04-14
    • Masaki KudoTokio Shirakawa
    • Masaki KudoTokio Shirakawa
    • G10H1/46G10H1/057G10H7/00G10H7/02G10H7/08
    • G10H7/004
    • An addition section and a memory section for storing data to be inputted to the addition section are provided. A processing section variably performs a logical processing on output data of the memory section in accordance with a control signal and gives the data to the addition section. A control section controls introduction of data to the memory section and supply of the control signal to the processing section in correspondence to respective desired operations so that plural kinds of operations for tone signal generation may be respectively performed. With this arrangement, the addition section can be shared for various kinds of operations for the tone signal generation. Consequently, operation circuits for performing the various operations are integrated, so as to realize a substantial reduction of circuitry construction.
    • 提供了一个附加部分和用于存储要输入到加法部分的数据的存储部分。 处理部分根据控制信号可变地执行对存储器部分的输出数据的逻辑处理,并将数据提供给加法部分。 控制部分控制数据到存储器部分的引入,并且根据各个期望的操作向处理部件提供控制信号,从而可以分别执行用于音调信号产生的多种操作。 利用这种布置,可以将加法部分共享用于音调信号生成的各种操作。 因此,用于执行各种操作的操作电路被集成,以便实现电路结构的显着减少。
    • 20. 发明授权
    • Envelope shape generator for tone signal control
    • 信号形状发生器,用于音调信号控制
    • US4928569A
    • 1990-05-29
    • US120071
    • 1987-11-13
    • Masaki KudoHideo Suzuki
    • Masaki KudoHideo Suzuki
    • G10H1/057
    • G10H1/057
    • An envelope shape generator generates envelope shape data for controlling a tone signal in the form of data in decibel representation. In performing a rapid attenuation control called "forcing damp" during attenuation of the envelope shape data generated by the envelope shape generator, the envelope shape data in decibel representation is rapidly attenuated with such a characteristic that inclination of attenuation becomes increasingly steeper. This is advantageous because inclination of a rapidly attenuating portion is modified to a substantially uniform inclination when the envelope shape data is converted to data in linear representation. There are also provided a detection circuit for detecting that the level of the envelope shape has dropped below a predetermined level corresponding to a minimum level at which a tone waveshape can be effectively represented and a circuit for rapidly attenuating the envelope shape in response to this detection. This contributes to elimination of noise.
    • 信封形状发生器产生用于以分贝表示形式以数据形式控制音调信号的包络形状数据。 在由包络形状发生器产生的包络形状数据的衰减期间执行称为“强制潮湿”的快速衰减控制时,以分贝表示形式的包络形状数据以衰减趋势变得越来越陡峭的特性被快速衰减。 这是有利的,因为当将包络形状数据转换成线性表示的数据时,快速衰减部分的倾斜度被修改为基本均匀的倾斜。 还提供了一种检测电路,用于检测包络形状的电平已经降低到与可以有效地表示音调波形的最小电平相对应的预定电平,并且响应于该检测快速衰减包络线形状的电路 。 这有助于消除噪音。