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    • 11. 发明申请
    • AUDIO-SIGNAL CORRECTION APPARATUS, AUDIO-SIGNAL CORRECTION METHOD AND AUDIO-SIGNAL CORRECTION PROGRAM
    • 音频信号校正装置,音频信号校正方法和音频信号校正程序
    • US20120226372A1
    • 2012-09-06
    • US13410411
    • 2012-03-02
    • Masami Nakamura
    • Masami Nakamura
    • G06F17/00
    • G10L21/0332G06F17/00H03G3/002H03G7/007H03G11/008
    • Sequential digital audio signals are received to calculate a difference between each currently sampled digital audio signal and another digital audio signal sampled at one sampling period before each currently sampled digital audio signal. Differences for the sequential digital audio signals are stored. The number of digital audio signals consecutively clipped is counted in the received sequential digital audio signals. A specific difference is retrieved, from the stored differences, for a digital audio signal sampled at a specific number of sampling periods before each clipped digital audio signal. The specific number of sampling periods is determined based on the counted number of digital audio signals consecutively clipped. Each clipped digital audio signal is corrected based on the specific difference.
    • 接收顺序数字音频信号以计算每个当前采样的数字音频信号与在每个当前采样的数字音频信号之前的一个采样周期采样的另一数字音频信号之间的差值。 存储顺序数字音频信号的差异。 在接收的顺序数字音频信号中对连续裁剪的数字音频信号的数量进行计数。 对于在每个限幅数字音频信号之前的特定采样周期采样的数字音频信号,从存储的差异中检索特定的差异。 取决于采样周期的具体次数是根据连续剪切的数字音频信号的计数数来确定的。 每个限幅数字音频信号根据具体的差异进行校正。
    • 13. 发明申请
    • SOLAR CELL ELEMENT AND METHOD FOR MANUFACTURING SAME
    • 太阳能电池元件及其制造方法
    • US20130167923A1
    • 2013-07-04
    • US13821821
    • 2011-10-04
    • Masami NakamuraNaoto ShindoTadashi KanasakuJunichi Atobe
    • Masami NakamuraNaoto ShindoTadashi KanasakuJunichi Atobe
    • H01L31/0224H01L31/0236H01L31/18
    • H01L31/022425H01B1/22H01L29/0657H01L31/02363H01L31/18Y02E10/50
    • A solar cell element containing: a semiconductor substrate; an antireflection film disposed in a first region on one main surface of the semiconductor substrate; and a front surface electrode disposed in a second region on the one main surface of the semiconductor substrate and containing silver as a main component and a tellurium-based glass containing tellurium, tungsten, and bismuth. The solar cell element is manufactured by forming the antireflection film on the one main substrate surface; printing on the antireflection film a conductive paste containing a conductive powder mainly containing silver, a tellurium-based glass frit containing tellurium, tungsten, and bismuth, and an organic vehicle; and disposing the antireflection film in the first region and forming the front surface electrode in the second region, by firing the paste and eliminating the antireflection film positioned under the paste.
    • 一种太阳能电池元件,包括:半导体衬底; 设置在半导体衬底的一个主表面上的第一区域中的抗反射膜; 以及设置在半导体衬底的一个主表面上的第二区域中并且含有银作为主要成分的表面电极和含有碲,钨和铋的碲基玻璃。 通过在一个主基板表面上形成防反射膜来制造太阳能电池元件; 在防反射膜上印刷含有主要含有银的导电粉末,含碲,钨和铋的碲系玻璃料和有机载体的导电糊料; 并且将所述防反射膜设置在所述第一区域中,并且通过烧制所述糊料并除去位于所述糊料下方的所述防反射膜,从而在所述第二区域中形成所述前表面电极。
    • 14. 发明申请
    • AUDIO SIGNAL CORRECTION APPARATUS, AUDIO SIGNAL CORRECTION METHOD, AND AUDIO SIGNAL CORRECTION PROGRAM
    • 音频信号校正装置,音频信号校正方法和音频信号校正程序
    • US20120177220A1
    • 2012-07-12
    • US13346256
    • 2012-01-09
    • Masami Nakamura
    • Masami Nakamura
    • H04B15/00
    • G10L21/02G10L19/008G10L19/025
    • A first differential value is acquired between first current data and first previous data in an i number (i being a natural number) of sampling periods before the current data. A second differential value is acquired between second current data and second previous data in a j number (j being a natural number) of sampling periods before the current data. Both first data and both second data are of a first and a second digital audio signal, respectively, having a sound level of a digital stereo audio signal in the left and right channels, respectively. A first and a second correction coefficient are acquired by adding the first and second differential values at a first and a second ratio, respectively. The first signal is corrected by multiplying the first signal by the first correction coefficient. The second signal is corrected by multiplying the second signal by the second correction coefficient.
    • 在当前数据之前的采样周期的i个数(i是自然数)中的第一当前数据和第一前一数据之间获取第一差分值。 在当前数据之前的采样周期的j个数(j为自然数)中,在第二当前数据和第二先前数据之间获取第二差分值。 第一数据和第二数据都分别具有第一和第二数字音频信号,分别具有左声道和右声道中的数字立体声音频信号的声级。 分别通过以第一和第二比率相加第一和第二差分值来获得第一和第二校正系数。 通过将第一信号乘以第一校正系数来校正第一信号。 通过将第二信号乘以第二校正系数来校正第二信号。
    • 17. 发明授权
    • General purpose combined harvester and thresher
    • 通用联合收割机和脱粒机
    • US06361435B1
    • 2002-03-26
    • US09486209
    • 2000-06-19
    • Akito YamamotoKenji HamadaMasami NakamuraToshinori KirihataJun TerashimaJunichi MasanoYuichi Shinpuku
    • Akito YamamotoKenji HamadaMasami NakamuraToshinori KirihataJun TerashimaJunichi MasanoYuichi Shinpuku
    • A01F1244
    • A01D41/02A01F12/00A01F12/20
    • A general purpose combined harvester and thresher comprising a first rotor (51) and a second rotor (52) provided in a thresh unit (5) and arranged longitudinally in parallel to each other with axes thereof right and left, and a first receiving net (55) and a second receiving net (56) arranged below the respective rotors to define a first treating chamber (D1) and second treating chamber (D2). A grain tank (79) is arranged above the threst unit (5), a base end of a discharge auger (83) is arranged outside the grain tank (79), an engine (84) is arranged behind the grain tank (79), and a transmission casing (85) is arranged below the engines A tooth bar (T1) is provided on an outer peripheral surface of the first rotor (51) facing a grain rod inlet (36), and a screw vane (53) has a pitch (P) equal to a width of a rear end of a feeder housing (35). A terminal end of a return conveyor (81) for returning of a second product communicates with the first treating chamber (D1).
    • 一种通用联合收割机和脱粒机,其包括设置在切割单元(5)中的第一转子(51)和第二转子(52),并且彼此纵向并排地布置有左右的轴线,以及第一接收网 55)和布置在相应转子下方以限定第一处理室(D1)和第二处理室(D2)的第二接收网(56)。 谷物罐(79)布置在攻击单元(5)的上方,排出螺旋推运器(83)的基端设置在粮仓(79)的外侧,发动机(84)布置在粮仓(79)的后方, ,并且在发动机下方配置有变速器壳体(85),在与第一转子(51)的面向砂粒入口(36)的外周面上设置有齿条(T1),螺杆叶片(53)具有 间距(P)等于馈送器壳体(35)的后端的宽度。 用于返回第二产品的返回传送器(81)的终端与第一处理室(D1)连通。
    • 20. 发明授权
    • Audio signal correction apparatus, audio signal correction method, and audio signal correction program
    • 音频信号校正装置,音频信号校正方法和音频信号校正程序
    • US08989405B2
    • 2015-03-24
    • US13346256
    • 2012-01-09
    • Masami Nakamura
    • Masami Nakamura
    • H03G7/00H03G3/00G10L21/02G10L19/008G10L19/025
    • G10L21/02G10L19/008G10L19/025
    • A first differential value is acquired between first current data and first previous data in an i number (i being a natural number) of sampling periods before the current data. A second differential value is acquired between second current data and second previous data in a j number (j being a natural number) of sampling periods before the current data. Both first data and both second data are of a first and a second digital audio signal, respectively, having a sound level of a digital stereo audio signal in the left and right channels, respectively. A first and a second correction coefficient are acquired by adding the first and second differential values at a first and a second ratio, respectively. The first signal is corrected by multiplying the first signal by the first correction coefficient. The second signal is corrected by multiplying the second signal by the second correction coefficient.
    • 在当前数据之前的采样周期的i个数(i是自然数)中的第一当前数据和第一前一数据之间获取第一差分值。 在当前数据之前的采样周期的j个数(j为自然数)中,在第二当前数据和第二先前数据之间获取第二差分值。 第一数据和第二数据都分别具有第一和第二数字音频信号,分别具有左声道和右声道中的数字立体声音频信号的声级。 通过分别以第一和第二比率相加第一和第二差分值来获得第一和第二校正系数。 通过将第一信号乘以第一校正系数来校正第一信号。 通过将第二信号乘以第二校正系数来校正第二信号。