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    • 92. 发明授权
    • Motif playing apparatus
    • 主题演奏装置
    • US5182414A
    • 1993-01-26
    • US628639
    • 1990-12-14
    • Hideki Takahashi
    • Hideki Takahashi
    • G10H1/00G10H1/36
    • G10H1/0041G10H1/36G10H2210/171
    • A motif playing apparatus comprises a ROM for storing fixed ad-lib motif data, a RAM for reading out the fixed ad-lib motif data from the ROM and temporarily storing the read ad-lib motif data, a CPU for rewriting the fixed ad-lib motif data stored in the RAM to arbitrary ad-lib motif data, and a tone generator for generating a musical tone corresponding to the ad-lib motif data stored in the RAM. The CPU executes a process of assigning the arbitrary ad-lib motif data, which has replaced the fixed ad-lib motif data stored in the RAM, to a key on a keyboard.This apparatus further has a switch to specify the length of ad-lib motif data at the time of assigning this data to the associated key.Further, the apparatus is designed to be able to synchronously generate motif data indicating a motif of an accompaniment and motif data indicating a melody motif when a multi switch is depressed.
    • 主题播放装置包括:用于存储固定的ad-lib主题数据的ROM; RAM,用于从ROM读出固定的ad-lib主题数据,并暂时存储读取的ad-lib主题数据; CPU,用于重写固定的ad-lib主题数据; 存储在RAM中的lib主题数据到任意的ad-lib主题数据,以及用于生成与存储在RAM中的ad-lib主题数据相对应的乐音的乐音发生器。 CPU执行将已经将存储在RAM中的固定的ad-lib主题数据替换为键盘上的键的任意ad-lib主题数据的处理。 该装置还具有用于在将该数据分配给关联密钥时指定ad-lib主题数据的长度的开关。 此外,该设备被设计为能够同步地产生表示伴奏的主题的主题数据,并且当多开关被按下时,表示旋律图案的主题数据。
    • 95. 发明申请
    • RECEIVING DEVICE, RECEIVING METHOD AND MOBILE TERMINAL
    • 接收设备,接收方法和移动终端
    • US20130093621A1
    • 2013-04-18
    • US13806181
    • 2011-07-28
    • Katsuyuki TanakaHideki AwataHideki Takahashi
    • Katsuyuki TanakaHideki AwataHideki Takahashi
    • G01S19/29
    • G01S19/29G01S19/30G01S19/34G01S19/37
    • Provided is a receiving device, including a receiving unit that receives a signal from a satellite in a GPS, a frequency converting unit that converts a frequency of a reception signal received by the receiving unit into a predetermined IF, a synchronization acquiring unit that performs synchronization acquisition for detecting a phase of a spread code in the IF signal and detects a carrier frequency in the IF signal, a synchronization holding unit that assigns and sets the phase of the spread code and the carrier frequency detected by the synchronization acquiring unit to a plurality of channels, holds synchronization of the spread code and a carrier using the set phase of the spread code and the carrier frequency, and demodulates a message included in the IF signal, and a control unit that executes operation control including a positioning calculation using the message demodulated by the synchronization holding unit.
    • 提供了一种接收装置,包括:接收单元,其接收来自GPS中的卫星的信号;频率转换单元,其将由接收单元接收的接收信号的频率转换为预定的IF;同步获取单元,其执行同步 用于检测IF信号中的扩展码的相位并检测IF信号中的载波频率的同步保持单元,其将扩展码的相位和由同步获取单元检测到的载波频率分配并设置为多个 的信道,使用扩展码和载波频率的设定相位保持扩展码的同步和载波,并解调包括在IF信号中的消息,以及控制单元,其执行包括使用该消息的定位计算的操作控制 由同步保持单元解调。
    • 96. 发明申请
    • COMMUNICATION DEVICE, NOISE REMOVING METHOD, AND PROGRAM
    • 通信设备,噪声消除方法和程序
    • US20120281733A1
    • 2012-11-08
    • US13552161
    • 2012-07-18
    • Katsuyuki TanakaHideki Takahashi
    • Katsuyuki TanakaHideki Takahashi
    • H04B1/7097
    • H04B1/7097G01S19/13G01S19/21H04B1/1036H04B1/707H04B1/7101H04B2201/70715
    • A communication device according to an embodiment of the present invention includes a communication antenna that receives a transmission signal where a spectrum spread signal subjected to a spectrum spread is modulated; an intermediate frequency converting unit that converts the transmission signal received by the communication antenna into an intermediate frequency signal having a predetermined frequency; an analog to digital converting unit that discretizes the intermediate frequency signal and outputs a discretization signal; a noise removing unit that detects a noise other than a normal thermal noise included in the discretization signal and removes the detected noise from the discretization signal; and a demodulating unit that demodulates the spectrum spread signal, based on the discretization signal that is output from the noise removing unit.
    • 根据本发明实施例的通信设备包括:通信天线,其接收经过频谱扩展的频谱扩展信号被调制的发送信号; 中频变换单元,其将由通信天线接收的发送信号转换为具有预定频率的中频信号; 模数转换单元,其离散中频信号并输出​​离散化信号; 噪声去除单元,其检测离散化信号中包括的正常热噪声以外的噪声,并从所述离散化信号中去除检测到的噪声; 以及解调单元,其基于从噪声去除单元输出的离散化信号来解调频谱扩展信号。
    • 97. 发明授权
    • Demodulation apparatus and receiving apparatus
    • 解调装置和接收装置
    • US08229460B2
    • 2012-07-24
    • US12484357
    • 2009-06-15
    • Katsuyuki TanakaMasayuki SawadaHideki TakahashiKoichiro Teranishi
    • Katsuyuki TanakaMasayuki SawadaHideki TakahashiKoichiro Teranishi
    • H04W24/00G01S19/31
    • H03J1/005H03J2200/11H03L7/193H04B2001/70706
    • A portable phone device comprises a telephone unit for base band processing of a receiving signal and audio conversion processing, as well as a global positioning system (GPS) receiving unit for receiving signals from at least one GPS satellite, each signal including a spread code. A crystal oscillator generates a first oscillation signal having a predetermined frequency, and a temperature controlled oscillator generates a second oscillation signal having a predetermined frequency different from that of the first oscillation signal. A synchronization capture portion performs synchronization capture of the spread code, and a synchronization hold portion performs synchronization holding and demodulation of the signals received from the at least one GPS satellite. A central processing unit calculates position and speed of the portable phone device.
    • 便携式电话装置包括用于接收信号和音频转换处理的基带处理的电话单元,以及用于从至少一个GPS卫星接收信号的全球定位系统(GPS)接收单元,每个信号包括扩展码。 晶体振荡器产生具有预定频率的第一振荡信号,温度控制振荡器产生具有与第一振荡信号不同的预定频率的第二振荡信号。 同步捕获部分执行扩展码的同步捕获,并且同步保持部分对从至少一个GPS卫星接收的信号执行同步保持和解调。 中央处理单元计算便携式电话设备的位置和速度。
    • 98. 发明申请
    • RESIN COMPOSITION FOR SOLAR CELL-SEALING MATERIAL
    • 太阳能电池密封材料的树脂组合物
    • US20120016067A1
    • 2012-01-19
    • US13260016
    • 2010-08-04
    • Keisuke MasukoYasuhiro FukudomeYusuke OnodoSeiji SawadaSatoshi OoiHideki Takahashi
    • Keisuke MasukoYasuhiro FukudomeYusuke OnodoSeiji SawadaSatoshi OoiHideki Takahashi
    • C09J11/04C09J133/10C09J133/08C09J131/04C09J133/12
    • C08L23/0869C08K3/22C08K2003/2217C08K2003/2224C08K2003/2227C08L23/08C08L23/0861H01L31/048H01L31/0481Y02E10/50C08L2666/02
    • To achieve improvement in initial conversion efficiency of solar cell modules, inhibition of deterioration in transparency of a resin, inhibition of degradation in adhesive properties with respect to a protective member over time, and inhibition of degradation in conversion efficiency. A resin composition for solar cell-sealing material according to the present invention includes an ethylene copolymer, and further includes at least one of: (i) a compound represented by the following general formula (1); (ii) a calcined product of the (i); (iii) a compound represented by the following general formula (2); and (iv) a calcined product of the (iii). The (i) has an average plate surface diameter of 0.01 to 0.9 μm and a refractive index of 1.45 to 1.55, and the (iii) has an average plate surface diameter of 0.02 to 0.9 μm and a refractive index of 1.48 to 1.6. Mg1-n.Ala(OH)2.Ann−a/n.bH2O  General formula (1) (0.25≦a≦0.35, 0≦b≦1, An: an n-valent anion); (McMg1-c)1-d.Ald(OH)2.Bmm−d/m.eH2O  General formula (2) (M represents a metal selected from the group consisting of Ni, Zn, and Ca; c, d, and e are respectively expressed as 0.2≦c≦1, 0.2≦d≦0.4, and 0≦e≦4; Bm: an m-valent anion).
    • 为了实现太阳能电池模块的初始转换效率的提高,抑制树脂透明度的劣化,抑制随着时间的流逝对粘合剂性能的影响,以及抑制转化效率降低。 根据本发明的太阳能电池密封材料用树脂组合物包括乙烯共聚物,并且还包括以下至少一种:(i)由以下通式(1)表示的化合物; (ii)(i)的煅烧产物; (iii)由以下通式(2)表示的化合物: 和(iv)(iii)的煅烧产物。 (i)的平均板表面直径为0.01〜0.9μm,折射率为1.45〜1.55,(iii)的平均板的表面直径为0.02〜0.9μm,折射率为1.48〜1.6。 Mg1-n.Ala(OH)2.Ann-a / n.bH2O通式(1)(0.25≦̸ a≦̸ 0.35,0和nlE; b≦̸ 1,An:n价阴离子); (McMg1-c)1-d.Ald(OH)2.Bmm-d / m.eH2O通式(2)(M表示选自Ni,Zn和Ca的金属; c,d和 e分别表示为0.2≦̸ c≦̸ 1,0.2& nlE; d≦̸ 0.4和0& nlE; e≦̸ 4; Bm:m价阴离子)。