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    • 2. 发明授权
    • Multi-media reproduction processing apparatus
    • 多媒体再现处理装置
    • US5861890A
    • 1999-01-19
    • US679336
    • 1996-07-11
    • Hiroyuki SakaiTakahiro YamadaMasataka MusyaYuji Kimura
    • Hiroyuki SakaiTakahiro YamadaMasataka MusyaYuji Kimura
    • G06F17/30G11B19/02G11B27/10G11B27/11G11B27/32G06F15/00
    • G11B27/105G06F17/30017G11B19/02G11B27/11G11B27/329G11B2220/213G11B2220/2545
    • A storage medium stores image data, audio data and processing programs having different reproduction modes, such as recording systems or data format are stored as stream data. When a specific data is to be read out from the stream data, a mode discrimination data is separated from the data to generate mode information indicative of the recording system of the data and the algorithm for reproduction of the data on the basis of the separated mode discrimination data. Based on the mode information, switching of mode is performed to reproduce image data or audio data of one of the reproduction modes among the data recorded with a plurality of mutually distinct reproduction modes, by the processing program. If the processing program is common for reproduction of other data recorded on the storage medium, such processing program is previously stored for use in common for accelerating taking up of the reproduction processing apparatus.
    • 存储介质存储图像数据,具有不同再现模式的音频数据和处理程序,诸如记录系统或数据格式被存储为流数据。 当要从流数据中读出特定数据时,模式识别数据与数据分离,以产生指示数据的记录系统的模式信息和用于基于分离模式再现数据的算法 歧视数据。 基于模式信息,通过处理程序,执行模式的切换以再现以多个相互不同的再现模式记录的数据中的再现模式之一的图像数据或音频数据。 如果处理程序对于记录在存储介质上的其它数据的再现是共同的,则预先存储这种处理程序以共同使用,以加速占用再现处理装置。
    • 5. 发明授权
    • Semiconductor device with a balun
    • 半导体器件与平衡 - 不平衡转换器
    • US08575731B2
    • 2013-11-05
    • US12999472
    • 2009-06-15
    • Shinji UjitaTakeshi FukudaHiroyuki Sakai
    • Shinji UjitaTakeshi FukudaHiroyuki Sakai
    • H01L23/58
    • H01P5/10H01L23/64H01L23/66H01L2924/0002H01L2924/19104H01L2924/3011H01L2924/00
    • A semiconductor integrated circuit device with a balun which is formed above a conductive semiconductor substrate and which includes a dielectric film, an unbalanced line for transmitting an unbalanced signal, and balanced lines for transmitting a balanced signal. The unbalanced line is placed opposite to the balanced lines via a nano-composite film that is a region of the dielectric film. The nano-composite film, interposed between the unbalanced line and the balanced lines, has a relative permittivity higher than that of other regions of the dielectric film. This allows suppression of electromagnetic coupling of transmission lines or passive elements other than the balun, thereby providing a semiconductor device with a wide-band and small-size balun.
    • 一种具有平衡 - 不平衡转换器的半导体集成电路器件,其形成在导电半导体衬底之上,并且包括电介质膜,用于传输不平衡信号的不平衡线以及用于传输平衡信号的平衡线。 不平衡线通过作为电介质膜的区域的纳米复合膜与平衡线相对放置。 夹在不平衡线和平衡线之间的纳米复合膜的介电常数比电介质膜的其它区域的介电常数高。 这允许抑制除了平衡 - 不平衡变换器之外的传输线或无源元件的电磁耦合,从而提供具有宽带和小尺寸平衡 - 不平衡转换器的半导体器件。
    • 7. 发明授权
    • Spread spectrum radar apparatus, method for determining virtual image, and method for suppressing virtual image
    • 扩频雷达装置,虚像的确定方法,虚拟图像抑制方法
    • US08018372B2
    • 2011-09-13
    • US12678586
    • 2008-07-28
    • Noboru NegoroTakeshi FukudaHiroyuki Sakai
    • Noboru NegoroTakeshi FukudaHiroyuki Sakai
    • G01S13/58
    • G01S13/325G01S13/931G01S2013/9375G01S2013/9378
    • The spread spectrum radar apparatus in the present invention (i) includes: a transmission code generator (110); a reception code generator (121) generating a reception code obtained by delaying a transmission code; a spread modulator (112) spread-modulating a signal generated by a local oscillator (111) using the transmission code; a transmission antenna (113) transmitting the spread-modulated signal; a reception antenna (120) receiving a signal; a spread demodulator (122) demodulating the signal using the reception code to provide a correlation signal; a mixer (123) mixing the correlation signal and the signal generated by the local oscillator (111) to generate a radar signal; a virtual image determining unit (130) determining a virtual image; and a radar signal calculation device (160) calculating the radar signal using a virtual image determination signal, and (ii) adds a calculation and an offset signal for suppressing a peak intensity of the virtual image when the virtual image occurs.
    • 本发明(i)中的扩频雷达装置包括:发送码发生器(110); 产生通过延迟传输码而获得的接收码的接收码发生器(121); 扩展调制器(112)使用所述传输码扩展调制由本地振荡器(111)产生的信号; 发送所述扩展调制信号的发送天线(113) 接收天线(120),接收信号; 扩展解调器(122),使用接收码解调信号以提供相关信号; 混合器(123),混合相关信号和由本地振荡器(111)产生的信号,以产生雷达信号; 虚拟图像确定单元(130),确定虚拟图像; 以及雷达信号计算装置(160),使用虚拟图像确定信号计算雷达信号,并且(ii)在虚拟图像发生时添加用于抑制虚拟图像的峰值强度的计算和偏移信号。
    • 8. 发明申请
    • SEMICONDUCTOR DEVICE WITH A BALUN
    • 带BALUN的半导体器件
    • US20110089543A1
    • 2011-04-21
    • US12999472
    • 2009-06-15
    • Shinji UjitaTakeshi FukudaHiroyuki Sakai
    • Shinji UjitaTakeshi FukudaHiroyuki Sakai
    • H01L23/58
    • H01P5/10H01L23/64H01L23/66H01L2924/0002H01L2924/19104H01L2924/3011H01L2924/00
    • A semiconductor integrated circuit device with a balun which is formed above a conductive semiconductor substrate and which includes a dielectric film, an unbalanced line for transmitting an unbalanced signal, and balanced lines for transmitting a balanced signal. The unbalanced line is placed opposite to the balanced lines via a nano-composite film that is a region of the dielectric film. The nano-composite film, interposed between the unbalanced line and the balanced lines, has a relative permittivity higher than that of other regions of the dielectric film. This allows suppression of electromagnetic coupling of transmission lines or passive elements other than the balun, thereby providing a semiconductor device with a wide-band and small-size balun.
    • 一种具有平衡 - 不平衡转换器的半导体集成电路器件,其形成在导电半导体衬底之上,并且包括电介质膜,用于传输不平衡信号的不平衡线以及用于传输平衡信号的平衡线。 不平衡线通过作为电介质膜的区域的纳米复合膜与平衡线相对放置。 夹在不平衡线和平衡线之间的纳米复合膜的介电常数比电介质膜的其它区域的介电常数高。 这允许抑制除了平衡 - 不平衡变换器之外的传输线或无源元件的电磁耦合,从而提供具有宽带和小尺寸平衡 - 不平衡转换器的半导体器件。
    • 9. 发明申请
    • RANGE FINDER, SHAPE MEASURING DEVICE, AND METHODS FOR THEM
    • 范围查找器,形状测量装置及其方法
    • US20110012774A1
    • 2011-01-20
    • US12922327
    • 2009-03-06
    • Hiroyuki SakaiTakeshi FukudaKenichi InoueToru SatoTakuya SakamotoYusuke Kani
    • Hiroyuki SakaiTakeshi FukudaKenichi InoueToru SatoTakuya SakamotoYusuke Kani
    • G01S13/08G01S13/89
    • G01S13/325G01S7/4021
    • The range finder includes a transmitting unit (71) which emits a transmitted wave (75) spread using a spread code at a constant chip rate, a receiving unit (72) which receives a reflected wave (76), a correlation unit (73) which calculates a correlation waveform indicating delay time and a correlation between the transmitted wave (75) and the reflected wave (76), and a distance calculation unit (74) which calculates, from a peak position in the waveform, a distance to the object. The correlation unit (73) calculates the correlation waveform obtained when changing the delay time for each range gate. The distance calculation unit (74) calculates the distance to the object by calculating, at a resolution finer than the range gate, a delay time corresponding to the peak in the correlation wave using a highest-correlation point and an adjacent higher-correlation point in the wave form.
    • 测距仪包括发射单元(71),发射单元(71),其以恒定码片速率发射使用扩展码扩展的发射波(75);接收反射波的接收单元(76),相关单元(73) 其计算出表示延迟时间的相关波形和发射波(75)与反射波(76)之间的相关性,距离计算单元(74)从波形的峰值位置计算到物体的距离 。 相关单元(73)计算当改变每个范围门的延迟时间时获得的相关波形。 距离计算单元(74)通过使用最高相关点和相邻较高相关点在相关波中与峰值相对应的分辨率,以比分辨率栅格更精细的分辨率计算到对象的距离 波形。