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    • 52. 发明授权
    • Two-dimensional demodulation method, two-dimensional demodulation apparatus and holographic apparatus
    • 二维解调方法,二维解调装置和全息装置
    • US07907496B2
    • 2011-03-15
    • US12295597
    • 2007-03-16
    • Michikazu HashimotoKiyoshi Tateishi
    • Michikazu HashimotoKiyoshi Tateishi
    • G11B7/00
    • G11B7/0065G11B20/10009G11B2020/1863
    • A two-dimensional demodulation method for reproducing a data page by means of decision feedback Viterbi detection processing from a recording medium on which a data page has been recorded as a set of a plurality of two-dimensional modulation pattern symbols each of which comprises a plurality of pixels, and which have been modulated two-dimensionally, the method comprising: a step of determining a value of pixel deviation in a reproduction image obtained by receiving light from the recording medium on an image sensor; a step of splitting an output signal of the image sensor which indicates the reproduction image of the light received from the recording medium into signal symbol data by division into blocks in accordance with the two-dimensional modulation pattern symbols; and a step of carrying out decision feedback Viterbi detection for each signal symbol data in accordance with the pixel deviation value.
    • 一种二维解调方法,用于通过判定反馈维特比检测处理从其上记录了数据页的记录介质再现数据页,作为多个二维调制图案符号的集合,每个二维调制图案符号包括多个 并且已经被二维调制,该方法包括:确定通过在图像传感器上接收来自记录介质的光而获得的再现图像中的像素偏差的值的步骤; 根据二维调制图案符号,将表示从记录介质接收的光的再现图像分解为信号符号数据的图像传感器的输出信号分割为块的步骤; 以及根据像素偏差值对每个信号符号数据执行判定反馈维特比检测的步骤。
    • 53. 发明申请
    • DEVICE AND METHOD FOR DETECTING DIRECTION OF POLARIZATION OF FERROELECTRIC MATERIAL
    • 用于检测电极材料极化方向的装置和方法
    • US20100231234A1
    • 2010-09-16
    • US12738222
    • 2007-10-18
    • Kiyoshi TateishiTomotaka Yabe
    • Kiyoshi TateishiTomotaka Yabe
    • G01R27/04
    • G11B9/02G11B9/06G11B11/08
    • A device for detecting polarization direction of a ferroelectric is provided. From a measurement signal provided through a probe disposed in contact with or near the surface of a ferroelectric, a demodulation means generates a detection signal having a signal level corresponding to a capacitance change of the ferroelectric due to application of an alternating electric field to a capacitor component formed in the ferroelectric directly below the probe. A synchronous detection means performs synchronous detection of the detection signal based on a synchronous signal and generates a polarization direction detection signal corresponding to the polarization direction of the ferroelectric. A pseudo-noise signal generation means generates a pseudo-noise signal with the same frequency as that of the electric field signal and a different phase and amplitude therefrom. The demodulation means includes a noise component removal means that removes noise components in the measurement signal through signal arithmetic processing with the pseudo-noise signal.
    • 提供一种用于检测铁电体的极化方向的装置。 从通过与铁电体的表面接触或接近设置的探针提供的测量信号,解调装置产生具有对应于铁电体的电容变化的信号电平的检测信号,这是由于向电容器施加交变电场 在探针下方的铁电体中形成的部件。 同步检测装置基于同步信号执行检测信号的同步检测,并产生与铁电体的偏振方向对应的偏振方向检测信号。 伪噪声信号产生装置产生具有与电场信号相同频率的伪噪声信号,并且产生与其不同的相位和幅度。 解调装置包括噪声分量去除装置,其通过具有伪噪声信号的信号运算处理来去除测量信号中的噪声分量。
    • 54. 发明授权
    • Hologram recording/reproducing apparatus, hologram reproducing apparatus and method, and computer program
    • 全息记录/再现装置,全息图再现装置和方法以及计算机程序
    • US07672209B2
    • 2010-03-02
    • US11631318
    • 2005-07-07
    • Kiyoshi TateishiMichikazu Hashimoto
    • Kiyoshi TateishiMichikazu Hashimoto
    • G11B11/00G11B7/00
    • G11B7/0065G11B7/00781
    • An example hologram recording/reproduction device reproduces recorded information from a holographic recording medium where interference fringes formed by a reference light and an object light corresponding to the recording information are recorded. The example hologram recording/reproduction device irradiates the reference light to a holographic recording medium; generates detection information data (Ddet) according to the detection light generated by irradiation of the reference light; sets a target irradiation position of the reference light on the surface of the holographic recording medium according to the detection information data; and moves the irradiation means with respect to the holographic recording medium along its surface so that the reference light is irradiated to the target irradiation position.
    • 示例性全息图记录/再现装置从全息记录介质再现记录的信息,其中记录了由参考光形成的干涉条纹和与记录信息相对应的物体光。 示例性全息图记录/再现装置将参考光照射到全息记录介质; 根据由参考光的照射产生的检测光产生检测信息数据(Ddet); 根据检测信息数据,将参考光的目标照射位置设置在全息记录介质的表面上; 并且沿其表面相对于全息记录介质移动照射装置,使得参考光照射到目标照射位置。
    • 56. 发明授权
    • Optical pickup device and apparatus for reading data from optical storage medium
    • 用于从光学存储介质读取数据的光学拾取装置和装置
    • US07522482B2
    • 2009-04-21
    • US10921836
    • 2004-08-20
    • Kiyoshi TateishiKazuo TakahashiMitsuru SatoIchiro Sugai
    • Kiyoshi TateishiKazuo TakahashiMitsuru SatoIchiro Sugai
    • G11B7/00
    • G11B7/08511G11B7/0945G11B2007/0013
    • An optical pickup is provided for preventing an objective lens from colliding with an optical recording medium at the stage of initial adjustments. The optical pickup device comprises a servo circuit, and a lens driver for driving an objective lens. In the servo circuit, a drive signal generator supplies the lens driver with one of a first focus drive signal for moving the objective lens in a direction closer to an information recording layer, and a second focus drive signal for moving the objective lens in a direction away from the information recording layer. A controller in a timing generator switches a signal supplied to the lens driver from the first focus drive signal to the second focus drive signal when the level changes by a predetermined range or more in a servo signal which is generated during a period in which the first focus drive signal is being supplied to the lens driver.
    • 提供了一种用于在初始调整阶段防止物镜与光记录介质碰撞的光拾取器。 光学拾取装置包括伺服电路和用于驱动物镜的透镜驱动器。 在伺服电路中,驱动信号发生器向透镜驱动器提供用于使物镜沿更靠近信息记录层的方向移动的第一聚焦驱动信号和用于使物镜沿方向移动的第二聚焦驱动信号 远离信息记录层。 定时发生器中的控制器在第一聚焦驱动信号中提供给镜头驱动器的信号切换到第二聚焦驱动信号,当电平在伺服信号中改变预定范围或更大时,该伺服信号是在第一 聚焦驱动信号被提供给镜头驱动器。
    • 58. 发明申请
    • Hologram reproduction apparatus and reproduction method
    • 全息复制设备和再现方法
    • US20060077852A1
    • 2006-04-13
    • US11075764
    • 2005-03-10
    • Kiyoshi TateishiMichikazu Hashimoto
    • Kiyoshi TateishiMichikazu Hashimoto
    • G11B7/00
    • G11B7/1374G11B7/0065
    • A hologram reproduction apparatus includes a light-receiving unit such as a two-dimensional sensor which obtains two-dimensionally modulated image data, and an A/D converter which A/D-converts analog data obtained by the light-receiving unit into digital data. In addition, the hologram reproduction apparatus detects a number of pixels having a digital value larger than a first defined value in the A/D-converted image data for one page, by a first pixel number detecting unit. The hologram reproduction apparatus controls a magnitude value of the image data at the time of the A/D conversion by the first control unit so that the number of detected pixels is within a predetermined range. Thereby, a dynamic range of the A/D conversion to the two-dimensional modulated image data can effectively be used. Therefore, a quantization noise due to the A/D conversion can be reduced, and also a reproduction S/N can be improved.
    • 一种全息图再现装置包括:获得二维调制图像数据的诸如二维传感器的光接收单元和将由光接收单元获得的模拟数据A / D转换成数字数据的A / D转换器 。 此外,全息图再现装置通过第一像素数检测单元检测在一页的A / D转换图像数据中具有大于第一定义值的数字值的像素数量。 全息图再现装置控制由第一控制单元进行A / D转换时的图像数据的幅度值,使得检测像素的数量在预定范围内。 由此,可以有效地使用A / D转换到二维调制图像数据的动态范围。 因此,可以减少由于A / D转换引起的量化噪声,并且还可以提高再现S / N。
    • 59. 发明授权
    • Servo controller having unit for compensating error signal during dropout
    • 伺服控制器具有用于在压差期间补偿误差信号的单元
    • US06888782B2
    • 2005-05-03
    • US09836237
    • 2001-04-18
    • Kiyoshi TateishiMasaki Kobayashi
    • Kiyoshi TateishiMasaki Kobayashi
    • G11B7/004G11B7/09G11B7/00
    • G11B7/0948
    • A servo control apparatus of an optical pickup includes an extractor for extracting an error signal from a read signal; an equalizer including a phase compensator for equalizing the error signal to generate a drive signal; a driver for changing the servo position of the optical pickup in response to the drive signal; a dropout detector for extracting an envelope signal from the read signal to detect a dropout of the read signal; and a controller. The controller changes an equalization characteristics of the equalizer in accordance with an amplitude of the envelope signal during the period of time when the dropout occurs or in response to an occurrence of the dropout.
    • 光拾取器的伺服控制装置包括一个提取器,用于从读信号中提取误差信号; 均衡器,包括用于均衡误差信号以产生驱动信号的相位补偿器; 用于响应于驱动信号改变光学拾取器的伺服位置的驱动器; 用于从读取信号中提取包络信号以检测读取信号的丢失的压差检测器; 和控制器。 控制器根据在出现发生的时间段期间的包络信号的幅度或响应于出现丢失而改变均衡器的均衡特性。