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    • 11. 发明授权
    • Read-only optical recording medium on which unique identification information is written
    • 仅写入唯一识别信息的光记录介质
    • US07684303B2
    • 2010-03-23
    • US11578554
    • 2005-04-08
    • Naoki Ide
    • Naoki Ide
    • G11B20/10
    • G11B7/00736G11B7/00451G11B7/00456G11B20/10009
    • A method for recording a unique ID to a read-only optical disk adopts the 1-7 PP modulation technique and provides in a plurality of predetermined positions postscript areas each having a predetermined postscript pattern. The postscript pattern takes a form of 3T (pit)-2T (land)-3T (pit) and has a length of 8T (largest code length of a modulated bit string). Modulated bit strings before and after the 3T-2T-3T postscript pattern are formed so that the pit-land-pit postscript pattern complies with the rule of the variable-length modulation even when it is replaced as a whole with a pit-only pattern. Further, the land in the middle will not physically change when irradiated with laser light having a reading-level power, but will be melted with a power higher than the reading-level one.
    • 将唯一ID记录到只读光盘的方法采用1-7PP调制技术,并且在多个预定位置提供每个具有预定后记图案的后记区域。 后记图案采用3T(凹坑)-2T(地面)-3T(凹坑)的形式,并且具有8T的长度(调制比特串的最大码长)。 形成3T-2T-3T后记图案之前和之后的调制比特串,使得凹坑 - 坑 - 坑后缀图案符合可变长度调制的规则,即使其整体用凹坑图案代替 。 此外,当用具有读取级功率的激光照射时,中间的地面将不会物理变化,而是将以比读取级别的功率更高的功率熔化。
    • 12. 发明申请
    • Power Transfer Device, Power Supply Device and Power Receiving Device
    • 电力传输装置,电源装置及受电装置
    • US20090322307A1
    • 2009-12-31
    • US12492662
    • 2009-06-26
    • Naoki Ide
    • Naoki Ide
    • H01F38/14
    • H02J50/12H02J5/005H02J7/025
    • A power transfer device includes: a transformer that couples a primary circuit and a secondary circuit and has a coupling constant of less than 1; and capacitances that are respectively provided in the primary circuit and the secondary circuit, and connected in series with coils that form the transformer. Circuit constants of the primary circuit and the secondary circuit are set so that the primary circuit and the secondary circuit resonate at the same frequency and a product of the square of the coupling constant, a Q value of the primary circuit and a Q value of the secondary circuit is 1. The primary circuit transfers power to the secondary circuit by means of the transformer, using a carrier wave having the resonance frequency.
    • 电力传输装置包括:耦合初级电路和次级电路并具有小于1的耦合常数的变压器; 以及分别设置在初级电路和次级电路中并且与形成变压器的线圈串联连接的电容。 初级电路和次级电路的电路常数被设定为使得主电路和次级电路以相同的频率谐振,耦合常数的平方,一次电路的Q值和 次级电路为1.主电路使用具有共振频率的载波,通过变压器将功率传输到次级电路。
    • 13. 发明授权
    • Recording apparatus and method, and disk producing method
    • 记录装置和方法以及磁盘制造方法
    • US07580335B2
    • 2009-08-25
    • US11349404
    • 2006-02-06
    • Goro FujitaNaoki Ide
    • Goro FujitaNaoki Ide
    • G11B20/12
    • G11B20/00594G11B7/00736G11B7/268G11B20/00086G11B20/10009G11B2220/20
    • A sub data recorder to record sub data on an optical-disk recording medium is provided. In one example, a sub data recorder records sub data by forming marks on a reflective layer of an optical-disk recording medium to which main data is recorded as a combination of pits and lands by irradiating laser light having a writing power to the reflective layer, the sub data can be recorded stably. An embodiment provides a recording apparatus to record sub data to an optical-disk recording medium formed from a substrate and at least a reflective layer and cover layer stacked on the substrate and to which main data is to be recorded as a combination of pits and lands formed on the substrate by irradiating laser light having a writing power to the reflective layer to form marks as the sub data on the reflective layer, the apparatus including a read signal generator to generate a read signal by detecting a return part of laser light having a reading power, irradiated to the optical-disk recording medium, a sub data recorder to record the sub data by forming the marks in mark inserting positions on the reflective layer of the optical-disk recording medium, determined in conformity to a predetermined rule, with the laser light being controlled to have the writing power, and a waveform replacing unit to replace a waveform of the read signal generated by the read signal generator, corresponding to a section having a predetermined length and including the mark inserting position, with a replacement waveform whose level has been set.
    • 提供了用于在光盘记录介质上记录子数据的子数据记录器。 在一个示例中,子数据记录器通过在主要数据被记录为凹坑和平台的组合的光盘记录介质的反射层上形成标记来记录子数据,通过将具有写入功率的激光照射到反射层 ,可以稳定地记录子数据。 一个实施例提供了一种记录装置,用于将子数据记录到由基板形成的光盘记录介质和至少层叠在基板上的反射层和覆盖层,并且将主数据作为凹坑和焊盘的组合记录 通过向反射层照射具有写入功率的激光形成在基板上,以形成反射层上的子数据的标记,该装置包括读信号发生器,以通过检测具有 读取功率,照射到光盘记录介质,副数据记录器,通过在根据预定规则确定的光盘记录介质的反射层上形成标记插入位置的标记来记录子数据, 被控制为具有写入功率的激光,以及用于替换由读取信号发生器产生的读取信号的波形的波形替换单元, 涉及具有预定长度并包括标记插入位置的部分,具有已经设置了电平的替换波形。
    • 15. 发明申请
    • Read-only optical recording medium on which unique identification information is written
    • 仅写入唯一识别信息的光记录介质
    • US20070195686A1
    • 2007-08-23
    • US10592487
    • 2005-04-08
    • Naoki Ide
    • Naoki Ide
    • G11B7/24
    • G11B7/00736G11B7/268G11B20/10009G11B27/322H04N5/85
    • There is provided a method for recording an unique ID to a read-only optical disk (1) adopting the 1-7 PP modulation technique and having provided in a plurality of predetermined positions postscript areas each having a predetermined postscript pattern formed therein. The postscript pattern takes a form of 3T (pit) −2T (land) −3T (pit) and has a length of 8T (largest code length of a modulated bit string). Modulated bit strings before and after the 3T-2T-3T postscript pattern are formed so that the pit-land-pit postscript pattern complies with the rule of the variable-length modulation even when it is replaced as a whole with a pit-only pattern. Further, the land in the middle of the pit-land-pit postscript pattern is formed from a material which will not physically change when irradiated with laser light having a reading-level one but will be melted when irradiated with laser light having a power higher than the reading-level one.
    • 提供了一种将唯一ID记录到采用1-7PP调制技术的只读光盘(1)并且在多个预定位置中提供了各自具有形成在其中的预定后记图案的后记区域的方法。 后记图案采用3T(凹坑)-2T(地面)-3T(凹坑)的形式,并且具有8T的长度(调制比特串的最大码长)。 形成3T-2T-3T后记图案之前和之后的调制比特串,使得凹坑 - 坑 - 坑后缀图案符合可变长度调制的规则,即使其整体用凹坑图案代替 。 此外,坑坑坑后缀图案中间的土地是由具有读取级别的激光照射时将不会物理变化的材料形成的,但是当用具有功率的激光照射时将熔化 比阅读一级。
    • 16. 发明申请
    • Information recording apparatus and information recording method
    • 信息记录装置和信息记录方法
    • US20060114606A1
    • 2006-06-01
    • US11262793
    • 2005-11-01
    • Naoki Ide
    • Naoki Ide
    • G11B5/127
    • B82Y10/00G11B5/1278G11B5/65G11B5/66G11B9/149G11B2005/001
    • Magnetic recording is performed by a magnetic field lower than a coercive force without considerably changing the structure of a magnetic head and the vicinity thereof. When recording is performed by applying a magnetic field to a magnetic recording layer of a recording medium using a magnetic head, the electric field is generated in the magnetic recording layer so that the coercive force thereof is decreased. Accordingly, magnetization is recorded by a lower magnetic field than an intrinsic coercive force of the magnetic recording layer. In order to generate the electric field, a power source is connected to magnetic pole layers of a longitudinal magnetic recording head (or to a magnet pole layer of a perpendicular magnetic recording head and a conductive layer of a recording medium thereof).
    • 通过低于矫顽力的磁场进行磁记录,而不会显着改变磁头及其附近的结构。 当通过使用磁头将磁场施加到记录介质的磁记录层来执行记录时,在磁记录层中产生电场,使其矫顽力降低。 因此,通过比磁记录层的固有矫顽力更低的磁场来记录磁化。 为了产生电场,电源连接到纵向磁记录头(或垂直磁记录头的磁极层及其记录介质的导电层)的磁极层。
    • 17. 发明授权
    • Signal processing apparatus and signal processing method
    • 信号处理装置及信号处理方法
    • US08355479B2
    • 2013-01-15
    • US12698508
    • 2010-02-02
    • Naoki Ide
    • Naoki Ide
    • H04L7/00
    • H04L7/0337H04L7/046H04L27/22H04L2007/045
    • There is provided a signal processing apparatus includes a sampling clock generator for generating a sampling clock by delaying, a phase of a driving clock having the same frequency as a carrier-wave; a logic data generator for generating logic data in synchronization with the driving clock, that the logic data are generated by using the driving clock generated to sample a modulation signal obtained by shifting a phase of the carrier-wave; a sampling bit-string generator for generating a sampling bit-string by shifting the logic data; a phase-error data generator for using a bit-string corresponding to one cycle of the carrier-wave extracted from the sampling bit-string to generate phase-error data between a phase of the bit-string and the phase of the carrier-wave; and an extraction position determination unit for determining, based on the phase-error data, an extraction position of the bit-string having a phase similar that of the carrier-wave.
    • 提供了一种信号处理装置,包括:采样时钟发生器,用于通过延迟具有与载波相同频率的驱动时钟的相位产生采样时钟; 逻辑数据发生器,用于与驱动时钟同步地产生逻辑数据,通过使用产生的驱动时钟来生成逻辑数据,以对通过移位载波的相位获得的调制信号进行采样; 采样位串发生器,用于通过移位逻辑数据产生采样位串; 一个相位误差数据发生器,用于使用对应于从采样位串提取的载波的一个周期的比特串,以在比特串的相位和载波的相位之间产生相位误差数据 ; 以及提取位置确定单元,用于基于所述相位误差数据确定具有与所述载波相似的相位的位串的提取位置。
    • 18. 发明授权
    • Power transfer device, power supply device and power receiving device
    • 电力传输装置,电源装置及受电装置
    • US08319489B2
    • 2012-11-27
    • US12492662
    • 2009-06-26
    • Naoki Ide
    • Naoki Ide
    • H01F17/00
    • H02J50/12H02J5/005H02J7/025
    • A power transfer device includes: a transformer that couples a primary circuit and a secondary circuit and has a coupling constant of less than 1; and capacitances that are respectively provided in the primary circuit and the secondary circuit, and connected in series with coils that form the transformer. Circuit constants of the primary circuit and the secondary circuit are set so that the primary circuit and the secondary circuit resonate at the same frequency and a product of the square of the coupling constant, a Q value of the primary circuit and a Q value of the secondary circuit is 1. The primary circuit transfers power to the secondary circuit by means of the transformer, using a carrier wave having the resonance frequency.
    • 电力传输装置包括:耦合初级电路和次级电路并具有小于1的耦合常数的变压器; 以及分别设置在初级电路和次级电路中并且与形成变压器的线圈串联连接的电容。 初级电路和次级电路的电路常数被设定为使得主电路和次级电路以相同的频率谐振,耦合常数的平方,一次电路的Q值和 次级电路为1.主电路使用具有共振频率的载波,通过变压器将功率传输到次级电路。