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    • 3. 发明申请
    • SEMICONDUCTOR COMPONENT AND METHOD OF FABRICATING SEMICONDUCTOR COMPONENT
    • 半导体元件和制造半导体元件的方法
    • US20110156193A1
    • 2011-06-30
    • US12977982
    • 2010-12-23
    • Atsushi NAKAMURAMasami IKEGAMI
    • Atsushi NAKAMURAMasami IKEGAMI
    • H01L31/068H01L31/18
    • H01L31/022408
    • There is provided a semiconductor component including: a semiconductor substrate of a first conduction type; a semiconductor layer of a second conduction type that is formed on the semiconductor substrate and is PN-joined with the semiconductor substrate; an insulator layer laminated on the semiconductor layer; a metal layer laminated on the insulator layer at a pre-specified region; a semiconductor of the second conduction type at a side of the semiconductor layer at which the insulating layer is laminated, the semiconductor being formed directly under the metal layer such that incident light that is incident from the metal layer side is not illuminated onto the semiconductor layer, and the semiconductor containing more impurities than the semiconductor layer; and a conduction portion that conducts between the metal layer and the semiconductor.
    • 提供了一种半导体元件,包括:第一导电类型的半导体衬底; 形成在半导体衬底上并与半导体衬底PN接合的第二导电类型的半导体层; 层叠在所述半导体层上的绝缘体层; 在预定区域上层压在绝缘体层上的金属层; 在半导体层的层叠绝缘层的一侧的第二导电类型的半导体,半导体直接形成在金属层下方,使得从金属层侧入射的入射光不被照射到半导体层上 ,并且包含比半导体层更多的杂质的半导体; 以及在金属层和半导体之间导通的导电部。
    • 5. 发明申请
    • METHOD FOR INSPECTING OPTICAL INFORMATION RECORDING MEDIUM, INSPECTION APPARATUS, OPTICAL INFORMATION RECORDING MEDIUM AND RECORDING METHOD
    • 检查光信息记录介质的方法,检查装置,光信息记录介质和记录方法
    • US20100110853A1
    • 2010-05-06
    • US12261309
    • 2008-10-30
    • Atsushi NAKAMURAKenji FUJIUNEYasumori HINO
    • Atsushi NAKAMURAKenji FUJIUNEYasumori HINO
    • G11B7/00
    • G11B7/268G11B7/00375G11B7/0079
    • A method for inspecting an optical information storage medium includes the steps of: irradiating the storage medium with a laser beam and rotating the medium by a constant linear velocity control technique by reference to the radial location at which the laser beam forms a spot on the medium; changing the rotational velocities according to the radial location on the medium between at least two linear velocities that include a first linear velocity Lv1 and a second linear velocity Lv2 higher than the first linear velocity Lv1; generating a focus error signal and/or a tracking error signal based on the light reflected from the medium; performing a focus control and/or a tracking control on the laser beam that irradiates the medium based on the focus and/or tracking error signal(s); and passing the branched outputs of control loops for the focus and/or tracking error signal(s) through predetermined types of frequency band-elimination filters for the focus and/or tracking error signal(s) to obtain residual errors of the focus and/or tracking error signal(s) and comparing the residual errors to predetermined reference values.
    • 一种用于检查光学信息存储介质的方法包括以下步骤:通过参考激光束在介质上形成点的径向位置,通过恒定的线速度控制技术照射存储介质和激光介质 ; 根据包括第一线速度Lv1和高于第一线速度Lv1的第二线速度Lv2的至少两个线性速度,根据介质上的径向位置改变旋转速度; 基于从介质反射的光产生聚焦误差信号和/或跟踪误差信号; 对基于焦点和/或跟踪误差信号照射介质的激光束进行聚焦控制和/或跟踪控制; 以及通过用于焦点和/或跟踪误差信号的预定类型的频带滤波器使用于聚焦和/或跟踪误差信号的控制回路的分支输出通过,以获得焦点和/ 或跟踪误差信号,并将剩余误差与预定参考值进行比较。
    • 6. 发明申请
    • RECORDING CONTROL METHOD, RECORDING/REPRODUCTION METHOD, RECORDING CONTROL APPARATUS AND RECORDING/REPRODUCTION APPARATUS
    • 记录控制方法,记录/再现方法,记录控制装置和记录/再现装置
    • US20100080095A1
    • 2010-04-01
    • US12243086
    • 2008-10-01
    • Isao KOBAYASHIAtsushi NAKAMURAYasumori HINO
    • Isao KOBAYASHIAtsushi NAKAMURAYasumori HINO
    • G11B20/00
    • G11B7/0062
    • Information is recorded on an information recording medium by classifying recording conditions by data pattern, including at least one recording mark and at least one space, of a data stream to be recorded; wherein the classification of the recording conditions by data pattern is performed using a combination of the length of a first recording mark included in the data stream and the length of a first space located adjacently previous or subsequent to the first recording mark, and then further performed using the length of a second recording mark which is not located adjacent to the first recording mark and is located adjacent to the first space. Alternatively, the classification of the recording conditions by data pattern is performed using a combination of the length of a first recording mark included in the data stream and the length of a first space located adjacently previous or subsequent to the first recording mark, and then further performed using the length of a second space which is not located adjacent to the first space and is located adjacent to the first recording mark.
    • 信息记录在信息记录介质上,通过数据模式分类记录条件,包括要被记录的数据流的至少一个记录标记和至少一个空间; 其中通过数据图案的记录条件的分类是使用包括在数据流中的第一记录标记的长度与位于第一记录标记之前或之后相邻的第一空间的长度的组合来执行的,然后进一步执行 使用不位于与第一记录标记相邻并且位于第一空间附近的第二记录标记的长度。 或者,使用数据流中包括的第一记录标记的长度与位于第一记录标记之前或之后相邻的第一空间的长度的组合来执行通过数据模式对记录条件的分类,然后进一步 使用不位于与第一空间相邻并且位于第一记录标记附近的第二空间的长度来执行。
    • 9. 发明申请
    • RECORDING METHOD AND APPARATUS USING WRITE PULSE WAVEFORMS
    • 记录方法和使用写波形波形的设备
    • US20080298200A1
    • 2008-12-04
    • US12180681
    • 2008-07-28
    • Atsushi NAKAMURAShigeru Furumiya
    • Atsushi NAKAMURAShigeru Furumiya
    • G11B5/09
    • G11B7/0062
    • A data recording method according to the present invention is a method for recording data as edge position information, including marks and spaces of multiple different lengths, on a storage medium by irradiating the storage medium with a pulsed energy beam. The method includes the steps of: (A) generating a write code sequence based on the data to be recorded; (B) determining a write pulse waveform, defining the power modulation of the energy beam, according to the code lengths of respective codes included in the write code sequence; and (C) modulating the power of the energy beam based on the write pulse waveform. If the shortest code length of the write code sequence is n (which is an integer equal to or greater than one), a write pulse waveform that has only one write pulse is assigned to recording mark making periods corresponding to codes with code lengths x of n, n+1 and n+2, and a write pulse waveform that has multiple write pulses Pw is assigned to recording mark making periods corresponding to codes with code lengths x of n+3 or more.
    • 根据本发明的数据记录方法是通过用脉冲能量束照射存储介质,将数据作为边缘位置信息(包括多个不同长度的标记和间隔)记录在存储介质上的方法。 该方法包括以下步骤:(A)基于要记录的数据生成写代码序列; (B)根据包含在写代码序列中的各个代码的码长,确定写入脉冲波形,定义能量束的功率调制; 和(C)基于写入脉冲波形调制能量束的功率。 如果写代码序列的最短代码长度为n(其为等于或大于1的整数),则仅具有一个写入脉冲的写入脉冲波形被分配给与代码长度为x的代码相对应的记录标记制作周期 n,n + 1和n + 2,并且具有多个写入脉冲Pw的写入脉冲波形被分配给与代码长度为x + 3或更大的代码相对应的记录标记制作周期。
    • 10. 发明申请
    • METHOD AND APPARATUS FOR WRITING DATA ON A STORAGE MEDIUM
    • 用于在存储介质上写入数据的方法和装置
    • US20080239916A1
    • 2008-10-02
    • US12133666
    • 2008-06-05
    • Atsushi NAKAMURAShigeru FURUMIYA
    • Atsushi NAKAMURAShigeru FURUMIYA
    • G11B27/30
    • G11B7/0062
    • A data recording method according to the present invention is a method for recording data as edge position information, including marks and spaces of multiple different lengths, on a storage medium by irradiating the storage medium with a pulsed energy beam. The method includes the steps of: (A) generating a write code sequence based on the data to be recorded; (B) determining a write pulse waveform, defining the power modulation of the energy beam, according to the code lengths of respective codes included in the write code sequence; and (C) modulating the power of the energy beam based on the write pulse waveform. If the shortest code length of the write code sequence is n (which is an integer equal to or greater than one), a write pulse waveform that has only one write pulse is assigned to recording mark making periods corresponding to codes with code lengths x of n, n+1 and n+2, and a write pulse waveform that has multiple write pulses Pw is assigned to recording mark making periods corresponding to codes with code lengths x of n+3 or more.
    • 根据本发明的数据记录方法是通过用脉冲能量束照射存储介质,将数据作为边缘位置信息(包括多个不同长度的标记和间隔)记录在存储介质上的方法。 该方法包括以下步骤:(A)基于要记录的数据生成写代码序列; (B)根据包含在写代码序列中的各个代码的码长,确定写入脉冲波形,定义能量束的功率调制; 和(C)基于写入脉冲波形调制能量束的功率。 如果写代码序列的最短代码长度为n(其为等于或大于1的整数),则仅具有一个写入脉冲的写入脉冲波形被分配给与代码长度为x的代码相对应的记录标记制作周期 n,n + 1和n + 2,并且具有多个写入脉冲Pw的写入脉冲波形被分配给与代码长度为x + 3或更大的代码相对应的记录标记制作周期。