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    • 22. 发明授权
    • Electronic equipment
    • 电子设备
    • US08125773B2
    • 2012-02-28
    • US12715563
    • 2010-03-02
    • Shinji FujitaSyuji Yasuoka
    • Shinji FujitaSyuji Yasuoka
    • G06F1/16
    • G06F1/1632G06F2200/1639
    • Electronic equipment according to the present invention can be attached removably to another device with screws 5a and 5b. The equipment includes: a housing 1; a through hole 4d that is formed in the housing 1 and in which each of the screws 5a and 5b is inserted and supported; and a bush 21 that can be attached removably to a head 5c of each of the screws 5a and 5b that is inserted and supported in the through hole 4d. The bush 21 includes a through hole 21 into which the head 5c of each of the screws 5a and 5b can be pressed and mounted. At least a part of the bush 21 is in contact with the housing 1 when the head 5c of each of the screws 5a and 5b is pressed and mounted into the bush 21. Thus, it is possible to provide electronic equipment in which screws are less likely to come loose even when subjected to a disturbance such as vibrations.
    • 根据本发明的电子设备可以用螺钉5a和5b可拆卸地附接到另一装置。 设备包括:外壳1; 形成在壳体1内的贯通孔4d,其中每个螺钉5a和5b被插入和支撑; 以及可拆卸地附接到插入并支撑在通孔4d中的每个螺钉5a和5b的头部5c的衬套21。 衬套21包括通孔21,每个螺钉5a和5b的头部5c可被压入并安装到该通孔21中。 当每个螺钉5a和5b的头部5c被按压并安装到衬套21中时,衬套21的至少一部分与壳体1接触。因此,可以提供螺钉较少的电子设备 即使受到诸如振动的干扰也可能会松动。
    • 24. 发明授权
    • Highly adaptive recording method and optical recording apparatus
    • 高度自适应记录方法和光记录装置
    • US07961580B2
    • 2011-06-14
    • US12341097
    • 2008-12-22
    • Shinji FujitaTakeshi MaedaManabu ShiozawaTakahiro Kurokawa
    • Shinji FujitaTakeshi MaedaManabu ShiozawaTakahiro Kurokawa
    • G11B7/00
    • G11B7/00456G11B7/0062
    • An optical disk recording method includes the steps of: providing a multi-pulse chain from a recording wave; independently changing the pulse rise timing and pulse fall timing (pulse width) of the first pulse in the multi-pulse chain in accordance with a preceding space length and a recording mark length; changing the pulse rise timing and pulse fall timing (pulse width) in accordance with a following space length and the recording mark length in a predetermined timing or in independence; and in relation to the smallest mark recorded by irradiation with mono pulse, changing the rise timing in accordance with the preceding space length and the recording mark length and the fall timing (pulse width) in accordance with the following space length and recording mark length, compensating various optical disks different in recording material without change of the fundamental waveform.
    • 光盘记录方法包括以下步骤:从记录波提供多脉冲链; 根据先前的空间长度和记录标记长度独立地改变多脉冲链中的第一脉冲的脉冲上升时间和脉冲下降时间(脉冲宽度); 根据以下空间长度和记录标记长度在预定时间或独立性中改变脉冲上升时间和脉冲下降时间(脉冲宽度); 并且相对于通过单脉冲照射记录的最小标记,根据以前的空格长度和记录标记长度以及根据以下空格长度和记录标记长度的下降时间(脉冲宽度)来改变上升时间, 补偿记录材料不同的各种光盘,而不改变基波形。
    • 26. 发明申请
    • ELECTRONIC EQUIPMENT
    • 电子设备
    • US20100226082A1
    • 2010-09-09
    • US12715563
    • 2010-03-02
    • Shinji FUJITASyuji YASUOKA
    • Shinji FUJITASyuji YASUOKA
    • H05K5/00
    • G06F1/1632G06F2200/1639
    • Electronic equipment according to the present invention can be attached removably to another device with screws 5a and 5b. The equipment includes: a housing 1; a through hole 4d that is formed in the housing 1 and in which each of the screws 5a and 5b is inserted and supported; and a bush 21 that can be attached removably to a head 5c of each of the screws 5a and 5b that is inserted and supported in the through hole 4d. The bush 21 includes a through hole 21 into which the head 5c of each of the screws 5a and 5b can be pressed and mounted. At least a part of the bush 21 is in contact with the housing 1 when the head 5c of each of the screws 5a and 5b is pressed and mounted into the bush 21. Thus, it is possible to provide electronic equipment in which screws are less likely to come loose even when subjected to a disturbance such as vibrations.
    • 根据本发明的电子设备可以用螺钉5a和5b可拆卸地附接到另一装置。 设备包括:外壳1; 形成在壳体1内的贯通孔4d,其中每个螺钉5a和5b被插入和支撑; 以及可拆卸地附接到插入并支撑在通孔4d中的每个螺钉5a和5b的头部5c的衬套21。 衬套21包括通孔21,每个螺钉5a和5b的头部5c可被压入并安装到该通孔21中。 当每个螺钉5a和5b的头部5c被按压并安装到衬套21中时,衬套21的至少一部分与壳体1接触。因此,可以提供螺钉较少的电子设备 即使受到诸如振动的干扰也可能会松动。
    • 28. 发明授权
    • Highly adaptive recording method and optical recording apparatus
    • 高度自适应记录方法和光记录装置
    • US07492688B2
    • 2009-02-17
    • US12183946
    • 2008-07-31
    • Shinji FujitaTakeshi MaedaManabu ShiozawaTakahiro Kurokawa
    • Shinji FujitaTakeshi MaedaManabu ShiozawaTakahiro Kurokawa
    • G11B5/09
    • G11B7/00456G11B7/0062
    • An optical disk recording method includes the steps of: providing a multi-pulse chain from a recording wave; independently changing the pulse rise timing and pulse fall timing (pulse width) of the first pulse in the multi-pulse chain in accordance with a preceding space length and a recording mark length; changing the pulse rise timing and pulse fall timing (pulse width) in accordance with a following space length and the recording mark length in a predetermined timing or in independence; and in relation to the smallest mark recorded by irradiation with mono pulse, changing the rise timing in accordance with the preceding space length and the recording mark length and the fall timing (pulse width) in accordance with the following space length and recording mark length, compensating various optical disks different in recording material without change of the fundamental waveform.
    • 光盘记录方法包括以下步骤:从记录波提供多脉冲链; 根据先前的空间长度和记录标记长度独立地改变多脉冲链中的第一脉冲的脉冲上升时间和脉冲下降时间(脉冲宽度); 根据以下空间长度和记录标记长度在预定时间或独立性中改变脉冲上升时间和脉冲下降时间(脉冲宽度); 并且相对于通过单脉冲照射记录的最小标记,根据以前的空格长度和记录标记长度以及根据以下空格长度和记录标记长度的下降时间(脉冲宽度)来改变上升时间, 补偿记录材料不同的各种光盘,而不改变基波形。
    • 30. 发明申请
    • Optical disk apparatus and optical pickup
    • 光盘装置和光学拾取器
    • US20050052964A1
    • 2005-03-10
    • US10879779
    • 2004-06-30
    • Shinji FujitaFumio IsshikiNobuyuki Maeda
    • Shinji FujitaFumio IsshikiNobuyuki Maeda
    • G11B7/085G11B7/00G11B7/09G11B7/125G11B7/135
    • G11B7/13925G11B7/1369G11B7/1378G11B2007/13727
    • A method and an optical disk apparatus that can accurately and stably correct the spherical aberration even for a blank write-once optical disk and can detect a spherical aberration error signal with a simple construction of parts in real time. In a blank write-once disk 20, the tracking servo is switched to an inoperative state, push-pull signals from outputs of the photodetector 12 are detected in a state of “in focus” and in a state of “out focus,” respectively, by a push-pull signal generation circuit 34, and the amplitudes of these push-pull signals are subjected to difference calculation in a spherical aberration error detector 31 to obtain a spherical aberration error signal A. Then, the spherical aberration is corrected with this spherical aberration error signal A, and subsequently a specific pattern signal is recorded in a trial writing area, this signal is reproduced in the state of “in focus” and in the state of “out focus,” respectively, the amplitude of each reproduced signal is acquired by a reproduced signal generation circuit 32, these amplitudes are subjected to difference calculation in the spherical aberration error detector 31 to obtain a spherical aberration error signal B. The spherical aberration is corrected with this.
    • 一种方法和光盘装置,即使对于空白一次写入光盘也能够准确且稳定地校正球面像差,并且可以实时地以简单的部件构造来检测球面像差误差信号。 在空白的一次写入盘20中,跟踪伺服被切换到不工作状态,在“对焦”的状态下分别检测来自光检测器12的输出的推挽信号,处于“熄焦”的状态 通过推挽信号产生电路34,并且在球面像差误差检测器31中对这些推挽信号的幅度进行差分计算,以获得球面像差误差信号A.然后,用这种方法校正球面像差 球面像差误差信号A,随后的特定图案信号被记录在试写区域中,该信号分别以“对焦”的状态再现,并且在“对焦”的状态下再现,每个再现信号的幅度 由再现信号生成电路32获取,在球面像差误差检测器31中对这些振幅进行差分运算,得到球面像差误差信号B.球面像差为co 与此搭起来