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    • 42. 发明授权
    • Optical reproducing device, optical reproducing method using the same,
and optical record medium used in the same
    • 光学再现装置,使用该光学再现装置的光学再现方法及其中使用的光学记录介质
    • US5610879A
    • 1997-03-11
    • US206752
    • 1994-03-07
    • Mitsurou MoriyaHiromichi IshibashiTakeo OhtaYasuhiro Sugihara
    • Mitsurou MoriyaHiromichi IshibashiTakeo OhtaYasuhiro Sugihara
    • G11B7/005G11B7/125G11B7/24G11B7/09
    • G11B7/126G11B7/005G11B7/24
    • A record medium according to the present invention includes a substrate having concave or convex information pits and a thermosensitive material film formed on the substrate. The thermosensitive material film is changed from a high reflectance state to a low reflectance state when its temperature becomes a high level and returns to the high reflectance state when its temperature decreases to a low level. In the case where information is reproduced, when a light beam having a predetermined power is irradiated to the record medium, heat generated by the light beam is confined in the pits and the temperature in the pits increases; the thermosensitive material on the pits becomes the low reflectance state. The flat portions between the pits has high heat radiation and thus, the temperature in the flat portions does not increase so much; therefore, the state of the thermosensitive material film on the flat portions is not changed. Thus, an optical power of reflected light from the pits to which a light beam is irradiated is decreased, so that an amplitude of a reproduced signal is increased.
    • 根据本发明的记录介质包括具有凹或凹信息凹坑的衬底和形成在衬底上的热敏材料膜。 当其温度变为高电平时,热敏材料膜从高反射率状态变为低反射率状态,并且当其温度降低到低水平时,返回到高反射率状态。 在再现信息的情况下,当将具有预定功率的光束照射到记录介质上时,由光束产生的热量被限制在凹坑中并且凹坑中的温度增加; 凹坑上的热敏材料变成低反射率状态。 凹坑之间的平坦部分具有高热辐射,因此平坦部分中的温度不会增加太多; 因此,平坦部分上的热敏材料膜的状态不变。 因此,来自照射光束的凹坑的反射光的光功率减小,使得再现信号的幅度增加。
    • 43. 发明授权
    • Optical information recording disk having embossed clock mark pits and
embossed information recording pits
    • 具有压纹时钟标记凹坑和压花信息记录凹坑的光学信息记录盘
    • US5295131A
    • 1994-03-15
    • US769823
    • 1991-10-02
    • Hiromichi IshibashiMitsuro Moriya
    • Hiromichi IshibashiMitsuro Moriya
    • G11B7/0045G11B7/0055G11B7/09G11B7/24
    • G11B7/0938G11B7/0045G11B7/00557G11B7/24
    • In a first optical disk, a plurality of sets of bit information record cells, each cell including a plurality of bit information record cells, and a plurality of clock marks are formed along a track line on a substrate, and the bit information record cells are formed for example as pits, wherein the recording or reading of a bit of information to or from the bit information record cells is effected with a laser head. The information record cells are arranged at mutual intervals smaller than the minimum read distance of the laser head, while the clock marks are provided so as to have a distance from a set of bit information record cell which is larger than the minimum read distance of the laser head so that the clock marks can be recognized by the laser head to be used for synchronization. Then, the recording density can be improved. In a second optical disk, track recognition marks are arranged as d spiral at equiangular distances so that there are an odd number of track recognition marks per track unit. Thus, even if the track pitch is on the order of the minimum read distance, the distance between adjacent wobble marks becomes is about double the minimum read distance so that the wobble marks can be recognized independently for tracking error detection.
    • 在第一光盘中,沿着基板上的轨迹线形成多组位信息记录单元,包括多个位信息记录单元的每个单元和多个时钟标记,并且位信息记录单元是 形成为例如凹坑,其中利用激光头实现对位信息记录单元的位信息的记录或读取。 信息记录单元被布置成小于激光头的最小读取距离的相互间隔,而时钟标记被设置成与一组比特信息记录单元的距离大于最小读取距离 激光头,使得时钟标记可以由激光头识别以用于同步。 然后,可以提高记录密度。 在第二光盘中,轨道识别标记以等角距离布置为d螺旋,使得每个轨道单元存在奇数个轨道识别标记。 因此,即使轨道间距是最小读取距离的顺序,相邻摆动标记之间的距离变成约为最小读取距离的两倍,从而可以独立地识别摆动标记以进行跟踪误差检测。