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    • 3. 发明申请
    • Magnetic recording medium and magnetic recording device using the same
    • 磁记录介质及使用其的磁记录装置
    • US20040107426A1
    • 2004-06-03
    • US10679696
    • 2003-10-07
    • Sharp Kabushiki Kaisha
    • Junichi SatoHiroshi Fuji
    • G11B005/84G11B003/70G11B011/00G11B007/26
    • G11B5/7325G11B5/127G11B5/64G11B5/74G11B5/82G11B11/10591G11B2005/0002G11B2005/0005G11B2005/001G11B2005/0016G11B2005/0021
    • The magnetic recording medium includes: an underlayer constituted of at least a substrate and a nonmagnetic metal element; and an amorphous magnetic layer, made of amorphous magnetic material, which magnetically records information, wherein the amorphous magnetic layer has bumps on a surface thereof or the magnetic recording medium has bumps on a surface thereof (surface of a lubricating layer) so that density of the bumps is not less than 400 bumps/nullm2 or so that height of the bumps is not less than 2% with respect to an average layer thickness of the amorphous magnetic layer. Thus, magnetic wall movement of the amorphous magnetic layer is effectively suppressed, so that it is possible to stably form a recording bit. Therefore, even in a case of performing high-density recording by forming a minute recording bit, it is possible to record information with sufficient signal quality. Further, a magnetic recording device causes the magnetic recording medium to record information by locally heating the amorphous magnetic layer and by applying a magnetic field to at least one part of a heated region.
    • 磁记录介质包括:至少由基底和非磁性金属元素构成的底层; 以及磁性记录信息的由非晶磁性材料制成的非晶磁性层,其中非晶磁性层在其表面上具有凸起或磁性记录介质在其表面(润滑层的表面)上具有凸起,使得密度 凸起不小于400个凸起/ m 2,或者相对于非晶磁性层的平均层厚度,凸块的高度不小于2%。 因此,有效地抑制非晶磁性层的磁性壁移动,从而可以稳定地形成记录位。 因此,即使在通过形成微小记录位执行高密度记录的情况下,也可以以足够的信号质量来记录信息。 此外,磁记录装置使得磁记录介质通过局部加热非晶磁性层并且通过对加热区域的至少一部分施加磁场来记录信息。
    • 5. 发明申请
    • Light enabled RFID in information disks
    • 信息光盘启用RFID
    • US20040052203A1
    • 2004-03-18
    • US10243602
    • 2002-09-13
    • Brian W. Brollier
    • G11B003/70G11B005/84G11B007/26G08B013/14
    • G11B23/286G06K19/045G06K19/07345G08B13/2417G08B13/2437G08B13/2445G11B23/0042G11B23/30
    • An information disk has a disk structure with a metalized data storage area. A radio frequency identification processor that is activatable by light, such as laser light, is coupled to the disk structure to prevent copying of copyrighted or otherwise secured data, and to prevent unauthorized use of the information disk. The processor may be positioned at a variety of locations on the information disk, including in the inner non-conductive area, and the outer non-conductive ring, as well as within the metalized data storage area. A process for enabling an information disk with an RFID processor includes providing a disk structure having a metalized data storage area, and positioning a short wavelength electromagnetic light activated radio frequency identification processor on the disk structure.
    • 信息盘具有带有金属化数据存储区域的盘结构。 通过光激活的射频识别处理器(例如激光)被耦合到盘结构,以防止版权或其他安全数据的复制,并且防止未经授权使用信息盘。 处理器可以位于信息盘上的各种位置,包括在内部非导电区域中,以及外部非导电环以及金属化数据存储区域内。 利用RFID处理器启用信息盘的过程包括提供具有金属化数据存储区域的盘结构,以及将短波长电磁光激活射频识别处理器定位在盘结构上。
    • 7. 发明申请
    • Optical disk and method of producing the same
    • 光盘及其制造方法
    • US20030210644A1
    • 2003-11-13
    • US10396663
    • 2003-03-25
    • Takeo KojimaToyohito Asanuma
    • G11B003/70G11B005/84G11B007/26B32B031/00
    • B29C65/1483B29C65/1406B29C65/1435B29C65/4845B29C66/1122B29C66/452B29C66/71B29C66/9141B29C66/91645B29L2017/005G11B7/2534G11B7/2542G11B7/2575G11B7/258G11B7/26B29K2069/00
    • An optical disk includes a reflective layer, a recording layer, an optical-transparent bonding layer and an optical transparent sheet laminated on a substrate in this order. The total thickness of the optical-transparent bonding layer and the optical transparent sheet is 0.1 mm. The peak-to-peak height of wrinkles formed on the sheet is 2.5 nullm or lower. The optical disk is produced as follows: A first ultraviolet ray is radiated to an optical transparent sheet at a first energy level in the range from 500 mJ/cm2 to 3000 mJ/cm2, a wavelength of the first ultraviolet ray being in the range from 250 nm to 300 nm. Prepared next is a substrate laminated on which are a reflective layer and a recording layer in this order. Ultraviolet hardened resin is applied on the recording layer to form an optical-transparent bonding layer thereon. An optical transparent sheet is provided on the optical-transparent bonding layer. A second ultraviolet ray is radiated to the optical transparent sheet at a second energy level the same as or lower than the first energy level, to harden the optical-transparent bonding layer, thus the optical transparent sheet being bonded on the substrate via the optical-transparent bonding layer.
    • 光盘包括依次层叠在基板上的反射层,记录层,光透明结合层和光透明片。 光透明结合层和光透明片的总厚度为0.1mm。 在片材上形成的皱纹的峰 - 高高度为2.5μm以下。 光盘的制作方法如下:第一紫外线以500mJ / cm 2〜3000mJ / cm 2的范围内的第一能级照射到光透明片上,第一紫外线的波长 射线在250nm至300nm的范围内。 接下来制备的是其上层叠有反射层和记录层的基板。 将紫外线硬化树脂施加在记录层上以在其上形成光学透明粘合层。 光学透明片设置在光透明结合层上。 第二紫外线以与第一能量水平相同或更低的第二能级照射到光学透明片材,以使光学透明结合层硬化,由此光学透明片材经由光学透明片材接合在基板上, 透明粘结层。