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    • 5. 发明公开
    • Information recording medium and information recording and reproducing method and apparatus
    • 记录盘和方法和设备用于记录和再现数据。
    • EP0432731A2
    • 1991-06-19
    • EP90123820.4
    • 1990-12-11
    • HITACHI, LTD.HITACHI MAXELL, LTD.
    • Okamine, ShigenoriNishida, TetsuyaHorigome, ShinkichiTerao, MotoyasuOhta, Norio
    • G11B7/24G11B7/00
    • G11B7/24G11B7/0045
    • An information recording medium (32) which comprises two or more energy beam absorbing layers (2, 4) which are formed at different positions across the thickness within the depth of focus of the energy beam, and an energy beam transmitting layer (3) interposed between said energy beam absorbing layers (2, 4).
      A method for recording and reproducing information by applying an energy beam to an information recording medium (32) mentioned above, characterized in that the information recording is accomplished in response to the energy beam power which varies or the pulse waveform which varies, or both.
      An apparatus for reproducing information which comprises a means (30) to encode information into recording signals and a means (31) to drive the irradiating energy beam.
      The information recording medium (32) has a high recording density and a large recording capacity owing to its capability of multi-valued recording.
    • 其包括两个或多个能量束吸收层的信息记录介质(32)(2,4),它们是在整个能量束的焦点深度内的厚度的不同位置形成,并且,以能量束发射层(3)夹 所述能量束吸收层之间(2,4)。 通过在信息施加到能量束到记录上述培养基(32),用于记录和再现信息的方法,其特征在于,所做的信息记录是响应于而变化的能量束的功率或脉冲波形而变化,或二者来实现。 一种用于再现包括装置(30)的信息来编码信息到记录信号和装置(31)以驱动所述照射能量束的装置。 的信息记录介质(32)具有高的记录密度,并且由于其多值记录的能力的大的记录容量。
    • 10. 发明公开
    • Optical recording medium and method of manufacturing the same
    • 光学记录介质及其制造方法
    • EP0418017A3
    • 1992-09-02
    • EP90309883.8
    • 1990-09-10
    • Hitachi Maxell Ltd.HITACHI, LTD.
    • Goto, AkiraNakamichi, ShuheiHorigome, ShinkichiNishida, Tetsuya
    • G11B7/26G11B7/24
    • G11B7/26Y10S428/913Y10S430/146Y10T428/31504
    • Disclosed are a method of manufacturing an optical recording medium having a process of interposing an organic compound between a metal stamper and a transparent substrate and forming a replica onto which a signal surface formed on the metal stamper is transferred on the transparent sub­strate, which comprises a process of manufacturing the replica which comprises the steps of (a) forming a coated film of at least the first organic compound on the signal surface of the metal stamper, (b) placing a solution of the second organic compound which is permeable or dissolvable into the first organic compound on the coated film of the first organic compound in a doughnut shape and extending the solution by pressing the transparent substrate against the same to laminate a coated film, (c) permeating and impreg­nating a solution of the second organic compound into and with the first organic compound, (d) curing the laminated layer composed of the first organic compound and the second organic compound to form a cured laminated layer, and (e) exfoliating the laminated layer from the stamper to obtain a replica layer, and further comprises the steps off (f) baking a laminated member obtained in the step (e), (g) forming a coated film composed only of the first organic compound to the preformat pattern surface of the obtained replica layer and drying the same, (h) forming a recording film on the layer composed only of the first organic compound, and (i) baking a laminated member obtained in the step (h), and an optical recording medium, which comprises a transparent substrate, a replica layer formed on one surface of the transparent substrate, and a layer composed only of a first organic compound and a recording film layer being laminated in this order on the surface of the replica layer onto which the preformat pattern is transferred, the replica layer composed of a second organic compound layer and mixed layer in this order from the transparent substrate, the mixed layer being composed of the first organic compound and the second organic compound.