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    • 2. 发明公开
    • Dielectric recording/reproducing head and tracking method
    • Dielektrischer Aufzeichnungs- / Wiedergabekopf und Tracking-Verfahren
    • EP1752981A1
    • 2007-02-14
    • EP06124174.1
    • 2003-07-08
    • PIONEER ELECTRONIC CORPORATIONCho, Yasuo
    • Cho, YasuoOnoe, Atsushi
    • G11B11/00G11B9/00G11B9/02G11B9/08
    • G11B9/02B82Y10/00G11B9/08G11B9/1409G11B9/1454G11B9/1481
    • A dielectric recording / reproducing head (40a) is provided with: a probe (11) for recording / reproducing data in / from a dielectric recording medium (1); and a slider (12) placed so as to surround the probe (11) and containing an electric conductor. It may be provided with a probe supporting device (14) containing an insulating member such as resin materials in the gap between the probe (11) and the slider (12). The probe (11) has a longitudinal shape with a longer length in the width direction of the track (5), and covers the track (5) and one portion of adjacent spaces. The slider (12) can be used, by earthing it, as a return electrode for returning a high-frequency electric field applied from the probe (11) to the dielectric recording medium (1) in order to reproduce a signal. The probe (11) is set not to project from a surface of the slider (12) facing to the dielectric recording medium (1).
    • 介质记录/再现头(40a)具有:用于在介质记录介质(1)中记录/再现数据的探针(11); 以及放置成围绕探针(11)并容纳电导体的滑块(12)。 可以在探针(11)和滑块(12)之间的间隙中设置有包含树脂材料等绝缘构件的探针支撑装置(14)。 探头(11)具有在轨道(5)的宽度方向上具有较长长度的纵向形状,并且覆盖轨道(5)和相邻空间的一部分。 滑块(12)可以通过接地而用作返回电极,用于将从探针(11)施加的高频电场返回到介质记录介质(1),以便再现信号。 探针(11)被设定为不从面向电介质记录介质(1)的滑块(12)的表面突出。
    • 6. 发明公开
    • Electrostatic information recording medium and electrostatic information recording and reproducing method
    • 信息技术信息技术和电子信息信息
    • EP1033706A1
    • 2000-09-06
    • EP00111166.5
    • 1989-05-17
    • DAI NIPPON PRINTING CO., LTD.
    • Obata, HiroyukiTake, SeijiMatsuo, MakotoIijima, MasayukiUtsumi, MinoruTaniguchi, Yukio
    • G11B9/08G11B11/08G03G5/02G11B11/12H04N5/30H04N5/80G03G15/05
    • G11B11/12G03G5/02G03G5/0205G03G5/0208G03G15/05G11B9/08G11B11/08H04N5/80H04N9/802
    • An electrostatic information recording medium (3) in which a charge retaining layer (11) having high insulating properties is laminated on an electrode (13) is disclosed, as is an electrostatic information recording/reproducing process wherein, while the electrostatic information recording medium (3) is positioned in opposition to a photosensitive member (1) in which a photoconductive layer (2) is laminated on a transparent electrode (7), the recording medium (3) is subjected to information exposure with the application of voltage (17) between the electrodes (13 and 7) to accumulate electrostatic charges thereon depending upon the dosage of said information exposure, and the electrostatic information thus accumulated is reproduced by potential reading.
      The electrostatic information recording medium (3) has an information density as expressed in terms of a high recording capacity of the order of 8 × 10 8 bits/cm 2 , and makes it possible to process information in a planar state so that analog or digital information such as characters, line pictures, images, (0.1) information and sounds can be accumulated in the form of electrostatic charges. With this electrostatic information recording medium (3), it is possible to obtain information of high quality and resolving power because of the information being accumulable in electrostatic charge units. Due to its high charge retainability, it is further possible to store information permanently. Still further, it is possible to make inexpensive and simple recording/reproducing systems, since information can be output by reading local potentials of electrostatic latent images at any time and any scanning density.
    • 公开了一种静电信息记录介质(3),其中在电极(13)上层叠具有高绝缘性的电荷保持层(11)的静电信息记录介质(3),其中静电信息记录介质(静电信息记录介质 3)与透明电极(7)上层叠有光电导层(2)的感光体(1)相对置,记录介质(3)通过施加电压(17)进行信息曝光, 在电极(13和7)之间根据所述信息曝光的剂量在其上积累静电电荷,并且通过电位读数再现由此累积的静电信息。 静电信息记录介质(3)具有以8×10 8比特/ cm 2的高记录容量表示的信息密度,并且可以处理平面状态下的信息 可以以静电电荷的形式累积诸如字符,行图,图像,(0.1)信息和声音的模拟或数字信息。 利用该静电信息记录介质(3),由于信息可以在静电荷单元中累积,所以可以获得高质量和分辨率的信息。 由于其高电荷保持性,因此还可以永久地存储信息。 此外,由于可以通过读取任何时间的静电潜像的局部电位和任何扫描密度来输出信息,所以可以制造便宜且简单的记录/再现系统。