会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 4. 发明授权
    • Magnetic recording and reproducing apparatus having a ferrimagnetic
recording medium, a magnetic head and first and second light sources
    • 具有铁磁记录介质,磁头和第一和第二光源的磁记录和重放装置
    • US5293359A
    • 1994-03-08
    • US741932
    • 1991-08-08
    • Kenji OhtaAkira TakahashiJunsaku NakajimaYoshiteru MurakamiJunji Hirokane
    • Kenji OhtaAkira TakahashiJunsaku NakajimaYoshiteru MurakamiJunji Hirokane
    • G11B5/02G11B5/00G11B11/10G11B11/105G11B13/04
    • G11B5/00G11B2005/0021
    • A magnetic recording and reproducing apparatus using a recording medium made of a ferrimagnetic material, comprises a magnetic head for magnetically recording information on a recording area of a selected information recording track on a recording medium having a plurality of tracks and for magnetically reproducing the information from the recording medium, the magnetic head has a width larger than that of the width of the selected information recording track of the recording medium. For recording, light beams are radiated from a first light source on the recording area of the selected information recording track upon which recording is to be performed tracks to raise the temperature of the irradiated area to approximately a Curie temperature so as to allow recording only on that area. For reproduction, light beams are radiated from another light source onto areas on both sides of on a second area of the recording medium, located on both sides of the selected information recording track, to raise the temperature of the second irradiated areas to approximately a magnetic compensation temperature so as to allow reproduction only from the desired track, thus preventing crosstalk from the side tracks.
    • 使用由铁氧体材料制成的记录介质的磁记录和再现装置包括磁头,用于在具有多个轨道的记录介质上将所选择的信息记录轨道的记录区域上的信息磁记录,并用于从 记录介质中,磁头的宽度大于记录介质的选定信息记录道的宽度。 为了进行记录,光束从要进行记录的所选择的信息记录轨道的记录区域上的第一光源辐射,以将照射区域的温度升高到大约居里温度,以便仅在 那个地区。 为了再现,将光束从另一光源辐射到位于所选择的信息记录轨道的两侧的记录介质的第二区域的两侧的区域上,以将第二照射区域的温度升高到大约磁 补偿温度,以便仅允许从期望的轨道进行再现,从而防止来自侧轨的串扰。
    • 9. 发明授权
    • Optical head device utilizing partially overlapping light spots to read
information from a readout layer
    • 使用部分重叠的光点从读出层读取信息的光学头装置
    • US5317555A
    • 1994-05-31
    • US910837
    • 1992-07-08
    • Akira TakahashiYoshiteru MurakamiJunsaku NakajimaKenji Ohta
    • Akira TakahashiYoshiteru MurakamiJunsaku NakajimaKenji Ohta
    • G11B11/10G11B11/105G11B13/04
    • G11B11/10545G11B11/10515
    • A magneto-optical disk has a recording layer whereon recorded bits are formed by the magnetic field modulation method and a readout layer whose axis of easy magnetization is parallel to the recording layer at room temperature, and varies to be perpendicular to the recording layer within a predetermined temperature range between room temperature and the Curie temperature. During reproduction of the recorded bits the first semiconductor laser emits a heating-use light beam to form the first light spot on the readout layer Thus, a ring-shaped region corresponding to the predetermined temperature range exhibits perpendicular magnetic anisotropy and the recorded bits are copied from the recording layer onto the ring-shaped region. As the first light spot is shifted, the ring-shaped region as a readout window of recorded bits is also shifted. Further, the second semiconductor laser emits a reproduction-use light beam such that the second light spot is formed on the readout layer to overlap the first light spot at a rear portion thereof. Consequently, only one recorded bit copied onto the rear portion of the ring-shaped region can be reproduced; therefore, high-quality reproduced signals can be obtained from the magneto-optical disk having information recorded with high density.
    • 磁光盘具有通过磁场调制方法形成记录位的记录层和容易磁化的轴在室温下与记录层平行的读出层,并且在其内变化为垂直于记录层 室温和居里温度之间的预定温度范围。 在再现记录位期间,第一半导体激光器发出加热用光束,以在读出层上形成第一光点。因此,对应于预定温度范围的环形区域呈现垂直的磁各向异性,并且记录的位被复制 从记录层到环形区域。 当第一个光点移动时,作为记录位的读出窗口的环形区域也被移位。 此外,第二半导体激光器发射再现用光束,使得第二光点形成在读出层上,以在其后部与第一光点重叠。 因此,只能再现复制到环形区域后部的一个记录位; 因此,可以从具有以高密度记录的信息的磁光盘获得高质量的再现信号。
    • 10. 发明授权
    • Magneto optical storage device using a multi-layer film of Pt/Co
laminated sections
    • 磁光存储器件采用Pt / Co层叠多层薄膜
    • US5305300A
    • 1994-04-19
    • US888548
    • 1992-05-22
    • Kenji OhtaAkira TakahashiJunsaku NakajimaYoshiteru Murakami
    • Kenji OhtaAkira TakahashiJunsaku NakajimaYoshiteru Murakami
    • G11B11/105G11B7/24
    • G11B11/10582G11B11/10593Y10S428/90
    • A magneto-optical storage device having a configuration wherein a first AlN film, a Pt/co multi-layer film formed by alternately depositing Pt and Co, a second AlN film, and an Al reflective film are successively laminated on a substrate in this order. Assuming that respectively the thickness of the first AlN film is .delta.AlN (1); that of the second AlN film is .delta.AlN (2); that of the Pt single layer is .delta.Pt; that of the Co single layer is .delta.Co; and the total thickness of the Pt/Co multi-layer film is .delta.Pt/Co, each thickness of those layers is set to range within: 50 nm .ltoreq..delta.AlN (1).ltoreq.200 nm; 120 nm.ltoreq..delta.AlN (2).ltoreq.140 nm; 0.6 nm.ltoreq..delta.Pt.ltoreq.1.0 nm; 0.3 nm.ltoreq..delta.Co.ltoreq.0.6 nm; and 15 nm.ltoreq..delta.Pt/Co.ltoreq.20 nm. In accordance with the above arrangement, it is possible to greatly widen the tolerances of the film thicknesses of the first and second dielectric layers for obtaining a predetermined reflective index as well as a maximum Kerr rotation angle. Consequently, without strictly controlling the film thicknesses of the first and second AlN films, a magneto-optical storage device with stable performance suitable for practical use can be produced easily.
    • 具有这样一种结构的磁光存储装置,其中第一AlN膜,通过交替沉积Pt和Co形成的Pt / co多层膜,第二AlN膜和Al反射膜依次层叠在基板上 。 假设第一AlN膜的厚度分别为(Δ)AlN(1); 第二AlN膜的厚度为(Δ)AlN(2); Pt单层为(delta)Pt; Co单层为(delta)Co; 并且Pt / Co多层膜的总厚度为(delta)Pt / Co,这些层的每个厚度设定在:50nm <=(delta)AlN(1)<= 200nm的范围内; 120nm <=(delta)AlN(2)<= 140nm; 0.6nm <=(delta)Pt <= 1.0nm; 0.3nm <=(delta)Co <= 0.6nm; 和15nm <=(delta)Pt / Co <= 20nm。 根据上述结构,可以大大拓宽第一和第二介质层的膜厚的公差,以获得预定的反射率以及最大的克尔旋转角。 因此,在不严格控制第一和第二AlN膜的膜厚的情况下,可以容易地制造出具有适合于实际应用的稳定性能的磁光存储装置。