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
    • 3. 发明授权
    • Plasma display panel having mixed gases to counteract sputtering effects
    • 具有混合气体以抵消溅射效应的等离子体显示面板
    • US06177762B1
    • 2001-01-23
    • US09176901
    • 1998-10-22
    • Junichiro Nakayama
    • Junichiro Nakayama
    • H01J1744
    • G02F1/13334H01J17/20H01J17/485
    • The plasma address information display device of this invention includes a plasma address cell and a display medium layer which is addressed by the plasma address cell, the plasma address cell including: a substrate; a transparent thin substrate opposing to the substrate; a plurality of partitions made of dielectrics formed between the substrate and the transparent thin substrate; and electrodes disposed on a surface of the substrate facing the transparent thin substrate, wherein a mixed gas composed of an inactive gas and an active gas is sealed in plasma discharge spaces each surrounded by the substrate, the transparent thin substrate, and the plurality of partitions.
    • 本发明的等离子体地址信息显示装置包括等离子体地址单元和由等离子体寻址单元寻址的显示介质层,等离子体寻址单元包括:基板; 与衬底相对的透明薄衬底; 由形成在所述基板和所述透明薄基板之间的电介质构成的多个隔板; 以及设置在所述基板的与所述透明薄基板相对的表面上的电极,其中由非活性气体和活性气体组成的混合气体被密封在等离子体放电空间中,所述等离子体放电空间被所述基板,所述透明薄基板和所述多个隔板 。
    • 8. 发明授权
    • Magneto-optical recording medium having two reproduction layers and a
method for reproducing thereof
    • 具有两个再现层的磁光记录介质及其再现方法
    • US5633838A
    • 1997-05-27
    • US582481
    • 1996-01-03
    • Junji HirokaneJunichiro NakayamaMichinobu MiedaAkira Takahashi
    • Junji HirokaneJunichiro NakayamaMichinobu MiedaAkira Takahashi
    • G11B11/10G11B11/105G11B11/00
    • G11B11/10515G11B11/10586
    • A non-magnetic intermediate layer is provided between a reproductive layer and a recording layer. The reproductive layer is composed of a first reproductive layer and a second reproductive layer. When the first reproductive layer has a temperature that is higher than a first critical temperature, its stable magnetic domain width becomes smaller than a recording magnetic domain width so that the magnetization is reversed. When the second reproductive layer has a temperature that is higher than a second critical temperature, its stable magnetic domain width becomes larger than the recording magnetic domain width so that the reversed magnetic domain is collapsed. The first critical temperature is lower than the second critical temperature. A reproductive output having abrupt rising and falling can be obtained by the generation and the collapse of the reverse magnetic domain on the reproductive layer. For this reason, higher density recording required for larger capacity can be achieved.
    • 在生殖层和记录层之间设置非磁性中间层。 生殖层由第一生殖层和第二生殖层组成。 当第一生殖层具有高于第一临界温度的温度时,其稳定的磁畴宽度变得小于记录磁畴宽度,使得磁化反转。 当第二生殖层具有高于第二临界温度的温度时,其稳定的磁畴宽度变得大于记录磁畴宽度,使得反向磁畴被折叠。 第一临界温度低于第二临界温度。 具有突然上升和下降的生殖输出可以通过生殖层上的反向磁畴的产生和崩溃获得。 为此,可以实现更大容量所需的更高密度的记录。