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    • 43. 发明授权
    • Making and using compacted pellets for OLED displays
    • 制造和使用用于OLED显示器的压实颗粒
    • US07238383B2
    • 2007-07-03
    • US10384290
    • 2003-03-07
    • Syamal K. GhoshDonn B. CarltonTukaram K. Hatwar
    • Syamal K. GhoshDonn B. CarltonTukaram K. Hatwar
    • B05D5/06
    • C23C14/12C23C14/26H01L51/56
    • A method of forming a compacted pellet of organic materials adaptable for making an organic layer on a structure which will form part of an OLED display, includes providing a sublimable organic material in a powder form; providing a thermally insulating and non-sublimable inorganic material in a powder form; forming a mixture of the sublimable organic powder and thermally insulating and non-sublimable inorganic powder; placing such mixture into a die and using two punches, a lower and an upper punch, to apply sufficient pressure to the mixture to cause the mixture of powders to consolidate into a solid pellet; applying heat to the die during or prior to applying pressure by the opposing punches to aid in causing the mixture of powders to consolidate into a solid compacted pellet, and removing the pellet from the die.
    • 形成适用于在构成OLED显示器的一部分的结构上形成有机层的有机材料压实颗粒的方法包括提供粉末形式的可升华有机材料; 提供粉末形式的绝热和不可升华的无机材料; 形成可升华的有机粉末和绝热和不可升华的无机粉末的混合物; 将这样的混合物放入模具中并使用两个冲头(下部和上部冲头)向混合物施加足够的压力以使粉末混合物固结成固体颗粒; 在由相对的冲头施加压力期间或之前向模具施加热量以帮助使粉末混合物固结成固体压实的颗粒,并从模具中除去颗粒。
    • 50. 发明授权
    • Direct overwrite magneto-optical storage medium not requiring an
initialization magnet
    • 直接覆盖不需要初始化磁体的磁光存储介质
    • US5361248A
    • 1994-11-01
    • US891130
    • 1992-06-01
    • Tukaram K. HatwarDavid J. GenovaRandall H. Victora
    • Tukaram K. HatwarDavid J. GenovaRandall H. Victora
    • G11B11/105G11B7/26
    • G11B11/10521G11B11/10506G11B11/10586Y10S428/90
    • A storage medium for use in a magneto-optical information storage medium does not require an initializing magnet. In one embodiment of the medium, a structure includes a memory layer, in which the orientation of magnetic regions perpendicular to the memory layer surface defines the data stored in the memory layer, a reference layer, and an intermediate layer, the intermediate layer mediating an exchange coupling between the memory layer and the reference layer. The combined properties of the storage medium provide a temperature at which, in the presence of a bias magnetic field, data stored in the medium in the form of oriented magnetic domains can be overwritten. In a second embodiment of the invention, a storage medium has two layers, a memory layer and a under layer, of materials with selected magnetic properties. The magnetic properties of the layers are selected to provide magneto-optical storage medium with direct overwriting capability, the operation of the storage medium not requiring an intialization magnet.
    • 用于磁光信息存储介质的存储介质不需要初始化磁体。 在介质的一个实施例中,结构包括存储层,其中垂直于存储层表面的磁区的取向限定存储在存储层中的数据,参考层和中间层,中间层介导 交换存储层和参考层之间的耦合。 存储介质的组合性质提供了在存在偏置磁场的情况下可以覆盖以定向磁畴形式存储在介质中的数据的温度。 在本发明的第二实施例中,存储介质具有两层具有选择的磁特性的材料的存储层和下层。 选择层的磁特性以提供具有直接重写能力的磁光存储介质,存储介质的操作不需要初始化磁体。