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    • 7. 发明授权
    • Monolithic multi-wavelength vertical-cavity surface emitting laser array and method of manufacture therefor
    • 单片多波长垂直腔表面发射激光阵列及其制造方法
    • US06806110B2
    • 2004-10-19
    • US10151646
    • 2002-05-16
    • Steven D. LesterVirginia M. RobbinsJeffrey N. Miller
    • Steven D. LesterVirginia M. RobbinsJeffrey N. Miller
    • H01L2100
    • H01S5/423H01S5/18341H01S5/18358H01S5/18366H01S5/18369H01S5/4087
    • A monolithic array of vertical cavity lasers with different emission wavelengths on a single wafer, and method of manufacture therefor, is provided. A first reflector is over the semiconductor substrate with a photoactive semiconductor layer. A reflector support defines first and second air gaps with the photoactive semiconductor layer. The second and third air gaps are made to be different from each other by geometric differences in the reflector support structure. Second and third reflectors are formed over the reflector support whereby a first laser is formed by the first reflector, the photoactive semiconductor structure, the first air gap, and the second reflector and whereby a second laser is formed by the first reflector, the photoactive semiconductor structure, the second air gap, and the third reflector. The emission wavelengths of the first and second lasers are different because of the different sizes of the first and second air gaps.
    • 提供了在单个晶片上具有不同发射波长的垂直腔激光器的单片阵列及其制造方法。 第一反射器在具有光敏半导体层的半导体衬底上。 反射器支撑件用光敏半导体层限定第一和第二气隙。 通过反射器支撑结构中的几何差异使第二和第三气隙彼此不同。 第二和第三反射器形成在反射器支撑件上,由此由第一反射器,光活性半导体结构,第一气隙和第二反射器形成第一激光器,由此由第一反射器形成第二激光器,光活性半导体 结构,第二气隙和第三反射器。 由于第一和第二气隙的尺寸不同,第一和第二激光器的发射波长是不同的。
    • 10. 发明授权
    • Electroluminescent display device
    • 电致发光显示装置
    • US5902688A
    • 1999-05-11
    • US687011
    • 1996-07-16
    • Homer AntoniadisSteven D. LesterJeffrey N. Miller
    • Homer AntoniadisSteven D. LesterJeffrey N. Miller
    • H01L51/52H05B33/10H05B33/22H05B33/26H05B33/00
    • H01L27/3239H01L51/5203H05B33/10H05B33/22H05B33/26Y10S428/917
    • This disclosure provides an electroluminescent ("EL") display device having anode, cathode, insulator and organic EL layers. The anode and cathode layers sandwich the other two layers, and the insulator layer is patterned to selectively block flow of current through the EL layers, and thereby locally block generation of light. The patterned insulator layer allows a single panel to display multiple visual attributes, yet does not require electrode patterning. The patterned insulator can be fabricated using photoresist exposure and development procedures. The photoresist is laid on top of a commercially available substrate/electrode layered pair, and is developed to create an assembly that can be completed in a single vacuum deposition process. By etching a small region of the electrode from the commercially available layered pair, and by choosing a deposition frame that blocks deposition on a second, different small region, electrical terminals may be coupled to the panel with a reduced risk of an electrical short.
    • 本公开提供了具有阳极,阴极,绝缘体和有机EL层的电致发光(“EL”)显示装置。 阳极和阴极层将其它两层夹在中间,并且对绝缘体层进行图案化以选择性地阻挡通过EL层的电流,从而局部地阻止光的产生。 图案化绝缘体层允许单个面板显示多个视觉属性,但不需要电极图案化。 可以使用光致抗蚀剂曝光和显影程序来制造图案化的绝缘体。 将光致抗蚀剂铺设在市售的基底/电极分层对的顶部,并且被开发以产生可以在单个真空沉积工艺中完成的组件。 通过从市售的分层对中蚀刻电极的小区域,并且通过选择在第二不同的小区域上阻挡沉积的沉积框架,电端子可以以降低的电气短路的风险耦合到面板。