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Integration of electroluminescent displays on multilayer ceramic-on-metal circuit boards for a

机译:将电致发光显示器集成在金属陶瓷多层电路板上

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Abstract: Display system requirements for deployment in military vehicles are very demanding. Multilayer ceramic-on-metal circuit board technology is being applied to enable the fabrication of electroluminescent displays with enhanced performance, ruggedness, and functionality. The circuit board is utilized as the display substrate. The metal core of the circuit board provides a highly rugged panel with excellent thermal dissipation. Display packaging is simplified and display system size and weight are reduced by integrating drivers onto the display. This approach enables increases in display brightness by addressing the EL display in multiple segments with conductive vias through the circuit board. System cost is reduced by eliminating flex-cable edge connectors and by simplifying the package. Display functionality can be extended by integrating related electronics onto the display panel. Monochrome display samples have been demonstrated with performance similar to samples fabricated on traditional glass substrates. Current efforts are directed toward demonstrating high-performance color EL, utilizing the ability of the ceramic substrates to accommodate high-temperature phosphor annealing required to fully activate blue phosphors. !4
机译:摘要:部署在军用车辆中的显示系统要求非常苛刻。正在应用多层金属陶瓷电路板技术来制造具有增强的性能,坚固性和功能性的电致发光显示器。电路板被用作显示基板。电路板的金属芯提供了坚固耐用且散热出色的面板。通过将驱动器集成到显示器上,简化了显示器包装,并降低了显示器系统的尺寸和重量。该方法通过使用穿过电路板的导电通孔在多个段中寻址EL显示器来实现显示亮度的增加。通过消除柔性电缆边缘连接器和简化封装,可以降低系统成本。通过将相关电子设备集成到显示面板上,可以扩展显示功能。单色显示样品已被证明具有与在传统玻璃基板上制造的样品相似的性能。当前的努力致力于利用陶瓷基板适应完全激活蓝色磷光体所需的高温磷光体退火的能力来演示高性能彩色EL。 !4

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