霍尼韦尔VCSEL的研究、开发和应用

R. Morgan
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引用次数: 4

摘要

最近vcsel的商业化为vcsel在许多不断发展的技术中开辟了可能性。目前的许多应用包括光学链路,LED和CD在打印,存储,复制和传感器的替代品。由于VCSEL组件已经表现出“类硅”的可制造性,基于VCSEL的光电子电路的无处不在显得光明。基于vcsel阵列的智能像素处理器具有实现超快速互连密集型处理器的潜力。VCSEL和VCSEL阵列在计算机、背板和多芯片模块(mcm)之间,甚至在计算机、背板和多芯片模块(mcm)内部都很有前景。推测了rf - vcsel的可能性。除了目前的“商业级”开发之外,在降低vcsel的阈值电流和速度方面已经取得了许多令人兴奋的研究进展。这可以实现更低的功耗、更高的速度和对阵列的扩展,并加快对其他光谱区域的扩展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
VCSEL research, development and applications at Honeywell
The recent commercialization of VCSELs has opened up the possibility of VCSELs in numerous evolving technologies. Many of the present application include optical links, LED and CD replacements in printing, storage, duplication, and sensors. As VCSEL components have exhibited "silicon-like" manufacturability, the ubiquity of VCSEL-based optoelectronic circuits appears bright. VCSEL-array-based smart pixel processors have the potential to enable ultrafast interconnect-intensive processors. VCSELs and VCSEL arrays appear promising between, and even within, computers, backplanes, and multichip modules (MCMs). Tke possibility of RF-VCSELs is speculated. Beyond present "commercial-grade" development, there have been a number of exciting research advancements in decreasing the threshold currents and speed of VCSELs. This may enable even lower power dissipation, higher speeds, and extensions to arrays, and expedite extensions to other spectral regions.
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