首页> 外文会议>Conference on infrared technology and applications >Latest improvements in microbolometer thin film packaging: paving the way for low cost consumer applications
【24h】

Latest improvements in microbolometer thin film packaging: paving the way for low cost consumer applications

机译:微辐射热计薄膜包装的最新改进:为低成本消费类应用铺平道路

获取原文
获取外文期刊封面目录资料

摘要

Silicon-based vacuum packaging is a key enabling technology for achieving affordable uncooled Infrared Focal Plane Arrays (IRFPA) required by a promising mass market that shows momentum for some extensive consumer applications, such as automotive driving assistance, smart presence localization and building management. Among the various approaches studied worldwide, CEA, LETI in partnership with ULIS is committed to the development of a unique technology referred to as PLP (Pixel Level Packaging). In this PLP technology, each bolometer pixel is sealed under vacuum using a transparent thin film deposition on wafer. PLP operates as an array of hermetic micro caps above the focal plane, each enclosing a single microbolometer. In continuation of our on-going studies on PLP for regular QVGA IRFPAs, this paper emphasizes on the innate scalability of the technology which was successfully demonstrated through the development of an 80 × 80 pixel IRFPA. The relevance of the technology with regard to the two formats is discussed, considering both performance and cost issues. We show that the suboptimal fill factor inherent to the PLP arrangement is not so critical when considering smaller arrays preferably fitted for consumer applications. The discussion is supported with the electro-optical performance measurements of the PLP-based 80×80 demonstrator.
机译:硅基真空包装是一项关键的使能技术,可实现有希望的大众市场所需的可负担得起的非冷却式红外焦平面阵列(IRFPA),该市场在某些广泛的消费者应用中显示出势头,例如汽车驾驶辅助,智能状态本地化和建筑物管理。在全球研究的各种方法中,CEA,LETI与ULIS合作致力于开发称为PLP(像素级包装)的独特技术。在这种PLP技术中,使用晶圆上的透明薄膜沉积在真空中密封每个辐射热计像素。 PLP作为焦平面上方的密封微帽阵列工作,每个微囊都包含一个微测辐射热计。在继续我们对常规QVGA IRFPA的PLP的研究的基础上,本文重点介绍了该技术的固有可扩展性,该可扩展性已通过开发80×80像素IRFPA得以成功证明。讨论了该技术与两种格式的相关性,同时考虑了性能和成本问题。我们表明,当考虑最好适合消费者应用的较小阵列时,PLP布置固有的次优填充因数并不是那么关键。基于PLP的80×80演示器的电光性能测量结果为该讨论提供了支持。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号