首页> 外文会议>Micro- and nanotechnology sensors, systems, and applications III >An analysis of microsystems development at Sandia National Laboratories
【24h】

An analysis of microsystems development at Sandia National Laboratories

机译:桑迪亚国家实验室的微系统发展分析

获取原文
获取原文并翻译 | 示例

摘要

While Sandia initially was motivated to investigate emergent microsystem technology to miniaturize existing macroscale structures, present designs embody innovative approaches that directly exploit the fundamentally different material properties of a new technology at the micro- and nano-scale. Direct, hands-on experience with the emerging technology gave Sandia engineers insights that not only guided the evolution of the technology but also enabled them to address new applications that enlarged the customer base for the new technology. Sandia's early commitment to develop complex microsystems demonstrated the advantages that early adopters gain by developing an extensive design and process tool kit and a shared awareness of multiple approaches to achieve the multiple goals. As with any emergent technology, Sandia's program benefited from interactions with the larger technical community. However, custom development followed a spiral path of direct trial-and-error experience, analysis, quantification of materials properties at the micro- and nano-scale, evolution of design tools and process recipes, and an understanding of reliability factors and failure mechanisms even in extreme environments. The microsystems capability at Sandia relied on three key elements. The first was people: a mix of mechanical and semiconductor engineers, chemists, physical scientists, designers, and numerical analysts. The second was a unique facility that enabled the development of custom technologies without contaminating mainline product deliveries. The third was the arrival of specialized equipment as part of a Cooperative Research And Development Agreement (CRADA) enabled by the National Competitiveness Technology Transfer Act of 1989. Underpinning all these, the program was guided and sustained through the research and development phases by accomplishing intermediate milestones addressing direct mission needs.
机译:尽管桑迪亚最初是为了研究新兴的微系统技术以最小化现有的宏观结构,但目前的设计体现了创新方法,这些方法直接利用了新技术在微观和纳米尺度上的根本不同的材料特性。对新兴技术的直接亲身实践经验为Sandia工程师提供了见解,这些见解不仅指导了技术的发展,而且使他们能够解决新应用,从而扩大了新技术的客户群。桑迪亚(Sandia)对开发复杂微系统的早期承诺证明了早期采用者通过开发广泛的设计和处理工具套件以及对实现多种目标的多种方法的共同认识而获得的优势。与任何新兴技术一样,桑迪亚的计划得益于与更大技术社区的互动。但是,定制开发遵循的是一条螺旋式的路径,即直接的反复试验经验,分析,微米级和纳米级的材料特性量化,设计工具和工艺配方的演变以及对可靠性因素和失效机理的理解,甚至在极端环境中。 Sandia的微系统功能取决于三个关键要素。首先是人:机械和半导体工程师,化学家,物理科学家,设计师和数值分析人员的混合体。第二个是独特的设施,可在不影响主线产品交付的情况下开发定制技术。第三是作为合作研究与开发协议(CRADA)一部分的专用设备的到来,该协议是由1989年《国家竞争力技术转让法》促成的。在所有这些基础上,该计划在研发阶段得到了指导和维持,其中包括解决直接任务需求的里程碑。

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