【24h】

Acquisition unit for in-situ stress measurements in smart electronic systems

机译:用于智能电子系统的原位应力测量的采集单元

获取原文

摘要

Nowadays electronic systems used in automotive industry consolidate a variety of functionalities and features within one unit. Such smart systems consist of standard IC packaging, sensors and actuators. It is required that such systems will survive about 15 years of usage. To assure correct functionality prognostic and health monitoring (PHM) methods can be used. The potential benefits from implementation of these methods include among others reduction of maintenance costs and early warning of possible failure. For automotive industry, for which typical load history is not sufficiently known, this seems to be suitable approach. In today's reliability models some assumptions about the typical load history have to be made, which leads to inaccurate estimations on the remaining useful life. Though, in PHM approach one wants to make a prognosis of a failure so that maintenance can be done at the appropriate time. In this paper, the acquisition unit for in-situ measurements of internal stresses in a novel smart system module is developed. It allows recording the stresses from multiple piezoresistive sensors, at different locations on a surface of a chip, at the same time. As the measurements, that are planned, will be conducted when the smart system is assembled in the engine compartement, it is required that the acquisition unit is portable and immune to harsh conditions. The results of the measurements will be used to monitor the evolution of stress magnitudes in real work conditions.
机译:如今,在汽车行业中使用的电子系统在一个单位内巩固各种功能和功能。这种智能系统由标准IC包装,传感器和执行器组成。要求此类系统将生存约15年的使用情况。为了确保正确的功能,可以使用预后和健康监测(PHM)方法。这些方法实施的潜在好处包括减少维护成本和可能失败的预警。对于汽车行业来说,典型的负载历史不够众所周知,这似乎是合适的方法。在今天的可靠性模型中,必须制作关于典型负载历史的一些假设,这导致剩余使用寿命的估计不准确。虽然,在PHM方法中,人们想要对失败进行预后,以便可以在适当的时间进行维护。在本文中,开发了用于原位测量新型智能系统模块中的内应力的采集单元。它允许在芯片表面的不同位置记录从多个压阻传感器的应力,同时。作为计划的测量,当智能系统组装在发动机舱室时,需要进行,因此需要采集单元便携并免于恶劣的条件。测量结果将用于监测实际工作条件下应力幅度的演变。

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