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Establishing of Requirement and Design Development Process for Assuring Quality of Automotive Semiconductor

차량용 반도체의 품질 확보를 위한 사양 및 설계 개발 프로세스 수립

  • 도성룡 (상명대학교 컴퓨터과학과) ;
  • 한혁수 (상명대학교 컴퓨터과학부)
  • Received : 2014.01.02
  • Accepted : 2014.07.16
  • Published : 2014.09.15

Abstract

With the trend of increasing needs for high-technology from customer and tightening regulation on automotive fuel efficiency and safety, application of E/E system has been expanding consistently in automotive industry. Thus, demand for core elements of E/E system has been growing: micro controller, analog IC and ASIC. But, development process of automotive semiconductor hasn't been clearly established in domestic area. This research aims to present a guide and an example for construction of requirement and design development process on semiconductor based on ISO/TS 16949 that is requirement for quality management system, CMMI that has been proven in various area and ISO 26262 widely used methodology for functional safety. It is expected that the result of this research is used as guidance for construction of semiconductor development process.

차량 연비 및 안전에 대한 규제 강화와 고객의 첨단 기능 요구 증가에 따라 전자제어 시스템의 적용이 지속적으로 확대되고 있다. 전자제어 시스템의 핵심 요소인 마이크로 컨트롤러, 아날로그 IC 그리고 ASIC 등 반도체의 수요도 증가하고 있다. 하지만, 국내의 차량용 반도체 개발 프로세스는 명확한 체계가 수립되지 못한 상황이다. 본 연구에서는 품질 경영 체계 요구사항인 ISO/TS 16949, 이미 다양한 분야에서 검증된 프로세스 모델인 CMMI, 그리고 차량 분야의 기능 안전 표준으로 제정된 ISO 26262를 도입하여 반도체 사양 및 설계 개발 프로세스 수립 방안 및 예시를 제시한다. 본 연구의 결과는 조직 내 반도체 개발 프로세스 수립을 위한 가이드로 활용될 것으로 기대한다.

Keywords

References

  1. Chris Webber, "Automotive Semiconductor Demand Forecast 2011-2020," Strategy Analytics, 2013.
  2. D. S. Ahn, "Consideration of Developing Automotive Semiconductor and Reliability Test," Bizocean, 2012. (in Korean)
  3. Annette Reutter, Dieter Lederer, "CMMI in Semiconductor Development," ATZ Electronic, 2006.
  4. Frank K. Gurkaynak, "ASIC Design Flow," Integrated Systems Laboratory, 2006.
  5. S. Y. Chae, W. J. Kim, "Plan for Reaction of Automotive ECU Software and SoC for Supporting ISO 26262," Korea Information Processing Society Review, Vol. 19, No. 09, pp. 73-81, 2012. (in Korean)
  6. Jeon, Seo-Hyun, et al., "Automotive hardware development according to ISO 26262," Advanced Communication Technology (ICACT), 2011 13th International Conference on, IEEE, 2011.
  7. "Software & System Process Engineering Meta-Model Specification," OMG, 2008.
  8. "ISO/TS 16949 Quality Management System-Particular requirements for the application of ISO 9001:2008 for automotive production and relevant service part organizations," 3rd Ed., ISO, 2009.
  9. CMMI Product Team, "CMMI for Development Version 1.3," Software Engineering Institute of Carnegie Mellon, 2010.
  10. "ISO 26262 Part 5: Product development at the hardware level," ISO, 2011.
  11. B. C. Kim, "ISO 26262 Requirements of Designing Automotive Semiconductor," Korean Agency for Technology and Standards, 2012. (in Korean)
  12. "AEC-Q004: Zero Defects Guideline," Automotive Electronics Council Component Technical Committee, 2006.
  13. "Freescale Technology Forum: Functional Safety Design ASIL ECU with Freescale Silicon," 2011.
  14. Marcus Frech, Josef Mieslinger, "Functional Safety Seminar : TMS570 Workshop," Texas Instruments, 2011.
  15. "ISO 26262 China Workshop: Road to ASIL-x ECUs," Infineon Technologies, 2011.