• DocumentCode
    2405362
  • Title

    A practical mtbf estimate for pcb design considering component and non-component failures

  • Author

    Jin, Tongdan ; Wang, Peng ; Huang, Qiyu

  • Author_Institution
    Teradyne Inc., North Reading, MA
  • fYear
    2006
  • fDate
    23-26 Jan. 2006
  • Firstpage
    604
  • Lastpage
    610
  • Abstract
    Accurate reliability prediction for MTBF (mean-time-between-failures) is always desirable and anticipated before the new product is ramped up for customer shipment. In reality it is often difficult to obtain the accurate MTBF estimate for a new product due to the lack of the testing time in pilot line and limited field failure data. In this paper, a practical reliability prediction model is presented for predicting the MTBF of PCB (printed-circuit-board) in the design phase. Unlike conventional reliability prediction models, which usually focus on parts failure rates, the method presented here not only incorporates component failures but also non-component failures which include design, software, manufacturing and process issues. Component failure rates are computed using either historical data or the nominal failure rates together with operating conditions such as temperature and electrical derating. Triangular distributions are used to model non-component failure rates due to design errors, software bugs, manufacturing and handling problems. Finally, the confidence intervals for the new product MTBF are obtained based on six-sigma criteria. The method was applied to the design of a DC/analog instrument board that is used in the semiconductor testing equipment
  • Keywords
    electronic products; failure analysis; printed circuit design; product design; product development; prototypes; reliability; semiconductor device manufacture; six sigma (quality); DC/analog instrument board; PCB design; accurate reliability prediction; component design; component failures; component manufacturing; customer shipment; design errors; electrical derating; handling; mean-time-between-failures; noncomponent failures; printed-circuit-board design; semiconductor testing equipment; six-sigma; software bugs; temperature derating; triangular distributions; Computer bugs; Consumer electronics; Electric breakdown; Electronic equipment manufacture; Manufacturing processes; Predictive models; Software design; Temperature; Testing; Virtual manufacturing;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Reliability and Maintainability Symposium, 2006. RAMS '06. Annual
  • Conference_Location
    Newport Beach, CA
  • ISSN
    0149-144X
  • Print_ISBN
    1-4244-0007-4
  • Electronic_ISBN
    0149-144X
  • Type

    conf

  • DOI
    10.1109/RAMS.2006.1677440
  • Filename
    1677440