• DocumentCode
    2608046
  • Title

    "Water Vapor Penetration Rate Into Enclosures with Known Air Leak Rates"

  • Author

    DerMarderosian, Aaron ; Gionet, Vincent

  • Author_Institution
    Raytheon Company, Equipment Division, Sudbury, Mass. (617) 443-9521
  • fYear
    1978
  • fDate
    28581
  • Firstpage
    179
  • Lastpage
    186
  • Abstract
    The rate at which water vapor penetrates a faulty seal in a "hermetically sealed" device has been examined both experimentally and theoretically in this study. The experimental data was generated by studying the rate of moisture ingress into two types of packages; a TO-5 can and a 1/4 × 1/4 inch ceramic flatpak. The TO-5 packages were fitted with capillary tubes of varying diameters with known air leak rates and represented the gross leak range (down to 10O atm cc/sec) while the 1/4 × 1/4 inch ceramic flatpacks were used to study the fine leak range (10¿6 to 10¿8). Both type packages were fitted with miniature moisture sensors (surface conductivity type) and calibrated at known relative humidities prior to sealing. The finished test packages were then exposed to constant high humidity conditions and monitored for moisture content as a function of time. A theoretical analysis was performed by using conventional leak rate equations to convert air leak rates, at standard test conditions, to water vapor leak rates at partial pressure differentials seen typically at room ambient conditions. This data compared favorably with the experimental results in the range tested and suggests that present hermeticity specifications are too lenient for long term reliability requirements.
  • Keywords
    Ceramics; Condition monitoring; Conductivity; Hermetic seals; Humidity; Moisture; Packaging; Performance analysis; Performance evaluation; Testing;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Reliability Physics Symposium, 1978. 16th Annual
  • Conference_Location
    San Diego, CA, USA
  • ISSN
    0735-0791
  • Type

    conf

  • DOI
    10.1109/IRPS.1978.362843
  • Filename
    4208233