• DocumentCode
    2246842
  • Title

    Thermal and moisture induced stressing effects of RF power amplifier modules

  • Author

    Lee, Sangouk ; Lee, Minju ; Choi, D.S.

  • Author_Institution
    ASE Korea, Inc., Kyunggi-Do, South Korea
  • fYear
    2001
  • fDate
    2001
  • Firstpage
    296
  • Lastpage
    300
  • Abstract
    The trends in RF power amplifier (RFPA) modules for handsets are optimization of active device technology, circuit topology and packaging to enhance cost, size, performance, and ease of implementation. For the package in RFPA module manufacturing, device-to-board attach solder reflow condition and moisture sensitivity level (MSL) are the most challenging areas for further improvement in thermal management due to "lead-free" application which causes catastrophic failure by high temperature application. In consequence, we have been faced with industrial requirements to improve both MSL and reflow temperature without any catastrophic phenomena such as solder extrusion and solder flow in RFPA modules. This paper discusses various considerations to define critical factors that will affect thermal and moisture induced stress in RFPA modules in long term reliability assurance at the package design stage. On the analysis of severe failure mechanisms in RFPA modules, we identified the cross effects on various characteristics of moisture induced package failures caused by the alloy composition of component terminations, behaviors of component attachment materials for active/passive, and substrate metallization with its own material. Also, best raw material combinations and critical consideration factors for package integrity of RFPA module with MSL reliability are discussed
  • Keywords
    UHF power amplifiers; assembling; circuit reliability; failure analysis; metallisation; microwave power amplifiers; mobile radio; modules; moisture; packaging; reflow soldering; telephone sets; thermal stresses; MSL reliability; RF power amplifier modules; RFPA module manufacturing; RFPA module package; active device technology; catastrophic failure; component attachment materials; component termination alloy composition; device-to-board attach; handset RFPA module; high temperature application; lead-free application; long term reliability; moisture induced package failures; moisture induced stress; moisture induced stressing effects; moisture sensitivity level; package design; package integrity; raw material combinations; reflow temperature; severe failure mechanisms; solder extrusion; solder flow; solder reflow condition; substrate metallization; thermal management; thermal stress; thermal stressing effects; Composite materials; Failure analysis; Inorganic materials; Moisture; Packaging; Power amplifiers; Radio frequency; Temperature sensors; Thermal management; Thermal stresses;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electronic Materials and Packaging, 2001. EMAP 2001. Advances in
  • Conference_Location
    Jeju Island
  • Print_ISBN
    0-7803-7157-7
  • Type

    conf

  • DOI
    10.1109/EMAP.2001.984000
  • Filename
    984000