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  • Development of a Damped Piezoresistive MEMS High Shock Sensor
    the transducer (isolate it from high frequencies). Isolator design has to pay considerable attention to preserving enough bandwidth to track the residual rigid body motion and/or structural. dynamics of interest for the device under test. A different approach in MEMS shock. sensor design is described
  • Low Outgassing Accelerometers and Cables for Thermal Vacuum and Vibration Test Environments
    and obscure them, rendering them useless during their intended application. During random vibration, swept sine or shock testing prior to flight, spacecraft payloads are often fitted with accelerometers in hard to reach mounting locations. As the space structure is built up around them, it can become
  • Comprehensive Report on Low Temperature Solder Alloys for Portable Electronics
    for improvements include: Alloy strength, alloy ductility, microstructure stability,. improvements in thermal cycling, high temperature creep and drop shock. We show how the use of micro-additives in eutectic Sn-Bi alloys improves these properties. Further, comprehensive reliability studies were
  • Applications of Thermography In Product Safety
    Unsafe electronics are not an option! In this paper you will see how infrared thermal imaging, when used in conjunction with Hazard Based Safety Engineering (HBSE), can provide a more efficient means of temperature testing and help identify potential safety issues that may otherwise go unrecognized
  • Mechanical Force Analysis for Press Fit Applications
    requirements. as a baseline guide. Testing both before and after multi-axis environmental stress includes but is not. limited to: thermal shock, high/low temperature exposure, vibration, climatic cycling, temperature and. humidity cycling and other similar test requirements. In addition, to assure a wide
  • Medical Device Link .
    includes a 5-year warranty. Terminal Dr., Plainview, NY 11803. For use on medical electronic products, an accelerated stress test system requires hours to reveal how a product will hold up during years of use. Stresses are placed on products through repetitive-shock vibration and temperature change
  • Effect of Surface Treatments on HCF Performance and FOD Tolerance of a Ti-6Al-4V Vane (.pdf)
    Mechanical surface treatments including shot. peening (SP), laser shock peening (LSP) and low. plasticity burnishing (LPB) have been shown to. introduce compressive residual stresses that. improve high cycle fatigue (HCF) performance and. foreign object damage (FOD) tolerance. Shot. peening has

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