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  • Development of a Damped Piezoresistive MEMS High Shock Sensor
    Piezoresistive (PR) silicon accelerometers with micro-electromechanical systems (MEMS) technology are preferred in many high shock impact measurements. These devices exploit the strength of single crystal silicon (SCS) along with the minimal zero shifting associated with PR sensors. However
  • Field Evaluations of a Damped MEMS Shock Sensor
    Results from pyrotechnic, penetration and metal-to-metal impact field evaluations are presented which prove the performance of a new piezoresistive (PR) shock accelerometer. The microelectromechanical systems (MEMS) sensor incorporates sufficient squeeze-film damping to reduce resonant
  • Aerospace-High g Testing
    Reviews a new generation of high g shock sensors and their applications.
  • Introduction to Piezoelectric Pressure Sensors
    Dynamic pressure sensors are designed to measure pressure changes in liquids and gasses such as in shock tube studies, in-cylinder pressure measurements, field blast tests, pressure pump perturbations, and in other pneumatic and hydraulic processes. Their high rigidity and small size give them
  • Tips for Selecting the Right Inductive Sensor
    vacuum-sealed electronics and metal housings designed to protect against shock, vibrations, dirt, and moisture - which means you can use these sensors reliably under a variety of conditions.
  • Micro and Nano Sensor Interconnections Energize New Applications
    Sensors and their capabilities cover a wide range of functions based on the design and type used. Today 's sensor menu ranges from thermistors and infrared detectors to shock and vibration monitors and onto pressure transducers.
  • Why did my Temperature Sensor Die?
    Why did my temperature sensor die? Early engineering analysis matters for critical applications Temperature sensors used in harsh environments face numerous threats to survival. Failures are usually driven by external forces including thermal and mechanical shock, vibration, humidity, corrosion
  • Application: Hospital Bed Position Detection Sensor (.pdf)
    There are a large number of applications requiring the detection of end limit position, where electric shock can be a real concern. Hospital beds, for example, need end position limits when adjusting the bed position. Reed Sensors are ideal in this application because they reliably pass very low
  • Application: Mobility Equipment & Hospital Beds - Reed Sensor
    There are a large number of applications requiring. the detection of end limit position, where electric shock can be a real concern. Hospital beds, for example, need end position limits when adjusting the bed position. Reed Sensors are ideal here because they reliably pass very low level voltages
  • Piezoelectric Sensor Technology
    Shock and vibration can be expressed in terms of variations in displacement, velocity or acceleration with time. Acceleration is the most frequently used since the inertial load or destructive force is equal to mass times acceleration. Acceleration, velocity and displacement measurements can only

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