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Lecture
Piezoelectric Sensors
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Related lectures (31)
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Measurement Techniques: Motion and Vibration
Explores measurement techniques for motion and vibration, including strain gauges, eddy currents, accelerometers, and their applications.
Stochastic Modeling of Inertial Sensors
Explores the GMWM for stochastic modeling of inertial sensors and its calibration process for optimal fusion with other devices.
Strapdown Inertial Navigation
Explores strapdown inertial navigation systems, including attitude solvers and specific force calculations.
Gait Kinematics: Wearable Measuring Systems
Explores wearable systems for gait kinematics analysis and modeling, including sensor calibrations, fusion algorithms, and orientation drift correction.
Dynamics: Accelerometer with Water-filled Container
Explores an accelerometer experiment with water-filled container dynamics and fluid pressure concepts.
Gyroscopes and Harmonic Motion
Explores gyroscopes, harmonic motion, energy of oscillation, and differential equations for oscillatory systems.
Second Order Systems: Response Analysis
Analyzes the response of second-order systems to different inputs and explores the significance of pole locations in determining system behavior.
Strapdown Inertial Navigation: Fundamentals and Equations
Covers the fundamentals of strapdown inertial navigation and attitude solving in different frames.
MEMS Packaging: Hermeticity, Getters, and Vacuum Requirements
Covers hermetic capping, getters, vacuum requirements, leak rate measurement, and testing methods in MEMS packaging.
Signal Propagation: GMWM Methodology
Covers the GMWM methodology for stochastic modeling using inertial sensors in signal propagation and link budget analysis.