Microelectromechanical (MEMS) three-axis accelerometer designed for measuring acceleration and tilt.
The three-axis accelerometer typically consists of a microelectromechanical system (MEMS), including a micro-structured acceleration sensor and signal processing circuitry. The micro-structured acceleration sensor utilizes micromachining technology to fabricate tiny mass blocks and spring systems. When the acceleration of an object changes in a certain direction, the mass block generates corresponding displacement, which is fed back to the housing through elastic force. This displacement or force variation leads to changes in capacitance, resistance, or vibration frequency, thereby generating electrical signals.
Range: -5 g to +5 g (XYZ axes), Resolution: 0.01 g
Built‑in AI functions open new possibilities for data analysis, automated processing of results, and the creation of interactive experiments.
Measuring acceleration and height.
This product is intended for educational purposes only and is not suitable for industrial, medical, research, or commercial applications.
When using the three-axis accelerometer, pay attention to installation orientation, calibration, anti-vibration measures, temperature effects, power and signal interference, selection of sampling rate and bandwidth, as well as data processing and analysis. These precautions will help ensure accurate and reliable acceleration measurement results.
Wireless sensor with built‑in AI features that unlock new possibilities for data analysis and make experiments highly interactive.
Ideal for school laboratories, university courses, and STEM projects.
Built‑in AI functions open new possibilities for data analysis, automated processing of results, and the creation of interactive experiments.
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