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MEMS gyroscope for navigation system

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  • 2025-06-12

    Dual-Axis MEMS Gyro: Reconstructing New Dimensions of Motion Sensing with Micro-Nano Power
    Our dual-axis MEMS gyroscope integrates core algorithms such as full-temperature compensation, installation misalignment angle compensation, nonlinearity compensation, and zero-offset compensation. Through multi-sensor data fusion, it achieves zero-bias stability < 0.1°/hr and angle random walk < 0.01°/√h across a wide temperature range of -40°C to 85°C. Even in high-speed rail vibration environments (peak acceleration> 5g), it maintains dynamic response errors below 0.01°/s, reducing costs by over 60% compared to traditional fiber optic gyroscopes while preserving navigation-grade accuracy.
  • 2025-03-28

    The Working Principle of MEMS Gyroscopes
    The working principle of MEMS gyroscopes can be divided into two parts: driving and detection:​ I. Driving Principle​ II. Detection Principle​ In order to improve its measurement accuracy and stability, some compensation and calibration techniques are usually adopted. I. Temperature Compensation​ II. Vibration Noise Suppression​ III. Linear Acceleration Compensation​
  • 2024-10-22

    What are the advantages of MEMS gyroscopes in well logging?
    1.Small size: 2.Strong resistance to shock and vibration: 3.Low power consumption: 4.Easy integration and mass production: 5.Relatively high measurement accuracy: 6.Fast response speed: