In Place Tilt Meter MEMS

The In-Place Tilt Meter (MEMS) is a high-precision monitoring instrument designed to measure angular changes and structural tilting in real time. Built with advanced MEMS sensing technology, this device delivers reliable, continuous measurements ideal for geotechnical, civil, and structural projects that require accurate deformation tracking.

Engineered for long-term deployment, the instrument provides stable data even in harsh environments, ensuring that engineers receive consistent, actionable insights throughout the monitoring period. It is commonly installed on retaining walls, embankments, deep excavations, dams, bridges, and any structure that may experience tilt or lateral movement over time.

The tilt meter works by capturing small angular variations along a structure or soil mass, enabling teams to detect early signs of instability. Because it supports a chain installation configuration, multiple sensors can be deployed along a single line, creating a continuous displacement profile.

With real-time capability, data can be transmitted into an integrated monitoring platform, giving project teams quick visibility and faster decision-making. This makes the MEMS In-Place Tilt Meter a preferred solution for deformation monitoring programs that demand accuracy, low power consumption, and long-term operational reliability.


Key Features

  • High-precision MEMS tilt sensing technology

  • Real-time measurement capability

  • Low power consumption for long-term monitoring

  • Robust and weather-resistant construction

  • Compatible with automated data loggers

  • Supports chained configuration for profiling

  • Easy installation and minimal maintenance

  • Stable long-term performance


Advantages

  • Accurate early-warning data, enabling proactive safety measures

  • Reliable for long-duration monitoring, even in challenging field conditions

  • Flexible application, suitable for embankments, retaining walls, deep excavations, and structural health monitoring

  • Reduced maintenance cost due to durable MEMS technology

  • Seamless integration with real-time geotechnical monitoring systems

  • Enhanced data clarity for engineers managing critical infrastructure

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