Registration of inclination in the gravitational field by means of MEMS sensors (Micro-Electro-Mechanical-System) with subsequent digitisation and linearisation via controllers. MEMS sensors are integrated circuits manufactured using silicon bulk micromechanical technology. Double capacities are formed with the aid of moveable micromechanical structures. If these structures are deflected in the case of acceleration, e.g. gravitational acceleration (g), this results in capacity changes, which are registered and further processed using measuring technology. The output voltage follows the function U ~ g * sin α. In this case, the angle α is the sensor's inclination angle measured against the g-vector. These sensors measure precisely, have a long service life and are very robust. The measuring axes operate independently of each other.
Germany
Key-Features ■ Configurable output signal (4...20 mA, 0...20 mA, 0...5 V, 0...10 V, ±5 V, ±10 V ■ Very low residual noise ■ Integrated cable break detection
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Low-noise coaxial measuring cables are used wherever the smallest voltages or charges have to be reliably measured, e.g. in pH measurement technology or nuclear research. The method was developed by bda connectivity and ensures reproducible results. Depending on the requirements, these cables can be supplemented with supply or power supply wires as well as additional shields.
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Single-axis absolute inclinometer 0 ... 360°; biaxial absolute inclinometer -80° ... +80° und -80° ... +80°. Accuracy 0.5°; Resolution 0.01°. RS232+I, CANopen interfaces. Temperature-compensated. IP69K, IP68 protection category. Programmable parameters (resolution, preset, software filter). Teach-in function (Limiting of measurement range, zero-point setting or change of direction).
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Those dual axis inclinometers are designed to measure very small changes from the vertical level, either on the ground or in structures. They exhibit high resolution and low thermal drift. Their mechanical design and enhanced internal surge protection make them particularly useful for the permanent outdoor monitoring of structures being subjected to various influences such as loading and foundation settlement.TYPICAL USE Off-shore wind turbine foundations Bridges and piers Historical buildings Structural load testing Vessel and pontoon roll and pitch measurement Crane roll and pitch measurement Structural Health Monitoring FEATURES Biaxial High accuracy and resolution Excellent thermal stability 4-20 mA current loops for signal immunity and potentially long cable runs Enhanced surge protection Internal temperature sensor for residual thermal drift compensation Two models for horizontal or vertical mounting Easy to install
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