Description

The AMS MEMS Seismic Accelerometeris a high-performance seismic accelerometer engineered for precise measurement of low-intensity and low-frequency ground motion. Designed to excel in challenging environmental conditions, this MEMS-based sensor delivers reliable dynamic monitoring performance for structural and geophysical applications.
Key Features & Capabilities
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Advanced MEMS Technology: Utilizes low-noise Micro-Electro-Mechanical Systems (MEMS) technology for accurate detection of micro-G level accelerations, ideal for seismic monitoring and dynamic motion studies.
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Flexible Axis Configurations: Available in single-axis, biaxial, or triaxial configurations within a single rugged housing to suit diverse monitoring needs.
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Robust Environmental Protection: IP65 (connector version) or IP68 (cable output version) protection ensures dependable outdoor performance under harsh conditions.
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High Dynamic Range & Low Noise: Offers excellent noise performance and a dynamic range of approximately 100 dB, providing clear measurements even at low frequencies.
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Easy Integration: High-level, low-impedance output means most applications require minimal external signal conditioning.
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Versatile Fixing Options: Multiple mounting plate options support flexible installation on structures or in field setups.
Technical Highlights
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Frequency Response: Nominal 0–400 Hz (-3 dB) range for reliable dynamic monitoring.
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Acceleration Ranges: Available in ±2 g or ±5 g configurations to match different sensing requirements.
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Output & Sensitivity: ±4 V differential output with sensitivity up to 2000 mV/g depending on range.
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Operating Conditions: Wide temperature tolerance from -20 °C to +80 °C and full humidity resistance.
Applications
This seismic accelerometer is ideal for:
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Structural dynamic monitoring (buildings, bridges, tunnels)
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Low-frequency vibration analysis
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Environmental and microseismic studies
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Civil and industrial infrastructure monitoring
Integrate the AMS MEMS into your seismic and dynamic monitoring systems for dependable, high-resolution acceleration data you can trust — even in demanding field environments.