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APPLICATIONS

STRUCTURAL HEALTH MONITORING

Low-noise Epson QMEMS accelerometers for continuous monitoring of bridges, buildings, dams and heritage structures.

Request an evaluation kitBuy the M-A352AD10 online

Arch bridge with structural health monitoring sensor nodes and vibration signal

0.02 µg/√Hz

Self-noise of the M-A370 (1–10 Hz), measured by INGV

50+

M-A352 accelerometers in the Campi Flegrei network

Peer-reviewed

Field validation in Sensors 2026, INGV with Epson

Reliable vibration data for structures that must not fail

Structural health monitoring (SHM) uses continuous vibration measurement to assess the condition and dynamic behaviour of bridges, buildings, dams and heritage structures over time. Accurate data helps engineers detect changes, identify anomalies and plan inspection and maintenance.

AMCORIS supplies Epson quartz MEMS (QMEMS) accelerometers and vibration sensors and supports you from sensor selection to integration.

QUICK ANSWER

Which accelerometer is right for SHM?

The sensor's self-noise decides whether weak ambient vibrations and higher structural modes can be identified. An independent study by Italy's National Institute of Geophysics and Volcanology (INGV) with Epson recommends a self-noise below 1 µg/√Hz for SHM and below 0.5 µg/√Hz for reliable operational modal analysis (OMA). The Epson M-A370 measured 0.02 µg/√Hz in the 1–10 Hz band; the M-A352 is specified at 0.2 µg/√Hz.

Typical applications

01

Building monitoring

02

Bridge vibration monitoring

03

Railway infrastructure

04

Structural load monitoring

05

Long-term infrastructure monitoring

06

Dam monitoring

07

Floodgate and weir monitoring

08

Remote condition monitoring

Building Monitoring

Bridge Vibration Monitoring

Railway Infrastructure

Structural Load Monitoring

Long-Term Infrastructure Monitoring

Dam Monitoring

Floodgate & Weir Monitoring

Remote Condition Monitoring

WHY SELF-NOISE MATTERS

Below the noise floor, structural modes disappear

Structures under ambient excitation move in the micro-g range. If the sensor's own noise is higher than the structural response, modes vanish in the noise floor and changes over time cannot be detected reliably. Epson's QMEMS sensors convert acceleration into the frequency change of a quartz resonator and reach noise levels previously reserved for force-balance accelerometers. In the INGV study, conventional capacitive MEMS accelerometers showed clearly higher self-noise than the Epson M-A370.

Self-noise in µg/√Hz, log scale. Shorter is better. Dashed lines: INGV targets.

0.1
0.5 OMA
1 SHM

Epson M-A370

0.02

Epson M-A352

0.2
0.010.1110

Sources: Patanè et al., Sensors 2026, 26, 5528, doi.org/10.3390/s26175528 (open access, CC BY); Epson M-A352 specification.

INDEPENDENTLY VALIDATED

Proven on castles, bridges and seismic networks

INGV, Seiko Epson and Epson Europe Electronics evaluated Epson QMEMS accelerometers in the lab and in long-term field use. According to the authors, the M-A370 delivers data quality comparable to engineering-grade force-balance accelerometers.

United Kingdom · M-A370

Durham Castle clock tower

Ambient vibration testing of a heritage structure.

United Kingdom · M-A370

Cable-stayed pedestrian bridge

Operational modal analysis of a steel footbridge.

Ragusa, Italy · M-A352

Papa Giovanni XXIII arch bridge

Long-term SHM of a reinforced-concrete arch bridge.

Campi Flegrei, Italy · M-A370

Residential buildings

Structural monitoring in a volcanic area.

Italy · M-A352

Urban Seismic Observatories

Catania, Campi Flegrei, Messina–Reggio Calabria, Potenza and others; 50+ units in Campi Flegrei alone.

These projects were carried out by INGV and Epson. AMCORIS supplies the same sensors and supports their integration.

Read the study →

SENSOR SELECTION

Which Epson sensor for which SHM task

All sensors measure three axes with a digital interface. Choose by noise level, interface and installation environment.

Epson M-A352AD10

M-A352AD10Available online

UART/SPI · 0.2 µg/√Hz

Bridges, buildings and dense seismic networks.

Buy now →

Epson M-A370AD10

M-A370AD10On request

UART/SPI · 0.02 µg/√Hz

Ultra-low-noise OMA, heritage structures, quiet sites.

Product details →

Epson M-A552AR10

M-A552AR10On request

RS-422 · IP67

Long cable runs and harsh industrial environments.

Product details →

Epson M-A552AC10

M-A552AC10On request

CANopen · IP67

Networked monitoring systems with CAN bus.

Product details →

Epson M-A542VR10

M-A542VR10On request

RS-422 · vibration sensor · IP67

Drives, gates and machinery on the structure.

Product details →

Epson M-A342VD10

M-A342VD10On request

UART/SPI · vibration sensor

Compact monitoring of machinery and equipment.

Product details →

FROM AMCORIS PROJECTS

Integration examples

Epson sensors integrated into real-world monitoring of bridge and floodgate infrastructure, where reliable long-term vibration measurement is essential.

  • Challenge

    Bridge Vibration Monitoring

    Continuously assessing the dynamic behaviour of a bridge to identify changes in structural response over time.

  • Solution

    Bridge Vibration Monitoring

    An Epson MEMS vibration sensor was integrated into a dedicated monitoring unit to capture structural vibration data for long-term analysis.

  • Result

    Bridge Vibration Monitoring

    The system provides reliable vibration data that supports structural assessment and long-term monitoring of the bridge.

    M-A352AD10
  • Challenge

    Floodgate Drive Monitoring

    Monitoring the motors that open and close the gates of a lock and floodgate installation, where unplanned downtime affects critical water infrastructure.

  • Solution

    Floodgate Drive Monitoring

    An Epson M-A542VR10 vibration sensor with RS-422 interface was mounted on the gate drive motors to continuously capture three-axis vibration data.

  • Result

    Floodgate Drive Monitoring

    Early detection of wear on the gate drives supports condition-based maintenance and reliable operation of critical water infrastructure.

    M-A542VR10

WHY AMCORIS

Why engineers choose AMCORIS

01

Validated sensors

Epson QMEMS accelerometers evaluated by INGV on bridges, buildings and seismic networks.

02

Available online

The M-A352AD10 can be ordered directly in our shop.

03

Application engineering

Sensor selection, evaluation kits and integration support.

04

Built for the field

IP67 variants with RS-422 or CANopen.

FAQ

Frequently asked questions

Your question is not listed?

Ask our engineers →

QWhich accelerometer for bridge and building monitoring?

For most bridges and buildings, the M-A352AD10 with 0.2 µg/√Hz is the right start. For very quiet structures and ambient vibration testing, the M-A370AD10 goes further.

QWhy does sensor self-noise matter in SHM?

Ambient vibration of large structures is very weak. The sensor's own noise has to stay well below it, otherwise natural frequencies and damping cannot be identified reliably.

QCan the same sensors measure tilt?

Yes. Near level, 1 µg corresponds to about 1 µrad of tilt. The M-A552 series outputs tilt angles directly.

QCan I test the sensors before ordering?

Yes. Request an Epson evaluation kit from AMCORIS. The M-A352AD10 can also be ordered directly in our online shop.

EVALUATION KIT

Test it in your own system

Epson evaluation kits are available from AMCORIS as a free loan for qualified projects. Share a few details about your application and we prepare the right kit and support you during the evaluation.

✓Free loan for qualified projects

✓Help with model selection and set-up

✓Direct line to our application engineers

Ready to Monitor Your Structure?

Develop a reliable structural health monitoring system with high-performance Epson vibration sensors and application-focused engineering support from AMCORIS.

Request an Evaluation Kit

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