SEE VIBRATION. UNDERSTAND STRUCTURE.

Scanning Laser Vibrometers and Modal Analysis Systems

Non-contact vibration measurement, modal testing and structural dynamics solutions for research and engineering applications.

01

Non-Contact

Measure without adding sensor mass to the target.

02

Spatial

Turn planned measurement points into interpretable vibration fields.

03

Synchronized

Preserve phase and reference information for structural analysis.

04

Application-Led

Configure optics, acquisition and analysis around the real task.

PRODUCT PORTFOLIO

Non-Contact Measurement from One Point to Full-Field Insight

Select the system according to target geometry, stand-off distance, frequency range, channel count and required analysis output.

VIPICO scanning laser vibrometer product view

Gimbal Scanning Laser Vibrometer

Wide-field automated point planning, remote vibration acquisition and modal visualization.

VIPICO gantry 3D scanning laser vibrometer system

Gantry 3D Scanning System

Controlled three-direction vibration measurement for laboratory structures and component validation.

VIPICO multifunction laser Doppler vibrometer

Multifunction Laser Doppler Vibrometer

Configurable non-contact measurement combined with complementary dynamic acquisition.

VIPICO multi-channel synchronous laser vibrometer system

Multi-Channel Synchronous LDV

Synchronized optical and reference channels for phase-sensitive and modal applications.

VIPICO automated non-contact damping measurement system

Automated Damping Measurement

Repeatable excitation, non-contact response acquisition and natural-frequency or damping analysis.

APPLICATION SOLUTIONS

Measurement Workflows for Research and Industry

From test-object definition to data review and reporting, each solution connects optical access, excitation, synchronization and analysis to the engineering decision.

A

Aerospace

Blade, panel and lightweight-structure modal testing, ODS and test-to-model correlation.

B

Automotive R&D

NVH investigation, body and component dynamics, operating response and structural validation.

C

Ultrasonics

High-frequency non-contact response measurement for transducers, tools and miniature structures.

D

Industrial Equipment

Operating vibration visualization, condition diagnosis and difficult-access measurements.

E

Research & Laboratories

Flexible configurations for method development, teaching and application-specific experiments.

VIPICO scanning laser vibrometry and modal analysis system

CORE TECHNOLOGY

A Traceable Chain from Scan Planning to Modal Results

Automated pointing links measurement coordinates to response data. Laser Doppler vibrometry avoids contact loading. Synchronized acquisition and modal algorithms turn multi-point measurements into natural frequencies, damping estimates, ODS and mode shapes.

  • Automated grid planning and coordinate registration
  • Non-contact velocity and derived displacement measurement
  • Synchronized response and reference acquisition
  • ODS, OMA, EMA, LSCF and EFDD workflows

WORKING WITH VIPICO

A Clear Path from Measurement Question to Deployment

Define

Target, motion, distance, environment and expected result.

Configure

Optics, point plan, acquisition, excitation and analysis.

Validate

Confirm signal quality, workflow, outputs and limitations.

Deploy

Commissioning, training and continued application support.

TECHNICAL INSIGHTS

Methods and Application Notes

Laser Doppler vibrometry measurement chain from laser source to engineering output

How a Laser Doppler Vibrometer Works

Doppler principle, signal chain, measured quantities and application limits.

ODS OMA and EMA modal analysis method comparison infographic

ODS vs OMA vs EMA

Choose the appropriate structural-dynamics method by inputs, assumptions and outputs.

Optical geometric acquisition and environmental error sources in laser vibrometry

Common Measurement Errors

Troubleshoot optical return, geometry, environment, sampling and scanning consistency.

Bring Us Your Measurement Challenge

Tell us what moves, how far away it is, the frequency range and what you need to learn. Our international team will help define the next technical step.

Scroll to Top