3D MODAL MEASUREMENT ยท VP-MVM-1600
Gantry 3D Scanning Laser Vibrometer System
Non-contact, multi-channel, high-density three-dimensional vibration measurement and modal analysis for laboratory and industrial structures.
Capabilities and Intended Tasks
The following information supports preliminary system discussions. Final performance and interfaces depend on the selected configuration and technical agreement.
High-density measurement grids
Structured scanning for dense spatial response mapping.
Wideband response
Supports structural-dynamics testing across the agreed measurement bandwidth.
Integrated analysis
Measurement, review and modal analysis are organized in one workflow.
Rapid modal identification
Designed for efficient frequency, damping and mode-shape evaluation.
Typical Applications
- Automotive component and bench testing
- Aerospace structures and blades
- University and research laboratories
- Precision parts and complex assemblies
Public Configuration Information
| Configuration item | Current public information | Notes |
|---|---|---|
| Model | VP-MVM-1600 | Current published model. |
| Product type | Gantry 3D scanning laser vibrometer system | For non-contact three-dimensional vibration response scanning. |
| Measurement method | Non-contact laser vibrometry and scanning measurement | Reduces the added-mass influence of contact sensors. |
| Measurement dimension | Three-dimensional vibration response | For spatial structural vibration characterization. |
| Core tasks | High-density points, synchronous vibration measurement and modal analysis | For R&D validation and structural-dynamics testing. |
| Operating environment | Laboratory and industrial sites | Selection depends on object, distance and site boundaries. |
| Numerical specifications | Defined by formal technical documentation or project agreement | The webpage does not replace final delivery parameters. |
This table summarizes information currently published by VIPICO for preliminary selection. Numerical range, bandwidth, working distance, channel count, accuracy and interfaces are governed by the final technical documentation or agreed project specification.
Define the object, distance, frequency range and required output.
Related solution paths include Automotive R&D, Aerospace and Industrial Equipment. See Technology and Resources for methods and application guidance.
