Products

Vibration Controllers

m+p VibControl vibration controllers deliver high-performance, closed-loop control for vibration and shock testing across a wide range of applications—from standard product validation to extreme environmental simulations. Designed for flexibility and scalability, these systems support configurations from a few channels to several hundred, making them ideal for both R&D laboratories and production environments.

With an intuitive user interface, powerful analysis tools, and seamless integration with electrodynamic and hydraulic shakers, m+p VibControl ensures accurate, reliable, and repeatable test results. Whether simulating real-world conditions or meeting stringent international standards, these controllers provide complete confidence in your testing process.

Key Features & Advantages
  • Scalable Architecture: Expandable from 4 to 256+ channels with a unified interface
  • Complete Test Coverage: Supports vibration, shock, acoustic, and mixed-mode testing
  • Standards Compliance: Meets MIL-STD 810, DIN EN 60068, and other global standards
  • Advanced Safety: Built-in monitoring, notching, and force limiting to protect test specimens
  • Closed-Loop Precision: Ensures accurate control with real-time feedback and stability
  • Multi-Tasking Capability: Run control, monitoring, and data recording simultaneously
  • Flexible Integration: Compatible with electrodynamic and hydraulic shaker systems
  • High-Speed Data Processing: Up to 204.8 kHz sampling with 24-bit resolution
  • Upgrade-Ready Platform: Modular software and hardware for future expansion
  • Comprehensive Reporting: Seamless data export and automated report generation
Comprehensive Test Modes for Every Application
Random Vibration Control

Simulates real-world dynamic environments such as transportation, launch, and operational loads using Power Spectral Density (PSD) profiles. It enables precise closed-loop control with features like notching, kurtosis control, and real-time data analysis, ensuring accurate replication of complex vibration conditions.

Sine Vibration Control

Used for resonance detection and durability testing, sine control provides accurate frequency sweeps and dwell testing. It supports displacement, velocity, and acceleration control, making it ideal for identifying structural weaknesses and validating product reliability.

Shock Testing & SRS Control

Designed to replicate sudden impact events such as drops, crashes, and explosions. Supports classical shock waveforms, Shock Response Spectrum (SRS), and transient capture, enabling precise simulation of extreme real-life conditions.

Mixed Mode Testing (SoR, RoR, SoRoR)

Combines multiple excitation profiles such as sine and random signals to replicate complex operational environments. This mode is ideal for applications like vehicle dynamics and aerospace testing where multiple forces act simultaneously.

Time Domain Replication (Road Load Simulation)

Reproduces real-world measured signals such as road loads, flight data, or seismic activity. Advanced control algorithms ensure high-fidelity replication, making it essential for durability and lifecycle testing.

Data Reduction & Analysis

Handles high-channel-count testing by processing and reducing large datasets in real time. Enables efficient post-test analysis, reporting, and storage while maintaining full data integrity for critical applications.

Time History Recording (Throughput to Disc)

Captures continuous raw time-domain data during testing without affecting control performance. This ensures complete traceability and allows detailed post-test analysis for critical validation processes.

Multi-Axis Vibration Control (MIMO)

Simultaneously excites multiple axes to replicate real-world conditions more accurately. Reduces overall test time while improving realism for complex structures such as vehicles, aircraft, and large assemblies.

Vibration Monitoring & Protection

Independent monitoring system that continuously tracks parameters like acceleration, strain, and temperature. Provides real-time alerts and automatic shutdown to protect both the specimen and the test system.

Acoustic Control Testing

Enables high-intensity acoustic testing in reverberation chambers using precise octave band control. Ideal for aerospace applications, ensuring accurate simulation of noise environments with full safety and repeatability.

Supported Hardware
m + p VibPilot
  • Portable, compact, rugged housing
  • 4 or 8 input channels, expandable
  • 204.8 kHz max. sampling rate
  • 24-bit resolution
  • Ethernet and USB host interfaces
  • IEPE, TEDS
  • 2 source output channels, safety shutdown
  • 2 tacho inputs
  • 8 digital inputs/outputs
  • Fanless for noise measurements
  • Synchronization of multiple m+p VibPilot front-ends
m+p VibRunner
  • Desktop or 19″ rack mounting
  • 8-24 input channels per m+p VibRunner
  • Synchronization of multiple m+p VibRunner frontends
  • 204.8 kHz max. sampling rate
  • 24-bit resolution
  • 1 Gbit/s Ethernet interface
  • IEPE, TEDS
  • Bridge sensor conditioning
  • 2-12 source output channels per m+p VibRunner, safety shutdown
  • 2-12 tacho inputs
  • 8 digital inputs/outputs per m+p VibRunner
  • 204.8 kHz max. sampling rate