Vibration and Shock Testing

Load Testing of Your Products
Technical Specifications
|
|
| Mounting Surface |
600mm x 600mm |
| Hole Pattern |
100mm x 100mm M10x15 |
| Max. Frequency Range |
3,300 Hz |
| Maximum Displacement |
51 mm (Sine) |
| ————————– |
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| Maximum Payload |
|
| Head Expander |
300 kg (vertical excitation) |
| Slip Table |
620 kg (horizontal excitation) |
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| Maximum Forces: |
|
| Sine Mode |
22 kN |
| Random Vibrations |
22 kN (RMS) |
| Shock Mode |
44 kN |
| ————————– |
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| Maximum Acceleration |
|
| Sine Mode |
1,000 m/s² |
| Random Vibrations |
630 m/s² (RMS) |
| Shock Mode |
2,000 m/s² (peak) |
We offer the opportunity to test your products under realistic conditions using our state-of-the-art shaker system. Housed in an ISO 7 cleanroom, our system is ideal for sensitive test objects. Our tests ensure structural integrity and operational reliability under extreme mechanical loads.
Our Testing Capabilities
Our system allows for a variety of testing methods to analyze dynamic stress, shock effects, and resonance behavior. This enables us to identify weak points and optimize product designs based on real-world stress factors.
Small Satellite Testing
Small satellites experience intense mechanical loads during launch. Our test setup replicates these extreme conditions with high precision, allowing for a detailed assessment of structural stability and component durability.
- Rocket Launch Simulation: We simulate shock and vibration loads equivalent to actual launch conditions, ensuring spacecraft survivability.
- Resonance Testing: Identifying critical vibration frequencies helps optimize structural design and attachment mechanisms.
- Functional Reliability: Testing electronic and mechanical components under dynamic loads prevents in-orbit malfunctions.
Testing for Other Industries
In addition to space applications, our system supports testing for various high-reliability industries where mechanical stress plays a critical role:
- Automotive Industry: Testing mechanical stress on batteries, sensors, and vehicle components under real-world conditions.
- Aviation: Evaluating vibration-resistant designs for avionics and aircraft structures.
- Packaging: Simulating mechanical transport loads to validate packaging durability according to international standards.
- Electronics: Conducting shock and vibration tests to ensure the resilience of electronic circuits and assemblies.
Do you require specialized testing for your products? Contact us to learn how our vibration and shock testing services can support your development and qualification processes. 