Product Description:
Our AGREE vibration test chambers are specifically designed for the rigorous testing of electronic components and systems, ensuring their reliability and durability under demanding vibration conditions. Engineered to meet the stringent requirements of IEC 60068-2-6 (Sinusoidal Vibration) and IEC 60068-2-64 (Broadband Random Vibration), our chambers provide comprehensive vibration testing solutions for the electronics industry.
Key Features:
- IEC Compliance: Designed to meet or exceed the requirements of IEC 60068-2-6 and IEC 60068-2-64 standards.
- Integrated Vibration Testing: High-performance electrodynamic or hydraulic shakers for precise and repeatable vibration simulation.
- Precise Environmental Control: Advanced temperature and humidity control systems for stable and uniform testing conditions.
- Versatile Vibration Simulation: Capable of both sinusoidal and broadband random vibration testing.
- Customizable Vibration Profiles: Flexible software for creating complex and customized vibration profiles.
- Real-Time Data Acquisition: Comprehensive data logging and analysis capabilities.
- Robust Safety Features: Multiple safety interlocks and monitoring systems for secure testing.
- Modular Design: Facilitates easy installation, maintenance, and system upgrades.
Shaker Specifications
Rated Sine/ Random/ Shock Force | 1,100 kgf/1,100 kgf/2.200 kgf | Armature Mass | 11kg |
Frequency Range | 5-3.000 Hz | Inserts Size (Standard) | M8 |
Max./Continuous Displacement p-p | 51 mm/ 51 mm | Load Attachment Points (Standard) | 17 |
Max. Velocity | 2.0 m/s | Natural Frequency-Thrust Axis | <3Hz |
Max.Sine/ Random Acceleration | 100/60g | Mac Vertical Load Support | 300 kg |
Armature Diameter | 235 mm | Stray field @ 152 mm above table | ≤1mT (10 gauss) |
Fundamental Resonance frequency | 2,500 Hz (nom.) ± 5% | Dimension LxWxH | 940 mmx715 mmx780 mm |
Allowable Armature Overturning Moment | 300 Nm | Weight (Uncrated) | 1.000 kg |
PA10K Power Amplifier Specifications | Blower Specifications |
Rated Output Capacity | 10kVA | Bl ewer Power | 4kW |
Signal to Noise Ratio | ≥65 dB | Air Flow | 0.38 m3/s |
Amplifier Efficiency | ≥90% | Air Pressure | 0 048kgf/cm2 |
System Protection | Multiple | Air Duct Diameter/ Length | 120/4000mm |
Dimension (Uncrated) LxWxH | 610mmx900mmx 1,550mm | Dimension (Uncrated) LxWxH | 610mmx750mmx 1,450mm |
Weight (Uncrated) | 400 kg | Weight (Uncrated) | 120Kg |
Chamber | Dimensions (mm) |
Capacity | 512L |
Inner Chamber Dimensions | 800×800×800mm (W width × D depth × H height mm) |
Temperature Range | -40℃~+150℃ |
Cooling Rate | +20℃~-40℃ Average throughout the range: 2℃/min |
Humidity Range | 20%RH~98%RH |
- Smartphone Testing
- A leading smartphone manufacturer used the system to test the durability of its latest model. The smartphones were subjected to vertical vibrations, along with temperature and humidity variations. The testing revealed that the camera module was prone to misalignment under high - vibration and extreme - temperature conditions. By reinforcing the camera module's mounting structure and improving the shock - absorbing materials, the manufacturer was able to enhance the durability of the camera system, reducing the occurrence of blurry photos and camera malfunctions.
- Laptop Testing
- A laptop manufacturer utilized the system to test the reliability of its new laptop design. The laptops were exposed to a combination of vertical vibrations, high - humidity, and low - temperature conditions to simulate the harsh environment during transportation. The testing identified issues with the hard drive's performance and the battery's lifespan under these conditions. By improving the hard drive's shock - protection mechanism and optimizing the battery's thermal management system, the manufacturer was able to improve the laptop's overall reliability and performance.
- Wearable Device Testing
- A company manufacturing wearable fitness trackers used the system to test the water - resistance and vibration resistance of its products. The trackers were subjected to vertical vibrations and varying humidity levels, as well as simulated sweat and water exposure. The testing showed that the seals around the charging port were not sufficient to prevent water ingress under certain vibration and humidity conditions. By improving the seal design and using more water - resistant materials, the company was able to enhance the water - resistance of its wearable devices, increasing customer satisfaction.


Benefits:
- Ensures compliance with critical IEC standards.
- Enhances the reliability and durability of electronic devices.
- Reduces the risk of failures in real-world applications.
- Accelerates product development and validation processes.
- Provides comprehensive and integrated testing solutions.
Why Choose Us:
We are a trusted provider of high-quality environmental and vibration testing solutions for the electronics industry. Our AGREE vibration test chambers are designed and manufactured to the highest standards, ensuring reliable and accurate testing results. We offer comprehensive support, including design, installation, and ongoing maintenance.
Contact our expert team today to discuss your specific electronics testing requirements and discover how our AGREE vibration test chambers can optimize your testing processes.