The primary purpose of the 2-axis Simultaneous Vibration Test Shaker/System is to provide precise and reliable testing for various applications by simulating real-world conditions through simultaneous vibrations in two axes.
Key specifications include a blower air volume of 0.46 m³/s, a horizontal slip table size of 600 x 600 mm, a power amplifier output of 30 kVA, and a shaker frequency range from 5 to 2,600 Hz.
The system is CE and ISO certified, ensuring compliance with international quality and safety standards.
Dual-axis testing allows for comprehensive analysis of product durability and performance under stress, simulating more realistic operational conditions.
The 2-axis Simultaneous Vibration Test Shaker/System requires a power supply of 380V/3ph/50Hz with a total power rating of 40 kVA.
This system is suitable for testing electronic devices, automotive components, aerospace products, and is also useful for research and development as well as quality control in manufacturing processes.
Yes, the system offers custom logo and graphic design options to meet specific branding or presentation needs.
The shaker has a frequency range from 5 Hz to 2,600 Hz, allowing for a broad spectrum of tests.
Yes, the product comes with a one-year warranty for peace of mind regarding its performance and reliability.
The performance reliability is ensured by the powerful 30 kVA amplifier and the CE and ISO certifications that validate its quality and safety.
The horizontal slip table measures 600 x 600 mm.
Yes, this vibration test shaker is ideal for conducting aerospace product assessments, simulating operational stress conditions.
The system is best suited for testing electronic devices, automotive components, aerospace products, R&D for new products, and quality control in manufacturing.
The protection class 'Single item' indicates that the shaker is designed for standalone operation, ensuring it meets specific safety standards for individual use.
The shaker simulates real-world conditions by applying vibrations in two axes simultaneously, which closely mimics the stress that products would encounter during actual use.
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