2Hz–10kHz Miniature Shaker VE Series

Featured Product from ECON Technologies Co.,Ltd

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As electronic devices, sensors, and precision components continue to shrink in size, engineers face increasing challenges in accurately evaluating their vibration performance and structural behavior. Large vibration systems are often oversized, costly, and impractical for testing lightweight specimens or conducting research and educational experiments.

The VE Series Miniature Shaker is specifically developed for these applications. Combining high-precision vibration excitation, a wide frequency bandwidth, and a compact footprint, it provides an efficient and economical platform for vibration testing, modal analysis, calibration, and academic research.

Whether validating the durability of electronic components, studying structural dynamics, or teaching vibration theory in a laboratory environment, the VE Series delivers reliable and repeatable results while minimizing setup complexity and operating costs.


Wide Frequency Range for Diverse Testing Needs

  • Frequency range from 2 Hz to 10,000 Hz
  • Force ratings available from 20 N to 1,000 N
  • Suitable for both low-frequency structural studies and high-frequency component testing
  • Supports a wide range of vibration research and validation applications

High-Precision Vibration Excitation

  • Advanced closed-loop control system ensures accurate vibration reproduction
  • Stable and repeatable excitation performance
  • High reliability for precision measurements and research activities
  • Ideal for sensor characterization, component validation, and calibration tasks

Designed for Small and Delicate Test Specimens

  • Optimized for testing lightweight and precision products
  • Suitable for:
    • Electronic components and circuit boards
    • Semiconductor materials
    • Power modules (IGBTs)
    • Piezoelectric devices and sensors
    • Small-scale structural models
  • Enables early identification of vibration-related design issues before product deployment

Compact System for Laboratory and Educational Use

  • Small footprint allows installation on standard laboratory benches
  • Easy transportation between laboratories and test locations
  • Simple setup and operation reduce training requirements
  • Well suited for universities, research institutes, calibration laboratories, and engineering training centers

Powerful Software and Flexible Research Capability

  • Comprehensive software platform supporting multiple testing functions
  • Compatible with modal analysis, vibration control, calibration, and research applications
  • Supports vibration energy capture and reproduction studies
  • Flexible platform for advanced experimental and academic projects

Applications

  • Modal testing and structural dynamics analysis
  • Sensor and instrumentation calibration
  • Electronic component vibration testing
  • Semiconductor stress screening
  • Piezoelectric device performance evaluation
  • Small-scale earthquake simulation research
  • Vibration energy harvesting and reproduction studies
  • Education and laboratory training