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Three-Axis Motion Simulator with UOT Structure Delivers ±3 Arc-Second Accuracy and Integrated Thermal Chamber for IMU and Gyroscope Dynamic Testing

This three-axis motion simulator features a UOT structure with ±3 arc-second positioning accuracy, 0.36 arc-second resolution, and <2 arc-second repeatability across all axes. Supporting 60 kg loads on a Φ550 mm table with 80-channel slip ring power and signal transmission, it integrates a -50°C to +70°C thermal chamber for combined environmental and dynamic testing of IMUs, gyroscopes, and inertial sensors.
Jul 6th,2026 12 Views

Precision, power, and thermal control—unified in one high-performance platform.

 Accuracy That Anchors Every Measurement

±3 arc-second positioning accuracy, 0.36 arc-second resolution, and <2 arc-second repeatability across all three axes ensure your test data reflects true device behavior—not table limitations. For IMU and gyroscope characterization, this level of fidelity is non-negotiable.

 UOT Structure for Uncompromising Stability

The UOT frame configuration delivers exceptional mechanical stiffness and minimal deflection, ensuring consistent performance across thousands of test cycles—even under heavy loads and aggressive dynamics.

 Speed and Acceleration That Cover the Spectrum

Inner axis reaches 500°/s with 500°/s² acceleration; middle axis 200°/s with 150°/s²; outer axis 100°/s with 100°/s². Three-axis coordinated motion at ±60°/s enables realistic attitude simulation. Rate stability holds at 1×10⁻⁵ over 360° average—clean, artifact-free motion at every speed.

 Built for Heavy Payloads

Supporting 60 kg loads on a Φ550 mm table with load height up to 500 mm, the system accommodates complete sensor assemblies, navigation components, and large optoelectronic payloads without disassembly or custom fixturing.

 High-Capacity Signal and Power Transmission

80 signal ways at 3A with 380VAC/50Hz and 40 kW maximum power, plus 6 power ways at 220V/10A—ensuring uninterrupted data and power transfer to active test articles throughout continuous rotation.

 Integrated Thermal Chamber for Realistic Environmental Stress

The built-in temperature chamber, with 600×600×600 mm working volume, spans -50°C to +70°C with ±1°C stability, ±1°C deviation, and 2°C gradient. Heating and cooling rates reach 2°C/min, enabling simultaneous thermal cycling and dynamic motion—eliminating the uncertainties of cross-platform testing.

 Dual-Mode Testing Capability

Beyond full 360° continuous rotation, the system supports swing mode with 0.2° amplitude at frequencies up to 10 Hz on the inner axis, adding another dimension of dynamic testing for vibration-sensitive sensors.

 Engineered for the Long Haul

At 3000 kg with dimensions of 2750×1050×3110 mm, this simulator is built for permanent installation in metrology laboratories and environmental test facilities. Robust construction ensures long-term stability and consistent performance across extended test campaigns.

 Applications

IMU and gyroscope dynamic characterization. Aerospace sensor validation. Attitude control system testing. Precision instrument manufacturing. Research and development.

 The Complete Environmental Motion Test Platform

By unifying UOT structural rigidity, wide-range thermal conditioning, and high-capacity signal transmission, this motion simulator delivers the performance engineers need for advanced inertial device development. For professionals who demand precision across temperature extremes and dynamic conditions, it provides the confidence to push boundaries—further and faster.

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