
Some tables move. This one performs—with the consistency that demanding IMU testing requires.
◆ Accuracy That Doesn't Drift
±5 arc-second positioning accuracy. ±3 arc-second repeatability. Across all three axes. When your test involves aerospace or satellite components, these numbers aren't optional—they're essential.
◆ Speed That Covers the Spectrum
Inner frame: 500°/s. Middle: 400°/s. Outer: 300°/s. Coordinated three-axis motion: 100°/s. Rate stability scales with your profile—5×10⁻³ at low speeds, tightening to 5×10⁻⁵ over 360° averages.
◆ Acceleration That Responds Instantly
Inner frame: 300°/s². Middle: 200°/s². Outer: 100°/s². No lag, no overshoot—just the dynamic response your test sequence demands.
◆ Rotation Without Limits
360° continuous rotation on all axes. No mechanical stops, no range constraints. Multi-turn profiling and extended endurance runs proceed without interruption.
◆ Built on a Precision Foundation
Φ360 mm stainless steel table—0.02 mm flatness, 0.02 mm end runout. M6 mounting holes on 25 mm spacing. Your devices sit on a surface that stays flat, run after run.
◆ Generous Payload for Diverse Devices
20 kg load capacity with Φ300×200 mm maximum dimensions. Handles everything from compact sensors to complete IMU assemblies.
◆ Servo Motors + Closed Loop = Consistency
High-performance servo motors provide the muscle. Closed-loop control provides the intelligence. Together, they deliver the ultra-stable motion that INS testing demands—reducing signal interference by 85% and boosting testing efficiency by 50%.
◆ Built for the Long Haul
140 kg of durable construction. Engineered for high-demand operation across extended test campaigns. Less downtime, more data.
◆ Where This Table Excels
IMU and INS calibration. Attitude control system testing. Aerospace sensor validation. Satellite component qualification. Precision manufacturing quality assurance.
◆ The Takeaway
This rate table is designed for professionals who refuse to compromise on positioning precision. It combines servo-driven stability, closed-loop accuracy, and robust construction in a package that delivers consistent results—shift after shift, test after test.
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