
Most test tables move. This one performs.
◆ Speed That Redefines the Envelope
10,000°/s on the inner axis. Not a typo. That's an order of magnitude beyond conventional systems—opening up testing scenarios for high-speed gyros, tactical-grade sensors, and rapid-attitude applications that other tables simply cannot replicate.
◆ Acceleration That Matches the Ambition
10,000°/s² on the inner axis. Middle follows at 200°/s², outer at 100°/s². This is not gradual motion—this is instantaneous response, simulating real-world dynamics with striking fidelity.
◆ Precision That Keeps Pace
±10 arc-second positioning accuracy and ±5 arc-second repeatability across all three axes. At 10,000°/s, maintaining this level of precision is a control achievement that translates directly to trustworthy test data.
◆ Rate Stability That Scales Intelligently
5×10⁻³ over 1° average at low speeds. 5×10⁻⁴ over 10° average. 5×10⁻⁵ over 360° average at high speeds. The system adapts its smoothness to your test profile—clean motion at every operating point.
◆ Three Axes, Distinct Personalities
Inner axis: 360° continuous, built for high-speed dynamics. Middle: ±100° with a zero reference at table-up position. Outer: 0° to 360° range. Each axis serves a specific role in your test sequence.
◆ Optical Inertial Technology at the Core
This isn't conventional servo control—it's optical inertial time-base simulation. The result: superior repeatability, reduced drift, and test consistency that outperforms conventional systems by over 35%.
◆ Built for the Modern Lab
Φ320 mm super-hard aluminum table supports 10 kg loads with ϕ180×200 mm maximum dimensions. The compact 120 kg package integrates seamlessly into existing test setups, cutting manual alignment time by up to 45%.
◆ Long-Term Stability, Scalable Demands
Engineered for laboratories that test today and scale tomorrow. The system maintains its calibration integrity across extended test campaigns—reducing recalibration overhead and keeping your focus on data, not maintenance.
◆ Where This Table Excels
High-speed gyro characterization. Tactical-grade inertial sensor validation. Optical navigation system testing. Rapid-attitude simulation. Research laboratories pushing performance boundaries.
◆ The Takeaway
This test table doesn't just meet specifications—it redefines what's possible in high-dynamic inertial testing. For engineers who need to validate sensors at the edge of performance, it delivers the speed, precision, and repeatability that make breakthrough testing possible.
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