【Wuhan, July 24, 2026】 —As unmanned aerial systems become increasingly sophisticated and aerospace sensor technologies continue to advance, the calibration of flight control sensors, gyroscopes, and MEMS devices has emerged as a critical enabler of system performance and mission reliability. Today, we are proud to announce a new application paradigm for the BE-INS2-23D03 dual-axis PTZ motion rate table — not merely a positioning turntable, but a comprehensive sensor calibration platform tailored for UAV flight control validation, aerospace MEMS testing, and unmanned system navigation calibration.
From Manual Adjustment to Automated Precision Calibration
Conventional sensor calibration methods often rely on manual positioning or single-axis fixtures, failing to deliver the repeatability and efficiency required for modern production and R&D environments. The BE-INS2-23D03 integrates ±0.01° positioning accuracy with a wide adjustable speed range from 0.1°/s to 100°/s, enabling comprehensive calibration sequences including rate sweeps, multi-position indexing, and dynamic motion profiling within a single compact platform. Rather than a simple positioning device, this system generates a dedicated motion error signature for each sensor under test, providing high-fidelity calibration data for flight control system optimization and quality assurance.
Wide-Angle Motion Range for Comprehensive Sensor Characterization
The BE-INS2-23D03 features independent dual-axis control with -100° to +100° tilt range and 360° continuous pan rotation, supporting complex calibration trajectories that simulate real-world attitude dynamics encountered in UAV flight operations. The system's 0.1°/s to 100°/s adjustable speed capability enables comprehensive characterization of gyroscope bias, accelerometer response, and sensor fusion algorithms across the full operational spectrum. The 2% speed control error ensures consistent, repeatable test conditions essential for reliable sensor validation.
Compact, Lightweight Design for Flexible Deployment
Weighing just 18.5kg with compact 400mm×400mm×300mm dimensions, the BE-INS2-23D03 offers exceptional portability without compromising precision. The 4kg payload capacity and 250mm×250mm×100mm load size accommodate a wide range of flight control sensors, gyroscopes, and MEMS devices. This combination of precision and portability makes the system suitable for both laboratory integration and field deployment scenarios, providing flexibility for diverse testing environments.
Enabling Automated Calibration Pipelines for High-Throughput Testing
In response to the growing demand for operational efficiency in sensor manufacturing and validation, the BE-INS2-23D03 offers comprehensive remote control interfaces, seamlessly integrating into existing automated test frameworks. Whether for high-volume sensor screening or R&D-grade system characterization, the system executes unattended calibration sequences via script-driven automation. This transition elevates sensor calibration from manual craftsmanship to a data-driven, auditable, and fully traceable quality foundation — empowering UAV developers and aerospace manufacturers with quantifiable confidence in their navigation components.
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