【Wuhan, Aug 21, 2026】 —— As global researchers in quantum physics, magnetic sensing and high-precision measurement continue to push the boundaries of ultra-weak magnetic field testing, the demand for motion control equipment that introduces zero electromagnetic interference is rapidly growing. Today, we are proud to unveil the BE-INS3-26B05 Non-Magnetic Precision Turntable: a specialized motion reference platform engineered exclusively for shielded cylinders, magnetic shielding rooms, and other confined non-magnetic environments, providing ultra-pure attitude control for the most sensitive calibration and sensor characterization experiments.
Non-Metallic Construction for Ultra-Weak Magnetic Environments
In quantum research, atomic magnetometer testing and high-sensitivity magnetic sensor calibration, even trace amounts of ferromagnetic materials can corrupt experimental data. The BE-INS3-26B05 revolutionizes the market by employing advanced non-metallic composite materials throughout its main structure. With overall residual magnetism reduced to industry-leading minimums, this turntable actively eliminates the risk of self-interference, ensuring that the surrounding test field remains magnetically pure. It serves as an ideal motion platform for shielding chambers, delivering a pristine physical environment that safeguards the integrity of extreme-precision experiments.
High-Precision Manual Adjustment with Reliable Self-Locking Mechanism
To meet the stringent positioning requirements of scientific research, the BE-INS3-26B05 integrates a professional worm gear transmission system combined with manual precision handwheels. This straightforward yet highly efficient design allows operators to achieve sub-arcminute-level single-axis and multi-axis attitude fine-tuning without the need for complex electronic control units. Once the desired calibration angle is reached, the worm gear mechanism inherently provides robust mechanical self-locking. This eliminates the risk of positional drift caused by external vibrations or load gravity during prolonged static testing, ensuring unwavering stability for long-duration observation and calibration.
Optimized Form Factor for Confined Shielded Cylinder Spaces
Space is always a premium within magnetic shielding systems. The BE-INS3-26B05 features a highly integrated, compact tabletop structure with exceptional mechanical rigidity. Its streamlined footprint allows for effortless installation inside the limited internal diameters of most commercial shielded cylinders. The top-grade circular mounting surface supports flexible fixture layouts, easily adapting to diverse mounting requirements for atomic magnetometers, quantum sensors, and high-precision inertial test loads.
The Ultimate Solution for Frontier Magnetic Sensing and Calibration
Designed specifically for environments where conventional metallic turntables fail, the BE-INS3-26B05 meets the critical demands of atomic magnetometer characterization, quantum sensor calibration, and precision magnetic field measuring equipment testing. It combines the safety and purity of non-magnetic materials with the mechanical precision required by top-tier research laboratories. By providing consistent, zero-interference motion simulation, this turntable accelerates the development of next-generation magnetic sensors, offering researchers a dependable, long-term calibration platform for cutting-edge scientific breakthroughs.
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