Ultra-High Precision Control
Machining precision generally reaches the micron level, with nanometer-level accuracy achievable in cutting-edge applications; some products feature dimensional tolerances of ≤±0.001 mm and geometric tolerances of ≤0.002 mm.
In leading-edge optical and semiconductor sectors, surface form accuracy can be controlled within tens of nanometers, and surface roughness (Ra) can be as low as 0.01 μm, achieving atomic-level surface smoothness.
Moving components can achieve zero backlash, with repeatable positioning accuracy stable within ±0.05 μm; for transmission products, cumulative pitch error can be controlled within 5 μm.
High Reliability and Long Service Life
After 5 million reciprocating operation cycles, precision loss remains below 5%, and some products offer a service life exceeding 20,000 hours.
Material properties are enhanced through processes such as carburizing, quenching, and surface modification, significantly improving wear resistance and operational stability while ensuring a very low failure rate during long-term operation.
High Consistency and Adaptability
Mass-produced products exhibit dimensional fluctuations of ≤0.01 mm and surface quality variations of ≤2%, ensuring stable, synchronized operation of multiple components on automated production lines.
They are adaptable to special operating conditions-such as vacuum environments, cleanrooms, high-load scenarios, and extreme temperature fluctuations-meeting the rigorous requirements of industries like semiconductors, medical technology, and aerospace.
