Description
The VectraScan UltraFiber Microscale Alignment System represents a groundbreaking advancement in fiber optic and microscale component assembly. Utilizing proprietary holographic laser interferometry combined with adaptive micro-actuator arrays, VectraScan delivers sub-micron alignment accuracy in real-time. Designed specifically for engineers, photonics technicians, and advanced makers, this system enables flawless precision when aligning optical fibers, waveguides, and microelectromechanical systems (MEMS) components.
Key features include a dual-axis nano-positioning stage with integrated feedback sensors capable of 10 nanometer resolution, an embedded AI-driven alignment optimization engine that dynamically compensates for environmental vibrations and temperature fluctuations, and a modular interface compatible with existing CNC machinery and robotic arms. The system employs a proprietary holographic laser projector emitting a customizable interference pattern that visually maps fiber core alignment and coupling loss potential, allowing operators to optimize settings even before physical locking.
Technical specs include:
– Alignment resolution: 10 nm step size (closed loop)
– Laser wavelength: 532 nm Green laser, 1 mW max output, safe for cleanroom
– Positioning range: 25 mm X, 25 mm Y ±5 mm Z nano-actuator
– Integrated environmental sensors: temperature, humidity, vibration
– Operating software: VectraSuite UI with Python and C++ SDK
– Dimensions: 220 mm x 180 mm x 120 mm
– Power: 24 V DC, 60 W max
By enabling extreme precision and repeatability, the VectraScan UltraFiber reduces time-consuming trial-and-error adjustments by up to 80%, significantly improving throughput and yield in photonics manufacturing, MEMS packaging, and research applications.
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