Galvanometer Mirrors – WOBO Scientific Research New Materials One-Stop Service Platform https://www.hi-tech-materials.com Fri, 25 Apr 2025 07:04:43 +0000 en-US hourly 1 https://wordpress.org/?v=6.8.1 https://www.hi-tech-materials.com/wp-content/uploads/2025/05/cropped-微信图片_20240923152541-32x32.png Galvanometer Mirrors – WOBO Scientific Research New Materials One-Stop Service Platform https://www.hi-tech-materials.com 32 32 Tin disulfide (SnS₂) https://www.hi-tech-materials.com/product/tin-disulfide-sns%e2%82%82 https://www.hi-tech-materials.com/product/tin-disulfide-sns%e2%82%82#respond Fri, 25 Apr 2025 07:00:38 +0000 https://www.hi-tech-materials.com/?post_type=product&p=3059
Quartz vibrating mirror is a precision optical component designed for dynamic beam steering, rapid optical modulation, and controlled light reflection. Manufactured from high-purity quartz, it offers excellent thermal stability, high reflectivity across various wavelengths, and strong resistance to environmental variations. This mirror is widely used in laser scanning systems, adaptive optics, lidar technology, and scientific instrumentation, ensuring reliable performance in high-speed optical applications.
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Product Overview
The Quartz Vibrating Mirror is an optical component made from high-quality quartz glass, commonly used in laser marking, laser cutting, and laser welding applications. Quartz is known for its excellent light transmission, high-temperature resistance, and chemical stability, allowing the mirror to maintain stable performance in harsh environments. Its primary function is to control the scanning direction and speed of laser beams, enabling precise laser path adjustments and focal positioning for pattern generation and surface treatment.

Key Features

  • High Light Transmission: Quartz material can transmit a wide range of light spectra from ultraviolet to far infrared, reducing light energy loss and improving the efficiency of laser systems.
  • High Heat Resistance: The quartz vibrating mirror can withstand high-temperature working environments while maintaining optical performance stability.
  • High Chemical Stability: Resistant to corrosion from various chemical environments, making it suitable for harsh working conditions.
  • High Precision and Stability: Capable of precise laser beam scanning and positioning, ensuring high-quality marking and cutting results.
  • Long Service Life: Offers a long lifespan, resistant to both high and low-temperature environments, meeting the demands of various industrial applications.

Applications

  • Laser Marking: Used for precise marking of object surfaces, widely applied in industries such as electronics, automotive, and aerospace.
  • Laser Cutting: In laser cutting machines, it controls the precise scanning of laser beams, suitable for cutting metals, plastics, glass, and other materials.
  • Laser Welding: In laser welding equipment, it precisely controls the scanning and focal position of the laser beam to ensure high-quality welds.
  • Laser Engraving: Achieves high-precision engraving for applications in artwork, electronics, and other industries.
  • Precision Laser Processing: Widely used in precision processing technologies such as micro-machining and surface treatment.
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Silicon Vibrating Mirror https://www.hi-tech-materials.com/product/silicon-vibrating-mirror https://www.hi-tech-materials.com/product/silicon-vibrating-mirror#respond Fri, 25 Apr 2025 06:55:52 +0000 https://www.hi-tech-materials.com/?post_type=product&p=3055
Silicon vibrating mirror is a precision optical component designed for dynamic beam steering, rapid optical modulation, and controlled light reflection. Manufactured from high-purity crystalline silicon, it features excellent thermal stability, high reflectivity in infrared wavelengths, and strong resistance to environmental variations. This mirror is widely used in laser scanning systems, adaptive optics, lidar technology, and scientific instrumentation, ensuring reliable performance in high-speed optical applications.
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Product Overview
The Silicon Vibrating Mirror is an optical component made from high-purity silicon, primarily used in applications like laser scanning. It is lightweight, compact, thermally stable, and mechanically robust, ensuring consistent performance even in harsh environments. Typically manufactured from single-crystal or polycrystalline silicon, the mirror features precision surface processing and specific optical properties, enabling it to control the direction, intensity, and accuracy of light reflection.

Key Features

  • High Precision and Stability: The silicon vibrating mirror provides excellent light reflection control, allowing precise adjustments of beam reflection angles and intensities.
  • Superior Thermal Stability: It can operate in high-temperature environments without being affected by thermal degradation over time.
  • High Reflectivity: Silicon materials offer excellent light reflectivity, improving the optical efficiency of the system.
  • Robust Mechanical Strength: Silicon’s high mechanical strength makes it suitable for high-speed and high-load working conditions.
  • Adaptability to Harsh Environments: With strong chemical stability, it maintains stable performance even in high humidity, strong corrosive, or other challenging environments.

Applications

  • Laser Processing: Widely used in laser marking, laser cutting, and laser welding, where precise control of laser beam scanning enhances processing accuracy and efficiency.
  • Optical Scanning Systems: Integral in laser scanners, microscopes, and similar equipment, improving scanning speed and precision.
  • LiDAR (Light Detection and Ranging): Used as a mirror component in LiDAR systems, helping with precise beam scanning and imaging.
  • Optical Communication and Sensors: In optical sensors and optoelectronic detectors, the silicon vibrating mirror helps improve the accuracy and efficiency of optical signal transmission.
  • Integrated Circuits and Photonic Crystal Technologies: Also employed in integrated circuits, photonic crystals, and micro/nano optics, facilitating more efficient information processing and storage.
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