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Light Guide High Purity Quartz Glass Rod Diameter 22mm Total Length 121.5mm
| Material | High Purity Quartz | Diameter | Φ22mm |
|---|---|---|---|
| Total Length | 121.5mm | Transmittance Range | UV To Visible Light |
| Customization Options | Size And End Face Available | Impurity Content | Ultra-Low |
| Thermal Stability | Excellent | ||
| Highlight | Light Guide quartz glass rod,Diameter 22mm quartz glass rod,High Purity fused quartz rod |
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The Light Guide quartz glass rod with High Purity, Diameter 22mm and total length 121.5mm is a premium optical transmission component integrally drawn from high-purity quartz raw materials through a precisely controlled high-temperature manufacturing process. This advanced fabrication method ensures exceptional material homogeneity, ultra-low impurity content, and outstanding optical performance across a broad spectral range from ultraviolet to visible light wavelengths. With a diameter of 22mm and a total length of 121.5mm, this light guide rod delivers reliable and consistent light transmission without stray light interference, making it an ideal choice for precision optical inspection systems, photochemical reaction setups, and various scientific instrumentation applications. The rod features excellent thermal stability that enables stable operation under fluctuating temperature conditions, while its customizable dimensions and end face configurations allow it to be tailored precisely to meet diverse customer requirements across laboratory research, semiconductor manufacturing, environmental monitoring, and medical device industries. Compared to conventional optical glass rods, the high-purity quartz material offers significantly superior UV transmittance and chemical durability, ensuring long-term performance reliability in demanding optical environments.
Key Features- Light Guide Performance: The high-purity quartz material provides outstanding optical transmission efficiency across ultraviolet and visible light spectra, enabling precise light delivery without stray light interference. This optical clarity makes the rod ideal for light path transmission in photochemical reactions and precision optical measurement applications where signal integrity is critical.
- Precision Dimensions Φ22×121.5mm: Manufactured to exact specifications with a diameter of 22mm and a total length of 121.5mm, this light guide rod maintains tight dimensional tolerances essential for integration into precision optical assemblies, ensuring consistent alignment and reproducible optical performance across production batches.
- Ultra-Low Impurity Content: Drawn from carefully selected high-purity quartz raw materials, the rod exhibits minimal metallic and hydroxyl impurities that could otherwise absorb or scatter light, resulting in superior optical clarity and reduced signal attenuation compared to standard glass rod alternatives.
- Broad Spectral Transmittance: Delivers excellent transmittance from ultraviolet through the full visible light spectrum, making it versatile for applications ranging from UV testing equipment to visible light optical systems without requiring separate components for different wavelength ranges.
- Great Thermal Stability: The high-purity quartz material withstands significant temperature fluctuations without compromising optical performance or structural integrity, ensuring reliable operation in laboratory photocatalytic reactors and other instruments where thermal cycling is common.
- Customizable Configurations: Both the rod dimensions and end face finishes can be customized according to specific application requirements, providing flexibility for OEM instrument manufacturers and research laboratories developing specialized optical systems with unique form factor constraints.
- Wide Application Compatibility: Suitable for use in UV testing equipment, laboratory photocatalytic reactors, semiconductor optical inspection instruments, water quality and environmental monitoring optical components, and medical optical devices, offering a single high-performance solution across multiple industry sectors.
| Parameter | Specification |
|---|---|
| Material | High Purity Quartz |
| Diameter | Φ22mm |
| Total Length | 121.5mm |
| Transmittance Range | Ultraviolet to Visible Light |
| Impurity Content | Ultra-Low |
| Thermal Stability | Excellent, Suitable for Temperature Cycling |
| Manufacturing Process | Integral High-Temperature Drawing |
| Stray Light Interference | Negligible |
| End Face | Customizable (Standard/Polished/Coated) |
| Customization | Dimensions and End Face Available |
The High Purity Quartz Light Guide Rod finds extensive use in optical transmission systems where high-fidelity light delivery is essential. In UV testing equipment, the rod serves as a reliable light conduit for precise wavelength calibration and spectral analysis tasks. Laboratory photocatalytic reactors benefit from its outstanding UV transmittance, enabling efficient light delivery to reaction media without introducing optical artifacts or contamination. Semiconductor optical inspection instruments utilize these rods for defect detection and wafer characterization, where stray light interference must be minimized to ensure accurate measurement results. Water quality and environmental monitoring systems employ quartz light guide rods in optical sensor assemblies for real-time contaminant detection and analysis. In the medical device sector, these rods are integrated into diagnostic optical instruments, endoscopy light delivery systems, and therapeutic photomedicine devices where consistent optical performance and biocompatibility are paramount. Research laboratories value the customizable nature of these rods for building prototype optical systems, allowing scientists to test and validate new optical configurations before committing to full-scale production designs. The combination of broad spectral transmittance, mechanical durability, and thermal resilience makes the quartz light guide rod an indispensable component across academic research, industrial quality control, and commercial instrumentation platforms.

