Многоволновые кластеры# Светодиод полного спектра# Мощный светодиод 200–1900 нм

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High-power LEDs are widely used in a variety of important analytical fields, ranging from elemental detection to protein analysis, и т. д..

 

Our latest chromatography and spectroscopy technologies now cover almost all target wavelengths from 210 нм до 800 нм, driving breakthroughs in scientific research and industrial analysis.
Whether you are performing trace element detection or complex protein analysis, precise wavelength selection is crucial for reliable data. Our newly upgraded analytical platform eliminates traditional limitations, delivering high-sensitivity results in a single system.
💡 Key Application Areas
    • Element Detection: Accurately captures UV absorption signals in the lower wavelength spectrum.
    • Protein Analysis: Efficiently identifies characteristic peaks of aromatic amino acids at 280 нм.
    • Nucleic Acid Quantification: Perfectly optimized for DNA/RNA purity checks at 260 нм.
    • Pharma & Biotech: Provides comprehensive sample scanning across both UV and Visible (UV-Vis) ranges.

🚀 Why Choose Full-Spectrum Analysis?
  • Ultra-Wide Range: Supports nearly every target wavelength between 210 нм и 800 nm in one system.
  • Superior Optical Precision: High resolution and ultra-low stray light ensure excellent reproducibility.
  • Seamless Multi-Scenario Switching: Effortlessly transitions from standard HPLC detection to cutting-edge spectroscopic scanning.
Within this range, different wavelengths correspond to specific critical analytical tasks:
    • 210 нм – 230 нм: Peptide bond absorption (low-wavelength protein detection), organic acids, and lipids.
    • 254 нм / 260 нм: Nucleic acid (DNA/RNA) purity and quantification, and aromatic compounds (the most commonly used wavelengths in chromatography).
    • 280 нм: Protein quantification (the core wavelength for chromatography and spectroscopic analysis).
    • 340 нм: NADH/NADPH enzymatic reaction assays.
    • 400 нм – 800 нм: Various colored solutions, transition metal complexes, and colorimetric biochemical analysis.


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