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Fluorescence Spectrophotometer LFS-A10

Fluorescence Spectrophotometer LFS-A10 consist of a high quality 150 W Xenon light source and photoelectric multiplier tube detectors for providing sufficient light intensity signal to detect sensitivity which ranges between 200 nm to 900 nm. Features fluorescence detection limit of ≤ 5×10-11 g/ml and Water Raman peak of S/N ≥ 200. It consists of the following characteristics, namely, high detection sensitivity, fast scanning speed, high dynamic range, fast 3D scanning, etc. The main principles includes measurement of absorption and fluorescence. Absorbance measurements can be taken via one or more wavelengths. The fluorescence unit increases the measuring range by 1000 for detecting DNA.

Fluorescence Spectrophotometer LFS-A10

Light source 150 W Xenon lamp
Excitation wavelength 200 nm to 900 nm
Emission wavelength 200 nm to 900 nm
Excitation slit 2 nm, 5 nm, 10 nm, 20 nm
Emission slit 2 nm, 5 nm, 10 nm, 20 nm
Wavelength accuracy ±0.4 nm
Wavelength repeatability ≤ 0.2 nm
Signal-to-Noise Ratio Raman peak of water (P-P): S/N ≥ 200 (10 nm Slit)
Detection limit ≤5×10-11 g/ml (Quinine Sulphate Solution)
Linearity γ ≥ 0.995
Peak repeatability ≤ 1.5%
Stability (10 min) Zero Drift ±0.3
Stability (10 min) Value Limit ±1.5%
Wavelength scan speed Multi-speed level, Maximum at 48000 nm/min
Photometric value 0.00 to 10000.00
Data interface USB 2.0
Maximum power consumption 200 W
Power Source AC 220 V/50 Hz; 110 V/60 Hz
Dimension 380×445×310 mm
Net weight 12 kg
Gross weight 14 kg

  • High sensitivity is fetched from high efficiency optical design and weak signal detection technology
    Excitation and emission wavelength range from 200 nm to 900 nm to meet most of the fluorescence analysis
    Fluorescence detection limit of ≤ 5×10-11 g/ml and Water Raman peak of S/N ≥ 200
    Classic fluorescence spectra and high quality 3D fluorescence spectra can be achieved via high scanning speed at 48000 nm/min
    Wide Spectral measurement range is achieved using a double monochromator
    Excitation light monitoring system consist of a light dual beam ratio to ensure the fluorescence signal is high and stable
    Unstable samples is analysed via built-in optical gate
    It is a highly advance structure with fine finishing

Fluorescence Spectrophotometer finds application in material research, pharmaceutical analysis, biochemical and clinical testing, water quality analysis and control, food safety testing.

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