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385-LC Evaporative Light Scattering Detector (Cooled) (CAT#: AM-LE-0521-Y)

Highlights

    Real-time gas programming eliminates the solvent enhancement effect during gradient elution
    Use Peltier cooling evaporator for sub-environmental operation, the temperature can be as low as 10°C, to prevent the degradation of other heat-weak compounds that cannot be detected by ELSD
    Fully integrated with Varian 920-LC analytical HPLC system

Cat Number: AM-LE-0521-Y

Application: The 385-LC Evaporative Light Scattering Detector is ideal for detecting analytes without UV chromophores. It is the only ELSD that can provide sub-environmental operation and can be used to detect heat-sensitive analytes.

Model: PL0890-1240

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Specification

Light source: LED 480 nm (Class 1 LED Product)
Eluent flow rate: 0.2 - 5 mL/min
Detector: Photomultiplier tube digital signal processing
Analogue output: 0 - 1V FSD
Digital output: 24 bit digital data, 10 or 40 Hz
Temperature range:
Evaporator OFF, 10 - 80 °C (1 °C increments)
Nebulizer OFF, 25 - 90 °C (1 °C increments)
Size: 200 x 450 x 415 mm (w x d x h)
Weight: 13 kg

Features

    Real-time gas programming eliminates the solvent enhancement effect during gradient elution
    Use Peltier cooling evaporator for sub-environmental operation, the temperature can be as low as 10°C, to prevent the degradation of other heat-weak compounds that cannot be detected by ELSD
    Fully integrated with Varian 920-LC analytical HPLC system
    Complementary to LC/MS
    Real-time control during the injection process through the programmable Dimension software to maintain maximum sensitivity
    High sensitivity, excellent response to all compounds (down to nanometer level)
    Low dispersion and high-speed data output rate are the perfect match for fast liquid chromatography applications
    Super reproducibility below 2% provides reliable and accurate results
    Full DMSO transparency ensures that early elution of the compound reaction will not be hidden
    The rapid heating and cooling of the evaporation tube minimizes the equilibrium time and improves the sample processing capacity

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