Fluorescent quantitative PCR detection system

QuantGene 9600 – Real-Time RT-PCR Detection System

  • Top imaging technology was adopted to collect 96-well fluorescent signals without detection time difference. Fast detection, single channel detection need only 1 second.
  • A new array of flat-field light source can greatly improve the excitation optical effect and enhance the fluorescence signal.
  • The excitation and detection channels adopt independent filter wheels, which can cope with secondary excitation detection experiments without expanding the channel, such as the application of double hybrid probe
  • The cluster conduction design of high-end optical fibre is adopted to improve the fluorescence signal strength, reduce the optical conduction loss, and eliminate the edge optical path difference without calibration.

QuantGene 9600 – Real-Time RT-PCR Detection System

Product information


    Description

    QuantGene 9600 is based on the excellent quality of the LineGene family, using the very mature thermoelectric refrigeration technology, a new light source and optical circuit design.

    The unique constant current power supply and 6-zone independent temperature control method ensure that the product is fast, accurate and stable in fluorescence quantitative analysis.

    The product adopts modular design, with a variety of configuration options, at the same time, the addition of temperature gradient, sample 4°C cryopreservation, automatic dehumidification and other functions , fully meet the scientific research and clinical medical needs.

    Parameters

    Product QuantGene 9600 Fluorescent Quantitative Detection System
    Product model FQD-96C
    Sample size 96x0.2 ml [suitable for single tube, 8-row tube and 96-well plate (no skirt plate, half skirt plate)]
    Reaction systém 10~100 µl (96x0.2 ml)
    Dynamic range 1~10 10
    Features Qualitative/absolute quantitative, relative quantitative, SNP analysis, fusion curve method genotyping, standard curve, fusion curve, allele identification, 6 independent temperature zones, HRM, automatic gain, user defined parameters, etc.
    Detection of the channel F1
    Apply probe/dye (part) FAM, SYBR Green 1
    Detection of the channel F2
    Apply probe/dye (part) HEX/VIC/TET/JOE/CY3/TAMRA
    Detection of the channel F3
    Apply probe/dye (part) ROX, TEXAS-RED
    Detection of the channel F4
    Apply probe/dye (part) Cy5, Quasar-670
    Detection of the channel F5
    Apply probe/dye (part) Cy5, Quasar-705
    Detection of the channel F6
    Apply probe/dye (part) Custom

     

    Excitation wavelength 300 ~ 800 nm
    Fluorescence detection wavelength 500 ~ 800 nm
    Resolution Differences as low as 1.5 times in copy number can be distinguished in single weight reactions
    Module operating temperature range 4~ 105 °C (minimum setting scale: 0,1 °C)
    Maximum ramping rate 6.5 °C/s
    Temperature control presicion ≤± 0.1 °C
    Temperature uniformity ≤± 0.2 °C
    Hot cover temperature range

    30 ~ 110 °C (adjustabel, default 105 °C)

     

    Temperature control mode Block Mode and Tube Mode
    Gradient control 6 zone temperature control
    Interface way USB, bluetooth
    Communication port 100~240 VAC, 50/60 Hz, 1000 VA
    Overall dimensions 490x290x391 mm
    Weight 28 kg
    Security protection and alarm Overheat protection and alarm for hot cover, overheat protection for switching power supply
    Safety certification CE/EMC/RoHS 2.0/IVD

     

    Specification

    • Large touch screen software operation, new humanised operation interface, greatly improve customer’s experience.
    • Equipped with mobile phone/tablet APP to realise remote operation and real-time monitoring by users.
    • The new Ul design of international standards, to adapt to the mainstream market users at home and abroad operating habits.
    • Flexible program setting, comprehensive analysis and reporting functions, all parameters can be stored.
    • Intelligent software system, no need for debugging gain, wide range of linear analysis, good reproducibility of experimental results.

    Downloads

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