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Labmate Quantitative PCR LMQP-A100

Labmate Quantitative PCR LMQP-A100

Labmate Quantitative PCR LMQP-A100 is a compact and high-efficiency real-time quantitative PCR system designed for fast and reliable nucleic acid amplification. It incorporates rapid thermal cycling technology to ensure uniform temperature distribution and accelerated reaction times across all wells. The system supports up to 24 samples per run with reaction volumes ranging from 10 to 100 μL, making it suitable for both routine and time-sensitive analyses. Smart thermal regulation maintains stable temperature control throughout the amplification process, while sensitive optical detection channels enable simultaneous multi-target analysis. This system delivers consistent performance for molecular research, diagnostics, and quantitative analysis workflows.

  • Product Info

    Specifications

    Parameter Details
    Detection Capacity ≤ 24T
    PCR Volume Range 10 to 100 μL
    Storage Temperature Range 15°C to 30°C
    Temperature Control Range 35°C to 99°C
    Temperature Control Accuracy ±0.2°C
    Temperature Uniformity ±0.25°C
    Maximum Temperature Change Rate Heating ≥ 4°C/s, Cooling ≥ 3°C/s
    Excitation Light Source Independent high-power LED
    Light Source Lifespan ≥ 100,000 hours
    Optical Detection Photodiode
    Excitation Wavelength Range 450 to 640 nm
    Detection Wavelength Range 500 to 700 nm
    Fluorescence Linearity ≥ 0.99
    Linear Quantification Range 10¹ to 10⁸ copies
    Sample Linearity ≥ 0.98
    Detection Sensitivity ≥ 1 copy
    Sample Repeatability CV ≤ 5%
    Reaction Time (40 cycles) 35 min (rapid), 50 min (routine)
    Power Supply AC 100 to 240 V, 50/60 Hz
    Dimensions (W×D×H) 235 × 212 × 255 mm
    Weight ≤ 5 kg

    Features

    • Flexible control modes

    • Electromagnetic induction heating system

    • Multiple fluorescence detection channels

    • High-power LED excitation source

    • Internal data storage capability

    Applications

    Labmate Quantitative PCR LMQP-A100 is used for pathogen and virus detection, genetic marker identification, and disease screening. It supports rapid quantification of viral and bacterial loads and is widely applied in molecular biology research, clinical diagnostics, pharmaceutical testing, and biotechnology laboratories.

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