Real-Time PCR (MA-688)

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MA-688 Real-Time Quantitative Thermal Cycler adopts maintenance free LED as the excitation light source, which is operated by an external computer, with high efficiency and convenience, and can be widely used in basic medical research, photogenic detection, molecular cloning, genetic screening, gene expression, gene typing and transgenic detection, food safety testing and epidemic monitoring and other fields. MA-688 is an economical real time fluorescence quantitative PCR instrument with full open design tailored for PCR beginners and small laboratories based on MA-6000 series technical platform. Compact body.48x02ml international standard sample arrangement, standard 4 colour fluorescence detection channel, MA-688 reduce the time cost and economic cost for your experiments, help you to open the era of fluorescence quantitative PCR experiment in advance.

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Product Parameters

BASIC PERFORMANCE
Overall dimeusions 466 x 310x 273 mm
Weight 18Kgs
Power Supply 110V ~ 240V 50-60Hz
Communication Interface USA
OPERATING ENVIRONMENTAL PARAMETERS
Euvironmental temperature 15 ~ 30 ℃
Relalive' humidity ≤ 85%
Transportation and Storage Temperature -20 ~ 55 ℃
Transportation and Storage relative humidity ≤ 85%
PCR SYSTEM PERFORMANCE
Tube capacity 48x02ml
Sample Volume 20 ~ 120 ul
Apply Consumable 0.2ml PCR tube. 8x02mll PCR tube
Temperature Control Range 4 ~100 ℃
Temperature Accuracy ≤ 0.1 ℃
Temperature Uniformity ≤ ± 0.15
Heating Rate 4.5 ℃/s
Cooling Rate 3.0 ℃/s
Heating/Cooling Semiconductor Mode
Hot Cover Electric Heat Cover
FLUORESCENCE DETECTION SYSTEM PERFORMANCE
Light Source High Brightness LED
Detector PD
Excitation and Detection of Propagation Media High Temperature Resistant Professional Fiber
Linear Range of Samples 10° - 10° copies
Sample Linearity R ≥ 0.99
Sample Testing Repeatability CV< 1%
Excitation Wavelength First Channel: 470nm ± 10nm
Second Channel: 525nm ± 10nm
Third Channel: 570nm ± 10nm
Forth Channel: 620nm ± 10nm
Detection Wavelength First Channel: 520nm ± 10nm
Second Channel: 570nm ± 10nm
Third Channel: 620nm ± 10nm
Forth Channel: 670nm ± 10nm

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