PCR Thermal Cycler BZPCR-502

PCR Thermal Cycler BZPCR-502

PCR Thermal Cycler BZPCR-502 offer temperature range spans from 4°C to 99°C, providing versatile conditions. It includes heated lid to avoid condensation and enhance reaction consistency. Equipped with built-in error detection to alerts users about issues, improving reliability of results. The fast heating rate improves experiment efficiency by reducing cycle time, speeding results. Cooling and heating are optimized for rapid cycles, improving lab efficiency and throughput.

Gradient Temperature Range 30 to 105℃
Max. Steps 30
Gradient Set Span Max. 42℃
Temperature Control Ways Block/Tube
Gradient Temperature ≤ ±0.3℃
Block Temperature 0 to 105℃
Gradient Temperature Accuracy ≤ ±0.3℃
Numbers of Gradient 12
Block Temperature Accuracy ≤ ±0.2℃
Block Temperature Uniformity ≤ ±0.25℃
Heating Up Rate (Max.) 6℃ /s
Cooling Down Rate (Max.) 5℃ /s
Adjustable Range of Heating Up/Cooling Down 0.1 to 6℃ /s
Temperature Display Accuracy 0.1℃
Max. Cycles 99
Temperature Holding Function Infinite duration
Capacity 96×0.2ml
Heating Lid Temperature Range 30℃ to 110℃
Tubes Applied 0.2ml micro tubes, 8×0.2ml tubes strips, 96×0.2ml PCR plate (without/semi-skirted)
Operation System Linux
Touch Screen Type Capacitive
Touchdown PCR Yes
Long PCR Yes
Programs Stored 10000+
Timer 1s to 59min59sec / (0 means infinite)
Timer Increasing / Decreasing -599s to 599s
Temperature Increasing / Decreasing -9.9℃ to 9.9℃
LCD Display Touch screen display
Power Failure Recovery Yes
Pause Function Yes
Power Supply 700W
Power Consumption 100 to 240V, 50/60Hz
Communication Port USB2.0
Capacity (W×D×H) 400mm×260mm×228mm
Net Weight 8.5kg
  • Three high-precision Peltier’s per block
  • Dual independently controlled blocks
  • 8-inch color touchscreen
  • Gradient range of 30°C
  • Excellent temperature uniformity

Our PCR Thermal Cycler BZPCR-502 enables correct temperature control, ideal for PCR, sequencing, and genotyping applications in molecular biology and diagnostics, providing accurate and efficient DNA amplification across various samples.

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