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Dual Block Thermal Cycler LMMB-E105

Dual Block Thermal Cycler LMMB-E105 offers wide gradient range of 30°C to 105°C. Designed with dual-block capacity of 48×0.2ml, it allows simultaneous optimization of multiple protocols. Incorporates capacitive touchscreen display and Linux interface that streamlines navigation and programming. Its advanced temperature control system ensures exceptional uniformity, reducing variability and enhancing reproducibility. Our Thermal Cycler features automatic power failure recovery and pause functionality for reliable performance.

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Specifications

Capacity Double 48×0.2ml
Gradient Temperature Range 30 to 105℃
Gradient Set Span 0.1 to 30℃ (across 2 blocks), 0.1 to 15℃ (across 1 block)
Gradient Temperature Accuracy ±0.3℃
Gradient Temperature Uniformity ±0.3℃
Block Temperature 0 to 105℃
Block Temperature Accuracy ±0.2℃
Block Temperature Uniformity ±0.25℃
Temperature Control Ways Block or Tube
Maximum Heating Up Rate 6℃ /s
Maximum Cooling Down Rate 5℃ /s
Adjustable Range of Heating Up/Cooling Down 0.1 to 6 ℃ /s
Heating Lid Temperature Range 30℃ to 110℃
Maximum Cycles 100
Maximum Steps 30
Number of Gradients 12
16℃ Temperature Holding Function Infinite duration
Timer 1s to 9:99:99 or 0 (infinite duration)
Timer Increasing / Decreasing -599s to 599s
Temperature Increasing / Decreasing -9.9℃ to 9.9℃
Temperature Display Accuracy 0.1℃
Display 8-inch Capacitive touchscreen LCD, 1024×764 pixels
Tubes Applied 0.2ml PCR tube, 8 × 0.2ml strip, 48 well plate
Operation System Linux
Communication Port USB2.0
Programs Stored 10000
Power Consumption 1000W
Power Supply 100 to 240V, 50/60Hz
Dimension (W × D × H) 400×260×228 mm
Net Weight 9 kg

Pricing

Product Price Unit Action
Dual Block Thermal Cycler LMMB-E105 $ 4862.5 Each of 1

Features

Three peltiers for each block

Touch down and long PCR

Small footprint and compact design

Integrated USB port

8-inch color LCD screen

Applications

Dual Block Thermal Cycler LMMB-E105 is ideal for the simultaneous amplification of different samples under varying conditions. It is employed in research, clinical, and molecular biology laboratories.

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Frequently Asked Questions

1 What is a Multi-Block Thermal Cycler?

A Multi-Block Thermal Cycler is an apparatus designed to run multiple PCR reactions at different temperatures simultaneously, using separate blocks for precise thermal control.

2 How does Multi-Block Thermal Cycler enhance throughput in microbial detection assays?

It enhances microbial detection throughput by running different pathogen-specific assays simultaneously in separate blocks, saving time and resources.

3 Can Multi-Block Thermal Cycler be used in forensic DNA analysis?

It is used in forensic DNA analysis to optimize and validate various STR or mitochondrial DNA assays under different thermal conditions simultaneously.

4 How does Multi-Block Thermal Cycler benefit synthetic biology workflows?

It benefits synthetic biology workflows by allowing multiple gene assembly reactions, mutagenesis cycles, and amplification protocols to run simultaneously with customized parameters.

5 How does Multi-Block Thermal Cycler aid in vaccine development research?

It aids in vaccine development by supporting optimization of PCR-based gene amplification, cloning constructs, and multiplex detection assays in one system.

6 How can Multi-Block Thermal Cycler be used in microbiome research?

It is used in microbiome research to optimize primers and PCR conditions for multiple 16S rRNA regions or metagenomic markers in parallel.

7 How is Multi-Block Thermal Cycler beneficial in personalized medicine research?

It is beneficial in personalized medicine by allowing optimization of patient-specific PCR assays, including pharmacogenomic and companion diagnostic tests.

8 How does Multi-Block Thermal Cycler assist in biodegradation and environmental DNA studies?

It assists in biodegradation and eDNA studies by allowing testing of complex environmental samples with multiple primer sets targeting diverse microbial genes.

9 Is Multi-Block Thermal Cycler useful in rare disease gene detection protocols?

It is useful in rare disease detection by optimizing PCR conditions for hard-to-amplify or low-abundance target sequences often present in such studies.

10 Can Multi-Block Thermal Cycler aid in studying viral genome diversity?

It aid in studying viral genome diversity by enabling amplification of multiple genomic regions across varied primer and temperature sets in one run.