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Advanced Gradient Thermal Cycler LMAG-C402

Advanced Gradient Thermal Cycler LMAG-C402 operates with 64×0.2 ml and 32×0.2ml aluminum plates using anodizing technology. It features an automatic tightening and closing hot lid. Integrated android system and 11 pre-installed standard programs simplify the operation. Equipped with 10.1-inch touchscreen, it displays maximum heating rate of 5°C/s. Our Advanced Gradient Thermal Cycler enables PCR amplification and DNA analysis in molecular biology, genetic research, and diagnostics.

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Specifications

Capacity 64×0.2 ml (A Block) + 32×0.2ml (B Block)
Tube 0.2 ml tube, 8 strips
Temperature Range 0 to 105 °C
Maximum. Ramp Rate 5 °C/s
Uniformity ≤ ± 0.2 °C
Accuracy ≤ ± 0.1 °C
Display Resolution 0.1 °C
Temperature Control Block/ Tube
Ramping Rate Adjustable 0.1 to 5 °C
Gradient Temperature. Range 30 to 105 °C
Gradient Type Two-dimensional gradient,Normal gradient
Gradient Spread A Block-Horizontal:1 to 30 °CVertical:1 to 24 °CB block -1 to 30 °C
Hot Lid Temperature 30 to 115 °C
Number Of Programs 20000 +(USB FLASH)
Maximum. No. Of Step 40
Maximum. No. Of Cycle 100
Increment/Decrement Time 1 Sec to 600 Sec
Increment/Decrement Temperature 0.1 to 10.0 °C
Pause Function Yes
Auto Data Protection Yes
Holding 4 °C
Touchdown Function Yes
Long PCR Function Yes
Computer Software Yes
Mobile Phone APP Yes
LCD 10.1-inch,1280×800 pels
Interface USB2.0 , WIFI
Dimensions(L×W×H) 385 × 270 × 255 mm
Weight 11 kg
Power Consumption 600 W
Power Supply 100 to 240 V AC, 50/60 Hz

Pricing

Product Price Unit Action
Advanced Gradient Thermal Cycler LMAG-C402 $ 6150 Each of 1

Features

Air vent system

Wi-Fi support

Mobile operation

Power-off recovery

Experiment updates via email

USB and LAN software updates

Applications

Advanced Gradient Thermal Cycler LMAG-C402 facilitates PCR amplification, DNA analysis, and genetic studies with efficiency. It is widely used in molecular biology labs, clinical diagnostics, pharmaceutical research, and genetic testing.

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Catalog
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Frequently Asked Questions

1 What is an Advanced Gradient Thermal Cycler LMAG-C402?

An Advanced Gradient Thermal Cycler LMAG-C402 is a fast, precise PCR machine with gradient temperature control for optimized DNA amplification.

2 How does an Advanced Gradient Thermal Cycler LMAG-C402 work?

An Advanced Gradient Thermal Cycler LMAG-C402 operates on the principle of thermocycling using Peltier elements, which precisely control heating and cooling cycles to enable DNA amplification through Polymerase Chain Reaction (PCR).

3 Can Advanced Gradient Thermal Cycler LMAG-C402 be used for genotyping?

Advanced Gradient Thermal Cycler LMAG-C402 provides precise temperature control, ideal for genotyping applications.

4 Is Advanced Gradient Thermal Cycler LMAG-C402 suitable for cloning DNA?

Advanced Gradient Thermal Cycler LMAG-C402 supports accurate DNA amplification necessary for cloning.

5 Is Advanced Gradient Thermal Cycler LMAG-C402 useful for environmental biotechnology studies?

Advanced Gradient Thermal Cycler LMAG-C402 efficiently amplifies DNA for environmental research purposes.

6 Can Advanced Gradient Thermal Cycler LMAG-C402 process buccal swabs for forensic applications?

Advanced Gradient Thermal Cycler LMAG-C402 supports DNA amplification from cheek swabs for genotyping and forensic applications.

7 Can Advanced Gradient Thermal Cycler LMAG-C402 be used for urine samples?

Advanced Gradient Thermal Cycler LMAG-C402 amplifies DNA or RNA from urine to detect pathogens or biomarkers.

8 Can Advanced Gradient Thermal Cycler LMAG-C402 be used with blood samples for genetic testing?

Advanced Gradient Thermal Cycler LMAG-C402 amplifies DNA from blood samples for genetic or disease analysis.

9 Is Advanced Gradient Thermal Cycler LMAG-C402 suitable for biodiversity analysis in soil samples?

Advanced Gradient Thermal Cycler LMAG-C402 amplifies environmental DNA from soil to assess microbial or species diversity.

10 What kind of maintenance does Advanced Gradient Thermal Cycler LMAG-C402 require?

Routine maintenance includes regular cleaning of the block, lid inspection, and calibration checks to ensure optimal performance.

11 Can Advanced Thermal Cycler be used for DNA damage and repair studies?

It is used in DNA damage and repair studies to amplify damaged or repaired sequences and analyze repair pathway activity.

12 What is an Advanced Thermal Cycler?

An Advanced Thermal Cycler is a laboratory apparatus designed to amplify DNA segments by precisely controlling the temperature cycles required for polymerase chain reaction (PCR).

13 How does Advanced Thermal Cycler work?

It works by rapidly heating and cooling samples through programmed temperature steps, allowing DNA denaturation, annealing, and extension to occur during PCR.

14 How does Advanced Thermal Cycler support forensic DNA analysis?

It supports forensic DNA analysis by amplifying trace amounts of DNA from crime scene evidence for identification purposes.

15 How is Advanced Thermal Cycler applied in clinical diagnostics?

It is applied in clinical diagnostics to detect genetic disorders, infectious diseases, and cancer biomarkers through PCR-based tests.

16 Can Advanced Thermal Cycler be used in food safety testing?

It is used in food safety testing to detect bacterial contamination, allergens, and genetically modified organisms (GMOs).

17 Can Advanced Thermal Cycler be used in pharmacogenomics research in the lab?

It is used in pharmacogenomics to analyze genetic variations that affect drug metabolism and response, supporting personalized medicine.

18 How does Advanced Thermal Cycler support high-throughput screening in the lab?

It supports high-throughput screening by enabling simultaneous PCR amplification of multiple targets across 96- or 384-well plates.

19 Can Advanced Thermal Cycler be used for detecting antibiotic resistance genes in the lab?

It is used to amplify and detect antibiotic resistance genes in bacterial isolates through targeted PCR assays.

20 What role does Advanced Thermal Cycler play in metagenomic sample preparation?

It is used in metagenomics to amplify target microbial DNA from environmental or clinical samples prior to sequencing or analysis.