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Gradient Thermal Cycler LMGT-A100

Gradient Thermal Cycler is designed to accommodate 32 microtubes or 0.2 ml tube strips, providing versatile sample handling options. Offers a maximum heating rate of 5°C per second and a cooling rate of 4°C per second. Intuitive touchscreen allows easy program setup, real-time monitoring. Ensures optimal annealing temperatures for multiple reactions in a single run. Our Gradient Thermal Cycler is ideal for diagnostic laboratories focused pathogen detection, and genetic disease screening.

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Specifications

Capacity 32 × 0.2 ml (microtubes), 4 × 8 × 0.2 ml (tube strips)
Gradient Temperature Range 30℃ to105℃
Maximum. Heating Rate 5℃/s
Heating Lid Temperature Range 30℃ to110℃
Maximum. Cooling Rate 4℃/s
Block Temperature Range 4℃ to 105℃
Gradient Temperature Accuracy ±0.3℃
Temperature Display Accuracy 0.1℃
Block Temperature Uniformity ≤ ±0.25℃
Gradient Temperature Uniformity ±0.3℃
Temperature Control Ways Block or Tube
Temperature Increasing/Decreasing 9.9 to 9.9℃ for Touchdown PCR
Block Temperature Accuracy ±0.2℃
Max. Cycles 99
Max. Steps 30
Timer (Long PCR) 599 to 599 s increasing/decreasing
Timer (General) 1s to 59min to 59sec/0 Infinite duration
Gradient Set Span Max. 30℃
Display 1s to 59min to 59sec/0 Infinite duration
Stored Programs Touch screen LCD
Number of Peltier Elements 200
Pause Function 2
Power Supply Yes
Power Failure Recovery AC110V to 220V, 50 to 60Hz
Power Consumption Yes
Size 225W
Net Weight 243×172×145 mm

Pricing

Product Price Unit Action
Gradient Thermal Cycler LMGT-A100 $ 3112.5 Pack of 1

Features

Touchscreen Interface
Multiple Block Format
Program Storage
Rapid Thermal Cycling
Durable

Applications

Gradient Thermal Cycler LMGT-A100 is ideal for gene amplification, cloning, and sequencing.

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Frequently Asked Questions

1 What is a Gradient Thermal Cycler LMGT-A100?

A Gradient Thermal Cycler LMGT-A100 is a high-precision PCR machine that uses gradient temperature control to enable efficient DNA amplification in research and diagnostic applications.

2 How does a Gradient Thermal Cycler LMGT-A100 work?

A Gradient Thermal Cycler LMGT-A100 operates on the principle of Peltier thermoelectric heating and cooling, allowing precise thermal cycling for DNA amplification through PCR.

3 Can Gradient Thermal Cycler LMGT-A100 assist in CRISPR-based gene editing validation?

Gradient Thermal Cycler LMGT-A100 is used to amplify edited genomic regions for screening or sequencing.

4 Does Gradient Thermal Cycler LMGT-A100 support high-fidelity PCR needed for synthetic gene synthesis?

Gradient Thermal Cycler LMGT-A100 maintains consistent cycling conditions critical for high-fidelity DNA polymerases.

5 Is Gradient Thermal Cycler LMGT-A100 compatible with clinical viral load assays for HIV or hepatitis viruses?

Gradient Thermal Cycler LMGT-A100 is used in clinical labs for pre-qPCR viral load testing of common pathogens.

6 Can Gradient Thermal Cycler LMGT-A100 support quality control testing in pharmaceutical production?

Gradient Thermal Cycler LMGT-A100 amplifies DNA/RNA to monitor microbial contamination or verify genetic identity in biopharmaceuticals.

7 Is Gradient Thermal Cycler LMGT-A100 applicable for plant pathogen detection in crops?

Gradient Thermal Cycler LMGT-A100 amplifies DNA from viruses, fungi, or bacteria infecting agricultural samples.

8 Is Gradient Thermal Cycler LMGT-A100 used for validating genetically modified strains in fermentation or production lines?

Gradient Thermal Cycler LMGT-A100 helps confirm genetic identity and stability of engineered strains used in industrial bioprocesses.

9 Is Gradient Thermal Cycler LMGT-A100 suitable for allergen detection in processed food products?

Gradient Thermal Cycler LMGT-A100 is used to detect trace allergen DNA such as peanut, soy, or gluten markers.

10 What kind of maintenance does Gradient Thermal Cycler LMGT-A100 require?

Routine maintenance includes regular cleaning, software checks, proper ventilation, and periodic calibration.

11 What is a Gradient Thermal Cycler?

A Gradient Thermal Cycler is a PCR machine designed for simultaneous testing of different annealing temperatures across a temperature gradient.

12 How does Gradient Thermal Cycler work?

It works by creating a temperature gradient across the block, enabling multiple PCR reactions to be run at slightly different temperatures in the same cycle.

13 Can Gradient Thermal Cycler be used for multiplex PCR?

It is ideal for multiplex PCR, as it helps determine a temperature that works efficiently for multiple primer sets in the same reaction.

14 How does Gradient Thermal Cycler improve PCR efficiency in research labs?

It improves PCR efficiency in research labs by reducing trial-and-error cycles and enabling faster optimization of reaction conditions.

15 Is Gradient Thermal Cycler useful in genotyping applications?

It is widely used in genotyping to optimize conditions for amplifying specific alleles or polymorphisms accurately.

16 How does Gradient Thermal Cycler support environmental DNA (eDNA) analysis?

It supports eDNA analysis by enabling rapid optimization of PCR conditions for complex, low-abundance DNA targets in environmental samples.

17 Is Gradient Thermal Cycler beneficial for forensic DNA analysis?

It is highly beneficial for forensic DNA analysis, where precise optimization is required to amplify minute or degraded DNA samples reliably.

18 How does Gradient Thermal Cycler support microbiome or metagenomics studies?

It supports microbiome and metagenomics studies by enabling precise amplification of complex microbial DNA mixtures with optimized conditions.

19 Can Gradient Thermal Cycler be used for pathogen detection in food safety testing?

It is commonly used in food safety testing to optimize PCR conditions for detecting bacterial, viral, or fungal pathogens in food samples.

20 How does Gradient Thermal Cycler support molecular diagnostics in clinical labs?

It supports molecular diagnostics by allowing rapid and accurate PCR optimization for disease-specific genetic markers.