Get Quote
Contact us now to receive a detailed quotation.
Specifications
| Block Temperature Range | 0 °C - 100 °C |
| Temperature Accuracy | ≤ ± 0.2 °C (35 °C - 100 °C) |
| Temperature Uniformity | ± 0.2 °C (95 °C) |
| Ramping Rate | Adjustable |
| Heating Rate | 3.5 °C/s |
| Cooling Rate | 3 °C/s |
| Display Resolution | 0.1 °C |
| Hot-lid Temperature Range | 30 °C - 110 °C |
| Max No. of Steps | 30 |
| Max No. of Program | 15000 |
| Max No. of Cycles | 100 |
| Increment / Decrement Time | Available (Long PCR) |
| Increment / Decrement Temperature | Available (Touchdown PCR) |
| Display | 7” Color Touch Screen |
| Data Output Port | USB 2.0 / RS232 / LAN |
| Power Consumption | 600 W |
| Power Supply | AC 175 V / 275 V; 50 / 60 Hz |
| Dimension | 362 x 256 x 255 mm |
| Net Weight | 7.3 Kg |
Pricing
| Product | Price | Unit | Action |
|---|---|---|---|
| Touch Screen Thermal Cycler (Basic) LMTC-A108 | $ 5450 | Pack of 1 |
Features
Touch Screen for smooth operation Real time observation on 7” LCD color display Peltier based heating and cooling control Interchangeable modules Automatic calculation of annealing temperature Stepless adjustable Hot-lid to avoid evaporation Auto shut off when temperature is ˂ 30 °C or after cycle Auto pause / start during technical errors Block / Tube temperature control mode
Optional Modules
| Model No. | Module | Image |
|---|---|---|
| M-01 | 48 Module: 48 wells x 0.2 mL + 48 wells x 0.5 mL | |
| M-02 | 96 Module: 96 wells x 0.2 mL | |
| M-03 | 96+77 Module: 96 wells x 0.2 mL + 77 wells x 0.5 mL | |
| M-05 | Multi-purpose Module: 96+77 Module and In situ Adaptor |
Similar Products
$ 3175 / Pack of 1
$ 6150 / Pack of 1
$ 2925 / Pack of 1
$ 7237.5 / Pack of 1
$ 4787.5 / Pack of 1
$ 7237.5 / Pack of 1
$ 5600 / Pack of 1
$ 6562.5 / Pack of 1
$ 6562.5 / Pack of 1
$ 5825 / Pack of 1
$ 3962.5 / Pack of 1
$ 6412.5 / Pack of 1
$ 5275 / Pack of 1
$ 5525 / Pack of 1
$ 8600 / Pack of 1
Frequently Asked Questions
1 What is a Touch Screen Thermal Cycler (Basic) LMTC-A108?
A Touch Screen Thermal Cycler (Basic) LMTC-A108 is a laboratory instrument designed for precise and efficient polymerase chain reaction (PCR) amplification.
2 How does a Touch Screen Thermal Cycler (Basic) LMTC-A108 work?
Touch Screen Thermal Cycler (Basic) LMTC-A108 works on the principle of thermal cycling to amplify DNA through repeated heating and cooling phases.
3 Can Touch Screen Thermal Cycler (Basic) LMTC-A108 be used in plant genetic research?
Touch Screen Thermal Cycler (Basic) LMTC-A108 is used to amplify plant-specific genes for genetic mapping and crop improvement studies.
4 Is the Touch Screen Thermal Cycler (Basic) LMTC-A108 suitable for microbial diagnostics?
Touch Screen Thermal Cycler (Basic) LMTC-A108 is used to detect and identify pathogenic microorganisms by amplifying their DNA markers.
5 Can Touch Screen Thermal Cycler (Basic) LMTC-A108 be used in vaccine development?
Touch Screen Thermal Cycler (Basic) LMTC-A108 is used to amplify genes of interest for the production of antigens in vaccine development.
6 Can Touch Screen Thermal Cycler (Basic) LMTC-A108 be used in personalized medicine?
Touch Screen Thermal Cycler (Basic) LMTC-A108 helps amplify specific genetic markers to assist in tailoring individualized treatment plans based on genetic predispositions.
7 Can Touch Screen Thermal Cycler (Basic) LMTC-A108 be used in aquaculture?
Touch Screen Thermal Cycler (Basic) LMTC-A108 aids in the analysis of genetic markers in fish and shellfish for selective breeding and disease resistance.
8 How is Touch Screen Thermal Cycler (Basic) LMTC-A108 used in cancer research?
Touch Screen Thermal Cycler (Basic) LMTC-A108 amplifies specific genetic mutations associated with cancer to study tumor biomarkers and genetic predisposition.
9 What is the use of the Touch Screen Thermal Cycler (Basic) LMTC-A108 in DNA sequencing?
Touch Screen Thermal Cycler (Basic) LMTC-A108 is used to amplify DNA fragments to generate sufficient quantities for sequencing analysis.
10 What kind of maintenance does Touch Screen Thermal Cycler (Basic) LMTC-A108 require?
Routine maintenance includes regular cleaning of the exterior and thermal block, ventilation checks, as well as occasional calibration and software updates.
11 What is a Touch Screen Thermal Cycler?
A Touch Screen Thermal Cycler is an apparatus designed with a user-friendly touch screen interface for easy programming and temperature control.
12 How does Touch Screen Thermal Cycler work?
It works by cycling through precise temperature changes needed for DNA denaturation, annealing, and extension, controlled via a user-friendly touch screen display.
13 How is Touch Screen Thermal Cycler used in genetic testing?
It is used in genetic testing to amplify specific DNA sequences, enabling the detection of genetic mutations and hereditary conditions.
14 How does Touch Screen Thermal Cycler support forensic DNA analysis?
It supports forensic DNA analysis by providing accurate and reproducible DNA amplification from trace biological evidence.
15 How does Touch Screen Thermal Cycler aid in agricultural biotechnology?
It aids in agricultural biotechnology by enabling the detection of genetically modified organisms (GMOs) and plant pathogen diagnostics.
16 How is Touch Screen Thermal Cycler used in microbial identification?
It helps identify microbes by amplifying species-specific genes, which can then be sequenced or analyzed for identification.
17 Can Touch Screen Thermal Cycler be used in food safety testing?
It is used in food safety testing to detect foodborne pathogens like Salmonella, Listeria, and E. coli through PCR-based methods.
18 How does Touch Screen Thermal Cycler benefit clinical diagnostics?
It benefits clinical diagnostics by providing fast and reliable amplification of nucleic acids for identifying infectious diseases and genetic disorders.
19 How is Touch Screen Thermal Cycler used in vaccine development?
It is used in vaccine development to clone and amplify genes encoding antigens for further study and vaccine formulation.
20 Is Touch Screen Thermal Cycler used in water quality testing?
It is used in water quality testing to detect microbial contaminants using PCR-based assays.