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Differential Scanning Calorimeter LMDSC-B100 works between room temperature to 600 ℃. Its high-frequency processor and optimized PID algorithm ensure faster response and stable condition. Its high-sensitivity dual sensors enable simultaneous monitoring of furnace and sample temperature. It features independent atmosphere control with automatic air path switching for enhanced efficiency. Our Differential Scanning Calorimeter is ideal for process optimization, quality control and failure analysis of materials.
Specifications
| DSC Range | 0 to ±2000 mW |
| Temperature Range | Room temperature to 600 ℃ |
| Sampling Rate | 1 to 10 Hz (Programmable) |
| Toggle Rate | 16.6 Hz |
| Heating Rate | 0.1 to 100 ℃/min |
| Temperature Resolution | 0.001 ℃ / 0.01 ℃ |
| Temperature Fluctuation | ±0.01 ℃ |
| Temperature Repeatability | ±0.01 ℃ |
| Program Temperature Control | 12-stage |
| Temperature Control Type | Heating, constant temperature, cooling |
| Scan Type | Heating, cooling, isothermal scanning |
| DSC Noise | 0.001 mW |
| DSC Resolution | 0.01 µW |
| DSC Accuracy | 0.001 mW |
| DSC Sensitivity | 0.001 mW |
| Gas flow rate | 0 to 200mL/min |
| Gas pressure | 0.2MPa |
| Power Supply | 220V ,50 Hz |
| Dimension | 490 × 390 × 215 mm |
| Gross Weight | 35 Kg |
Features
7-inch LCD touchscreen
Multi-Point Calibration
Dual Experimental Modes
Baseline Deduction Function
Auto Data Plotting
USB Bidirectional Communication
Standard Accessories
Model No | Accessory | Unit | Quantity |
LMDSC-B100-H1 | DSC System Host | Set | 1 |
LMDSC-B100-H2 | Power Cord | Each | 1 |
LMDSC-B100-H3 | System Software USB | Each | 1 |
LMDSC-B100-H4 | Data Cable | Each | 1 |
LMDSC-B100-H5 | Aluminum Crucible | Each | 100 |
LMDSC-B100-H6 | Tweezers | Each | 1 |
LMDSC-B100-H7 | Fuses | Each | 5 |
LMDSC-B100-H8 | Trachea | Each | 2 |
LMDSC-B100-H9 | Sample Spoon | Each | 1 |
Applications
Differential Scanning Calorimeter LMDSC-B100 measures heat-related physical and chemical changes like glass transition, melting point, crystallization, oxidation induction, reaction kinetics, and specific heat in research and quality control processes.
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Frequently Asked Questions
1 What is a Differential Scanning Calorimeter?
A Differential Scanning Calorimeter is an apparatus designed to measure heat flow differences between a sample and a reference to analyze thermal transitions.
2 How does a Differential Scanning Calorimeter work?
It works by heating or cooling a sample and comparing its heat flow to that of a reference material to detect thermal events.
3 What materials can be analyzed using Differential Scanning Calorimeter?
It can analyze a wide range of materials, including polymers, metals, pharmaceuticals and liquids.
4 Can Differential Scanning Calorimeter analyze chemical reactions?
It can analyze chemical reactions by measuring the heat released or absorbed during the reaction.
5 Can Differential Scanning Calorimeter be used to study pharmaceutical formulations?
It is used to investigate the thermal behavior of pharmaceutical compounds, including melting points, stability and interactions between active ingredients and excipients.
6 Can Differential Scanning Calorimeter be used for biodegradable material research?
It is used to study the thermal properties of biodegradable materials, helping in the development of eco-friendly materials with specific thermal behaviors.
7 Can Differential Scanning Calorimeter be used in environmental studies?
It is used to analyze the thermal properties of materials in environmental applications, such as evaluating the thermal degradation of pollutants or studying biopolymer stability.
8 Can Differential Scanning Calorimeter be used to evaluate textile materials?
It is used to analyze the thermal behavior of textile materials, including their melting points and heat resistance.
9 Can Differential Scanning Calorimeter be used to study nanocomposites?
It is used to study the thermal properties of nanocomposites, such as their melting points, glass transitions, and curing behaviors.
10 What is the role of Differential Scanning Calorimeter in studying food packaging materials?
It is used to study the thermal behavior of food packaging materials, such as their melting and crystallization points, in order to ensure that they maintain food quality and prevent spoilage.