High-Precision Differential Scanning Calorimeter Thermal analysis instrument DSC for Material Analysis

Reliable, accurate, and versatile DSC instruments for research, materials testing, and industrial quality control.

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INTRODUCTION

Cheesion’s Differential Scanning Calorimeter (DSC) is designed to deliver fast, precise, and reproducible thermal analysis results. From basic polymer studies to advanced materials research, our DSC solutions empower laboratories worldwide to make confident decisions in R&D, process optimization, and quality assurance.

Cheesion Differential Scanning Calorimeter (DSC) is a high-precision thermal analysis instrument designed to measure the heat flow associated with material transitions such as glass transition, melting, crystallization, and thermal stability.

With its advanced sensors, user-friendly software, and robust design, the Cheesion DSC ensures accurate, reproducible, and reliable results for both academic research and industrial applications.

Whether you are in R&D, quality control, or material characterization, our DSC provides the insights you need to improve performance, ensure consistency, and accelerate innovation.

QSDSC-10A/DZ-DSC 100A Thermal analysis instrument Parameter
Temperature rangeRoom temperature to 600°C
Stable resolution0.01°C
Temperature fluctuation±0.01°C
Temperature repeatability±0.1°C
Heating rate0.1 to 100°C/min
Temperature controlPID temperature control, temperature rise, constant temperature (fully automatic program control)
DSC range0 to ±600mW
DSC resolution0.01mW
Working power supplyAC 220V/50Hz or customized
Gas flow0 to 200mL/min
Gas pressure<0.5MPa
Display mode24-bit, 7-inch LCD touch screen display
Data interfaceStandard USB interface

APPLICATION

Our DSC solutions are widely used in multiple industries and research fields:

1. Polymers & Plastics – Determining glass transition, melting temperature, crystallization behavior, and curing processes.

2. Chemicals & Materials Science – Studying phase transitions, purity, and thermal stability of chemicals and composites.

3. Pharmaceutical Industry – Characterizing drug formulations, excipient compatibility, and purity analysis.

4. Environmental Studies – Evaluating degradation, oxidation, and material stability under different conditions.

5. Academic & Research Laboratories – Teaching, material property analysis, and advanced thermal research.

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