Differential Scanning Calorimeter

Differential Scanning Calorimeter

Differential Scanning Calorimeter1 / 3
TS-DSC-1000

Differential Scanning Calorimeter

The DSC-1000 Differential Scanning Calorimeter delivers high-precision thermal analysis with exceptional sensitivity and repeatability, making it ideal for evaluating material transitions, stability, and thermal properties across research, quality control, and industrial applications.

Key Specifications

Max Temperature

1200°C

Heating Rate

0.1–100°C/min

DSC Sensitivity

0.01 mW

Touch Display

7" Color LCD

Differential Scanning CalorimeterThermal Analysis

Global Shipping

50+ countries

2-Year Warranty

Parts & service

Expert Support

Dedicated team

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Product Introduction

DSC-1000 is one of the most accurate DSC series products launched by the company. The sensor is made of imported material E-pair, which has high accuracy, high sensitivity and good repeatability. The signal acquisition circuit has shielding protection, strong anti-interference, and extremely high baseline stability and repeatability.

DSC-1000 Differential Scanning Calorimeter can be used to test glass transition temperature, phase transition temperature, melting point, enthalpy value, curing temperature, product stability, oxidation induction period, etc. It is competent in the research of pipes, polymers, chemicals, food, medical treatment and many other fields, and its products serve universities, enterprises, third-party measurement and quality inspection units, with a wide range of applications to meet the testing needs of various industries.

Key Features

  • Imported E-Pair Sensor delivers high accuracy, high sensitivity, and excellent repeatability for precise thermal measurements.
  • Advanced Shielding Protection minimizes external interference while providing outstanding baseline stability and measurement reliability.
  • Comprehensive Thermal Analysis supports glass transition temperature, phase transition, melting point, enthalpy, curing temperature, oxidation induction period, and product stability analysis.
  • Automatic Program Control features a 7-inch LCD touchscreen with programmable heating, constant temperature, cooling, and automatic atmosphere switching for efficient operation.

Technical Parameters

Temperature RangeRoom temperature ~ 1200℃
Temperature Resolution0.01℃
Temperature Fluctuation±0.1℃
Temperature Repeatability±0.1℃
Heating Rate0.1~100℃/min
Incubation TimeProgram setting ≤24h
Temperature ControlHeating up, constant temperature, cooling down (Full automatic program control)
DSC Range0~±600mW
DSC Resolution0.01uW
DSC Sensitivity0.01mW
Working Power SupplyAC220V/50Hz Or customized
Atmosphere Control GasNitrogen, Oxygen (Program setting/automatic switching)
Gas Flow0–200mL/min
Gas Pressure0.5MPa
Display Mode24bit color, 7-inch LCD touch screen display
Data InterfaceStandard USB interface
Parameter StandardEquipped with reference materials (tin), The user can correct the temperature by himself
Temperature MonitoringThe instrument has multiple sets of thermocouples: one group measures sample temperature, one group measures furnace temperature, and one group measures the internal ambient temperature

Applications

Polymer & Plastics

The DSC-1000 Differential Scanning Calorimeter is widely used for thermal analysis of polymer and plastic materials. It can analyze glass transition temperature, melting point, phase transition, oxidation induction period, curing behavior, and thermal stability, making it suitable for quality control, product development, and material research.

Chemical, Food & Medical

The instrument is suitable for evaluating thermal properties, product stability, curing characteristics, and material performance of chemicals, food products, and medical materials, providing reliable thermal analysis for research and industrial applications.

Universities, Enterprises & Testing Laboratories

The DSC-1000 is widely used in universities, enterprise research centers, third-party testing laboratories, and quality inspection institutions for thermal analysis, material characterization, quality control, and scientific research.

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