Differential Scanning Calorimeter(dsc)Low Temperature
Description:
DSC measures the relationship between temperature and heat flux related to the internal thermal transformation of materials, and has a wide range of applications, especially in material research and development, performance testing, and quality control. Characteristics of the material, such as glass transition temperature. Cold crystallization, phase transition, melting, crystallization, thermal stability, solidification/crosslinking, oxidation induction period, etc. are all research and development areas of DSC.
Main features:
1. New furnace structure, better resolution and baseline stability
2. Parameters can be set for multi-stage heating, constant temperature, and cooling
3. The instrument can adopt bidirectional control (host control, software control), with a friendly interface and easy operation
4. Using imported chips, the acquisition circuit is shielded and anti-interference processed
5. The sensor adopts hot melt technology instead of traditional spot welding technology, which has higher sensitivity
Specification:
1. Temperature range: minus 35~600 ℃ |
2. Temperature resolution: 0.001 ℃ |
3. Temperature fluctuation: ± 0.01 ℃ |
4. Heating rate: 0.1-100 ℃/min |
5. Constant temperature time: can be set by oneself |
6. Temperature control method: heating, constant temperature, cooling (fully automatic program control) |
7. Scanning methods: heating scan, cooling scan |
8. DSC range: 0 to ± 800mW |
9. DSC noise: 0.01uW |
10. DSC resolution: 0.01UW |
11. Working power supply: AC220V/50Hz or customized |
12. Atmosphere control gas: automatic switching between two channels (instrument automatic switching) |
13. Program control: It can achieve six stage temperature rise and constant temperature control, and special parameters can be customized |
14. Gas flow rate: 0-300mL/min (other ranges can be customized) |
15. Gas pressure: ≤ 5MPa |
16. Display mode: 24 bit color, 7-inch LCD touch screen display |
17. Data interface: Standard USB interface |
18. Parameter standards: equipped with standard substances (indium, tin, lead), users can calibrate the temperature themselves |
19. Instrument Thermocouples: Three sets of thermocouples, one set for testing sample temperature, one set for testing instrument internal environment temperature, and one set for furnace body overheating self checking sensor |