Differential Scanning Calorimeter FM-DSC-A100 offers compact, fully automatic thermal analysis. With a broad temperature range of RT to 550°C, Our unit is suitable for various materials. Equipped with a durable metal furnace body and a 7-inch touchscreen display. Efficient cooling is provided by liquid nitrogen refrigeration. Software control and a USB interface facilitate seamless data management and analysis
$10,000.00
| Temperature range | RT to 550°C |
| Thermal resolution | 0.001°C |
| Temperature variations | ± 0.001°C |
| Temperature repeatability | ± 0.1°C |
| Constant temperature range | Configurable duration up to 24 hours |
| Dynamic heat flow range (DSC range) | 0 to ± 600 Mw |
| Heating speed | 0.1 to 80°C / min |
| DSC signal noise | 0.01Μw |
| DSC resolution | 0.01Μw |
| DSC precision | 0.01Mw |
| Complies with Standards | ISO/TR10837:1991, ASTM D3895-1998, ASTM E 967, ASTM E 968, ASTM E 793, ASTM D 3417, ASTM D 3418, and ISO 11357-6 |
| Control Mode | Automatic temperature rising and fixed-temperature control |
| Curve analysis | Rising scan |
| Gas flow regulation | Embedded digital flow meter and Software control, automatic changing |
| Atmosphere control gas | Nitrogen, Oxygen (auto-switch) |
| Gas flow-rate | 0 to 300 ml/min |
| Gas pressure | 0.2 MPa |
| Cooling device | Air cool ` |
| Thermocouples | 3 sets
Sample temperature measurement Furnace temperature reading Internal ambient temperature measurement |
| Calibration standard | Includes reference material and calibration function for user-adjusted temperature and enthalpy correction |
| Interface | USB |
| Power supply | AC220V/50Hz |
| Packing Dimensions | 620 × 540 × 500 mm |
| Net Weight | 25 Kg |
| Gross Weight | 28 Kg |
Fison offers high-performance Differential Scanning Calorimeters for precise thermal analysis. These instruments operate on the principle of measuring heat flow differences between a sample and a reference under controlled temperature conditions. With a temperature range of RT to 550°C, they provide accurate measurements of heat flow and temperature transitions. Advanced temperature control, high sensitivity, and user-friendly interfaces make them well-suited for diverse applications