Differential Scanning Calorimeter (DSC Instrument)

Differential scanning calorimetry analysis provides insight into critical physical properties of materials by testing their response to heat. The heating of both a sample and reference material provides a validated relative temperature response and heat capacity. These furnace-based systems are perfect for studying unique phase-change properties, such as with liquid crystals, determining quantitative enthalpy of materials, or testing the elasticity of products exposed to extreme temperatures and/or pressures. Differential scanning calorimeters offer temperature ranges as low as -180C and as high as 2400C, with the highest available heating rate at 300 K/min for DSC analysis. The principle models utilize heat flux systems, corrosion-free silver furnaces, or cylindrical high-conductivity silver block units, among others. The customer should keep an eye out for a differential scanning calorimeter that suppresses or prevents overlapping vaporization and/or simulates realistic temperature and pressure conditions.

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CompanySetaram InstrumentationSetaram InstrumentationSetaram InstrumentationSetaram Instrumentation
ItemCalvet PROCalvet DCMicroCalvetSETLINE DSC
Price
TypeDifferential Scanning Calorimeter (DSC) / CalorimeterDrop Calorimeter / DSCMicrocalorimeter / Differential Scanning Calorimeter (DSC)Differential Scanning Calorimeter (DSC)
PrincipleCalvet 3D Sensor (Thermocouple-based) with Joule Effect CalibrationCalvet 3D Sensor (thermocouples); Drop Calorimetry and Heat Flux DSCCalvet 3D Sensor (Peltier-based) with Joule Effect CalibrationHeat Flux DSC
Temperature RangeAmbient to 830°C; -120 to 200°C (with cooling accessory)Up to 1500°C or 1600°C (depending on sensor)-45 to 120°C (cooling below 0°C requires auxiliary thermostat)-170 to 700°C
Measuring Range±290 mW; ±2,900 mWHeat capacity, heat content, heat of dissolution and formation±12 mW; ±120 mW±6,000 mW
Heating Rate0.01 to 30°C/minInquire0.001 to 2°C/min0.01 to 100°C/min
Cooling RateInquireInquireInquire12 min from 500°C to 100°C (air); 12 min from 25°C to -100°C (LN2); 5 min from 100°C to 0°C (cryothermostat)
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