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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| Company | TA Instruments – a division of Waters Corporation | TA Instruments – a division of Waters Corporation | TA Instruments – a division of Waters Corporation | TA Instruments – a division of Waters Corporation |
| Item | DSC 2500 Differential Scanning Calorimeter | Discovery DSC 25P | DSC 250 Differential Scanning Calorimeter | Nano Differential Scanning Calorimeter |
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| Catalog Number | DSC 2500 | DSC 25P | DSC 250 | |
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| Type | Differential Scanning Calorimeter | High Pressure Differential Scanning Calorimeter | Differential Scanning Calorimeter | High-resolution DSC |
| Temperature Range | -180°C to 725°C | -130°C to 550°C | -180°C to 725°C | -10°C to 130°C |
| Heating Rate | Inquire | 0.01 to 100°C/min | Inquire | Inquire |
| Description | We invite you to experience the world’s finest line of Differential Scanning Calorimeters, the Discovery DSC 2500, DSC 250 and DSC 25. Discover the advanced engineering and attention to detail that provides enhancements in every aspect of DSC technology including a new level of user experience. FromWe invite you to experience the world’s finest line of Differential Scanning Calorimeters, the Discovery DSC 2500, DSC 250 and DSC 25. Discover the advanced engineering and attention to detail that provides enhancements in every aspect of DSC technology including a new level of user experience. From the most cost-effective DSC with industry-leading performance, to the most advanced DSC available, there is a Discovery DSC to meet your needs and exceed your expectations.... Read More | The DSC 25P is a dedicated Pressure DSC module that provides heat flow measurements on pressure sensitive materials. The Discovery DSC 25P is used to study thermal transitions, chemical reactions and oxidative stability/ decomposition under vacuum, standard atmospheric pressure and elevated The DSC 25P is a dedicated Pressure DSC module that provides heat flow measurements on pressure sensitive materials. The Discovery DSC 25P is used to study thermal transitions, chemical reactions and oxidative stability/ decomposition under vacuum, standard atmospheric pressure and elevated pressures. It measures a materials’ heat flow in a variety of inert, oxidizing or reducing atmospheres.... Read More | We invite you to experience the world’s finest line of Differential Scanning Calorimeters, the Discovery DSC 2500, DSC 250 and DSC 25. Discover the advanced engineering and attention to detail that provides enhancements in every aspect of DSC technology including a new level of user experience. FromWe invite you to experience the world’s finest line of Differential Scanning Calorimeters, the Discovery DSC 2500, DSC 250 and DSC 25. Discover the advanced engineering and attention to detail that provides enhancements in every aspect of DSC technology including a new level of user experience. From the most cost-effective DSC with industry-leading performance, to the most advanced DSC available, there is a Discovery DSC to meet your needs and exceed your expectations.... Read More | The Nano DSC differential scanning calorimeter is designed to characterize the molecular stability of dilute in-solution biomolecules. The Nano DSC obtains data using less sample than competitive designs. Solid-state thermoelectric elements are used to precisely control temperature and a built-in The Nano DSC differential scanning calorimeter is designed to characterize the molecular stability of dilute in-solution biomolecules. The Nano DSC obtains data using less sample than competitive designs. Solid-state thermoelectric elements are used to precisely control temperature and a built-in precision linear actuator maintains constant or controlled variable pressure in the cell. Automated, unattended continuous operation with increased sample throughput is achieved with the optional Nano DSC Autosampler.... Read More |
| Quantity | EA | EA | EA | EA |
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