DSC500 Pegaus

High-Temperature DSC Up To 2000°C

High-Temperature DSC Up To 2000°C

High-Temperature DSC Up To 2000°C

Model No. :

Brand : Netzch

The DSC 500 Pegasus is a specialized heat-flux differential scanning calorimeter engineered for high-precision thermal analysis across an expansive temperature range. It is designed to characterize phase transitions and caloric effects in metals, alloys, ceramics, and high-performance composites with exceptional baseline stability.

  • Operating range from -180°C up to 1650°C

  • Exchangeable sensors for DSC and DTA

  • Vacuum-tight design for pure atmospheres

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− Features

  • Modular Design for extensive Versatility: Our modular design allows for easy exchange of furnaces and sensors, making the instrument adaptable to different applications. This system operates over a wide temperature range from -150°C to 2000°C to meet a variety of thermal analysis requirements.
  • Superior Sensor Technology for Precise Measurements: Our high-performance heat flux DSC sensors, combined with precise sensor positioning, ensures exceptional accuracy for demanding applications, including specific heat measurements at high temperatures.
  • Vacuum-Tight Design for Elimination of Atmospheric Influences: Our vacuum-tight design, combined with precise gas flow control, enables accurate management of high-purity atmospheres, including inert, oxidizing, reducing, and corrosive gases. By eliminating the possibility of unwanted reactions, this design supports reliable results.
  • Versatile Hardware and Intelligent Software for Efficient Research: Our DSC includes a dual-hoist system that supports the operation of two furnaces or an integration of our Automatic Sample Changer (ASC), capable of handling up to 20 samples. Complementing this hardware is our superior software suite, including AutoEvaluation for automated data analysis and Identify for advanced material identification. This setup streamlines sample processing, optimizing research workflows and saving valuable time.
  • Beyond Standard DSC Analysis: Our DSC system goes beyond traditional thermal analysis by enabling coupling with evolved gas analysis systems such as FT-IR or Mass Spectrometers. This integration significantly enhances the depth of information available from a single analysis, providing detailed insights into gas evolution and material behavior during thermal processes.

+ Technical Specifications

+ Standards

+ Software

Features
  • Modular Design for extensive Versatility: Our modular design allows for easy exchange of furnaces and sensors, making the instrument adaptable to different applications. This system operates over a wide temperature range from -150°C to 2000°C to meet a variety of thermal analysis requirements.
  • Superior Sensor Technology for Precise Measurements: Our high-performance heat flux DSC sensors, combined with precise sensor positioning, ensures exceptional accuracy for demanding applications, including specific heat measurements at high temperatures.
  • Vacuum-Tight Design for Elimination of Atmospheric Influences: Our vacuum-tight design, combined with precise gas flow control, enables accurate management of high-purity atmospheres, including inert, oxidizing, reducing, and corrosive gases. By eliminating the possibility of unwanted reactions, this design supports reliable results.
  • Versatile Hardware and Intelligent Software for Efficient Research: Our DSC includes a dual-hoist system that supports the operation of two furnaces or an integration of our Automatic Sample Changer (ASC), capable of handling up to 20 samples. Complementing this hardware is our superior software suite, including AutoEvaluation for automated data analysis and Identify for advanced material identification. This setup streamlines sample processing, optimizing research workflows and saving valuable time.
  • Beyond Standard DSC Analysis: Our DSC system goes beyond traditional thermal analysis by enabling coupling with evolved gas analysis systems such as FT-IR or Mass Spectrometers. This integration significantly enhances the depth of information available from a single analysis, providing detailed insights into gas evolution and material behavior during thermal processes.
Temperature range -150°C to 2000°C
Furnaces Standard and special furnaces
Heating/cooling rate 0.001 K/min to 100 K/min (depending on furnace type)
Furnace hoist Motorized double hoist for two furnaces or one furnace combined with the ASC
Sensor types DTA, DSC, DSC-cp (quick and safe interchange)
Temperature accuracy 1 K
Enthalpy accuracy 1 to 3%
cp measuring range¹ Up to 5 J/(g*K)
cp accuracy¹ 1 to 3.5%
Gas atmospheres Inert, oxidizing, reducing, corrosive, vacuum
Vacuum-tightness² 10⁻⁴ mbar (10⁻⁷ Pa)
Gas control 3 integrated mass flow controllers (MFCs), flow rate 0-250 ml/min, plus 4th optional
Automatic sample changer (ASC) 20 samples, removable carousel (optional)
Automatic evacuation Software-controlled
Coupling to evolved gas analyzers FT-IR, MS, FT-IR-MS, GC-MS, GC-MS-FT-IR, PulseTA® (optional)

1 cp, specific heat capacity
2 Actual achievable vacuum depends on the selected evacuation system

Proteus software is designed to take the complexity out of thermal analysis, providing a seamless, user-friendly experience without sacrificing analytical power. Designed to run on the Windows platform, Proteus provides everything you need to perform precise measurements and evaluate data with confidence. Its intuitive menus and automated routines streamline even the most complex analyses, making it an essential tool for professionals seeking reliable and efficient thermal insight. Licensed with the instrument, Proteus can also be installed on additional systems, ensuring flexibility and accessibility for your workflow.

Proteus software provides users with a wide range of Differential Scanning Calorimetry (DSC) features for accurate and comprehensive thermal analysis:

  • Temperature Analysis: Accurately determine onset, peak, inflection and end temperatures.
  • Transformation enthalpies: Analyse peak areas with customisable baselines, including partial peak area evaluations.
  • Complex peak analysis: Obtain detailed data including characteristic temperatures, areas, peak heights and half-widths.
  • Glass transition analysis: Perform detailed Glass Transition Temperature evaluations, including determination of onset, midpoint and inflection points.
  • BeFlat Baseline Correction: Automate baseline adjustments for improved accuracy.
  • Tau-R Mode: Improves analysis accuracy by accounting for instrument time constants and thermal resistance, enabling sharper resolution of Exothermic Endothermic effects for more accurate interpretation of DSC results.
  • AutoEvaluation: Streamline data analysis with automated routines that identify key thermal events such as peaks, onsets and transitions, providing fast, accurate and reproducible results with minimal user intervention.

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