LINSEIS Differential Scanning Calorimetry (DSC)
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LINSEIS Differential Scanning Calorimetry (DSC)
Differential Scanning Calorimetry (DSC) by Linseis is a powerful thermal analysis technique used to determine thermal transitions and enthalpy changes of solid and liquid materials under controlled temperature conditions.
With decades of expertise in thermal analysis, Linseis has developed a comprehensive portfolio of DSC instruments covering a uniquely wide range of temperatures and pressures, suitable for research, development, and industrial quality control.
The Linseis DSC product range includes:
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Chip-DSC Series – Ultra-sensitive, fast-response DSC systems ideal for low sample masses, polymers, pharmaceuticals, and advanced materials.
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DSC PT 1000 – Versatile, high-precision DSC for routine and advanced measurements up to 1000 °C.
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DSC PT 1600 – High-temperature DSC system designed for ceramics, metals, and inorganic materials, operating up to 1600 °C.
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High-Pressure DSC configurations – Allowing measurements under pressures up to 150 bar, enabling realistic simulation of processing and service conditions.
All Linseis DSC systems support multiple gas atmospheres (air, inert, reactive gases, vacuum) and deliver highly reproducible results across an exceptionally wide operating window from –180 °C to 1750 °C.
Linseis Differential Scanning Calorimeters are engineered to comply fully with international ASTM, DIN, and ISO standards, making them trusted analytical tools in polymer science, metallurgy, ceramics, pharmaceuticals, chemicals, and energy materials research.
• Differential Scanning Calorimetry (DSC) for solids and liquids
• Linseis Chip-DSC, DSC PT 1000 and DSC PT 1600 platforms
• Temperature range from –180 °C to 1750 °C
• Pressure range from high vacuum (10⁻⁵ mbar) up to 150 bar
• Measurement of glass transition (Tg), melting and crystallization
• Phase transformations and curing reactions
• Determination of reaction enthalpy (ΔH)
• Specific heat capacity (Cp) measurement using sapphire reference
• Oxidative and thermal stability (OIT analysis)
• Supports inert, reactive gases and vacuum operation
• Fully compliant with ASTM, DIN and ISO standards
• Suitable for polymers, metals, ceramics, pharmaceuticals, and composites
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Professional guidance for product selection
After-sales service and maintenance
Always available technical assistance