Temperature

Measure temperatures of melting, crystallization, glass transition, reaction, drying, desorption and more.

temperature

Temperature rules!

The structure, properties, and reactivity of every material – no exception – change with temperature. So if you want to keep control over the synthesis, processing, use, or recycling of your materials, you need to measure temperatures. We have solutions ranging from extremely low up to ultra high temperatures.

  • Differential Thermal Analysis
    Differential Thermal Analysis

    This measures temperatures of melting, crystallization, glass transition, up to ultra high temperature. Our solutions include the unique high sensitivity tri-couple DTA sensor, and corrosion protected rods.

  • Differential Scanning Calorimetry
    Differential Scanning Calorimetry

    This measures most temperatures of transition and decomposition, combined with heat measurements. Our DSC solutions are simple and offer high accuracy and precision, from very low to very high temperatures.

  • Simultaneous Thermal Analysis
    Simultaneous-Thermal-Analysis

    This measures most temperatures of transition and decomposition, combined with mass variations. Our STA solutions are simple and offer high accuracy and precision, up to very high temperatures.

  • Thermo Gravimetric Analysis
    Thermo Gravimetric Analysis

    This is ideal for temperatures of decomposition, desorption, drying, oxidation, reduction. Our TGA solutions offer a choice of sensors for the best combination of temperature range vs. quality results. They also offer ultra high temperature options.

  • Thermo Mechanical Analysis
    Thermo Mechanical Analysis

    This measures temperatures of transitions, softening, sintering, up to ultra high temperatures. Our TMA solutions are based on a vertical design for low load and sample preservation.

  • Calorimetry
    Calorimetry

    This is ideal for temperatures of transition, reaction, decomposition, combined with heat measurements. Our calorimeters offer the highest accuracy and the finest adiabatic design.

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