Mettler Toledo DSC 2+Thermal Analysis System Flash

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In terms of thermal analysis, differential scanning calorimetry (DSC) is the most crucial technique. Physical transitions and chemical reactions can be quantified by measuring the heat flow to or from a sample as a function of temperature or time. Rapid-scanning DSC is revolutionized by the Flash Mettler Toledo DSC 2+. Reorganization processes that were previously impossible to measure can now be examined by the device.

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Description

Mettler Toledo DSC 2+Thermal Analysis System Flash

In terms of thermal analysis, differential scanning calorimetry (DSC) is the most crucial technique. Physical transitions and chemical reactions can be quantified by measuring the heat flow to or from a sample as a function of temperature or time. Rapid-scanning DSC is revolutionized by the Flash Mettler Toledo DSC 2+. Reorganization processes that were previously impossible to measure can now be examined by the device.

Reorganization processes that were previously impossible to measure can now be examined using the instrument. The examination of thermally induced physical transitions and chemical processes, such as the crystallization and reorganization of metals, polymers, and other materials, is expanded by ultra-high heating and cooling rates.

In contrast to traditional DSC, the Flash DSC 2+ places samples directly onto the MultiSTARTM chip sensor, eliminating any impacts from the crucible material. Additionally, the innovative dynamic power compensation control circuit enables measurements to be made with low noise levels while being conducted at high heating and cooling rates.

Mettler Toledo DSC 2+ Features

  • Ultra-high heating rates – suppress reorganization processes
  • Ultra-high cooling rates – allow the formation of materials with defined structural properties
  • High sensitivity – permits measurements at low heating rates that overlap with conventional DSC
  • Wide temperature range – perform measurements from –95 to 1000 °C
  • Gas-tight measuring head – investigate samples under defined atmospheres
  • Fast response sensor – enables the kinetics of extremely fast reactions or crystallization
    processes to be studied
  • The simplicity of use – from easy sample preparation and sensor change to convenient result evaluation
  • Oxygen-free environment – protect your sample against oxidation
  • User-friendly ergonomics – for easy and quick sample preparation and sensor change

Mettler Toledo DSC 2+ Specifications

Technique Fast Scanning Calorimeter
Differential Scanning Calorimetry (DSC)
Applications Glass Transition
Heat Capacity (cp)
Crystallization
Data Sampling Max. 10000 data pts/sec
Temperature Range -95 °C – 1,000 °C
Options Microscopy
Sensor Output Heat Flow
Signal Time Constant Approx. 0.2 ms (UFH 1), approx. 1 ms (USF 1)
Cooling Rate (min) 6 K – 2,400,000 K
Heating Rate (/min) 6 K – 3,000,000 K
Sensor Types UFH 1 (high-temperature) or UFS 1 (standard)
Temperature Range -95 °C – 1,000 °C

 

Datasheet

Datasheet

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  1. parsa bidokhti

    you can find the best laboratory analysis in uae through this site.

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