Used NETZSCH DSC 204C #293585760 for sale
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NETZSCH DSC 204C is a laboratory device for the characterization of thermophysical properties. The device uses the Differential Scanning Calorimetry (DSC) technique, which makes possible the observation of heat flow changes due to physical or chemical transformations of a substance. The device includes a cell made of nickel-plated aluminum, and it is heated up or cooled down with a heating/cooling rate ranging from 0.0001 to 200 degrees Celsius per minute. The sample allowing the measurement requires only very small amounts, ranging from 0.1 mg to 6 mg. A controlling and regulation system measures the few micro joules of energy that happen during the heat flow changes and records them as enthalpy curves. These curves are then used to calculate the temperature-dependent heats of transition, on the one hand, and to determine the thermal properties, on the other. DSC 204C operates under the automatic control of a PC. All parameters for the scan are set on the SDR4 software view on the PC. This allows the user to input different parameters in order to get the desired results. The device can measure scan rates from 0.0001 K/min up to 200 K/min, heat range from 0K to 750K, and temperature range from -300K to 750K. Furthermore, the device has the capacity to recognize a wide range of DSC signals and allows modifications of the scan parameters without monitoring the sample. Furthermore, NETZSCH DSC 204C is designed to be compliant with all regulatory requirements in laboratories. It is constructed of high-quality materials, such as nickel-plated aluminum, and, being a non-destructive technique, allows multiple measurements on the same sample. Both energy referencing and scanned data can be exported and then imported into other software packages, allowing the user to store and analyze their results. DSC 204C is a highly efficient and accurate device, allowing the user to get reliable results with a very low amount of material. It is a durable piece of laboratory equipment, providing accurate data to better understand the thermodynamic properties of materials.
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