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Introduction










      DESCRIPTION
      The GTG range includes highly conductive thermal pad ideal for applications requiring high thermal conductivity. Its
      specific formulations developed by our laboratory, as well as its loads, give these silicone elastomers and exceptional
      thermal conductivity.


      Thanks to their great flexibility and ease of installation, they follow the surface irregularities between the power
      component and the cooler as soon as they are assembled which helps to dissipate heat and protect your equipment.

      TESTS : DETERMINATION OF THERMAL CONDUCTIVITY

      The thermal conduction power of our GTG range has been measured using the «Modified Transient Plane Source»
      (MTPS) technique used to characterize the thermal conductivity and effusivity of materials according to ASTM D
      7984. This technique consists in using a unilateral interfacial thermal reflectance sensor that applies a constant heat
      source to the sample. The instantaneous measurement of thermal conduction ensures a detailed overview of the
      heat transfer properties of our samples.


       Where effusivity = √(KPC p )

       Where :
       •   K  = Thermal conductivity (W/m.K)
                           3
       •   P  = Density (Kg/m )
       •   C = Heat capacity (J/kg.K)
            p


      OPERATING PRINCIPLE




                                                    Sample




                                                    [2]  A  guard  ring  surrounds  the  primary  sensor  coil to
                                                    support one-dimensional heat transfer in the sample.

                                                    The current applied results  in an increase in the
                                                    temperature at the interface between the sensor and the
                                                    sample, which induces a variation in the voltage drop of
                                                    the sensor element.









                                                    [1] A given electric current is diffused to the heating element










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