First choice in Thermal Analysis

LFA Thermal Conductivity / Diffusivity

Laser Flash

Knowledge of heat transport properties of solids and liquids is becoming more and more crucial. The Laser Flash technique has proven to be the fastest and most reliable measurement when it comes to determining thermal conductivity and diffusivity.

The THB - Transient Hot Bridge technique enables thermal conductivity, thermal diffusivity and specific heat measurements in the temperature range -50 ... 200°C. The measuring range of 0.02 ... 30 W/m*K complements the Laser Flash Analyzer.

Correspondence with International Standards. The LINSEIS LFA and XFA operate in agreement with national and international standards such as: ASTM E-1461, DIN 30905 and DIN EN 821.

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Xenon Flash XFA 500

XFA 500 Xenon Flash Apparatus

The Linseis XFA 500 Xenon Flash Appartus offers a cost effective method to determine the Thermal Diffusivity, Thermal Conductivity and Specific Heat Values for up to 6 Samples at the same time. The modular design of the system enables later upgrade to the sophisticated LFA 1000 system in terms of temperature and Laser Pulse source.

Laser Flash LFA 1000

LFA 1000 Laser Flash Apparatus

The Linseis LFA 1000 Laser Flash Analyzer is the most modular and precise Instrument for the measurement of Thermal Diffusivity, Thermal Conductivity and Specific Heat Values. Its sample robot for up to 6 Samples at the same time allows unbeaten turnaround times. The three user exchangeable furnaces allow measurements from -125 up to 1600°C.

Thb 1

THB - Transient Hot Bridge - Thermal Conductivity Meter

The Linseis Transient Hot Bridge - Thermal Conductivity Meter technique enables thermal conductivity, thermal diffusivity and specific heat measurements on various sample geometries and materials.

Hfm

HFM - Heat Flow Meter Thermal Conductivity Analyzer

The Linseis HFM - Heat Flow Meter provides a rapid and easy to use instrument to determine the thermal conductivity properties of low thermal conductivity insulation materials and other materials with a high level of accuracy.