Perform precise material and particle analysis with compact lab tools designed for additive manufacturing. Measure particle size, hardness, and internal structure to validate powders and inspect printed parts with confidence. These systems support fast, reliable decision-making and help maintain consistency across research, development, and production environments.
Combustion analyzer for the simultaneous determination of carbon, hydrogen and sulfur — the sample is burned in a resistance furnace up to 1,550 °C and measured by up to four infrared cells, covering 0.005–100 % in 60–180 seconds.
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Combustion analyzer for the simultaneous determination of carbon and sulfur — the sample is burned in a resistance furnace up to 1,550 °C and measured by up to four infrared cells, covering 0.005–100 % in 60–120 seconds.
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Analyzer for the simultaneous determination of carbon dioxide and water — the sample in a quartz boat is heated in a resistance furnace up to 1,000 °C, and released CO₂ (from carbonates) and water are measured by infrared cells in 2–3 minutes.
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Multi-ramp version of the CW-800 for simultaneous carbon dioxide and water — up to five programmable temperature steps release and resolve TOC/TIC and water fractions without adding acids, measured by infrared cells.
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Resistance-furnace analyzer for fast, simultaneous carbon, hydrogen and sulfur in organic matrices — combustion up to 1,550 °C with a heated H₂O infrared cell for hydrogen and solid-gold IR cells over 20 ppm to 100 %.
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Automated Dumas analyzer for nitrogen / protein and carbon — reliable results in under three minutes with interleave processing, over 70× faster than Kjeldahl, on any solid or liquid matrix.
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Dual-furnace analyzer that combines an induction furnace (above 2,000 °C) and a resistance furnace (to 1,550 °C) in one instrument — carbon and sulfur in both inorganic and organic samples, from ppm to 100 %, with up to four gold infrared cells.
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Induction-furnace analyzer for carbon and sulfur in inorganic samples and metals — combustion above 2,000 °C with up to four infrared cells covering 0.6 ppm to more than 6 % at 1,000 mg, in about 40 seconds.
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