Optimize your 3D printing materials with advanced C-H-S analyzers. Accurately measure carbon, hydrogen, and sulfur content to ensure high-quality, reliable, and consistent 3D printed parts.
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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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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Resistance-furnace analyzer for fast, simultaneous carbon and sulfur in organic matrices — combustion up to 1,550 °C with up to four solid-gold infrared cells over 20 ppm to 100 %, and an optimized low-blank sample port for reliable low-carbon analysis.
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