Measurement of oxygen, nitrogen, and hydrogen in inorganic substances using the inert gas fusion method.
The ONH836 is a wide-range oxygen, nitrogen, and hydrogen analysis device that has realized customer feedback and requests accumulated over 80 years using cutting-edge technology. It measures the oxygen, nitrogen, and hydrogen content of inorganic materials such as steel, non-ferrous metals, high-melting-point metals, and ceramics using an inert gas fusion method. All operations, including device control, setting of analysis conditions, diagnostics, and report printing, are conducted through a Windows-based touchscreen interface mounted on a flexible arm, ensuring that valuable workspace is not wasted. For more details, please contact us or refer to the catalog.
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【Features】 ○ Three infrared (IR) detectors for oxygen detection enable the largest analysis range in the industry. ○ Patented Dynamic Flow Compensation (DFC) further enhances the stability of the TC cell. ○ The latest IR detector, currently under patent application, improves long-term stability through emitter drive and drift-free detection circuits. ○ The high-efficiency cleaning system, currently under patent application, reduces the need for manual cleaning and allows for dust-free operation. ○ Comprehensive sample loading area → Minimizes atmospheric entrapment during sample introduction. → Simplifies regular maintenance of the sample drop mechanism. → Easy replacement of disk filters. → OMI tube (oxygen moisture removal reagent in carrier gas) is easy to replace and has a longer lifespan by allowing bypass. ○ Highly reliable automation mechanism → Installing the optional auto-cleaner minimizes manual cleaning between samples. → An optional batch loader for 20 samples can also be installed. ● For more details, please contact us or download the catalog.
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LECO Corporation in the United States has been meeting the expectations of the development of materials and quality control analysis in various industrial products since 1936. In particular, in the field of carbon, sulfur, oxygen, nitrogen, and hydrogen analysis in metallic materials, it holds an overwhelming market share and can provide analytical values that ensure sufficient reliability for global transactions. Additionally, the application of these analytical techniques has been recognized in various fields, such as elemental analysis of organic substances and nutritional component analysis in food, as convenient, safe, and more accurate methods. Furthermore, in the field of mass spectrometry, as a pioneer of time-of-flight mass spectrometry (TOF-MS), it has contributed to the accumulation of data that serves as a foothold for cutting-edge research in Europe and the United States. Moving forward, we will continue to strive to contribute to the development of new technologies, productivity, and quality improvement in various fields based on accurate analytical results.