Glow discharge optical emission spectrometer capable of bulk analysis of samples and qualitative/quantitative analysis in the depth direction.
A glow discharge optical emission spectrometer capable of performing bulk analysis of samples including alloys such as steel, cast iron, copper, aluminum, titanium, nickel, and stainless steel, as well as qualitative and quantitative analysis in the depth direction.
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basic information
Bulk analysis of samples including steel, cast iron, copper, aluminum, titanium, nickel, stainless steel, and their alloys, as well as qualitative and quantitative analysis in the depth direction, can be performed using a glow discharge optical emission spectrometer. ■□■Features■□■ ■ Wide dynamic range and excellent linearity of the calibration curve, providing accurate and stable analytical results. ■ Achieves a depth resolution of 10nm. ■ Optical part: Focal length 750mm (Paschen-Runge type spectrometer) ■ Diffraction grating: 2400 lines/mm concave diffraction grating (options: 3600 lines/mm, 1800 lines/mm) ■ Wavelength range: 120nm to 800nm ■ Resolution: < 0.025nm ■ Number of channels: Up to 58 channels (DC) and up to 56 channels (RF) ■ Light source: DC anode diameter 4mm (options: 2mm, 7mm) RF anode diameter 2mm, 4mm (options) ■ Vacuum section: Dual-stage direct drive rotary pump and turbo molecular pump ■ For more details, please contact us.
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Applications/Examples of results
■□■Applications■□■ ■Bulk analysis of samples including alloys such as steel, cast iron, copper, aluminum, titanium, nickel, and stainless steel ■Qualitative and quantitative analysis in the depth direction
Company information
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.