LABSPECTRO – Optical Emission Spectrometer (OES)
The LABSPECTRO Metals Analyzer is an innovative solution for high-precision metal analysis, utilizing state-of-the-art atomic emission spectrometry (AES) technology. Designed for industries requiring accurate and reliable elemental analysis, it is ideal for applications in quality control, alloy verification, and material certification. Featuring a scientific research-grade CMOS sensor and patented argon self-purification technology, the LABSPECTRO ensures exceptional performance, minimal interference, and high sensitivity, making it the preferred choice for both mid and high-end analytical needs.
feature-1
feature-2
feature-3
The LABSPECTRO Metals Analyzer is an innovative solution for high-precision metal analysis, utilizing state-of-the-art atomic emission spectrometry (AES) technology. Designed for industries requiring accurate and reliable elemental analysis, it is ideal for applications in quality control, alloy verification, and material certification. Featuring a scientific research-grade CMOS sensor and patented argon self-purification technology, the LABSPECTRO ensures exceptional performance, minimal interference, and high sensitivity, making it the preferred choice for both mid and high-end analytical needs.
The LABSPECTRO is built with a high-performance Paschen-Runge optical system, incorporating multiple CMOS detectors for full-spectrum analysis and superior UV response. The argon-filled optical chamber significantly enhances light transmission and trace element detection, ensuring high sensitivity for non-metallic elements such as C, S, and P.Additionally, its digital pulse source supports sparks, arcs, and hybrid discharges, delivering customizable analysis with excellent stability. The integrated airflow design and temperature-controlled optical chamber (±0.1°C) further optimize spectral accuracy, providing long-term reliability even in fluctuating environments.
The LABSPECTRO features a patented argon self-purification system, which minimizes argon waste and improves start-up efficiency by continuously recycling gas within the optical path. This ensures consistent high-purity argon conditions, reducing operational costs while maintaining peak analytical performance. The system also creates a vacuum-like environment (10⁻⊃3; Pa) to enhance short-wavelength UV detection, making it highly effective for analyzing trace elements with superior precision.