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High Performance Full Spectrum Direct Reading OES For Elemental Composition Accurate Control
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x| Operating System | Windows 10 | Power Requirements | 220V, 50/60Hz |
|---|---|---|---|
| Detector Type | CCD | Model | QR-9 Spectrometer |
| Highlight | High Performance absorption spectroscopy machine,220V absorption spectroscopy machine,CCD fluorescence spectrophotometer |
||
| Detecting matrix | Fe, Al, Cu, Zn, Ti, Ni, Pb, Co, Mg, and their Alloys | |
|---|---|---|
| Detecting time | Normally 25s | |
| Optical Structure | Paschen-Runge mount | |
| Wavelength range | 130nm-800nm | |
| Detector | High resolution CCD Multi detectors | |
| Electrode | Tungsten Spray discharge electrode | |
| working temperature | 10℃-35℃ | |
| working moisture | 20%-80% | |
| Excitation table aperture | 13mm | |
| Light cell structure | vacuum system | |
| Argon Purity | 99.999%, Argon pressure >0.5Mpa | |
| Argon consumption | 3.5L/min in sparking mode, 0.4L/min in maintaining mode | |
| Dimension | 860mm(L)*660mm(W)*360mm(H) | |
| Weight | About 80kg | |
| Power | AC220V/50Hz (Customized) |
High-Performance Full-Spectrum Direct-Reading OES For Accurate Control Of Elemental Composition In Metal Processing QR-9
The Full-Spectrum Direct-Reading Optical Emission Spectrometer (OES) is an advanced analytical instrument designed for the metal processing industry, offering rapid, precise, and reliable elemental analysis. With a detection time of only 25 seconds and a broad wavelength range of 130–800 nm, this spectrometer ensures fast measurement of major and trace elements, enabling quality monitoring, material classification, and process optimization. Its design and performance are fully synchronized with international spectrometer technology, making it a cutting-edge solution for modern industrial applications.
Product Introduction
In metal processing, maintaining accurate control over elemental composition is critical for ensuring product quality, consistency, and safety. The full-spectrum direct-reading OES combines high-resolution CCD detection with digital excitation light sources and a vacuum optical chamber, providing highly sensitive, reproducible, and stable measurements.
The instrument replaces traditional bulky photomultiplier tube (PMT) designs with a full-digital CCD system, enabling faster data readout, lower detection limits, and enhanced long-term stability. Its prefabricated work curves allow immediate operation after installation, minimizing setup time and supporting high-efficiency industrial workflows.
Key Advantages
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Fast and Efficient Analysis – Delivers full elemental analysis in 25 seconds, reducing downtime in production lines.
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Wide Detection Range – Measures elements across 130–800 nm, covering major and trace metals commonly used in processing.
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High Accuracy & Stability – CCD detector ensures precise, repeatable results with excellent long-term stability.
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Vacuum Optical Chamber – Maintains clean and stable measurement conditions, reducing optical path loss.
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Automatic Calibration – Optical path and spectral line calibration are performed automatically, eliminating manual adjustments.
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International Compatibility – Synchronized with global spectrometer standards, ensuring reliable data comparable with international laboratories.
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Error Prevention System – Protects optical components from contamination and ensures consistent, reliable operation.
Technical Specifications
| Parameter | Specification |
|---|---|
| Instrument Type | Full-Spectrum Direct-Reading OES |
| Detection Time | 25 seconds |
| Wavelength Range | 130–800 nm |
| Detector | High-resolution CCD, Multi-detector |
| Excitation Source | Digital full-spectrum light source |
| Optical Chamber | Vacuum design |
| Applicable Materials | Metals and alloys |
| Working Temperature | 10℃ – 35℃ |
| Working Moisture | 20% – 80% |
| Power Supply | AC220V/50Hz (customizable) |
| Dimensions | 860 mm (L) × 660 mm (W) × 360 mm (H) |
| Weight | ~80 kg |
Applications
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Quality Control in Metal Processing – Ensures consistent elemental composition in processed metals and alloys.
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Material Classification – Accurately identifies ferrous and non-ferrous metals for downstream applications.
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Process Monitoring – Tracks elemental variations during metal treatment and refining processes.
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Research & Development – Supports development of new alloys and optimization of metallurgical processes.
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Industrial Laboratory Analysis – Provides fast, reliable testing for high-volume manufacturing environments.
