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QR-9 Direct Reading Optical Emission Spectrometer Machine For Quality Control Full Spectrum
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x| Operating System | Windows 10 | Power Requirements | 220V, 50/60Hz |
|---|---|---|---|
| Detector Type | CCD | Model | QR-9 Spectrometer |
| Highlight | Spectrometer Machine Direct Reading,Spectrometer Machine QR-9,Full Spectrum optical emission 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) |
QR-9 Full-Spectrum Direct-Reading Optical Emission Spectrometer For Quality Control In Metal Smelting QR-9
The QR-9 Full-Spectrum Direct-Reading Optical Emission Spectrometer (OES) is a high-performance analytical instrument specifically designed for the metal smelting industry, providing fast, precise, and reliable elemental analysis for quality monitoring, material classification, and process control. With a detection time of just 25 seconds and a broad wavelength range of 130–800 nm, the QR-9 enables rapid assessment of major and trace elements in metals and alloys, ensuring compliance with industry standards and optimizing production processes.
Product Introduction
Metal smelting requires strict control over elemental composition to ensure product quality and consistency. The QR-9 spectrometer integrates full-spectrum direct-reading technology with a high-resolution CCD detector to deliver accurate and reproducible measurements across a wide range of metallic elements. Featuring a vacuum optical chamber and digital excitation light source, the QR-9 reduces detection limits and minimizes measurement errors, making it an ideal instrument for smelters, laboratories, and quality assurance teams.
This advanced spectrometer replaces traditional bulky photomultiplier tube (PMT) designs with a full-digital CCD detection system, offering higher sensitivity, faster readout speeds, and superior long-term stability. The instrument is factory-calibrated with preconfigured work curves, enabling users to begin measurements immediately after installation.
Key Advantages
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Rapid Detection – Complete elemental analysis in 25 seconds, significantly increasing production efficiency.
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Wide Wavelength Coverage – Measures elements in the 130–800 nm range, enabling detection of both major and trace metals in smelting processes.
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High Precision & Stability – CCD detector ensures reproducible results with minimal drift over long-term operation.
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Vacuum Optical Chamber – Maintains clean, stable measurement conditions and reduces optical path losses.
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Automatic Optical Path Calibration – Ensures correct spectral alignment and accurate peak identification without manual intervention.
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Prefabricated Work Curves – Factory-optimized parameters allow immediate operation and reliable results.
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Error Prevention System – Protects optical components and detectors from contamination, ensuring consistent performance.
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 Monitoring in Metal Smelting – Ensures alloys and metals meet strict compositional requirements.
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Process Control – Monitors elemental variations during smelting to optimize production parameters.
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Material Grade Identification – Accurately classifies ferrous and non-ferrous alloys for further processing.
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Research & Development – Supports alloy innovation and metallurgical studies.
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Industrial Laboratory Analysis – Enables rapid, reliable testing for large-scale production environments.
