Optosky Spectroscopy Solutions Shine at ISEMD 2026
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Test object: Graphite (G‑peak) coated with a specific material (D‑peak). Coating thickness is evaluated by the D/G peak ratio – a thicker coating gives a higher D‑peak and a lower G‑peak, while a thinner coating gives the opposite. Each sample measures approximately 6 mm × 4 mm.
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Pain points of the conventional workflow:
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White‑light imaging: A 50× objective lens is used; dozens of images are stitched to form a complete view of the sample, with the focus set on bright spots (which indicate effective material areas).
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Target point identification: Image recognition identifies about 3000 ± 50 target points per sample. The system guides the Raman laser to each point for spectral acquisition, while automatically calculating coordinate positions, area, diameter, and other parameters.
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Testing time: Currently, each point requires an integration time of about 2.5 seconds, making the total testing time per sample 125 minutes – far too slow for production lines.
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Optosky's solution: To address this bottleneck, Optosky has developed a high‑speed Raman imaging system that drastically reduces per‑point integration time and optimises target recognition and path planning. The total inspection time is cut from 125 minutes to under 30 minutes, providing the lithium‑battery industry with an efficient, accurate on‑line quality control solution.
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Band |
Representative Models |
Applications |
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Ultraviolet (200-400nm) |
ATH1010UV |
Fluorescence detection, semiconductor wafer defect analysis |
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Visible-NIR (390-1000nm) |
ATH1010 Push-Broom / ATH1010LT (lightweight) |
Material classification, fruit/vegetable quality, vegetation remote sensing |
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Visible-NIR + Thermal + Visible |
ATH1100 (triple-mode) |
Multi-modal fusion imaging |
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SWIR (900-1700nm) |
ATH1030 / ATH1010-17 |
Mineral exploration, soil organic matter analysis |
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SWIR (1000-2500nm) |
ATH1010-25 |
Geological surveying, moisture content detection |
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Broadband (400-1700nm / 4002500nm) |
ATH1010W-4-17 / ATH1010W-4-25 |
Comprehensive multi-spectral remote sensing |
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MWIR (3.0-5.0μm) |
ATH1080-50 |
Gas leak detection, thermal anomaly monitoring |
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LWIR (7.8-12.5μm) |
ATH1080-120 |
Thermal imaging analysis, military and security target identification |
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ATH1000 Series: Basic hyperspectral cameras
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ATH2000 Series: Handheld hyperspectral cameras for rapid field acquisition
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ATH3000 Series: Hyperspectral scanners (laboratory or conveyor‑belt use)
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ATH5000 Series: High‑performance hyperspectral imagers
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ATH6000 Series: Portable hyperspectral imagers balancing performance and mobility
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ATH7000 Series: Unmanned vehicle‑mounted platforms integrating optical LiDAR, thermal infrared, and visible imaging
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ATH8000 Series: Push‑broom hyperspectral imagers for airborne or rail‑mounted systems
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ATH9000 Series: UV‑fluorescence hyperspectral imagers for biological fluorescence and forensic applications
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ATH1010‑SIF: Sun‑induced fluorescence hyperspectral imager for vegetation photosynthesis and stress monitoring
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HCR5610: Fundus scanning hyperspectral imager for non‑invasive early screening of ophthalmic diseases
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HCR6000: Endoscopic hyperspectral imaging scanner for real‑time imaging of gastrointestinal and other luminal tissues, supporting precision medicine
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ATH9010NY: UAV crop health inspection (pests, diseases, nutrient status)
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ATH9010SL: UAV forest health inspection (canopy cover, fire risk assessment)
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ATH9010 Water Quality Series: Water eutrophication and algal bloom monitoring
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ATH9010‑4‑25 Mining Exploration Series: Mineral distribution mapping, tailings pollution assessment
New Chemical Center Visits Optosky
Optosky at ISEMD 2026 | Global Distributors Wanted
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