The Hinalea 4000 UV Hyperspectral Camera is a compact, full‑frame imaging system designed for high‑precision ultraviolet spectral analysis across the 220–500 nm range.
Using front‑staring Fabry‑Pérot Interferometer (FPI) technology, it captures complete 2D hyperspectral data cubes in seconds, delivering high spectral fidelity without motion artefacts or spatial distortion.
Lightweight, portable and easy to integrate, the Model 4000 UV is engineered for demanding industrial, scientific and research environments where reliable, scan‑free UV hyperspectral imaging is essential.
The Hinalea Model 4000 UV Hyperspectral Camera delivers full‑frame spectral imaging across the 220–500 nm ultraviolet range in a compact, lightweight and highly portable platform. Built on front‑staring Fabry‑Pérot Interferometer (FPI) technology, the Model 4000 enables rapid acquisition of high‑resolution 2D hyperspectral data cubes without motion artefacts, smile or keystone distortion. Scan‑free operation ensures consistent spatial performance across the full field of view, even in dynamic or space‑constrained environments.
Unlike traditional push‑broom hyperspectral systems, Hinalea’s FPI‑HSI architecture allows users to selectively capture non‑sequential spectral bands, dramatically improving data‑capture efficiency and reducing processing time. This dynamic spectral control, combined with exceptional spatial uniformity, makes the Model 4000 ideal for surface characterisation, materials analysis and ultraviolet inspection across industrial, semiconductor, pharmaceutical, biomedical and advanced research applications.
Engineered for precision, flexibility and ease of integration, the Model 4000 combines high spectral fidelity with a rugged, deployment‑ready design. The system includes Hinalea’s powerful proprietary software for fast hypercube acquisition, intuitive image classification and segmentation, and advanced spectral analysis. Together, the hardware and software form a cost‑effective, intelligent UV hyperspectral imaging solution that delivers actionable insights beyond the reach of conventional machine vision systems.
| Specification | Details |
|---|---|
| Dimensions (L × W × H) | 100 × 100 × 400 mm |
| Weight (Mass) | ~3.6 kg (8 lbs) |
| Input Voltage | 110 VAC / 60 Hz or 220 VAC / 50 Hz |
| Data Interfaces | USB‑C / USB 3.0 |
| Operating Temperature | 15°–30°C |
| Humidity | Up to 65%, non‑condensing |
| Standard Lens | 75 mm focal length |
| Sensor Spatial Resolution | 4.2 MP |
| Spectral Range | 220–500 nm |
| Spectral Bands | 100 |
| Spectral Resolution | 4 nm |
| Dynamic Range | User‑selectable 8‑ or 16‑bit |
| Illumination | Optional |
The Hinalea 4000 UV is ideal for industrial and semiconductor environments where precise surface characterisation is critical. Its ultraviolet hyperspectral capabilities enable detection of thin films, residues, defects and contamination that are invisible to conventional machine vision systems, supporting quality control, yield improvement and process monitoring.
In pharmaceutical applications, the Model 4000 UV supports coating inspection, blend uniformity analysis and contaminant detection using label‑free UV spectral signatures. Its full‑frame, distortion‑free imaging allows rapid inspection of tablets, capsules and packaging materials while maintaining consistent spatial and spectral accuracy.
For biomedical and life sciences research, the Hinalea 4000 UV enables non‑destructive, high‑resolution hyperspectral imaging of biological samples. The system is well suited to fluorescence‑based studies, tissue analysis and chemical mapping, providing rich spectral information without the need for complex mechanical scanning.
The Model 4000 UV is a powerful tool for advanced materials research, supporting the analysis of polymers, composites, coatings and nanomaterials. Its selective spectral band capture and high spectral fidelity allow researchers to isolate subtle material differences and accelerate experimental workflows.
In academic and applied research settings, the Hinalea 4000 UV provides a flexible, deployment‑ready platform for exploratory studies and method development. Its compact form factor, scan‑free architecture and comprehensive software suite make it well suited for laboratory experiments, pilot studies and field‑based investigations across multiple disciplines.
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