G330Z3 Cooled Infrared Detector with 320x256 Resolution and 3.2-3.5μm Spectral Range for Gas Leak Detection
The G330Z3 cooled infrared detector is specifically engineered for optical gas imaging (OGI) applications, converting infrared radiation into electrical signals for precise gas leak detection. With standard mechanical, optical, and electronic interfaces, this detector is ideal for environmental monitoring, gas leakage detection, and chemical gas analysis in petrochemical plants and refineries.
Utilizing advanced Mercury Cadmium Telluride (MCT) material, the G330Z3 delivers exceptional sensitivity and accuracy for detecting low-concentration gases. Its high performance across infrared wavelengths enables real-time visualizations for rapid assessment and response in critical industrial applications.
- Optical Gas Imaging: Long-range non-contact detection with efficient, secure wide-range gas leak identification
- High Sensitivity: Cooled infrared detector excels in low gas concentration and slow gas flow applications
- Integrator-Friendly Design: Supports 12V power supply with spectral range of 3.2μm±0.1μm~3.5μm±0.1μm
| Model | G330Z3 |
|---|---|
| Applications | VOCs Petrochemical Gas Detection |
| Sensitive Material | Mercury Cadmium Telluride (MCT) |
| Resolution | 320×256 |
| Pixel Size | 30μm |
| Spectral Response | 3.2μm±0.1μm~3.5μm±0.1μm |
| Typical NETD | 10mK (F1.5) |
| Effective Pixel Rate | ≥99.5% |
| Response Non-uniformity | ≤8% |
| Cryocooler | RC3 |
| Steady Power Consumption | ≤7W |
| Max. Power Consumption | ≤15W |
| Power Supply | 12V DC |
| Cooling Time | ≤7min |
| Size | 142×58.5×71 mm |
| Weight | ≤600g |
| Working Temperature | -45℃ to +71℃ |
Our comprehensive technical support extends beyond issue resolution to help clients build their own maintenance teams. We share knowledge and experience to empower customers, ensuring satisfaction and fostering long-term partnerships.
We provide technical training to enhance product utilization and customer skills, improving operational efficiency and reliability while strengthening our industry reputation.
Infrared thermal imaging detects specific infrared band signals from object thermal radiation, converting them into visible images and graphics while calculating temperature values.
Infrared radiation is an electromagnetic wave between visible light and microwave. Thermal imaging typically refers to mid-infrared (3-5μm) and far-infrared (8-12μm) bands, focusing on heat sources invisible to the human eye (which sees 0.4-0.7μm).
Infrared thermal imaging has three bands: Shortwave (under 3μm), Medium wave (3-5μm), and Long wave (8-14μm).
Applications include thermography, security surveillance, intelligent industry, night vision observation, machine vision, smart driving, UAVs, and consumer infrared products.
No, it passively receives infrared signals emitted by objects above absolute zero, converting them into thermal images without emitting radiation.
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