The Opgal™ EyeCGas™ Fly Optical Gas Imaging (OGI) Camera, designed for drone and airborne deployment, enables aerial identification and visualization of methane and over 400 volatile organic compounds (VOCs). This capability simplifies pinpointing emissions across expansive or hard-to-reach areas.
Product Overview
Enhance fugitive emission detection with the Opgal™ EyeCGas™ Fly Optical Gas Imaging Camera for drones to enable comprehensive methane and VOC leak inspections.
The Opgal EyeCGas Fly Optical Gas Imaging Camera delivers highly sensitive gas detection technology to drone and airborne inspection platforms. It lets operators identify and visually map methane and more than 400 volatile organic compounds (VOCs) from an aerial vantage point.
By shifting detection away from ground-level operations, this system helps users survey large facilities, extensive pipeline corridors, elevated equipment, storage tanks, flare stacks, and other hard-to-access locations.
This also reduces the necessity for personnel to enter hazardous inspection zones. This lightweight, compact camera integrates seamlessly with compatible drone and airborne platforms, combining advanced optical gas imaging (OGI) with wireless connectivity to support streamlined leak-detection workflows.
Key Capabilities and Benefits
- Offers expanded inspection reach for large or inaccessible locations, providing an additional layer of site monitoring that complements traditional handheld inspections
- Capable of detecting methane and hundreds of VOCs, aiding in the identification of fugitive emissions across a diverse range of industrial applications
- Constitutes a complete airborne inspection solution by design - not merely a camera payload - to boost operational efficiency through simplified deployment
- Enables real-time viewing and collaboration via live image streaming, along with the preservation of inspection data for documentation and subsequent review
- Provides GPS-supported inspection documentation for geo-referenced records and the development of repeatable leak detection and repair (LDAR) workflows
- Features optional airborne gas quantification capabilities, empowering users to estimate emissions from the air for prioritizing LDAR maintenance
- Incorporates advanced image processing for reliable leak detection in industrial contexts, including thermographic imaging features for enhanced inspection versatility
Specifications
Source: Thermo Fisher Scientific – Environmental and Process Monitoring Instruments
| . |
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| Height (Metric) |
94.5 mm |
| IP Rating |
IP55 |
| Length (Metric) |
194 mm |
| Measurement Range |
-2 0 ° to +350 °C |
| Mounting Options |
1/4-20 tripod mount |
| Outputs |
Video output: RTSP |
| Resolution |
- IR resolution: 320 x 240 pixels
- Output resolution: 640 x 480 pixels
- Day camera resolution: 2592 x 1944 pixels
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| Spectral Range |
3.2 μm to 3.4 μm |
| Temperature Range (Metric) |
-20 ° to 40 °C |
| Voltage |
12 V |
| Weight (English) |
3.09 lb. |
| Weight (Metric) |
1.4750 kg |
| Width (Metric) |
103.5 mm |
| Unit Size |
Each |