Parameter | Description |
---|---|
Thermal Resolution | 256×192 |
Thermal Lens | 3.2mm/7mm athermalized lens |
Visible Sensor | 1/2.8” 5MP CMOS |
Visible Lens | 4mm/8mm |
Alarm | 2/1 alarm in/out |
Protection Level | IP67 |
Power | PoE |
Specification | Detail |
---|---|
Color Palettes | 18 selectable |
Field of View | 56°×42.2°/24.8°×18.7° |
Temperature Range | -20℃~550℃ |
According to authoritative studies, the manufacturing process of infrared cameras involves several critical steps to ensure optimal performance and accuracy. Initially, the development of the thermal module requires precise assembly of uncooled focal plane arrays, like Vanadium Oxide, which are sensitive to infrared radiation. An advanced calibration process follows, ensuring that each camera accurately translates infrared radiation into thermal images. Concurrently, the visible sensor module is integrated, requiring careful alignment and focus testing to ensure high-definition imaging. The process also involves rigorous testing for durability and functionality across intended applications. Conclusively, the assembly is encapsulated within weather-resistant IP67-rated housing, ensuring long-lasting field operation in various environmental conditions.
Research indicates that infrared cameras are versatile tools in home inspection, providing invaluable data across various scenarios. Their primary application is in moisture detection within walls or under floors where traditional methods may fail. The technology is also pivotal in assessing electrical systems by identifying overheating components that could pose safety risks. Additionally, inspectors utilize these cameras for evaluating insulation effectiveness, detecting heat loss points that compromise energy efficiency. In roofing inspections, infrared technology aids in pinpointing leaks, even in areas inaccessible to standard visual methods. Lastly, HVAC systems benefit from infrared analysis by revealing airflow issues or temperature disparities, ensuring optimal system performance.
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Target: Human size is 1.8m×0.5m (Critical size is 0.75m), Vehicle size is 1.4m×4.0m (Critical size is 2.3m).
The target detection, recognition and identification distances are calculated according to Johnson’s Criteria.
The recommended distances of Detection, Recognition and Identification are as follows:
Lens |
Detect |
Recognize |
Identify |
|||
Vehicle |
Human |
Vehicle |
Human |
Vehicle |
Human |
|
3.2mm |
409m (1342ft) | 133m (436ft) | 102m (335ft) | 33m (108ft) | 51m (167ft) | 17m (56ft) |
7mm |
894m (2933ft) | 292m (958ft) | 224m (735ft) | 73m (240ft) | 112m (367ft) | 36m (118ft) |
SG-BC025-3(7)T is the cheapest EO/IR Bullet network thermal camera, can be used in most of CCTV security & surveillance projects with low budget, but with temperature monitoring requirements.
The thermal core is 12um 256×192, but the video recording stream resolution of the thermal camera can also support max. 1280×960. And it also can support Intelligent Video Analysis, Fire detection and Temperature Measurement function, to do temperature monitoring.
The visible module is 1/2.8″ 5MP sensor, which video streams could be max. 2560×1920.
Both thermal and visible camera’s lens is short, which has wide angle, can be used for very short distance surveillance scene.
SG-BC025-3(7)T can be widely using in most of small projects with short & wide surveillance scene, such as smart village, intelligent building, villa garden, small production workshop, oil/gas station, parking system.
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