Parameter | Details |
---|---|
Thermal | 12μm 256×192 |
Thermal Lens | 3.2mm athermalized lens |
Visible | 1/2.7” 5MP CMOS |
Visible Lens | 4mm |
Alarm | 1/1 alarm in/out, 1/1 audio in/out |
Storage | Micro SD Card, IP67, PoE |
Feature | Description |
---|---|
Image Sensor | 1/2.7” 5MP CMOS |
Resolution | 2592×1944 |
Lens | 3.2mm |
FOV | 84°×60.7° |
Temperature Range | -20℃~550℃ |
Thermal image cameras such as the SG-DC025-3T are manufactured using advanced techniques to ensure precision and quality. The process involves the selection of high-grade materials for the infrared detector and optical components. Assemblies like the Vanadium Oxide Uncooled Focal Plane Arrays are integrated into the camera body using automated systems to maintain consistency and reliability. Calibration is performed to ensure measurement accuracy, particularly for temperature detection capabilities. The final assembly undergoes rigorous testing to verify compliance with international standards for performance and environmental durability. This meticulous process guarantees that factory thermal image cameras deliver superior imaging performance across various applications.
Factory thermal image cameras are utilized in a variety of scenarios, providing significant advantages in both industrial and non-industrial settings. In building inspections, they effectively identify insulation deficiencies and heat leaks. For electrical and mechanical maintenance, these cameras help in early detection of hot spots in machinery, reducing the risk of failures. In medical diagnostics, they offer a non-contact method for monitoring body temperature and detecting anomalies. Security applications benefit from their ability to operate in complete darkness, enhancing surveillance capabilities. The advent of factory thermal image cameras has expanded their use in wildlife observation and automotive night vision systems, highlighting their versatility and importance.
Our commitment to customer satisfaction extends beyond the point of sale. We offer comprehensive after-sales support including product training, troubleshooting, and repair services. Our dedicated team provides prompt assistance via multiple channels, ensuring your factory thermal image camera operates optimally throughout its lifecycle. In addition, we provide software updates and maintenance tips to ensure continued performance and efficiency.
Each unit of the factory thermal image camera is securely packaged to withstand the rigors of transportation. We employ a multi-layer protective approach that includes impact-resistant materials and moisture barriers. Products are shipped via trusted logistics partners to ensure timely and safe delivery across regions, accommodating both standard and expedited shipping requests.
Factory thermal image cameras capture images based on infrared radiation rather than visible light, allowing them to visualize heat differences and detect temperature variations with high accuracy, even in complete darkness.
The detection range can vary depending on the specific model and field conditions, but generally, these cameras can effectively detect temperature differences from several meters away under optimal conditions.
Yes, these cameras are designed to withstand extreme temperatures, dust, moisture, and other challenging environmental factors, ensuring reliable performance in diverse settings.
The camera supports up to 20 color palettes, allowing users to customize the display according to their preferences and the specific requirements of their application.
The camera includes advanced calibration processes and uses a high-precision detector to ensure that temperature measurements are accurate, with an accuracy margin of ±2℃/±2%.
Yes, the camera supports Onvif protocol and HTTP API, making it compatible with various third-party systems for easy integration and enhanced functionality.
The camera supports micro SD cards up to 256GB, allowing for extensive storage of captured images and recordings, which is essential for detailed analysis and record-keeping.
Yes, the factory thermal image camera supports smart alarm features, providing real-time alerts for network disconnections, IP conflicts, and other detected anomalies, ensuring prompt response to potential issues.
While primarily designed for industrial and security applications, these cameras can assist in medical diagnostics by non-invasively detecting temperature variations indicative of certain health conditions.
We offer extensive after-sales support including troubleshooting, training, and repair services, alongside software updates and user guidance to ensure optimal performance of your camera.
Factory thermal image cameras play a crucial role in modern manufacturing by providing real-time thermal inspection and analysis. These systems can detect overheating equipment or potential hazards before they lead to costly breakdowns. The integration of these cameras helps maintain consistent product quality and enhances workplace safety by identifying risks that are invisible to traditional cameras. As industries continue to automate, the demand for advanced thermal imaging solutions is expected to increase, making these cameras an essential tool in the manufacturing sector.
The evolution of factory thermal image cameras is marked by significant advancements in resolution, sensitivity, and integration capabilities. Modern cameras boast higher pixel counts and improved thermal sensitivity, enabling them to capture finer details and subtle temperature variations. Additionally, enhancements in connectivity and software integration allow these cameras to seamlessly integrate into existing systems, providing users with comprehensive analytics and automation opportunities. These technological strides are transforming how industries approach maintenance, quality control, and safety.
One notable advantage of using factory thermal image cameras is the potential for significant energy efficiency improvements and cost savings. By identifying energy leaks and optimizing heating and cooling processes, businesses can cut down on unnecessary expenditure and reduce their environmental impact. Additionally, early detection of equipment failures through thermal imaging can prevent unexpected shutdowns and reduce maintenance costs. As companies strive for sustainability, incorporating thermal imaging technology is a smart investment that aligns with green initiatives.
Factory thermal image cameras are a valuable asset in the realm of security, providing enhanced surveillance capabilities, especially in challenging conditions. Unlike conventional cameras, thermal imaging can penetrate smoke, fog, and darkness, delivering clear visuals regardless of the environmental conditions. This makes them ideal for critical applications such as perimeter protection, monitoring restricted areas, and safeguarding assets. As threats become more sophisticated, the adoption of advanced thermal imaging solutions is imperative for comprehensive security strategies.
As we embrace Industry 4.0, factory thermal image cameras are poised to play a pivotal role in smart manufacturing and automation. The integration of thermal imaging with IoT devices and data analytics platforms facilitates predictive maintenance, real-time monitoring, and improved decision-making processes. These cameras provide a wealth of data that can be harnessed to optimize operations and improve efficiency. As industries continue to evolve, the role of thermal imaging in driving innovation and competitiveness cannot be overstated.
While factory thermal image cameras are widely used in industrial contexts, their applications extend far beyond. In wildlife conservation, they help track animal movements and behavior without intrusion. In healthcare, thermal imaging aids in non-contact diagnosis and monitoring of various medical conditions. The versatility of these cameras has opened up new possibilities across different sectors, demonstrating their value as a multifunctional tool that can address diverse challenges effectively.
In the construction and building maintenance industry, factory thermal image cameras are indispensable for optimizing inspections. They provide an effective means to identify poor insulation, moisture intrusion, and structural anomalies without invasive methods. By delivering accurate thermal data, these cameras enable building inspectors to assess and rectify issues promptly, ensuring energy efficiency and structural integrity. This technology not only enhances inspection accuracy but also accelerates the evaluation process, saving time and resources.
The science behind factory thermal image cameras is rooted in the principles of infrared radiation and heat detection. Every object emits infrared energy proportional to its temperature, and these cameras capture this radiation to create a visual representation of temperature distribution. By converting infrared energy into electronic signals, thermal cameras provide detailed insights into invisible heat patterns. Understanding this science helps users appreciate the technology's capabilities and make informed decisions on its applications.
Implementing factory thermal image cameras can present challenges such as calibration, environmental interference, and integration with existing systems. Ensuring accurate calibration is vital for reliable temperature readings, while environmental factors like reflective surfaces and weather conditions can affect performance. Overcoming these challenges requires strategic planning, training, and selecting the right technology for specific applications to maximize the benefits of thermal imaging.
Predictive maintenance is revolutionizing the way industries approach equipment and asset management, with factory thermal image cameras at the forefront. These cameras allow for continuous monitoring and detection of potential failures before they occur, enabling timely intervention. By analyzing thermal data, maintenance teams can predict and address issues, minimizing downtime and extending the lifespan of machinery. As industries increasingly adopt predictive maintenance strategies, thermal imaging will remain a key enabler of efficient and effective asset management.
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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) |
SG-DC025-3T is the cheapest network dual spectrum thermal IR dome camera.
The thermal module is 12um VOx 256×192, with ≤40mk NETD. Focal Length is 3.2mm with 56°×42.2° wide angle. The visible module is 1/2.8″ 5MP sensor, with 4mm lens, 84°×60.7° wide angle. It can be used in most of short distance indoor security scene.
It can support Fire detection and Temperature Measurement function by default, also can support PoE function.
SG-DC025-3T can be widely using in most of indoor scene, such as oil/gas station, parking, small production workshop, intelligent building.
Main features:
1. Economic EO&IR camera
2. NDAA compliant
3. Compatible with any other software and NVR by ONVIF protocol
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