Factory Thermal Cameras with High-Resolution Imaging

Thermal Cameras

Our factory Thermal Cameras provide unmatched imaging quality and functionality across various conditions, perfect for industrial and security applications.

Specification

DRI Distance

Dimension

Description

Product Tags

Product Main Parameters

Thermal ModuleVanadium Oxide Uncooled Focal Plane Arrays
Resolution384×288
Pixel Pitch12μm
Spectral Range8 ~ 14μm
NETD≤40mk (@25°C, F#=1.0, 25Hz)
Focal Length9.1mm, 13mm, 19mm, 25mm

Common Product Specifications

Image Sensor1/2.8” 5MP CMOS
Resolution2560×1920
Field of View46°×35°, 24°×18°
Illuminator0.005Lux @ (F1.2, AGC ON), 0 Lux with IR
WDR120dB

Product Manufacturing Process

The manufacturing process of factory Thermal Cameras involves precision engineering to ensure thermal sensitivity, resolution, and reliability. Utilizing Vanadium Oxide Uncooled Focal Plane Arrays allows for high thermal resolution. The microbolometer production is a critical stage where quality controls are essential to maintain sensitivity and accuracy of thermal detection. Advanced assembly techniques integrate the thermal and visible modules to offer bi-spectrum capabilities. Rigorous testing ensures that cameras can withstand various environmental conditions, meeting IP67 standards for protection and performance. As indicated in authoritative studies, this meticulous process enhances the durability and effectiveness of thermal imaging technology.

Product Application Scenarios

Factory Thermal Cameras are extensively utilized in various scenarios. In industrial maintenance, they help in predictive assessments, detecting overheating components before failure. In building inspections, these cameras identify thermal irregularities indicating energy inefficiency or structural issues. Security operations benefit from their ability to monitor perimeters under low-light conditions. Additionally, they are critical in firefighting, providing visibility in smoke-filled environments, and are useful in medical diagnostics to assess physiological conditions. Scholarly articles underline the transformative impact of thermal imaging across industries, emphasizing its non-intrusive approach and adaptability to adverse conditions.

Product After-Sales Service

Our factory provides comprehensive after-sales services, including technical support, troubleshooting, and warranty programs. Customers can access online resources and direct assistance from our support team to address any issues promptly.

Product Transportation

Factory Thermal Cameras are securely packaged to withstand transport conditions. We collaborate with reliable courier services, ensuring timely and safe delivery worldwide.

Product Advantages

  • High Sensitivity: Capture precise thermal data.
  • Versatility: Suitable for diverse applications.
  • Durability: Built to withstand harsh environments.
  • Non-Intrusive: Maintain object integrity during analysis.
  • Effective in Darkness: Operates without visible light.

Product FAQ

  1. How does a thermal camera work?

    Factory Thermal Cameras detect infrared radiation emitted by objects. A microbolometer measures this radiation; specialized software converts it into a thermographic image, highlighting temperature variations.

  2. What are the main applications of thermal cameras?

    They are widely used in industrial maintenance, security, building diagnostics, firefighting, and medical diagnostics, providing crucial insights through thermal imaging.

  3. How effective are thermal cameras in the dark?

    Factory Thermal Cameras are highly effective in complete darkness and adverse weather, relying on infrared radiation instead of visible light for operation.

  4. What is the thermal resolution of these cameras?

    The cameras feature a thermal resolution of 384×288, with variations available depending on the focal length and application.

  5. Can thermal cameras measure temperature accurately?

    Yes, they offer temperature measurements with an accuracy of ±2°C or ±2% of the maximum value, supporting multiple measurement rules for precise monitoring.

  6. Are these cameras durable for outdoor use?

    Yes, they are rated IP67 for protection against dust and water, ensuring reliability in outdoor and challenging conditions.

  7. Do these cameras support video surveillance features?

    They support intelligent video surveillance features like tripwire and intrusion detection, enhancing security capabilities.

  8. How do you integrate these cameras with existing systems?

    Factory Thermal Cameras support ONVIF protocol, HTTP API, and SDK for seamless integration with third-party systems.

  9. Can the cameras be customized?

    Yes, we offer OEM and ODM services to meet specific requirements, allowing customization based on usage needs.

  10. What is the warranty period for these cameras?

    Our products come with a standard warranty period, and extended warranty options are available for additional coverage.

Product Hot Topics

  1. Integrating Thermal Cameras in Smart City Infrastructure

    As urban areas grow, the integration of factory Thermal Cameras in smart city infrastructures becomes crucial. These cameras enhance traffic monitoring, security, and environmental analysis, contributing to efficient, safe urban living. By providing real-time data and insights, they support urban planners and local governments in making informed decisions. The use of thermal imaging in smart cities reflects the trend towards data-driven urban management, improving quality of life while ensuring sustainable city growth.

  2. Thermal Imaging for Predictive Maintenance in Factories

    The role of factory Thermal Cameras in predictive maintenance cannot be overstated. They detect heat anomalies in machinery, allowing technicians to address potential issues before they lead to failures. This proactive approach minimizes downtime and maintenance costs, improving operational efficiency. As industries aim for higher productivity and reduced operational risks, the use of advanced thermal imaging is becoming more widespread, ensuring factories run smoothly and safely.

  3. The Role of Thermal Cameras in Enhancing Building Energy Efficiency

    Factory Thermal Cameras are pivotal in enhancing building energy efficiency by detecting areas of heat loss and insulation deficiencies. By identifying these weak spots, building managers can implement corrective measures to improve energy consumption, resulting in cost savings and reduced environmental impact. The use of thermal cameras underscores the commitment to sustainability and energy efficiency, proving invaluable in modern building management practices.

  4. Advancements in Thermal Camera Technology

    Recent advancements in factory Thermal Camera technology have led to increased resolution, sensitivity, and application scope. Innovations in sensor technology and image processing have expanded the usability of these cameras across various fields. With ongoing research and development, future iterations are expected to deliver even greater improvements in data accuracy and application versatility, solidifying their place in technological advancements.

  5. Using Thermal Cameras for Environmental Conservation

    Factory Thermal Cameras are increasingly used in environmental conservation efforts. They enable researchers to monitor wildlife and ecological changes without disturbing natural habitats, providing crucial data for conservation initiatives. As global conservation efforts intensify, the role of thermal imaging in tracking and preserving biodiversity becomes more significant, supporting sustainable environmental practices.

  6. Thermal Cameras in Modern Security Systems

    Enhancing security systems with factory Thermal Cameras offers unmatched advantages, especially in low-light and obstructed environments. They provide reliable surveillance, detecting intrusions and enhancing overall security measures. As security threats evolve, incorporating thermal imaging into security frameworks provides a proactive layer of protection, ensuring safe and secure premises.

  7. Improving Firefighting Strategies with Thermal Imaging

    Factory Thermal Cameras are invaluable in firefighting strategies, providing clear views through smoke to identify hotspots and locate trapped individuals. Their use in emergency response operations enhances situational awareness, allowing firefighters to make informed decisions quickly. As firefighting techniques continue to evolve, the integration of thermal imaging is key to improving safety and operational effectiveness.

  8. Thermal Imaging in Veterinary Medicine

    Thermal imaging is making significant strides in veterinary medicine, with factory Thermal Cameras aiding in the diagnosis and monitoring of animal health. By detecting temperature changes indicative of health issues, veterinarians can offer more accurate assessments and treatments. As the field of veterinary science advances, the use of thermal imaging continues to play an essential role in animal healthcare.

  9. Thermal Cameras in Drone Technology

    The fusion of factory Thermal Cameras with drone technology opens new avenues for applications such as aerial surveillance, agriculture monitoring, and search and rescue missions. This integration provides new perspectives and enhanced data collection, proving invaluable across various industries. As drone technology continues to evolve, the incorporation of thermal imaging is set to expand its capabilities and applications further.

  10. The Impact of Thermal Cameras on Industrial Safety

    Factory Thermal Cameras significantly impact industrial safety by providing early warnings of overheating and equipment failure risks. Regular thermal inspections enable industries to maintain safety standards and prevent accidents. As safety regulations become stricter, the use of thermal imaging offers a reliable solution for industrial risk management, enhancing workplace safety and compliance.

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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

    9.1mm

    1163m (3816ft)

    379m (1243ft)

    291m (955ft)

    95m (312ft)

    145m (476ft)

    47m (154ft)

    13mm

    1661m (5449ft)

    542m (1778ft)

    415m (1362ft)

    135m (443ft)

    208m (682ft)

    68m (223ft)

    19mm

    2428m (7966ft)

    792m (2598ft)

    607m (1991ft)

    198m (650ft)

    303m (994ft)

    99m (325ft)

    25mm

    3194m (10479ft)

    1042m (3419ft)

    799m (2621ft)

    260m (853ft)

    399m (1309ft)

    130m (427ft)

     

    2121

    SG-BC035-9(13,19,25)T is the most economic bi-specturm network thermal bullet camera.

    The thermal core is the latest generation 12um VOx 384×288 detector. There are 4 types Lens for optional, which could be suitable for different distance surveillance, from 9mm with 379m (1243ft) to 25mm with 1042m (3419ft) human detection distance.

    All of them can support Temperature Measurement function by default, with -20℃~+550℃ remperature range, ±2℃/±2% accuracy. It can support global, point, line, area and other temperature measurement rules to linkage alarm. It also supports smart analysis features, such as Tripwire, Cross Fence Detection, Intrusion, Abandoned Object.

    The visible module is 1/2.8″ 5MP sensor, with 6mm & 12mm Lens, to fit thermal camera’s different Lens angle.

    There are 3 types of video stream for bi-specturm, thermal & visible with 2 streams, bi-Spectrum image fusion, and PiP(Picture In Picture). Customer could choose each trye to get the best monitoring effect.

    SG-BC035-9(13,19,25)T can be widely using in most of thermal surveillance projects, such as intelligent tracffic, public security, energy manufacturing, oil/gas station, parking system, forest fire prevention.

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