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Thermal Camera Core
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Thermal Security Camera
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Drone Thermal Camera
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Infrared Thermal Camera Module
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High Resolution Thermal Camera Module
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Cooled Infrared Detectors
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Optical Gas Imaging
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Thermal Camera For Fever Detection
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Cooled Camera Modules
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Vehicle Mounted Thermal Camera
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Integrated Dewar Cooler Assembly
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Uncooled Infrared Detectors
LWIR Infrared Thermal Surveillance Camera Module 640x512 9Hz 60Hz
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xResolution | 640x512 / 17μm | NETD | <30mK |
---|---|---|---|
Camera Lens | Multiple Available | Frame Rate | 9Hz/25Hz/30Hz/50Hz/60Hz |
Start-up Time | <10s | Spectral Range | 8~14μm LW |
High Light | Thermal Surveillance Camera Module 60Hz,Thermal Surveillance Camera Module 640x512,LWIR Infrared Thermal Camera |
Uncooled Thermal Surveillance Camera Module LWIR 640x512 17μM
PLUG617 uncooled camera core consists of 640x512 / 17µm uncooled thermal camera sensor and provides clear image and superior performance.
PLUG617 LWIR infrared module is one of the PLUG series that are developed by Global Sensor Technology (GST). The PLUG617 thermal camera core is specially for the security and surveillance application. With it, the thermal security could sense an object’s heat radiation, capture images 24/7, regardless of environmental factors such as darkness, lowlight, strong backlight, etc.
GST cooled uncooled infrared detectors and thermal imaging modules can be widely used and integrated into security monitoring systems, such as smart city road traffic monitoring for improving the efficiency and safety of transport networks, infrastructure monitoring, fire security in the industrial areas, early fire detection for open areas or even over long distances, harbor protection, border security for preventing illegal border crossing, perimeter surveillance, maritime cruising, UAV payloads, electro optical system etc.
- NETD<30mk, High Sensitivity
- Stable Performance
- Easy Integration & Plug-in
- Clear Image Quality & Details
- Strong Environmental Adaptability
Model | PLUG617 |
IR Detector Performance | |
Resolution | 640x512 |
Pixel Pitch | 17μm |
Spectral Range | 8~14μm |
NETD | <30mk |
Image Processing | |
Frame Rate | 9Hz/25Hz/30Hz/50Hz/60Hz |
Start-up Time | <10s |
Analog Video | PAL/NTSC |
Digital Video | RAW/YUV/BT656/LVDS |
Extension Component | USB/Camerlink |
Dimming Mode | Linear/Histogram/Mixed |
Digital Zoom | 1~8X Continual Zoom, Step Size 1/8 |
Image Display | Black Hot/White Hot/Pseudo Color |
Image Direction | Horizontally/Vertically/Diagonally Flip |
Image Algorithm | NUC/AGC/IDE |
Electrical Specification | |
Standard External Interface | 50pin_HRS Interface |
Communication Mode | RS232-TTL, 115200bps |
Supply Voltage | 4~6V |
Typical Power Consumption | <1.2W |
Physical Characteristics | |
Dimension (mm) | 44.5x44.5x36.6 |
Weight | <90g |
Environmental Adaptation | |
Operation Temperature | -40°C ~ +70°C |
Storage Temperature | -45°C ~ +85°C |
Humidity | 5%~95%, Non-condensing |
Vibration | Random Vibration 5.35grms, 3 Axis |
Shock | Half-sine Wave, 40g/11ms, 3 Axis 6 Direction |
Optics | |
Optional Lens | Fixed Focus Athermal: 7.5mm/13mm/19mm/25mm/35mm/50mm/60mm/100mm Motorized Lens: 75mm/100mm/150mm Continuous Optical Zoom: 30-150mm |
GST cooled uncooled infrared detectors and thermal imaging modules can be widely used and integrated into security monitoring systems, such as smart city road traffic monitoring, infrastructure monitoring, fire security, early fire detection, harbor protection, border security, perimeter surveillance, maritime cruising, UAV payloads, electro optical system etc.
1. What is infrared radiation?
When talking about infrared thermal imaging, the first thing to think about is infrared radiation (IR). The wavelength of infrared radiation energy starts at about 700nm and extends to about 1mm. All objects emit a certain amount of heat in the form of infrared radiation, which is invisible to us, because in the entire electromagnetic spectrum, the naked eye can only see "visible light".
2. How does infrared thermal imager work?
The core component of the infrared equipment is the infrared thermal detector, which can sensitively detect the tiny temperature difference of the surrounding objects. Then, it collects this radiation information from the object and outputs the temperature information for imaging, which is based on the temperature difference information. The hotter the object, the more infrared radiation it produces. If the intensity is too high, you can feel it like heat.