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FC612 LWIR Uncooled Infrared Detector 640x512/12μm for Industrial Inspection

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xResolution | 640×512/12μm | Package | Ceramic Package |
---|---|---|---|
Spectral Response | 8~14μm | Max. Frame Rate | 50Hz |
Working Temperature | -40~+85℃ | Sensitive Material | Vanadium Oxide |
Highlight | Uncooled Infrared Detector 640x512,Industrial Inspection Uncooled Infrared Detector,12μm Uncooled Infrared Detector |
Product Description:
FC612 is a high-performance microbolometer infrared detector featuring a 640x512 pixel array and 12um pixel size. Its optimized microbolometer structure has best sensitivity for long wavelength between 8 and 14 µm.
This long wave 640x512/12μm microbolometer infrared detector, featuring a ceramic package and VOx sensitive material, combines high resolution, excellent sensitivity, and robust durability.
Designed for infrared sensing applications, this detector utilizes a ceramic package and advanced VOx (vanadium oxide) sensing material to deliver exceptional sensitivity and stability. It is an ideal choice for infrared imaging applications across various fields, ensuring reliable performance and precise image data.
Main Features:
• A Variety of Applications
• High Stability
• Sharp Image Presentation
Technical Parameters:
Model | FC612 |
Sensitive Material | Vanadium Oxide |
Package | Ceramic Package |
Resolution | 640*512 |
Pixel Size | 12μm |
Spectral Range | 8μm~14μm |
Typical NETD | <35mK |
Digital Output | Built-in 14 bits ADC |
Thermal Time Constant | <12ms |
Max. Frame Rate | 50Hz |
Power Consumption | <150mW |
Size (mm) | 18.5*18.5*3.8 (Without Interface) |
Weight (g) | <4.5 |
Working Temperature | -40°C ~ +85°C |
Applications:
Technical Support:
We believe that technical support should not only resolve customer issues but also assist clients in building their own technical maintenance teams. Through effective technical support, we aim to empower our customers' maintenance personnel by sharing valuable experiences and knowledge. This collaborative approach ultimately helps us achieve our primary goal: ensuring customer satisfaction and fostering long-term partnerships.
Additionally, we provide technical training to help customers better utilize our products and improve their skills and knowledge. Through these measures, we aim to enhance the customer experience and establish long-term collaborative relationships.
By investing in comprehensive technical support, we strive to enhance our customers' operational efficiency and reliability, thereby solidifying our standing in the industry.
FAQs:
Q: What is infrared thermal imaging technology?
A: Infrared thermal imaging uses photoelectric technology to detect specific infrared band signals of thermal radiation from objects, converts these signals into images and graphics that can be visually distinguished by humans, and further calculates temperature values.
Q: What is the wavelength range for infrared thermal imaging?
A: Infrared ray, also known as infrared radiation, is an electromagnetic wave in the infrared wavelength range between visible light and microwave. Thermal infrared imaging typically refers to mid infrared imaging at 3-5μm and far-infrared imaging at 8-12μm. In these bands, the focus is on heat sources, not visible light. The human eye is sensitive to the wavelength range of about 0.4~0.7μm and cannot see longer wavelengths of thermal energy.
Q: What is the classification of infrared thermal imaging wavebands?
A: Generally speaking, infrared thermal imaging is divided into three bands: short wave, medium wave, and long wave.
Shortwave: wavelength range within 3μm;
Medium wave: wavelength range from 3μm to 5μm;
Long wave: wavelength range from 8μm to 14μm;
Q: What are the applications of infrared detectors and thermal imaging modules?
A: The infrared detectors and thermal imaging modules can be used in a variety of applications such as thermography, security & surveillance, intelligent industry, outdoor night vision observation, machine vision, smart driving, UAVs, and consumer infrared products.
Q: Does infrared thermal imaging emit radiation?
A: Infrared thermal imaging passively receives infrared signals emitted by objects and does not have radiation. As long as an object exceeds absolute zero, an infrared signal will be emitted, which is received by an infrared detector and then converted into a thermal image.