 
            | MOQ: | 1 | 
| Price: | Negotiable | 
| Payment Method: | T/T | 
The FC1212 is a large-array high-definition thermal imaging detector developed by BeyondView. This uncooled long-wave infrared detector uses VOx (Vanadium Oxide) sensitive material to deliver exceptional thermal sensitivity, enabling precise detection of minute temperature differences for high-resolution infrared imaging applications.
With its 1280×1024 array size and 12μm pixel size, the FC1212 infrared detector meets the demands of high-definition imaging while offering miniaturization integration with superior cost performance. The mega-pixel array captures detailed thermal signatures with stunning clarity, while the optimized pixel size ensures crisp, high-definition images.
| Model | FC1212 | 
|---|---|
| Sensitive Material | Vanadium Oxide | 
| Package | Ceramic Package | 
| Resolution | 1280×1024 | 
| Pixel Size | 12μm | 
| Spectral Range | 8μm~14μm | 
| Typical NETD | <50mK | 
| Digital Output | Built-in 14 bits ADC | 
| Thermal Time Constant | <12ms | 
| Max. Frame Rate | 50Hz | 
| Power Consumption | <400mW | 
| Size (mm) | 31×31×5.1 (Without Pin Size) | 
| Weight (g) | <15 | 
| Working Temperature | -40°C ~ +85°C | 
 
Our infrared detectors and thermal imaging modules provide high-quality solutions for diverse applications. We offer comprehensive support services including:
Our team of experienced professionals is dedicated to delivering exceptional service and support.
Infrared thermal imaging uses photoelectric technology to detect specific infrared band signals of thermal radiation from objects, converts these signals into human-distinguishable images and graphics, and further calculates temperature values.
Infrared radiation is an electromagnetic wave between visible light and microwave wavelengths. Thermal infrared imaging typically refers to mid-infrared imaging (3-5μm) and far-infrared imaging (8-12μm), focusing on heat sources rather than visible light.
Infrared thermal imaging is divided into three bands:
These components are used in thermography, security & surveillance, intelligent industry, outdoor night vision observation, machine vision, smart driving, UAVs, and consumer infrared products.
Infrared thermal imaging passively receives infrared signals emitted by objects and does not emit radiation. Any object above absolute zero emits infrared signals, which are detected and converted into thermal images.
 
          | MOQ: | 1 | 
| Price: | Negotiable | 
| Payment Method: | T/T | 
The FC1212 is a large-array high-definition thermal imaging detector developed by BeyondView. This uncooled long-wave infrared detector uses VOx (Vanadium Oxide) sensitive material to deliver exceptional thermal sensitivity, enabling precise detection of minute temperature differences for high-resolution infrared imaging applications.
With its 1280×1024 array size and 12μm pixel size, the FC1212 infrared detector meets the demands of high-definition imaging while offering miniaturization integration with superior cost performance. The mega-pixel array captures detailed thermal signatures with stunning clarity, while the optimized pixel size ensures crisp, high-definition images.
| Model | FC1212 | 
|---|---|
| Sensitive Material | Vanadium Oxide | 
| Package | Ceramic Package | 
| Resolution | 1280×1024 | 
| Pixel Size | 12μm | 
| Spectral Range | 8μm~14μm | 
| Typical NETD | <50mK | 
| Digital Output | Built-in 14 bits ADC | 
| Thermal Time Constant | <12ms | 
| Max. Frame Rate | 50Hz | 
| Power Consumption | <400mW | 
| Size (mm) | 31×31×5.1 (Without Pin Size) | 
| Weight (g) | <15 | 
| Working Temperature | -40°C ~ +85°C | 
 
Our infrared detectors and thermal imaging modules provide high-quality solutions for diverse applications. We offer comprehensive support services including:
Our team of experienced professionals is dedicated to delivering exceptional service and support.
Infrared thermal imaging uses photoelectric technology to detect specific infrared band signals of thermal radiation from objects, converts these signals into human-distinguishable images and graphics, and further calculates temperature values.
Infrared radiation is an electromagnetic wave between visible light and microwave wavelengths. Thermal infrared imaging typically refers to mid-infrared imaging (3-5μm) and far-infrared imaging (8-12μm), focusing on heat sources rather than visible light.
Infrared thermal imaging is divided into three bands:
These components are used in thermography, security & surveillance, intelligent industry, outdoor night vision observation, machine vision, smart driving, UAVs, and consumer infrared products.
Infrared thermal imaging passively receives infrared signals emitted by objects and does not emit radiation. Any object above absolute zero emits infrared signals, which are detected and converted into thermal images.