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Thermal Uncooled IR Detector 384x288 8μm~14μm FM317 With VOx Sensing Material

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xResolution | 384×288/17μm | Working Temperature | -40~+85℃ |
---|---|---|---|
Sensitive Material | Vanadium Oxide | Package | Metal Package |
Spectral Response | 8~14μm | Max. Frame Rate | 50Hz |
Highlight | VOx Sensing Material IR Detector,14μm Uncooled IR Detector,384x288 Thermal IR Detector |
Product Description:
FM317 is a metal-packaged infrared detector. The metal packaging enhances durability and thermal stability of the detector, making it suitable for various harsh environments.
This uncooled detector features a resolution of 384×288 pixels with a pixel size of 17μm. It is sensitive to long waveband which ranges from 8~14μm. Its LWIR spectral band is ideal for seeing through total darkness, smoke, dust, and other complicated conditions.
The VOx sensing material provides excellent thermal sensitivity, allowing the detector to resolve minute temperature differences. By utilizing VOx (Vanadium Oxide) as the sensitive material, the infrared detector has high stability and low noise performance. Integrators can obtain high-quality thermal imaging in various complex environments, enhancing the reliability and effectiveness of applications.
Main Features:
• Stable Performance
• Mature Technology
• Clear Imaging
Technical Parameters:
Model | FM317 |
Sensitive Material | Vanadium Oxide |
Package | Metal Package |
Resolution | 384*288 |
Pixel Size | 17μm |
Spectral Range | 8μm~14μm |
Typical NETD | <30mK |
Digital Output | Built-in 14 bits ADC |
Thermal Time Constant | <12ms |
Max. Frame Rate | 50Hz |
Power Consumption | <180mW |
Size (mm) | 30*19.8*7.32 (Without Pin Size) |
Weight (g) | <15 |
Working Temperature | -40°C ~ +85°C |
Applications:
Customer Services:
Guide infrared recognizes the critical importance of customer service in driving business development and establishing a strong reputation. We are committed to providing customized services that meet diverse needs and individual requirements of our customers.
We have established a dedicated customer service team to ensure that professional personnel are available to promptly address customer issues and needs. We commit to responding to service requests within 24 hours, ensuring that customers receive swift feedback after raising their concerns.
To continuously improve service quality, we regularly conduct customer satisfaction surveys to gather feedback on our products and services. This input will be used to enhance our service processes and product performance.
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.