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Contact Person :
Wendy Wang
Phone Number :
+86 27 50185150
400x300 Resolution 50Hz Frame Rate Uncooled FPA Thermal Detector with Ceramic Package for Security Monitoring
Product Details
| Resolution | 400x300 / 12μm | NETD | <40mK |
|---|---|---|---|
| Spectral Range | 8~14μm | Size | 18.5×18.5×3.8 (Without Pin Size) |
| Highlight | Uncooled FPA Thermal Detector Camera,50Hz Thermal Detector Camera,Security Monitoring Uncooled Infrared Detectors |
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Product Description
Uncooled FPA Thermal Detector Camera 50Hz For Security Monitoring
400×300 / 12 μm Uncooled FPA Thermal Imaging Detector with Ceramic Package
The Apex412C uncooled infrared detector is a new infrared product developed by SensorMicro. It utilizes international mainstream vanadium oxide material, providing outstanding comprehensive performance. This vanadium oxide (VOx) microbolometer detector covers the long wavelength range from 8 to 14μm with a resolution of 400×300 and pixel size of 12μm.
Ceramic packaging represents the most popular packaging technology currently available on the market. This technology significantly reduces the detector's size, weight, and power consumption. By integrating the ceramic packaging infrared detector, infrared cameras can deliver clear and sharp images.
This new ceramic package infrared detector provides expanded options for customers across various industries including Industrial Automation, Intelligent Security, Unmanned Platforms, Robotics, Intelligent Hardware, Advanced Driver Assistance Systems, and Firefighting.
Main Features
- High thermal sensitivity, NETD<35mK
- Frame rate up to 50Hz
- Miniature size as low as 18.5mm×18.5mm×3.8mm
- Light weight, less than 4.5g
- Low power consumption: 140mW
Product Specifications
| Model | Apex412C |
|---|---|
| Sensitive Material | VOx |
| Package | Ceramic |
| Resolution | 400×300 |
| Pixel Size | 12μm |
| Spectral Response | 8μm~14μm |
| NETD | <35mK |
| Output Signal | Built-in 14 bits ADC |
| Thermal Response Time | <12ms |
| Max. Frame Rate | 50Hz |
| Power Consumption | <140mW |
| Size(mm) | 18.5×18.5×3.8 |
| Weight(g) | <4.5 |
| Operating Temperature | -40℃ ~ +85℃ |
Industrial Applications
The Apex412C thermal imaging detector is widely used in many areas, including ADAS, Security Monitoring, Handheld Devices, Machine Vision, Thermography, Power Maintenance, Metallurgy Petrochemical, and Scientific Research.
Company Profile
SensorMicro is a world-leading infrared detector manufacturer and service provider. We are committed to providing customers worldwide with high-performance uncooled and cooled thermal imaging detectors while sharing our professional application experience.
SensorMicro delivers advanced infrared detectors, camera cores, and modules with versatile formats and wavebands. Designed for clarity, sensitivity, and efficiency, our products integrate seamlessly into diverse systems—empowering next-generation imaging and sensing applications across industries.
SensorMicro detectors have been widely used in thermography, security & surveillance, personal vision, automotive, and consumer infrared products. Our volume production capability enables us to meet the growing demand from all existing and emerging markets.
Frequently Asked Questions
What is infrared thermal imaging?
Infrared thermal imaging is a method that utilizes infrared radiation and thermal energy to gather information about objects. It converts invisible infrared radiation into visible infrared thermal images displaying temperature distribution of the target surface. Different objects and even different parts of the same object have different radiation ability and infrared reflection strength.
What can infrared imaging be used for?
• Night vision
• Search & rescue
• Non-destructive testing
• Thermography
• Security & monitoring
• Firefighting
• Search & rescue
• Non-destructive testing
• Thermography
• Security & monitoring
• Firefighting
What is a thermal imaging module?
A thermal imaging module typically consists of an infrared detector, infrared lens, and hardware electronics with embedded software and algorithms. It represents the minimum functional unit of a thermal imaging device.
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