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Super417W LWIR 400×30017μm VOx Uncooled Infrared Thermal Detector
Super417W LWIR 400×30017μm VOx Uncooled Infrared Thermal Detector

Apex417W
LWIR 400×300/17μm VOx Uncooled Infrared Thermal Detector

The Super417W uncooled infrared detector is designed for consumer markets and widespread applications. It adopts advanced Wafer-Level Packaging (WLP) technology, enabling a streamlined manufacturing process, compact size, and reduced costs, further simplifying mass integration of SWaP³ devices.

Main Features

Wafer-Level Packaging for Cost-Effective Integration
Wafer-Level Packaging for Cost-Effective Integration
  • Compact size and lightweight design for easy integration into space-constrained devices

  • Low-power operation supports extended runtime for portable devices

  • Optimized for mass production and cost efficiency, ideal for large-scale applications

Energy-saving for Longer Battery Life
Energy-saving for Longer Battery Life
  • Power consumption: <180mW

  • Prolongs device battery life, adaptable to a wide range of application scenarios


High Sensitivity, Outstanding Performance
High Sensitivity, Outstanding Performance
  • High detection sensitivity with typical NETD<40mK

  • Delivers clear imaging and accurate temperature measurement

Specifications

ModelSuper417W
Sensitive MaterialVOx
PackageWafer-Level
Resolution400×300
Pixel Size17μm
Spectral Response8μm~14μm
NETD<40mK
Output SignalBuilt-in 14 bits ADC
Thermal Response Time﹤12ms
Max. Frame Rate50Hz
Power Consumption﹤180mW
Size(mm)18×16
Weight(g)﹤2
Operating Temperature-40℃~ +85℃


Applications

Learn More >>
Bellows Hotspot Detection
Bellows Hotspot Detection
Electrical Cabinet Thermal Scan
Electrical Cabinet Thermal Scan
Molten Iron Temperature Check
Molten Iron Temperature Check
Power Line Fault Detection
Power Line Fault Detection
  • Wafer-Level Packaging

  • Pixel Size: 12μm

  • Cost-Effective Integration

  • Pixel Size: 12μm

  • Wafer-Level Packaging

  • Cost-Effective Integration

  • Pixel Size: 12μm

  • Energy Efficient:<150mW

  • Cost-effective


  • High Detection Sensitivity, Typical NETD < 30mK

  • Energy Efficient:<180mW

  • Lightweight Structure


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