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Redefining the performance boundaries of infrared perception with transformative carbon nanotube materials. Leveraging a temperature coefficient of resistance (TCR) several times higher than traditional vanadium oxide, this sensor achieves ultra-high sensitivity detection of extremely subtle temperature differences, driving the evolution of high-performance infrared imaging toward a more compact, low-cost, and energy-efficient future.
Ultra-High Sensitivity DetectionThe resistance of the core material is extremely sensitive to temperature changes, directly translating into a sharp response to minimal infrared radiation.
Miniaturization & IntegrationCompatible with standard CMOS processes, supporting miniaturized designs and system-on-chip integration
Low-Cost Mass Production PotentialSimplified manufacturing flows offer significant cost advantages for large-scale applications

City-wide surveillance networks; systems for monitoring infrastructure degradation such as bridges and buildings.

Detecting pedestrians and other objects from greater distances in darker environments.

High-resolution sensors assist night operations, increasing the success rate and safety of rescue missions.

Finer perception of body temperature differences for advanced medical diagnostics or health monitoring.
Carbon nanotube crystal round technology challenge, one click docking professional solution.