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Introduction
ATRS-1000 series sensors can effectively monitor a variety of combustible gases (CO, etc.) released before the thermal runaway trigger of lithium-ion batteries, and provide effective reference signals for new energy battery management system (BMS), so as to formulate safer early warning strategies. Cubic has mastered a variety of gas sensing and detection technologies. In view of the performance requirements of sensors for thermal runaway monitoring, such as fast response time, accurate measurement, less cross interference, long service life and low power consumption, Cubic innovatively combines non-dispersive infrared (NDIR) spectroscopy and MEMS metal oxide semiconductor technology (MOX), an integrated sensor solution integrating a variety of core sensor technologies is introduced, which can effectively and accurately measure combustible gas.
Features
1.Adopting non-dispersive infrared (NDIR) spectroscopy technology with independent intellectual property rights. The accuracy for CO2 can reach ± (50ppm + 3% reading) in the range of 0-5000ppm, response time T90 < 25s, no gas cross interference, service life up to 15 years.
2.Fully self-developed MEMS metal oxide semiconductor (MOX) technology is utilized. Can measure CO effectively and realize complete self-control from micro hot disk, sensor slurry to chip packaging.
3.Taking advantage of constant temperature design, the measurement is not affected by environmental moisture change.
4.Vehicle-level circuit design, can be suitable to the harsh vehicle environment.
5.Digital signal and analog signal output are optional.
6.The size is small and exquisite, the appearance can be customized.
Applications
1.Thermal Runaway Sensor Solutions