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KGD-ATRS-210 Battery Thermal Runaway Monitoring Sensor Power Supply Voltage Standard Voltage 12VDC Data Refresh ≤1s

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Xi'an Kacise Optronics Co.,Ltd.
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Province/State:Shaanxi
Country/Region:china
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KGD-ATRS-210 Battery Thermal Runaway Monitoring Sensor Power Supply Voltage Standard Voltage 12VDC Data Refresh ≤1s

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Brand Name :KACISE
Model Number :KGD-ATRS-210
Certification :CE
Place of Origin :CHINA
MOQ :1PCS
Payment Terms :L/C, D/A, D/P, T/T, Western Union, MoneyGram
Supply Ability :1000 Piece/Pieces per Week negotiable
Delivery Time :5-8 work days
Packaging Details :each unit has individual box and all boxes are packed in standard packages or customers requests available
Data Refresh :≤1s
Response Time :T90 < 15s
Output Mode :CAN/LIN/UART/analog voltage
Working Conditions :-40℃~+85℃; 0~99%RH (non-condensing)
Storage Conditions :-40℃~+110℃; 0~99%RH (non-condensing)
Power Supply Voltage :9~16VDC, standard voltage +12VDC
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Battery Thermal Runaway Monitoring Sensor KGD-ATRS-210

KGD-ATRS-210 Battery Thermal Runaway Monitoring Sensor Power Supply Voltage Standard Voltage 12VDC Data Refresh ≤1s

Product Introduction
The Battery Thermal Runaway Monitoring Sensor KGD-ATRS-210 can effectively monitor indicators such as CO₂ + CO, temperature and pressure released before the triggering of battery thermal runaway, and transmit the measurement signals to the BMS through CAN communication. This solution has remarkable features such as accurate measurement, fast response time, low cross-interference, low power consumption and long service life.
Product Features
  • For the measurement of CO₂, the non-dispersive infrared (NDIR) absorption spectroscopy technology is adopted.
  • The accuracy can reach ± (50ppm + 5% of the reading) within the measurement range of 0-10000ppm; the response time is fast with T90 < 15s, there is no gas cross-interference, the ultra-low power consumption mode can reach the μA level, and the service life can be up to 15 years.
  • For the measurement of CO, an independently designed MEMS production line is used to produce metal oxide semiconductor (MOX) sensors. The electronic nose technology is adopted to screen sensors with good selectivity for CO gas, little influence from temperature and humidity, and stable detection signals. At the same time, it can be expanded to detect a variety of other gases according to the thermal runaway research results of the manufacturer; the service life of the semiconductor CO sensor exceeds 15 years, and it has corrosion resistance to silicone gases.
  • The MEMS MOX sensor for CO measurement has little influence from temperature and humidity, stable detection signals, and can be expanded to detect a variety of gases; its service life exceeds 15 years, and it has good corrosion resistance to silicone gases.
  • The module adopts a mature automotive-grade circuit design, which can adapt to harsh in-vehicle environments.
  • It has real-time CAN communication, and the protection level can reach IP65.
Technical Parameters
Detection Parameters CO₂, CO, temperature, pressure (CH₄ + H₂ can be expanded and customized)
Detection Range CO₂: 0ppm-10000ppm; CO: 1-1000ppm; Air pressure P: 80kPa~120kPa; Temperature T: -40℃~125℃
Resolution 1ppm
Detection Precision CO₂: ±(50ppm + 5% of the reading) CO: take the larger value between ±40ppm or ±30% of the reading Pressure P: ±1kPa Temperature T: ±2℃
Data Refresh ≤1s
Response Time T90 < 15s
Output Mode CAN/LIN/UART/analog voltage
Working Conditions -40℃~+85℃; 0~99%RH (non-condensing)
Storage Conditions -40℃~+110℃; 0~99%RH (non-condensing)
Power Supply Voltage 9~16VDC, standard voltage +12VDC
Average Working Current ≤100mA, @+12VDC (the low-power consumption mode can be started, supporting 24-hour online monitoring)
Static Current <100μA, in sleep mode
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