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The SCO2 series miniature infrared CO2 sensors are designed for real-time measurement of gas concentration changes. Using NDIR technology, they offer high signal-to-noise ratio, strong selectivity, no cross-gas interference, high precision, good long-term stability, and long life. The sensor provides digital serial output to meet various needs in industrial sites and laboratory measurements, widely applied in environmental monitoring, medical care, and other fields.
The SICH5 miniature infrared methane sensor is an industrial-grade sensor for real-time monitoring of gas concentration changes. Based on NDIR technology, it offers better signal-to-noise ratio, selectivity, and resistance to cross-gas interference compared to catalytic and semiconductor principles. It is compatible with analog voltage and digital serial output, widely used in coal mines, firefighting, urban pipe galleries, and gas pressure cabinets.
The SCO2 series miniature infrared CO2 sensors are industrial-grade sensors for real-time concentration measurement. Using NDIR technology, they provide advantages in precision, stability, and lifespan over semiconductor alternatives. Suitable for industrial sites and laboratory use.
The SICH5 series industrial-grade miniature methane sensors use NDIR technology for high precision and long-term stability. Compatible with both analog and digital outputs, they are used extensively in hazardous and industrial environments like coal mines and underground shafts.
The SIC3H8 series miniature propane sensors utilize NDIR technology to ensure high selectivity and stability. They are widely applied in oil and gas, LPG leak monitoring, refrigeration systems, and gas transportation.
The SICH3Br miniature infrared methyl bromide sensor is an economical sensor using NDIR technology. It features dual-beam design, high reliability, and simultaneous voltage/serial output, widely used in chemical industries, fumigation, and laboratories.