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The US7500D Ultrasonic Oxygen Sensor is an economical and practical sensor for measuring oxygen flow and concentration in binary gases. Developed to meet market demand, this new sensor features a compact size and wide voltage power supply, making it more flexible for various applications.
LUFTMY NDIR refrigerant sensor DM4205 targets A2L gases. Based on NDIR technology, it provides early warning for leaks with fast response and high precision.
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 Laser Methane Sensor DCH5 is based on Tunable Diode Laser Absorption Spectroscopy technology, using a high-performance probe and a specially processed gas chamber. It features high precision, high sensitivity, long life, and stable performance. Using a temperature compensation algorithm, it is unaffected by environmental interference and can work stably in harsh conditions and complex gas environments. The product adopts a modular design for easy installation and supports calibration operations via a TTL communication interface. Low power design facilitates maintenance and integration.
The US8500E is an economical sensor for oxygen concentration measurement. Favored by customers for its stable performance and cost-efficiency over many years.
The DM4204 monitors R1234ZE leaks in real-time. Its patented technology solves issues related to aging and environmental factors, providing superior long-term stability.
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 ICH5 Methane Sensor is a four-channel methane sensor developed based on Non-Dispersive Infrared (NDIR) technology, which can monitor methane gas leaks in the environment in real-time. This sensor features high precision and excellent long-term stability, widely used in household gas alarms, portable gas detectors, natural gas leak detection, gas pressure regulating cabinets, and other fields.
US8500D is a medical-grade oxygen sensor. Unlike electrochemical sensors, it has a 5-year life, no maintenance, and handles flow rates up to 80L/min. Ideal for ventilators.
DM4203 is an NDIR refrigerant sensor designed for HVAC equipment like fan coils and heat pumps. It features a built-in relay for direct control of fans and compressors, ensuring high reliability in leak detection.
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 MCH4 methane sensor module based on MEMS gas-sensing elements is primarily used to test natural gas leaks, providing relative equivalent concentrations of methane gas in the air. Test data is communicated via I²C, UART, or high/low level interfaces. The MEMS element surface can be protected with a filter membrane. The sensor module can select pin or socket assembly as needed.