Product

Sensors
MEMS

Sensors

MEMS-based odor sensing chips achieve gas composition and concentration monitoring through the interaction between nanostructured sensitive films and target gas molecules. The sensor operates based on changes in the electrical properties of the sensitive film materials. It enables the detection of various gases, including specific gases such as CO, NOx, SO₂, O₃, NH₃, H₂S, TVOC, methane, acetone, formaldehyde, ethanol, and xylene. This single-sensor product features high consistency, high selectivity, high stability, and low power consumption, making it highly valuable in applications such as healthcare electronics, automotive electronics, consumer electronics, environmental protection and petrochemical industries, smart manufacturing, food industry, and pet electronics.
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Module
MEMS

Module

MEMS Gas Sensor Module is a compact, low-cost, and easy-to-use gas sensor PCB module designed for measuring and monitoring the concentration of various gases. The module consists of a gas sensor, control circuit, and communication interface. It converts the changes in the electrical properties of the sensitive materials in MEMS gas sensors into digital signals for output. Compared with conventional gas sensors, this module offers advantages including higher selectivity, better stability, faster response time, and lower power consumption. In addition, it supports multiple communication interfaces, enabling convenient data exchange, storage, and analysis with other devices. The module is widely used in applications such as environmental monitoring, industrial manufacturing, security monitoring, smart cities, and smart homes.
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E-Nose
MEMS

E-Nose

CM-ENose3 continues the technical closed loop of “sensor array + intelligent algorithms + scenario database”. It has achieved comprehensive upgrades in structural design, sampling methods, and flow-path expansion capabilities. Featuring an innovative design integrating a pump-assisted sampling module, built-in micro test chamber, and expandable flow path, CM-ENose3 enables a data standardization transformation from an “open sensing environment” to a “micro test chamber-based detection system.” Compared with the previous generation based on diffusion sensing, the third-generation system supports active pump-driven sampling, significantly improving response speed, measurement consistency, and adaptability to complex environments.
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End product
MEMS

End product

The CM-PD100 Portable Odor Detection Instrument is an on-site rapid detection device integrating a sensor array, miniaturized detection system, intelligent algorithms, and data management capabilities. It enables rapid identification and quantitative analysis of odor molecules, including malodorous gases and volatile organic compounds (VOCs). The device is designed to meet mobile detection requirements across multiple application scenarios, including environmental monitoring, industrial safety, food safety, healthcare, and public health.
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Applications

Explore our solutions for smart homes, environmental monitoring, healthcare electronics and industrial applications.

Smart Home

Smart Home

Smart Home

In the smart home sector, MEMS gas sensors can monitor indoor environmental quality, detect gas leaks, smoke, and other abnormal conditions, ensuring household safety. They help improve the intelligence level of smart home devices and enhance users’ quality of life. As an effective solution for indoor gas environment monitoring, air quality monitoring devices have gained significant adoption in recent years due to their advantages such as portability, ease of operation, and real-time monitoring capability. However, most conventional indoor air quality monitors currently available offer limited functionality and can only measure individual environmental parameters, making it difficult to comprehensively evaluate indoor air conditions. Furthermore, many indoor gas detection devices do not perform further analysis or processing of the detected gas parameters, overlooking the cross-sensitivity issues commonly found in gas sensors. As a result, measurement accuracy can be significantly af
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Environmental

Environmental

Environmental

By using an odor digitization system, comprehensive intelligent odor assessment and output can be achieved for atmospheric environments, indoor environments, livestock farming environments, and other enclosed spaces. This helps effectively safeguard the safety and quality of people’s production activities and daily life.
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Pet Health

Pet Health

Pet Health

It can be used for odor level detection in pet shelters, odor detection in pet water dispensers, and pet body odor monitoring, helping owners monitor and improve the living environment of their pets and maintain pet health. The main target gases include hydrogen sulfide (H₂S), ammonia (NH₃), and nitrogen compounds.
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Healthcare

Healthcare

Healthcare

By detecting odor response characteristics from human urine, saliva, and exhaled breath, and combining them with machine learning and artificial intelligence technologies, the system can be used for the detection of diseases related to Helicobacter pylori, kidney function, and respiratory conditions, providing a convenient and feasible method for early diagnosis and treatment support.
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Electronics

Electronics

Electronics

By integrating with electronic products such as **toys, wearable devices, and home appliances**, the technology can help people better protect themselves and their surrounding environment, providing a more convenient, intelligent, and healthy lifestyle.
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Manufacturing

Manufacturing

Manufacturing

Detect, monitor, and control odor changes during production processes to improve product quality, reduce costs, and promote the development of smart manufacturing.
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Petrochemical

Petrochemical

Petrochemical

It can help petrochemical enterprises achieve **real-time monitoring and control of gas concentrations and odors**, optimize production processes, improve product quality, and enhance workplace safety.
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Food Industry

Food Industry

Food Industry

Detect, monitor, and control odor changes during production processes to improve product quality, reduce costs, and promote the development of smart manufacturing.
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News

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