Silicon Micromechanical Sensors
With the emergence of silicon micromachining technology, silicon micromechanical sensors have emerged. Compared with classic sensors, this new type of sensor has the advantages of small size, easy integration, low cost, low power consumption, fast speed and high reliability. and high precision. Further integrating this sensor with an integrated circuit can form a powerful smart sensor, and smart sensors are the main direction of sensor technology development in the next century. Therefore, silicon micromechanical sensors have become a hot spot in sensor research at home and abroad.
The development trend of silicon micromechanical sensors must first be based on its own technical and process characteristics, and secondly, its development trend must be to continuously meet the needs of science and technology for it. The technical requirements for future sensors are mainly: miniaturization and integration, low power consumption and low cost, high precision and long life, multi-function and intelligence. The integrated integration of silicon micromachines and integrated circuits, as well as silicon micromachines, optical circuits and integrated circuits, fully meets the above requirements. Therefore, MEMS and MEMS represent the development trend of silicon micromechanical sensors in the future. On the other hand, among different sensitive modulation methods, the most promising and attractive one is the resonant working method, so the silicon micromechanical resonant sensor represents another development trend of silicon micromechanical sensors.
Cheersonic ultrasonic coating systems are used to spray thin films of polymers, conductive nanoparticles, or other functional materials used in sensors manufacturing. These conductive nanocoatings are used for applications such as biometrics security and medical device applications, as well as sensors designed for a variety of other applications.
About Cheersonic
Cheersonic is the leading developer and manufacturer of ultrasonic coating systems for applying precise, thin film coatings to protect, strengthen or smooth surfaces on parts and components for the microelectronics/electronics, alternative energy, medical and industrial markets, including specialized glass applications in construction and automotive.
Our coating solutions are environmentally-friendly, efficient and highly reliable, and enable dramatic reductions in overspray, savings in raw material, water and energy usage and provide improved process repeatability, transfer efficiency, high uniformity and reduced emissions.
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