Location:Home > Experience
Add Time:2025-10-09 View:26
As a top science and engineering university in China, a certain university of science and technology has always maintained cutting-edge exploration in the field of materials science and engineering, especially in the research and development of key materials such as flexible transparent conductive films and new energy electrode functional layers, undertaking multiple national level scientific research projects. With the deepening of research, the original thin film preparation equipment is gradually unable to meet experimental requirements in terms of "low-temperature deposition efficiency", "thin film uniformity", "multi-component material compatibility", etc., and there is an urgent need for a high-performance and highly flexible chemical vapor deposition equipment to support scientific research innovation.

In order to break through the technological bottleneck, the team initiated equipment procurement research. After multiple rounds of technical comparison and on-site inspections, they finally chose to cooperate with the leading enterprise in the field of ultrasonic atomization CVD in China, Nuobadi Technology

The system is equipped with a self-developed "NB-CVD intelligent control system" that supports a visual operation interface. It can preset 12 key parameters such as deposition temperature, atomization rate, and airflow pressure, and automatically record the entire experimental process data (with an accuracy of 1ms), making it convenient for the team to review data and optimize the process in the future. At the same time, the device supports remote monitoring and fault warning functions. When there is insufficient precursor or abnormal temperature, real-time reminders can be pushed to the researchers' mobile phones to ensure the safe and stable operation of the experiment.
Professor Li, the person in charge, said, "In the research and development of functional thin films, the accuracy and efficiency of equipment directly determine the progress of scientific research. The low-temperature, high-efficiency, high uniformity, and multi-component compatibility characteristics of the Nuobadi ultrasonic atomization CVD system perfectly solve our previous technical bottlenecks. It not only makes our experimental data more reliable and results output faster, but also provides key tool support for us to explore the next generation of functional materials. In the future, we plan to further expand our research in fields such as' biomedical coatings' and 'optical thin films' based on this system, and look forward to further deepening our cooperation with Nubadi