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Regarding medical electronic products

Since the COVID-19 pandemic in 2020, the medical industry has ushered in a new round of growth, and more and more medical equipment companies have also experienced explosive growth. At the same time, it has also brought new challenges to electronic technology foreign trade companies.

What should be paid attention to in the production and processing of medical electronic products? Medical electronic products have their own special requirements:

Whether it is medical testing equipment or medical auxiliary equipment, it needs to have a very high level of reliability in use. When it comes to life, it cannot be left to chance.

High stability: Especially for medical diagnosis and medical auxiliary tools and equipment, high stability is essential, both in the diagnostic stage and in the clinical application stage.

Considering the special requirements of medical equipment, for medical electronic product production and processing factories, it is necessary to strengthen quality control during processing.

  1. Quality control of components: The quality control of medical electronic components begins with the source of procurement. After the procurement is completed, IPQC is required to conduct a full inspection of the components, seal the samples for storage, and special BGA and ICs should be stored in a moisture-proof cabinet for special preservation.

  2. Solder paste control: The processing of medical electronic patches requires the selection and storage of solder paste based on the characteristics of the product, and the mixing and addition of flux during the application process must be strictly controlled.

  3. Solder joint control: After the quality of components and solder paste is completely OK, the control of solder joints determines the quality of SMT patch processing. Simply put, the quality of solder joints determines the quality of patch processing.

  4. Electrostatic control: The instantaneous discharge of static electricity can reach thousands of watts, which can cause hidden potential damage to BGA and IC components. Medical electronics require the processing of considerable data during operation. If the core components are damaged by electrostatic shock and lose stability, it will affect the stability of the product.

In addition, in the production and processing of medical electronic products, not only the above four points, but also many other aspects need to be addressed by manufacturers. To truly be responsible for the products and the users of the products is a problem that our foreign trade enterprises and manufacturers must face.

Regarding medical electronic products2

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