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Features of Design of Medical Electronic Devices

https://doi.org/10.35596/1729-7648-2023-21-1-51-57

Abstract

The design features of medical electronic devices are considered. It is shown that the development of medical electronics is not an easy task and the designer must be prepared to face problems and regulations that are more strict than for household appliances, due to the fact that the failure of these devices to work properly can lead to tragic consequences, up to death. A number of difficulties that arise in the process of designing medical equipment is shown, which is presented in the form of a hierarchy of decisions. The main standards for designing devices of such type are given, among which there are IEC-60601-1-1 and IEC-60601-1-2 that deserve special attention, since compliance with their requirements is crucial for certification and release to the market of manufactured equipment. The use of a risk management matrix is proposed, which is used to provide quantitative indicators for each possible risk associated with a medical device in any mode of operation and possible malfunction.

About the Authors

V. F. Alexeev
Belarusian State University of Informatics and Radioelectronics
Belarus

Alexeev Viktor Fyodorovich, Cand. of Sci., Associate Professor 

220013, Minsk, P. Brovka St., 6 



G. A. Piskun
Belarusian State University of Informatics and Radioelectronics
Belarus

Cand. of Sci., Associate Professor 

Minsk



References

1. IEC 60601-1-1. Medical Electrical Equipment. Part 1-1: General Requirements for Safety. Safety Requirements for Medical Electrical Systems – Collateral Standard: Electromagnetic Disturbances – Requirements and Tests. 91.

2. IEC 60601-1-2. Medical Electrical Equipment – Part 1-2: General Requirements for Basic Safety and Essential Performance – Collateral Standard: Electromagnetic Disturbances – Requirements and Tests. 91.

3. CISPR 11:2015. Industrial, Scientific and Medical Equipment – Radio-Frequency Disturbance Characteristics – Norms and Methods of Measurement. IDT. Available: https://webstore.iec.ch/p-preview/info_cispr11%7Bed4.0%7Den_d.pdf.

4. Piskun G. A., Alexeev V. F., Avakov S. M., Matyushkov V. E., Titko D. S. (2018) The Impact of ESD on Microcontrollers. Minsk, Kolorgrad. 184.

5. Piskun G. A., Alexeev V. F., Zhitnikov A. L. (2017) Methods of Protection of Radioelectronic Devices from the Effects of Electrostatic Discharges: a Review of the Current State and Development Prospects in Instrumentation. Standardization. (5), 54–59.

6. Piskun G. A., Alekseev V. F., Pikulik A. N., Vrabii E. M. (2016) Improving the Algorithm for Testing Microprocessor Technology for Resistance to Static Electricity Discharges. Standardization. (2), 52–58.


Review

For citations:


Alexeev V.F., Piskun G.A. Features of Design of Medical Electronic Devices. Doklady BGUIR. 2023;21(1):51-57. (In Russ.) https://doi.org/10.35596/1729-7648-2023-21-1-51-57

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This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 1729-7648 (Print)
ISSN 2708-0382 (Online)