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Providing stable power supply to the printed circuit board of a microprocessor system when connected via a long cable

https://doi.org/10.25682/NIISI.2026.2.0004

Abstract

This article considers the problem of creating a stable input power supply node for a printed circuit board (PCB) of a microprocessor system connected to a power source via a long cable. It is shown that under these conditions, the use of expensive, large-capacity ceramic capacitors without taking damping into account can lead to an unstable transient process, since the cable inductance, together with the input capacitance, form a resonant circuit with a sufficiently high Q factor. An approach to constructing an input power supply node is proposed that ensures damping of resonant processes without excessive voltage drop and overheating, shunting of high-frequency current components, and localization of interference. The main idea of this approach is to use the ESR of the storage input capacitor as a means of resonance damping, and to compensate for the effect of series inductance with small-value ceramic capacitors. It is shown that a similar principle is unacceptable in local decoupling circuits of microcircuits. Recommendations are provided for selecting the range of equivalent series resistance values, the nominal values of input capacitors, and the placement of components on the PCB.

About the Author

I. A. Lafazan
НИЦ «Курчатовский институт» – НИИСИ, Москва
Russian Federation


References

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Review

For citations:


Lafazan I.A. Providing stable power supply to the printed circuit board of a microprocessor system when connected via a long cable. SRISA Proceedings. 2026;16(2):32-42. (In Russ.) https://doi.org/10.25682/NIISI.2026.2.0004

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ISSN 2225-7349 (Print)
ISSN 3033-6422 (Online)