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Journal Radioengineering №1 for 2026 г.
Article in number:
Design features of custom integrated circuits for various purposes based on basic matrix crystals
Type of article: scientific article
DOI: https://doi.org/10.18127/j00338486-202601-02
UDC: 621.3.049.77
Authors:

A.O. Slavyansky1, P.N. Mironov2, A.E. Latyshev3, V.A. Bezkaravainy4, M.V. Nelina5

1-5 MIREA - Russian Technological University (Moscow, Russia)

1-5 mirea@mirea.ru

Abstract:

Problem statement. Designing custom integrated circuits using a developed FPGA design in order to solve import substitution problems.

Goal. Description of the features of the design stages of custom integrated circuits based on basic matrix crystals (BMCs) in the interface module for data exchange, implemented using the developed FPGA design in order to solve import substitution problems.

Result. An example of optimizing the software architecture of the system is provided, which makes it possible to increase the efficiency of interaction between various blocks of the designed system and improve the operability of the interface module. During the refinement process, the separation of the input and output interfaces was performed, which ensured a more accurate compliance with the requirements of the BMK logic synthesizer. The necessary technical information was prepared containing a description of the involved conclusions of the BMK crystal project for the BMK manufacturing order card.

Practical significance. The obtained results of the work make it possible to effectively apply BMK in order to solve import substitution problems. The use of BMK will increase reliability and reduce cost in the mass production of equipment. The results of the work can be used in the ground, aviation and space industries.

Pages: 19-24
For citation

Slavyansky A.O., Mironov P.N., Latyshev A.E., Bezkaravainy V.A., Nelina M.V. Design features of custom integrated circuits for various purposes based on basic matrix crystals. Radiotekhnika. 2026. V. 90. № 1. P. 19−24. DOI: https://doi.org/10.18127/j00338486-202601-02 (In Russian)

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Date of receipt: 12.08.2025
Approved after review: 14.08.2025
Accepted for publication: 29.12.2025