Russian Federation
With the increasing complexity of integrated circuit design, traditional design methods have become difficult to meet the diverse requirements of modern electronic systems. In view of this, this paper proposes an integrated circuit design platform based on big data. Through the deep integration of modeling information systems and technologies, this platform achieves the automation and optimization of the design process. The platform adopts a hierarchical architecture and a modular design concept, covering multiple functional modules such as wiring monitoring and circuit design. With the dual support of data modeling and process modeling, the platform not only realizes automated design but also has an intelligent assisted design function, which can effectively support key tasks such as system management and communication alarm. The introduction of this platform has significantly improved the design efficiency and quality, while reducing costs, providing strong technical support for the software and hardware implementation of modern electronic components.
integrated circuit design; modeling information system; automated design; modern electronic components; hardware implementation; software implementation
1. Van Silyan'. Vysokonadezhnaya platforma dlya proektirovaniya integral'nyh shem mestnogo proizvodstva — interv'yu s prezidentom kompanii Wuxi Huada Guoqi Technology Co., Ltd., gospodinom Gu Czyan'yuy [J]. Kitayskie integral'nye shemy, 2014, 23(12) : 38-39+63.
2. Formalizaciya verifikacii topologii i elektricheskoy shemy dlya sistem avtomatizirovannogo proektirovaniya / T. V. Skvorcova, K. V. Zol'nikov, A. M. Plotnikov, I. V. Skorkin // Modelirovanie sistem i processov. – 2024. – T. 17, № 3. – S. 61-70. – DOIhttps://doi.org/10.12737/2219-0767-2024-59-68. – EDN DUYQHJ.
3. Komp'yuternoe modelirovanie rabotosposobnosti finishnyh procedur i parazitnyh elementov v programmno-apparatnom komplekse proektirovaniya mikroshem / A. S. Yagodkin, N. N. Litvinov, P. S. Ivanin, A. S. Groshev // Modelirovanie sistem i processov. – 2024. – T. 17, № 3. – S. 106-115. – DOIhttps://doi.org/10.12737/2219-0767-2024-104-113. – EDN NICLOY.
4. Komp'yuternoe modelirovanie rabotosposobnosti elektricheskoy shemy v sistemah avtomatizacii proektirovaniya / V. K. Zol'nikov, S. V. Stoyanov, E. V. Shmakov, N. N. Litvinov // Modelirovanie sistem i processov. – 2024. – T. 17, № 3. – S. 26-36. – DOIhttps://doi.org/10.12737/2219-0767-2024-24-34. – EDN EJJKJP.
5. Sya Yuy. Platforma vizualizacii dannyh na osnove FreeMarker, ECharts i SSM [J]. Navyki i obsluzhivanie komp'yuternogo programmirovaniya, 2019, (07) : 91-92+99. DOIhttps://doi.org/10.16184/j.cnki.comprg.2019.07.035.
6. Titov, M. Yu. Puti povysheniya effektivnyh sposobov zaschity informacii v bespilotnyh letatel'nyh apparatah dvoynogo naznacheniya / M. Yu. Titov // Modelirovanie sistem i processov. – 2024. – T. 17, № 2. – S. 82-92. – DOIhttps://doi.org/10.12737/2219-0767-2024-17-2-82-92. – EDN IQOQPI.
7. Poluektov, A. V. Modelirovanie oslableniya ioniziruyushego izlucheniya za schet zaschitnogo korpusa mikroshem / A. V. Poluektov, R. Yu. Medvedev, A. I. Zarevich // Modelirovanie sistem i processov. – 2024. – T. 17, № 2. – S. 93-100. – DOIhttps://doi.org/10.12737/2219-0767-2024-17-2-93-100. – EDN QQRQXE.
8. Matematicheskoe obespechenie informacionno-upravlyayuschey sistemy dlya hraneniya produkcii s ogranichennym srokom hraneniya / D. V. Arapov, N. Yu. Yudina, V. A. Kuricyn, L. A. Korobova // Modelirovanie sistem i processov. – 2024. – T. 17, № 1. – S. 7-18. – DOIhttps://doi.org/10.12737/2219-0767-2024-17-1-7-18. – EDN CXBIVK.