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The main problem of assembly operations is determining the relative position / orientation of elements and their subsequent alignment. Consequently, when automating assembly operations in microelectronics it is necessary to consider the technological and design features of the assembled products, such as the product assembly route, scheme for elements combining and connecting, linear dimensions, product type, physical and chemical properties of the product and its constituent elements, technical specifications and requirements for product assembly. In addition, it is extremely important to observe the basic principles to ensure product quality, durability and reliability during operation. In this work, the approaches to driven equipment parameters controlling when automating assembly operations are considered. The production equipment configuration is investigated, which is a collection of settings, hardware limitations, selected additional devices and types of interfaces. An image of the product with account for all its features, a mathematical model of the product obtained on the basis of its image, a mathematical model of the driven equipment configuration, and a diagram of automated product assembly are presented. The considered solutions make it possible to develop a procedure that allows the adaptive selection of the equipment configuration considering the product assembly route, combined elements and their characteristics obtained as a result of the analysis and synthesis of information from manufacturing and design documents.
Yulia S. Shevnina
National Research University of Electronic Technology, (Russia, 124498, Moscow, Zelenograd, Shokin sq., 1
Larisa G. Gagarina
National Research University of Electronic Technology, (Russia, 124498, Moscow, Zelenograd, Shokin sq., 1
Evgeny V. Konyukhov
National Research University of Electronic Technology, (Russia, 124498, Moscow, Zelenograd, Shokin sq., 1

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