Motion Control Solutions for the Semiconductor Manufacturing Sector When Intel created its first microchips, nanometer accuracy wasn't really needed. In contrast to modern 10 nanometers and smaller structures, the Intel 4004 processor's structure widths in 1971 were a generous 10 microns or 1/100 of a millimeter. On a 1-dimensional scale, that is 1,000 times more minor, but on a planar scale, it is 1,000,000,000 times larger. Moore's law, which governs this shrinkage process, states that the number of electronic circuits must double every 18 months. Recent advancements in performance and power consumption due to the combination of photonics and electronics are significant when considering the environmental impact of the massive server farms necessary for cloud computing and Big Data applications. Miniaturization of semiconductor components essentially combines the benefits of speed, cost, economy, and reliability; higher integration results in fewer discrete components and, thus, a lower failure risk. The visionary functionalities of wafer handling tools, stage repair, precision control systems, and wafer cassette mapping are the end-to-end solutions to raise the performance of the semiconductor.
Precision Motion, Nanopositioning, and Alignment Solutions for Extremely Sensitive Manufacturing Processes