Warpage analysis of organic substrates for 2.1D packaging
Sayuri Kohara, Keishi Okamoto, et al.
3DIC 2015
The computing world is witnessing a proverbial Cambrian explosion of emerging paradigms propelled by applications, such as artificial intelligence, big data, and cybersecurity. The recent advances in technology to store digital data inside a deoxyribonucleic acid (DNA) strand, manipulate quantum bits (qubits), perform logical operations with photons, and perform computations inside memory systems are ushering in the era of emerging paradigms of DNA computing, quantum computing, optical computing, and in-memory computing. In an orthogonal direction, research on interconnect design using advanced electro-optic, wireless, and microfluidic technologies has shown promising solutions to the architectural limitations of traditional von-Neumann computers. In this article, experts present their comments on the role of interconnects in the emerging computing paradigms, and discuss the potential use of chiplet-based architectures for the heterogeneous integration of such technologies.
Sayuri Kohara, Keishi Okamoto, et al.
3DIC 2015
Qianwen Chen, Michael Belyansky, et al.
ECTC 2023
Daniel Friedman
DAC 2024
Marcel Kossel, Pier Andrea Francese, et al.
Electronics Letters