The Continuing Evolution of Moore's Law
CMOS scaling is not yet done, and we can see continued progress as we improve our ability to control fabrication.
Moore’s Law is dead – Long live Moore’s Law! This was the essence of the debate at DARPA’s Electronics Resurgence Initiative (ERI) Summit in San Francisco.
But to understand the debate, we need to agree on what is meant by Moore’s Law.
Gordon Moore’s original observation in 1965 was that as you packed more functions into an integrated circuit, the cost per function decreased. The first part of this observation is about economics, and its essence has remained constant even as the underlying technology and rate of improvement has evolved.
To read the full article, click here
Related Semiconductor IP
- Over-Voltage Lockout (OVLO) IP
- Verification IP for Universal Chiplet Interconnect Express (UCIe) up to 3.0
- UCIe-S (Gen2) Compatible PHY for Standard Package (x16) in TSMC N3P, North/South Orientation
- DSP-Based 112G SerDes
- XTAL oscillator in TSMC-7nm
Related Blogs
- Ethernet Evolution: Trends, Challenges, and the Future of Interoperability
- The Evolution of AI and ML- Enhanced Advanced Driver Systems
- The Evolution of CXL.CacheMem IDE: Insights into CXL3.0 Security Feature
- Evolution of CXL PBR Switch in the CXL Fabric
Latest Blogs
- M31 High-Speed and Long-Channel MIPI C/D-PHY Solution on TSMC N3P/N3C
- Understanding security certification and how analog IP can help
- Embedded Security explained: Secure boot for embedded systems
- World's First Standards-Compliant 112G PHY IP for Linear Optics: A Turning Point for AI Interconnects
- One Key for Every Door: How Aliro Extends the UWB Digital Key Beyond the Car