FD-SOI Expands, But Is It Disruptive?
Jessica Lipsky, EETimes
4/14/2016 06:36 PM EDT
SAN JOSE, Calif.—The ecosystem for fully-depleted silicon on insulator (FD-SOI) process technology has tipped from a too-late technology to a viable alternative to FinFETs for the Internet of Things (IoT) and automotive markets. To many, the presence of officials from major companies at an industry event signaled a coalescence around the technology.
“I think FD-SOI is gaining momentum. It’ll probably take another couple of years but it will gain momentum and be a key technology,” Handel Jones, founder and CEO of International Business Strategies, told EE times.
FD-SOI offers a number of advantages over FinFETs, which, although extremely high performance, lack cost efficiency. Although the FD-SOI substrate is more expensive, the process offers lower power, better performance in bulk, and is better suited for RF — a key component in IoT. FD-SOI is also easier from a design perspective, and allows engineers to tune products post-silicon.
To read the full article, click here
Related Semiconductor IP
- AES-GCM - Authenticated Encryption and Decryption
- AES-GCM Authenticated Encryption and Decryption
- AES-GCM - Authenticated Encryption and Decryption
- Verification IP for C-PHY
- Band-Gap Voltage Reference with dual 2µA Current Source - X-FAB XT018
Related News
- The IP double standard: Why is it OK to pay for innovation in a product, but not when innovation is the product?
- China's Interest in FD-SOI: Is It for Real?
- Sony-Inside Huami Watch: Is It Time for FD-SOI?
- 1G Ethernet PHY IP Core is now available in 14nm LPP for Blackbox License and in 28FDSOI as Whitebox License for maximum flexibility
Latest News
- Global Semiconductor Sales Increase 25% from Q4 2025 to Q1 2026
- Tord Larsson-Steen appointed new CEO of Shortlink
- GUC Collaborate with Wiwynn to Advance Silicon-to-System Infrastructure for Next-Generation Hyperscale AI
- Two Weebit Nano product customers tape-out; one already demonstrating a functional prototype
- JEDEC Advances DDR5 MRDIMM Ecosystem with New Memory Interface Logic and Expanded MRDIMM Roadmap