Home > Press > GLOBALFOUNDRIES Delivers Custom 14nm FinFET Technology for IBM Systems: Jointly developed 14HP process is world’s only technology that leverages both FinFET and SOI
Abstract:
GLOBALFOUNDRIES is now delivering in volume its 14nm High Performance (HP) technology that will enable IBM’s next-generation of processors for server systems. The jointly developed 14HP process is specifically designed to deliver the ultra-high performance and data-processing capacity IBM needs to support its cloud, commerce, and enterprise solutions in the era of big data and cognitive computing. IBM announced general availability of the IBM Z on September 13.
14HP is the industry’s only technology to integrate a three-dimensional FinFET transistor architecture on a silicon-on-insulator (SOI) substrate. Featuring a 17-layer metal stack and more than eight billion transistors per chip, the technology leverages embedded DRAM and other innovative features to deliver higher performance, reduced energy, and better area scaling over previous generations to address a wide range of deep computing workloads.
The 14HP technology powers the processors that run IBM’s latest z14 mainframes. The underlying semiconductor process allows IBM customers to enable massive transaction scale of high-volume workloads, apply machine learning to their most valuable data, and rapidly derive actionable insights to enable intelligent decisions—all while delivering pervasive encryption that provides the ultimate in data protection.
“GlobalFoundries has been a strategic partner in the development of a custom semiconductor technology to enable the aggressive requirements of the processors for our newest server systems,” said Ross Mauril, general manager, IBM Z. “We are excited to bring this 14HP technology to our IBM Z product line.”
“GF and IBM together have an unmatched heritage of developing and manufacturing ultra-high performance SOI chips,” said Mike Cadigan, senior vice president of global sales and business development at GF. “This new generation of 14HP processors is another example of the close collaboration between our engineering teams to meet the demands of a new generation of server systems.”
“The 14HP technology leverages the proven 14nm FinFET high-volume experience of our Fab 8 facility in Saratoga County, N.Y.,” said Tom Caulfield, senior vice president and general manager of GF’s Fab 8. “We are in high volume production with a broad set of customer designs across a range of applications. Our mature and diverse manufacturing capability will enable IBM to bring its latest processor designs to market to service their broad customer base.”
####
About GLOBALFOUNDRIES
GLOBALFOUNDRIES is a leading full-service semiconductor foundry providing a unique combination of design, development, and fabrication services to some of the world’s most inspired technology companies. With a global manufacturing footprint spanning three continents, GLOBALFOUNDRIES makes possible the technologies and systems that transform industries and give customers the power to shape their markets. GLOBALFOUNDRIES is owned by Mubadala Investment Company.
For more information, please click here
Contacts:
Erica McGill
GF
(518) 795-4250
Copyright © GLOBALFOUNDRIES
If you have a comment, please Contact us.Issuers of news releases, not 7th Wave, Inc. or Nanotechnology Now, are solely responsible for the accuracy of the content.
Related News Press |
News and information
Enhancing power factor of p- and n-type single-walled carbon nanotubes April 25th, 2025
Tumor microenvironment dynamics: the regulatory influence of long non-coding RNAs April 25th, 2025
Ultrafast plasmon-enhanced magnetic bit switching at the nanoscale April 25th, 2025
Hardware
The present and future of computing get a boost from new research July 21st, 2023
A Carbon Nanotube Microprocessor Mature Enough to Say Hello: Three new breakthroughs make commercial nanotube processors possible March 2nd, 2020
Powering the future: Smallest all-digital circuit opens doors to 5 nm next-gen semiconductor February 11th, 2020
Possible Futures
Lattice-driven charge density wave fluctuations far above the transition temperature in Kagome superconductor April 25th, 2025
Enhancing power factor of p- and n-type single-walled carbon nanotubes April 25th, 2025
Tumor microenvironment dynamics: the regulatory influence of long non-coding RNAs April 25th, 2025
Ultrafast plasmon-enhanced magnetic bit switching at the nanoscale April 25th, 2025
Chip Technology
Enhancing power factor of p- and n-type single-walled carbon nanotubes April 25th, 2025
Ultrafast plasmon-enhanced magnetic bit switching at the nanoscale April 25th, 2025
New ocelot chip makes strides in quantum computing: Based on "cat qubits," the technology provides a new way to reduce quantum errors February 28th, 2025
Announcements
Enhancing power factor of p- and n-type single-walled carbon nanotubes April 25th, 2025
Tumor microenvironment dynamics: the regulatory influence of long non-coding RNAs April 25th, 2025
Ultrafast plasmon-enhanced magnetic bit switching at the nanoscale April 25th, 2025
Research partnerships
HKU physicists uncover hidden order in the quantum world through deconfined quantum critical points April 25th, 2025
SMART researchers pioneer first-of-its-kind nanosensor for real-time iron detection in plants February 28th, 2025
Gene therapy relieves back pain, repairs damaged disc in mice: Study suggests nanocarriers loaded with DNA could replace opioids May 17th, 2024
Discovery points path to flash-like memory for storing qubits: Rice find could hasten development of nonvolatile quantum memory April 5th, 2024
![]() |
||
![]() |
||
The latest news from around the world, FREE | ||
![]() |
![]() |
||
Premium Products | ||
![]() |
||
Only the news you want to read!
Learn More |
||
![]() |
||
Full-service, expert consulting
Learn More |
||
![]() |