MIT News - Artificial intelligence 02月28日
Collaborating to advance research and innovation on essential chips for AI
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麻省理工学院微系统技术实验室与GlobalFoundries宣布达成新的研究协议,共同推进半导体技术的性能和效率。合作将由MIT的微系统技术实验室和GF的研发团队GF Labs领导,初期研究重点是人工智能和其他应用。项目将利用GF的硅光子技术和22FDX平台,旨在为数据中心实现更高的能效,并为边缘智能设备提供超低功耗。此合作旨在结合学术界和产业界的力量,共同应对半导体研究中最紧迫的挑战,并培养下一代半导体行业人才。

🤝MIT与GlobalFoundries (GF) 达成合作协议,共同致力于提升关键半导体技术的性能和效率,应对行业挑战。

💡首批研究项目将侧重于人工智能等应用,利用GF的硅光子技术,该技术将射频硅绝缘体(RF SOI)、CMOS和光学特性单片集成在一块芯片上,从而提高数据中心的能效。

🔋GF的22FDX平台也将被用于研究,该平台为边缘智能设备提供超低功耗,满足未来设备的需求。

👨‍🏫双方合作强调产学研结合,旨在应对半导体研究的挑战,并为半导体行业培养下一代人才。

The following is a joint announcement from the MIT Microsystems Technology Laboratories and GlobalFoundries. 

MIT and GlobalFoundries (GF), a leading manufacturer of essential semiconductors, have announced a new research agreement to jointly pursue advancements and innovations for enhancing the performance and efficiency of critical semiconductor technologies. The collaboration will be led by MIT’s Microsystems Technology Laboratories (MTL) and GF’s research and development team, GF Labs.

With an initial research focus on artificial intelligence and other applications, the first projects are expected to leverage GF’s differentiated silicon photonics technology, which monolithically integrates radio frequency silicon-on-insulator (RF SOI), CMOS (complementary metal-oxide semiconductor), and optical features on a single chip to realize power efficiencies for data centers, and GF’s 22FDX platform, which delivers ultra-low power consumption for intelligent devices at the edge.

“The collaboration between MIT MTL and GF exemplifies the power of academia-industry cooperation in tackling the most pressing challenges in semiconductor research,” says Tomás Palacios, MTL director and the Clarence J. LeBel Professor of Electrical Engineering and Computer Science. Palacios will serve as the MIT faculty lead for this research initiative.

“By bringing together MIT's world-renowned capabilities with GF's leading semiconductor platforms, we are positioned to drive significant research advancements in GF’s essential chip technologies for AI,” says Gregg Bartlett, chief technology officer at GF. “This collaboration underscores our commitment to innovation and highlights our dedication to developing the next generation of talent in the semiconductor industry. Together, we will research transformative solutions in the industry.”

“Integrated circuit technologies are the core driving a broad spectrum of applications ranging from mobile computing and communication devices to automotive, energy, and cloud computing,” says Anantha P. Chandrakasan, dean of MIT's School of Engineering, chief innovation and strategy officer, and the Vannevar Bush Professor of Electrical Engineering and Computer Science. “This collaboration allows MIT’s exceptional research community to leverage GlobalFoundries’ wide range of industry domain experts and advanced process technologies to drive exciting innovations in microelectronics across domains — while preparing our students to take on leading roles in the workforce of the future.”

The new research agreement was formalized at a signing ceremony on campus at MIT. It builds upon GF’s successful past and ongoing engagements with the university. GF serves on MTL’s Microsystems Industrial Group, which brings together industry and academia to engage in research. MIT faculty are active participants in GF’s University Partnership Program focused on joint semiconductor research and prototyping. Additionally, GF and MIT collaborate on several workforce development initiatives, including through the Northeast Microelectronics Coalition, a U.S. Department of Defense Microelectronics Commons Hub.

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MIT GlobalFoundries 半导体 人工智能 硅光子技术
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