Zobrazeno 1 - 2
of 2
pro vyhledávání: '"Ashwin Mendon"'
Autor:
Hong Fremont Wang, Vivek De, Subramaniam Maiyuran, Pascal Meinerzhagen, Sriram R. Vangal, Vaibhav Vaidya, Krishnan Ravichandran, George E. Matthew, Brando Perez Esparza, Gautham N. Chinya, M. Woodman, Stephen Kim, Luis Cuellar, Somnath Paul, Minki Cho, Xiang Zou, Bala Iyer, Deepak A. Mathaikutty, Carlos Tokunaga, Joseph F. Ryan, Charles Augustine, James W. Tschanz, Andres Malavasi, Ashwin Mendon, Muhammad M. Khellah, Rinkle Jain, Chung-Ching Peng, Jaydeep P. Kulkarni, Yuyun Liao
Publikováno v:
IEEE Journal of Solid-State Circuits. 54:144-157
Graphics workloads make highly dynamic use of resources such as execution units (EUs), and thus can benefit from fast, fine-grain dynamic voltage and frequency scaling (DVFS) and retentive sleep. This paper presents a 14-nm graphics processing unit (
Autor:
Bala Iyer, Ashwin Mendon, Pascal Meinerzhagen, Vaibhav Vaidya, Jaydeep P. Kulkarni, Muhammad M. Khellah, Brando Perez Esparza, Somnath Paul, Minki Cho, Sriram R. Vangal, Subramaniam Maiyuran, Rinkle Jain, Yuyun Liao, George E. Matthew, Deepak A. Mathaikutty, Vivek De, Hong Wang, Gautham N. Chinya, Chung-Ching Peng, Carlos Tokunaga, Joseph F. Ryan, Stephen Kim, Charles Augustine, Chris Zou, Michael Woodman, Krishnan Ravichandran, James W. Tschanz, Andres Malavasi, Luis Cuellar
Publikováno v:
ISSCC
Graphics workloads are highly dynamic in nature, using multi-threaded SIMD execution units (EUs), fixed-function units, samplers, and media accelerators to provide ever-increasing amounts of graphics performance. These workloads are often limited by