Title :
28nm high-K metal gate heterogeneous quad-core CPUs for high-performance and energy-efficient mobile application processor
Author :
Youngmin Shin ; Hoi-Jin Lee ; Ken Shin ; Kenkae, Prashant ; Kashyap, Rekha ; Dongjoo Seo ; Millar, B. ; Yohan Kwon ; Iyengar, R. ; Min-Su Kim ; Chowdhury, Abishi ; Sung-il Bae ; Inpyo Hong ; Wookyeong Jeong ; Lindner, Andreas ; Uk-Rae Cho ; Hawkins, K. ;
Author_Institution :
Samsung Electron., Yongin, South Korea
Abstract :
This paper presents a heterogeneous configuration of two different target quad-core CPUs. To support both high-performance and high energy-efficiency depending on application requirements, two types of quad-core CPUs are implemented in one mobile application processor. The first type quad-core CPU is designed to give the highest performance at the cost of reasonable power consumption. The second type quad-core CPU is optimized with emphasis on energy efficiency than high performance. This paper addresses the design features for high-performance quad-core CPU and the design optimization issue for low-power quad-core CPU. The best performance shows 1.8X of performance at the lowest power. The lowest power is reduced to 1/5 of power at the highest performance. Our heterogeneous configuration of separate implementations can be a more efficient solution for different power and performance requirements of various mobile applications.
Keywords :
low-power electronics; microprocessor chips; optimisation; design optimization; energy-efficient mobile application processor; heterogeneous configuration; high-K metal gate heterogeneous quad-core CPU; high-performance mobile application processor; low-power quad-core CPU; power consumption; size 28 nm; Clocks; Computer architecture; Energy efficiency; Logic gates; Mobile communication; Random access memory; Timing; Quad-core; energy-efficient; heterogeneous configuration; hig-performance;
Conference_Titel :
SoC Design Conference (ISOCC), 2013 International
Conference_Location :
Busan
DOI :
10.1109/ISOCC.2013.6864006