Title :
A low-power multi-core media co-processor for mobile application processors
Author :
Nomura, Shuou ; Tachibana, Fumihiko ; Fujita, Tetsuya ; Teh, Chen Kong ; Usui, Hiroyuki ; Yamane, Fumiyuki ; Miyamoto, Yukimasa ; Yamashita, Takahiro ; Hara, Hiroyuki ; Hamada, Mototsugu ; Tsuboi, Yoshiro
Author_Institution :
Digital Media SoC Dept., Toshiba Corp., Kawasaki, Japan
Abstract :
A multi-core co-processor for mobile application processors is introduced. It provides low-power, high-throughput, fully software-based acceleration of multimedia processing. The test chip fabricated in a 65 nm CMOS technology consumes 620 mW in H.264 720p 60 fps decoding and 9.7 mW in MPEG-4 AAC decoding. In the maximum workload of H.264 decoding, a symmetrical parallelization achieves 7.5times performance enhancement by 8 cores. The shared L2 cache reduces the required rate of main memory access to 310 MB/s. In the minimum workload of AAC decoding, three low-power circuit techniques reduce 98% of leakage. On-chip regulators, which also work as power-gating switches, lower the supply voltage of processing cores. Embedded forward body-biasing circuit reduces Vt variations. A low-power and fast data-mapping F/F relaxes the timing constraint, which enables a reduction in the number of low-Vt transistors.
Keywords :
CMOS logic circuits; cache storage; coprocessors; low-power electronics; CMOS; H.264 720p decoding; L2 cache; MPEG-4 AAC decoding; bit rate 310 Mbit/s; low-power circuit techniques; low-power multi-core media co-processor; mobile application processors; multimedia processing; on-chip regulators; power 620 mW; power 9.7 mW; power-gating switches; size 65 nm; test chip fabricated; Acceleration; Application software; CMOS technology; Circuits; Coprocessors; Decoding; MPEG 4 Standard; Regulators; Switches; Testing; body-bias; flip-flop; multi-core; voltage regulator;
Conference_Titel :
IC Design and Technology, 2009. ICICDT '09. IEEE International Conference on
Conference_Location :
Austin, TX
Print_ISBN :
978-1-4244-2933-2
Electronic_ISBN :
978-1-4244-2934-9
DOI :
10.1109/ICICDT.2009.5166280