Title :
On-Chip Power Noise Reduction Techniques in High Performance SoC-Based Integrated Circuits
Author :
Popovich, Mikhail ; Friedman, Eby G. ; Secareanu, Radu ; Hartin, Olin L.
Author_Institution :
Dept. of Electr. & Comput. Eng., Rochester Univ., NY
Abstract :
Switching digital circuits produce current peaks which result in voltage fluctuations on the power supply lines due to the inductive behavior of on-chip and chip-to-package interconnects. A design technique is described in this paper to lower ground bounce in noise sensitive circuits. An on-chip noise-free ground is added to divert ground noise from the sensitive nodes. An on-chip decoupling capacitor tuned in resonance with the parasitic inductance of the interconnects provide an additional low impedance ground path. Ground bounce reductions of about 68% and 22% are demonstrated for a single frequency and random noise, respectively. The noise reduction is shown to depend linearly on the physical separation between the noisy and noise sensitive blocks. The dependence of ground noise on the impedance of the low noise ground is also discussed. The proposed technique exhibits a strong tolerance to capacitance variations. The efficiency of the noise reduction technique drops by several per cent for a plusmn10% variation in the magnitude of the decoupling capacitor. The proposed technique is shown to be effective for both single frequency and random voltage fluctuations on the ground terminal
Keywords :
integrated circuit design; integrated circuit interconnections; integrated circuit noise; system-on-chip; RLC impedances; chip-to-package interconnects; ground bounce reductions; high performance SoC-based integrated circuits; low impedance ground path; noise sensitive circuits; on-chip decoupling capacitor; on-chip interconnects; on-chip noise-free ground; on-chip power noise reduction; parasitic inductance; power distribution systems; system-on-chip; Capacitors; Digital circuits; Frequency; Impedance; Integrated circuit interconnections; Integrated circuit noise; Noise reduction; Power supplies; Switching circuits; Voltage fluctuations; Power distribution systems; RLC impedances; decoupling capacitors; ground bounce; power noise;
Conference_Titel :
SOC Conference, 2005. Proceedings. IEEE International
Conference_Location :
Herndon, VA
Print_ISBN :
0-7803-9264-7
DOI :
10.1109/SOCC.2005.1554517