DocumentCode
1055139
Title
A 65 nm Sub-
Microcontroller With Integrated SRAM and Switched Capacitor DC-DC Converter
Author
Kwong, Joyce ; Ramadass, Yogesh K. ; Verma, Naveen ; Chandrakasan, Anantha P.
Author_Institution
Microsyst. Technol. Labs., Massachusetts Inst. of Technol., Cambridge, MA
Volume
44
Issue
1
fYear
2009
Firstpage
115
Lastpage
126
Abstract
Aggressive supply voltage scaling to below the device threshold voltage provides significant energy and leakage power reduction in logic and SRAM circuits. Consequently, it is a compelling strategy for energy-constrained systems with relaxed performance requirements. However, effects of process variation become more prominent at low voltages, particularly in deeply scaled technologies. This paper presents a 65 nm system-on-a-chip which demonstrates techniques to mitigate variation, enabling sub-threshold operation down to 300 mV. A 16-bit microcontroller core is designed with a custom sub-threshold cell library and timing methodology to address output voltage failures and propagation delays in logic gates. A 128 kb SRAM employs an 8 T bit-cell to ensure read stability, and peripheral assist circuitry to allow sub-Vt reading and writing. The logic and SRAM function in the range of 300 mV to 600 mV, consume 27.2 pJ/cycle at the optimal V DD of 500 mV, and 1 muW standby power at 300 mV. To supply variable voltages at these low power levels, a switched capacitor DC-DC converter is integrated on-chip and achieves above 75% efficiency while delivering between 10 muW to 250 muW of load power.
Keywords
DC-DC power convertors; SRAM chips; logic gates; microcontrollers; switched capacitor networks; aggressive supply voltage scaling; energy-constrained systems; integrated SRAM; leakage power reduction; microcontroller core; process variation; size 65 nm; subthreshold cell library; switched capacitor DC-DC converter; system-on-a-chip; timing methodology; voltage 300 mV to 600 mV; Libraries; Logic circuits; Logic devices; Low voltage; Microcontrollers; Propagation delay; Random access memory; System-on-a-chip; Threshold voltage; Timing; CMOS digital integrated circuits; DC-DC conversion; SRAM; leakage currents; logic design; low-power electronics; subthreshold;
fLanguage
English
Journal_Title
Solid-State Circuits, IEEE Journal of
Publisher
ieee
ISSN
0018-9200
Type
jour
DOI
10.1109/JSSC.2008.2007160
Filename
4735556
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