Subthreshold leakage

Subthreshold leakage

Subthreshold leakage or subthreshold conduction or subthreshold drain current is the current that flows between the source and drain of a MOSFET when the transistor is in the subthreshold region, that is, for gate-to-source voltages below the threshold voltage. The subthreshold region is often referred to as the weak inversion region. The terminology for various degrees of inversion is described in Tsividis.cite book
author=Yannis Tsividis
title=Operation and Modeling of the MOS Transistor
year= 1999
page=p. 99
edition=Second Edition
publisher=McGraw-Hill
location=New York
isbn=0-07-065523-5
url=http://worldcat.org/isbn/0070655235
]

In digital circuits, subthreshold conduction is generally viewed as a parasitic "leakage" in a state that would ideally have no current. In micropower analog circuits, on the other hand, weak inversion is an efficient operating region, and subthreshold is a useful transistor mode around which circuit functions are designed.

In the past, the subthreshold conduction of transistors has been very small, but as transistors have been scaled down, leakage from all sources has increased. For a technology generation with threshold voltage of 0.2 V, leakage can exceed 50% of total power consumption.cite book
author=Kaushik Roy, Kiat Seng Yeo
title=Low Voltage, Low Power VLSI Subsystems
year= 2004
page=Fig. 2.1, p. 44
publisher=McGraw-Hill Professional
isbn=007143786X
url=http://books.google.com/books?id=jXm4pNxCSCYC&printsec=frontcover&dq=subthreshold+mosfet+%22static+power%22&as_brr=0&sig=gr4ovBNlI9i-IafjcoHio7vmvpQ#PPA44,M1
] Subthreshold conduction is only one component of leakage: other leakage components that can be roughly equal in size depending on the device design are gate-oxide leakage and junction leakage.cite book
author=Bashir M. Al-Hashimi (Editor)
title=System on a Chip: Next Generation Electronics
year= 2006
page=p. 429
publisher=Institution of Engineering and Technology
isbn=0863415520
url=http://books.google.com/books?id=NqNvUtZcKA4C&pg=PA419&dq=subthreshold+current&sig=CVD2nyYXuRsldFOIU2IqA8ziARw#PPA429,M1
]

The reason for a growing importance of subthreshold conduction is that the supply voltage has continually scaled down, both to reduce the dynamic power consumption of integrated circuits (the power that is consumed when the transistor is switching from an on-state to an off-state, which depends on the square of the supply voltage), and to keep electric fields inside small devices low, to maintain device reliability. There are also other sources of leakage power such as gate tunneling and junction tunneling. Understanding sources of leakage and solutions to tackle the impact of leakage will be a requirement for most circuit and system designers. cite book
author=Siva G. Narendra and Anantha Chandrakasan (Editors)
title=Leakage in Nanometer CMOS Technologies
year= 2006
page=p. 307
publisher=Springer Publications
isbn=0387257373
url=http://www.springer.com/engineering/circuits+%26+systems/book/978-0-387-25737-2,M1
]

The amount of subthreshold conduction is set by the threshold voltage, which sits between ground and the supply voltage, and so has to be reduced along with the supply voltage. That reduction means less gate voltage swing below threshold to turn the device "off", and as subthreshold conduction varies exponentially with gate voltage (see ), it becomes more and more significant as MOSFETs shrink in size. [cite book | title = Designing CMOS Circuits for Low Power | author = Dimitrios Soudris, Christian Piguet, and Costas Goutis (Editors) | publisher = Springer | year = 2002 | isbn = 1402072341 | url = http://books.google.com/books?id=86oXI7MWw8AC&pg=PA20&ots=GqNTjdv982&dq=subthreshold+leakage+exponentially+with+threshold&sig=MhF6zqQOHJ7aa1UG0fn2YTHHvzw]

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