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Leakage in Nanometer CMOS Technologies (Hardcover, 2006 ed.): Siva G. Narendra, Anantha P. Chandrakasan Leakage in Nanometer CMOS Technologies (Hardcover, 2006 ed.)
Siva G. Narendra, Anantha P. Chandrakasan
R4,410 Discovery Miles 44 100 Ships in 10 - 15 working days

The goal of Leakage in Nanometer CMOS Technologies is to provide ample detail so that the reader can understand why leakage power components are becoming increasingly relevant in CMOS systems that use nanometer scale MOS devices. Leakage current sources at the MOS device level including sub-threshold and different types of tunneling are discussed in detail. The book covers promising solutions at the device, circuit, and architecture levels of abstraction. Manifestation of these MOS device leakage components at the full chip level depends considerably on several aspects including the nature of the circuit block, its state, its application workload, and Process/Voltage/Temperature conditions. The sensitivity of the various MOS leakage sources to these conditions are described from the first principles. The resulting manifestations are discussed at length to help the reader understand the effectiveness of leakage power reduction solutions under these different conditions. Case studies are presented to highlight real world examples that reap the benefits of leakage power reduction solutions. mitigate increases in the leakage components as technology scales.

Leakage in Nanometer CMOS Technologies (Paperback, Softcover reprint of hardcover 1st ed. 2006): Siva G. Narendra, Anantha P.... Leakage in Nanometer CMOS Technologies (Paperback, Softcover reprint of hardcover 1st ed. 2006)
Siva G. Narendra, Anantha P. Chandrakasan
R4,235 Discovery Miles 42 350 Ships in 10 - 15 working days

Covers in detail promising solutions at the device, circuit, and architecture levels of abstraction after first explaining the sensitivity of the various MOS leakage sources to these conditions from the first principles.

Also treated are the resulting effects so the reader understands the effectiveness of leakage power reduction solutions under these different conditions.

Case studies supply real-world examples that reap the benefits of leakage power reduction solutions as the book highlights different device design choices that exist to mitigate increases in the leakage components as technology scales.

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