000 02280nam a2200361Ia 4500
000 03307nam a22003975i 4500
001 978-981-99-0639-0
003 DE-He213
005 20240319120853.0
007 cr nn 008mamaa
008 230404s2023 si | s |||| 0|eng d
020 _a9789819906390
_9978-981-99-0639-0
082 _a4.6
245 _aLow Power Architectures for IoT Applications
_cedited by Devendra Kumar Sharma, Rohit Sharma, Gwanggil Jeon, Zdzislaw Polkowski.
_h[electronic resource] /
250 _a1st ed. 2023.
260 _aSingapore
_bSpringer Nature Singapore
_c2023
300 _aXV, 261 p. 117 illus., 96 illus. in color.
_bonline resource.
520 _aThis book provides comprehensive coverage of different aspects of low-power circuit synthesis for IoT applications at various levels of the design hierarchy, starting from the layout level to the system level. For a seamless understanding of the subject, the basics of MOS circuits have been introduced at the transistor, gate and circuit level, followed by various low-power design methodologies, such as supply voltage scaling, switched capacitance minimization techniques, and leakage power minimization approaches. The contents of this book are useful to students, researchers, as well as practicing engineers. Low-power architectures refer to the latest development in computer microchips which are created by integrating hundreds of thousands of transistors on one chip for different IoT applications. Emerging research in this area has the potential to uncover further applications for IoT in addition to system advancements.
650 _aApplication software.
_931154
650 _aComputer and Information Systems Applications.
_931155
650 _aComputer Communication Networks.
_931156
650 _aComputer networks .
_931157
650 _aComputers, Special purpose.
_931158
650 _aInternet of things.
_931159
650 _aInternet of Things.
_931160
650 _aSpecial Purpose and Application-Based Systems.
_931161
700 _aJeon, Gwanggil.
_931162
700 _aPolkowski, Zdzislaw.
_931163
700 _aSharma, Devendra Kumar.
_931164
700 _aSharma, Rohit.
_931165
856 _uhttps://doi.org/10.1007/978-981-99-0639-0
942 _cEBK
_2ddc
999 _c15189
_d15189