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020 _a9789811661204
024 7 _a10.1007/978-981-16-6120-4
_2doi
040 _aTR-AnTOB
_beng
_erda
_cTR-AnTOB
041 _aeng
050 4 _aTK7871.99.M44
072 7 _aTJFC
_2bicssc
072 7 _aTEC008010
_2bisacsh
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245 1 0 _aRecent Advances in PMOS Negative Bias Temperature Instability
_h[electronic resource] :
_bCharacterization and Modeling of Device Architecture, Material and Process Impact /
_cedited by Souvik Mahapatra.
250 _a1st ed. 2022.
264 1 _aSingapore :
_bSpringer Nature Singapore :
_bImprint: Springer,
_c2022.
300 _a1 online resource
336 _atext
_btxt
_2rdacontent
337 _acomputer
_bc
_2rdamedia
338 _aonline resource
_bcr
_2rdacarrier
347 _atext file
_bPDF
_2rda
505 0 _aCharacterization of NBTI Parametric Drift -- BAT Framework Modeling of Gate First HKMG Si and SiGe Channel FDSOI MOSFETs -- BTI Analysis Tool (BAT) Model Framework -- BAT Framework Modeling of RMG HKMG SOI FinFETs -- BAT Framework Modeling of RMG HKMG GAA-SNS FETs -- BAT Framework Modeling of RMG HKMG Si and SiGe Channel FinFETs -- BAT Framework Modeling of Gate First HKMG Si Channel MOSFETs -- BAT Framework Modeling of AC NBTI: Stress Mode, Duty Cycle and Frequency -- BAT Framework Modeling of Dimension Scaling in FinFETs and GAA-SNS FETs -- BTI Analysis Tool (BAT) Model Framework – Generation of Interface Traps -- Device Architecture, Material and Process Dependencies of NBTI Parametric Drift -- Physical Mechanism of NBTI Parametric Drift -- BAT Framework Modeling of Gate First HKMG Si-capped SiGe Channel MOSFETs -- BTI Analysis Tool (BAT) Model Framework – Interface Trap Occupancy and Hole Trapping.
520 _aThis book covers advances in Negative Bias Temperature Instability (NBTI) and will prove useful to researchers and professionals in the semiconductor devices areas. NBTI continues to remain as an important reliability issue for CMOS transistors and circuits. Development of NBTI resilient technology relies on utilizing suitable stress conditions, artifact free measurements and accurate physics-based models for the reliable determination of degradation at end-of-life, as well as understanding the process, material and device architectural impacts. This book discusses: Ultra-fast measurements and modelling of parametric drift due to NBTI in different transistor architectures: planar bulk and FDSOI p-MOSFETs, p-FinFETs and GAA-SNS p-FETs, with Silicon and Silicon Germanium channels. BTI Analysis Tool (BAT), a comprehensive physics-based framework, to model the measured time kinetics of parametric drift during and after DC and AC stress, at different stress and recovery biases and temperature, as well as pulse duty cycle and frequency. The Reaction Diffusion (RD) model is used for generated interface traps, Transient Trap Occupancy Model (TTOM) for charge occupancy of the generated interface traps and their contribution, Activated Barrier Double Well Thermionic (ABDWT) model for hole trapping in pre-existing bulk gate insulator traps, and Reaction Diffusion Drift (RDD) model for bulk trap generation in the BAT framework; NBTI parametric drift is due to uncorrelated contributions from the trap generation (interface, bulk) and trapping processes. Analysis and modelling of Nitrogen incorporation into the gate insulator, Germanium incorporation into the channel, and mechanical stress effects due to changes in the transistor layout or device dimensions; similarities and differences of (100) surface dominated planar and GAA MOSFETs and (110) sidewall dominated FinFETs are analysed.
650 0 _aElectronic circuits.
650 0 _aElectronics.
650 0 _aSolid state physics.
650 1 4 _aElectronic Circuits and Systems.
650 2 4 _aElectronics and Microelectronics, Instrumentation.
650 2 4 _aElectronic Devices.
653 0 _aMetal oxide semiconductors, Complementary -- Effect of temperature on
653 0 _aMetal oxide semiconductors, Complementary -- Reliability
700 1 _aMahapatra, Souvik.
_eeditor.
_4edt
_4http://id.loc.gov/vocabulary/relators/edt
710 2 _aSpringerLink (Online service)
856 4 0 _uhttps://doi.org/10.1007/978-981-16-6120-4
_3Springer eBooks
_zOnline access link to the resource
942 _2lcc
_cEBK