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Abnormal Two-Stage Degradation Under Hot Carrier Injection With Lateral Double-Diffused MOS With 0.13-μm Bipolar-CMOS-DMOS Technology
期刊文章

Abnormal Two-Stage Degradation Under Hot Carrier Injection With Lateral Double-Diffused MOS With 0.13-μm Bipolar-CMOS-DMOS Technology

W.-C. Hung, Y.-F. Tu, T.-C. Chang, M.-C. Tai, K.-H. Chen, F.-Y. Jin, C.-H. Yeh, W.-C. Hung, C.-H. Chang, H.-M. Kuo, …
IEEE Transactions on Electron Devices, 卷.70(7), 頁碼.3419-3423
2023
Web of Science ID: WOS:001005929900001

摘要

Contact field plate (CFP) hot carrier injection (HCI) lateral double-diffused MOS (LDMOS) positive bias temperature instability (PBTI) Drain current Electric fields Electronic design automation Field effect transistors Hot carriers Human computer interaction Impact ionization Threshold voltage Contact field plate Field plates Heating system Hot carrier injection Lateral double diffused mos (LDMOS) Lateral double-diffused MOS Positive bias temperature instabilities Positive bias temperature instability Urban areas Degradation
In this work, the issue of abnormal two-stage hot carrier injection (HCI) degradation in n-type lateral double-diffused MOS (LDMOS) transistors is explored. The degradation mechanism is divided into two stages. The first stage is the electron injection into the interface layer (IL) caused by the impact ionization that occurs under the contact field plate (CFP), resulting in the degradation of the ON-current (Ion). The second stage of deterioration is the positive bias temperature instability (PBTI) effects caused by Joule heating, which leads to defects in the SiO2/Si interface, and injects electrons in the channel into SiO2, which increases the subthreshold swing (S.S) of the device and causes the threshold voltage (Vth) to shift. It has been proved by temperature variation experiments and technology computer-aided design (TCAD) simulations that HCI will indeed produce severe PBTI effects and lead to device degradation during long-term HCI. © 1963-2012 IEEE.

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