activity
20182021
most citedCryogenic Modeling of MOSFET Device Based on BSIM and EKV Models

2 citations · 3 across the 3 of their papers we have counts for

collaborators

8 papers

physics.app-ph20212 cited

Cryogenic Modeling of MOSFET Device Based on BSIM and EKV Models

Tengteng Lu, Yuanke Zhang, Yujing Zhang +3

Kink effect is a large obstacle for the cryogenic model of inversion-type bulk silicon MOSFET devices. This letter used two methods to correct the kink effect: the modified evoluti…

physics.app-ph2021

Characterization and Modeling of Native MOSFETs Down to 4.2 K

Yuanke Zhang, Tengteng Lu, Wenjie Wang +4

The extremely low threshold voltage (Vth) of native MOSFETs (Vth~0V@300K) is conducive to the design of cryogenic circuits. Previous research on cryogenic MOSFETs mainly focused on…

physics.app-ph2021

Hot Carrier Degradation in MOSFETs at Cryogenic Temperatures Down to 4.2 K

Yuanke Zhang, Chao Luo, Tengteng Lu +3

Wide attention has been focused on cryogenic CMOS (Cryo-CMOS) operation because of its wide application and the improvement of CMOS performance. However, hot carrier degradation (H…

physics.app-ph20191 cited

Cryogenic low power CMOS analog buffer at 4.2K

Yajie Huang, Chao Luo, Tengteng Lu +3

A novel power-efficient analog buffer at liquid helium temperature is proposed. The proposed circuit is based on an input stage consisting of two complementary differential pairs t…

physics.app-ph2019

Characterization of 0.18μm CMOS Ring Oscillator at Liquid Helium Temperature

Chao Luo, Tengteng Lu, Zhen Li +2

This paper presents low power dissipation, low phase noise ring oscillators (ROs) based on Semiconductor Manufacturing International Corporation (SMIC) 0.18μm CMOS technology at li…

physics.app-ph2018

Characterization and Modeling of 0.18μm CMOS Technology at sub-Kelvin Temperature

Tengteng Lu, Zhen Li, Chao Luo +3

Previous cryogenic electronics studies are most above 4.2K. In this paper we present the cryogenic characterization of a 0.18μm standard bulk CMOS technology(1.8V and 5V) at sub-ke…