Wideband Inductorless Low-Power LNAs with Gm Enhancement and Noise-Cancellation

Z Pan, C Qin, Z Ye, Y Wang, Z Yu - IEEE Transactions on …, 2017 - ieeexplore.ieee.org
Two inductorless low-power differential low-noise amplifiers (LNAs) are designed for
multiband wireless communication applications. Both LNAs are based on the combination of …

Two-stage compact wideband flat gain low-noise amplifier using high-frequency feedforward active inductor

J Jang, H Kim, G Lee, TW Kim - IEEE Transactions on …, 2019 - ieeexplore.ieee.org
In this article, a wideband differential low-noise amplifier (LNA) for multiband wireless
communication applications is proposed. First, shunt peaking is implemented with a self …

A 3.5 to 7 GHz Wideband Differential LNA with gm Enhancement for 5G Applications

N Shams, A Abbasi, F Nabki - 2020 18th IEEE international …, 2020 - ieeexplore.ieee.org
This paper presents a differential wideband low noise amplifier (LNA) targeting 5G
applications in 130 nm TSMC CMOS technology. The proposed LNA is based on the …

Inductorless and cross-coupled wideband LNA with high linearity

D Bierbuesse, P Bousseaud… - 2015 Nordic Circuits and …, 2015 - ieeexplore.ieee.org
In this paper, the design of a wideband LNA employing simultaneously noise cancellation
and a linearisation technique is presented. The designed LNA consists of a cross-coupled …

[PDF][PDF] Direct Conversion Front End for LTE and LTE-A with Frequency-Translational Feedback, Harmonic Rejection Mixer and Input Matching Compensation

D Andersson Hägglund - 2016 - lup.lub.lu.se
This thesis covers the design of a wideband, flexible front end for LTE and LTE-A in a 65 nm
CMOS process. A topology with global frequency translational feedback is investigated and …

[PDF][PDF] Direct Conversion Front End for LTE and LTE-A with Frequency-Translational Feedback, Harmonic Rejection Mixer and Input Matching Compensation

DA Hägglund, A Nejdel, M Törmänen - 2016 - lup.lub.lu.se
This thesis covers the design of a wideband, flexible front end for LTE and LTE-A in a 65 nm
CMOS process. A topology with global frequency translational feedback is investigated and …