International audienceThis paper studies the reliability that CMOS FD-SOI can achieved for mmWave Power Amplifier (PA) applications. The technology opportunity and constraints are also shown. To demonstrate the capability of such technology, a highly rugged power-amplifier for the Ka band radio (26.5-40GHz) applications implemented in a CMOS 22FDX process is presented. By using design techniques together with an optimized supply voltage reduction, the power amplifier achieves an excellent reliability even under the worst mismatch condition (VSWR) of 7:1. These results validate the capability of the technology for highly reliable power amplifier for mmWave 5G applications
Research in the mm-wave band using CMOS and SiGe technologies has gained momentum over the past few ...
The inevitable migration to deeply-scaled technology nodes forces special considerations on high-pow...
SOI CMOS technology is now recognized as a promising candidate for low voltage RF circuits. This pap...
Advancing of technology and downscaling of channel length have led to high operating frequency of CM...
International audienceThis paper describes a highly rugged power-amplifier for the fifth generation ...
A review is presented of key power amplifier (PA) performance requirements for millimeter-wave 5G sy...
With the emergence of millimeter-wave applications such as automotive radar or WHDMI, the reliabilit...
RF reliability at 28GHz in PAFETs under constant and varying output load (Z0) was evaluated. Time do...
Abstract This paper presents a fully integrated, four-stack, single-ended, single stage power ampli...
This paper presents a fully integrated, four-stack, single-ended, single stage power amplifier (PA) ...
With emerging millimeter wave applications including automotive radars, wireless transmission of hig...
The advancing of technology and downscaling of channel length lead to higher operating frequency of ...
Emerging millimeter-wave applications, including high speed wireless communication using 5G standard...
This paper presents a broadband balanced power amplifier (PA) for 5G mm-wave applications. Thanks to...
International audienceThe telecommunication market examines a highly growing demand for RF mobile de...
Research in the mm-wave band using CMOS and SiGe technologies has gained momentum over the past few ...
The inevitable migration to deeply-scaled technology nodes forces special considerations on high-pow...
SOI CMOS technology is now recognized as a promising candidate for low voltage RF circuits. This pap...
Advancing of technology and downscaling of channel length have led to high operating frequency of CM...
International audienceThis paper describes a highly rugged power-amplifier for the fifth generation ...
A review is presented of key power amplifier (PA) performance requirements for millimeter-wave 5G sy...
With the emergence of millimeter-wave applications such as automotive radar or WHDMI, the reliabilit...
RF reliability at 28GHz in PAFETs under constant and varying output load (Z0) was evaluated. Time do...
Abstract This paper presents a fully integrated, four-stack, single-ended, single stage power ampli...
This paper presents a fully integrated, four-stack, single-ended, single stage power amplifier (PA) ...
With emerging millimeter wave applications including automotive radars, wireless transmission of hig...
The advancing of technology and downscaling of channel length lead to higher operating frequency of ...
Emerging millimeter-wave applications, including high speed wireless communication using 5G standard...
This paper presents a broadband balanced power amplifier (PA) for 5G mm-wave applications. Thanks to...
International audienceThe telecommunication market examines a highly growing demand for RF mobile de...
Research in the mm-wave band using CMOS and SiGe technologies has gained momentum over the past few ...
The inevitable migration to deeply-scaled technology nodes forces special considerations on high-pow...
SOI CMOS technology is now recognized as a promising candidate for low voltage RF circuits. This pap...