[图书][B] Broadband RF and microwave amplifiers

A Grebennikov, N Kumar, BS Yarman - 2017 - books.google.com
Broadband RF and Microwave Amplifiers provides extensive coverage of broadband radio
frequency (RF) and microwave power amplifier design, including well-known historical and …

TEMPEST-D radiometer: Instrument description and prelaunch calibration

S Padmanabhan, TC Gaier, AB Tanner… - … on Geoscience and …, 2020 - ieeexplore.ieee.org
The Temporal Experiment for Storms and Tropical Systems Technology Demonstration
(TEMPEST-D) instrument is a five-frequency millimeter-wave radiometer operating from 87 …

An MMIC low-noise amplifier design technique

M Varonen, R Reeves, P Kangaslahti… - IEEE Transactions …, 2016 - ieeexplore.ieee.org
In this paper we discuss the design of low-noise amplifiers (LNAs) for both cryogenic and
room-temperature operation in general and take the stability and linearity of the amplifiers …

A 183-GHz InP/CMOS-hybrid heterodyne-spectrometer for spaceborne atmospheric remote sensing

Y Kim, Y Zhang, TJ Reck, DJ Nemchick… - IEEE Transactions …, 2019 - ieeexplore.ieee.org
A complete 183-GHz CMOS/Indium Phosphide (InP) hybrid heterodyne-spectrometer is
realized for spaceborne atmospheric remote sensing applications. It captures spontaneous …

A 183 GHz metamorphic HEMT low-noise amplifier with 3.5 dB noise figure

G Moschetti, A Leuther, H Maßler, B Aja… - IEEE Microwave and …, 2015 - ieeexplore.ieee.org
This letter presents a 183 GHz low-noise amplifier (LNA), designed primarily for water vapor
detection in atmosphere. The LNA requirements were defined by MetOp Second Generation …

Design and On-Wafer Characterization of -Band SiGe HBT Low-Noise Amplifiers

CT Coen, AÇ Ulusoy, P Song… - IEEE transactions on …, 2016 - ieeexplore.ieee.org
This paper presents the design and thorough on-wafer characterization of two G-band low-
noise amplifiers (LNAs) implemented using 0.13-μm silicon-germanium (SiGe) …

A 75–116-GHz LNA with 23-K noise temperature at 108 GHz

M Varonen, R Reeves, P Kangaslahti… - 2013 IEEE MTT-S …, 2013 - ieeexplore.ieee.org
In this paper we present the design and measurement results, both on-wafer and in
package, of an ultra-low-noise and wideband monolithic microwave integrated circuit …

A 243 GHz LNA module based on mHEMT MMICs with integrated waveguide transitions

V Hurm, R Weber, A Tessmann… - IEEE Microwave and …, 2013 - ieeexplore.ieee.org
For use in a millimeter-wave direct detection radiometer for earth remote sensing, we have
developed a low-noise amplifier (LNA) module with a small-signal gain of 19.5 dB at 243 …

Evaluation of 28 nm CMOS receivers at 183 GHz for space-borne atmospheric remote sensing

A Tang, Y Kim, Y Xu, G Virbila, T Reck… - IEEE Microwave and …, 2016 - ieeexplore.ieee.org
This letter discusses the capability of 28 nm CMOS technology to implement receivers at the
183 GHz band enabling the potential of future radiometers for monitoring atmospheric water …

243 GHz low-noise amplifier MMICs and modules based on metamorphic HEMT technology

A Tessmann, V Hurm, A Leuther, H Massler… - International Journal of …, 2014 - cambridge.org
Two compact H-band (220–325 GHz) low-noise millimeter-wave monolithic integrated circuit
(MMIC) amplifiers have been developed, based on a grounded coplanar waveguide …