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相关论文: 125-211 GHz Low Noise MMIC Amplifier Design for Ra…

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In this paper a new design of MMIC based LNA is outlined. This design uses a discrete 100-nm InP HEMT placed in front of an existing InP MMIC LNA to lower the overall noise temperature of the LNA. This new approach known as the Transistor…

天体物理仪器与方法 · 物理学 2013-10-14 Mark A. McCulloch , Simon J. Melhuish , Lucio Piccirillo

Large-scale superconducting quantum computers require massive numbers of high-performance cryogenic low-noise amplifiers (cryo-LNA) for qubit readout. Here we present a C-Band monolithic microwave integrated circuit (MMIC) cryo-LNA for this…

This paper presents the analysis, design, fabrication, and measurement of an integrated low-noise amplifier (LNA) implemented using a 130 nm CMOS technology, operating in the 2.4 GHz band. The LNA is a crucial component in the performance…

系统与控制 · 电气工程与系统科学 2025-09-03 Jorge L. González-Rios , Juan C. Cruz Hurtado , Robson L. Moreno , Diego Vázquez

This paper presents a low-noise amplifier (LNA) that was developed for a new radio telescope comprised of 512 parabolic dish antennas. The LNA closely interfaces to a custom-made antenna feed with an impedance co-designed to provide noise…

天体物理仪器与方法 · 物理学 2025-09-23 Mark Lai , Vincent MacKay , Dallas Wulf , Peter Shmerko , Leonid Belostotski

The paper describes the project, implementation and test of a C-band (5GHz) Low Noise Amplifier (LNA) using new low noise Pseudomorphic High Electron Mobility Transistors (pHEMTS) from Avago. The amplifier was developed to be used as a cost…

天体物理仪器与方法 · 物理学 2016-11-15 Miguel Bergano , Luis Cupido , Armando Rocha , Domingos Barbosa

We report on the development of W-band (75-110 GHz) heterodyne receiver technology for large-format astronomical arrays. The receiver system is designed to be both mass-producible, so that the designs could be scaled to thousands of…

This paper presents an ultra-low noise L-band radio astronomical cryogenic receiver for FAST telescope. The development of key low noise microwave parts of Coupling-LNA and conical quad-ridge OMT and reasonable system integration achieve…

天体物理仪器与方法 · 物理学 2021-09-08 Hong-Fei Liu , Chuan He , Jin Wang , Peng Jiang , Sheng-Wang Wang , Yang Wu , Hang Zhang , Jin-You Song , Xiang-Wei Shi , Ming-Lei Guo

A Low-Power Variable Gain (VG) mm-Wave Low Noise Amplifier (LNA) is designed and simulated in a 28-nm CMOS process. The LNA utilizes a simple, yet novel, technique presented in this paper to vary the small-signal output resistance to…

信号处理 · 电气工程与系统科学 2025-12-02 Harshith Reddy , Pankaj Arora

Noise level frequently set the basic limit on the smallest signal. New noise reduction technology and amplifiers voltage-noise density, yet still offer high speed, high accuracy, and low power solution. Low noise amplifiers always play a…

信号处理 · 电气工程与系统科学 2018-07-30 A. Abbasi , N. Sulaiman , Rozita Teymourzadeh

A new cryogenic noise calibration source for radio astronomy receivers is presented. Dissipated power is only 4.2 mW, allowing it to be integrated with the cold part of the receiver. Measured long-term stability, sensitivity to bias…

天体物理仪器与方法 · 物理学 2011-09-19 Eric W. Bryerton

The InGaAs-InAlAs-InP high electron mobility transistor (InP HEMT) is the preferred active device used in a cryogenic low noise amplifier (LNA) for sensitive detection of microwave signals. We observed that an InP HEMT 0.3-14GHz LNA at 2K,…

This paper demonstrates designing and developing of an Ultra-Low Noise Amplifier which should potentially increase the sensitivity of the existing Magnetic Resonance Imaging (MRI) systems. The Design of the LNA is fabricated and…

仪器与探测器 · 物理学 2017-06-13 Mustafa A Kabel

Low-noise amplifiers are of great importance in the field of quantum technologies. We study a thermally driven parametric amplifier based on a superconductor-insulator-graphene-insulator-superconductor (SIGIS) junction coupled to a…

介观与纳米尺度物理 · 物理学 2024-08-27 Marco Will , Mohammad Tasnimul Haque , Yuvraj Chaudhry , Dmitry Golubev , Pertti Hakonen

In this study, we present the design and analysis of a Low Noise Amplifier tailored specifically for quantum applications. We selected the HEMT for its unique noise reduction properties, crucial for quantum engineering. The main goal is to…

量子物理 · 物理学 2024-08-16 Ahmad Salmanogli

A low-noise amplifier (LNA) amplifies a very low-power signal without significantly degrading its signal-to-noise ratio. This paper provides the design of a linear low noise amplifier with the transistor BFP 640 using bilateral approach…

信号处理 · 电气工程与系统科学 2020-01-01 Puneeth Jubba Honnaiah , Shridhar Reddy

This study undertakes the theoretical design, CAD modeling, realization, and performance analysis of a microwave low-noise amplifier (LNA) which has been accurately developed for operation at 3.0 GHz (S-band). The objective of this research…

其他计算机科学 · 计算机科学 2014-10-20 Ardavan Rahimian , Davood Momeni Pakdehi

We present the noise performance of High Electron Mobility Transistors (HEMT) developed by CNRS-C2N laboratory. Various HEMT's gate geometries with 2 pF to 230 pF input capacitance have been studied at 4 K. A model for both voltage and…

In this paper we present the realization and a preliminary characterization of a SIS based receiver. It has been developed for the MASTER experiment that consists in a three-band SIS receiver (94, 225 and 345 GHz) for astrophysical…

天体物理仪器与方法 · 物理学 2021-02-12 L. Oberto , N. De Leo , M. Fretto , A. Tartari , L. Brunetti , V. Lacquaniti

In high-performance RF transceivers the thrust of has been on lower noise LNAs and high-power high-speed PAs. The performance trade-off has forced many solutions to have the LNA and PA on a separate die compared to the rest of baseband.…

信号处理 · 电气工程与系统科学 2022-03-29 Debopam Banerjee

Implementing microelectromechanical system (MEMS) resonators calls for detailed microscopic understanding of the devices, such as energy dissipation channels, spurious modes, and imperfections from microfabrication. Here, we report the…

应用物理 · 物理学 2023-03-22 Daehun Lee , Shahin Jahanbani , Jack Kramer , Ruochen Lu , Keji Lai
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