The design of a Gilbert Cell Mixer and a low noise amplifier (LNA), using GaAs PHEMT technology is presented. The compatibility is shown for co-integration of both block on the same chip, to form a high performance 1.9 GHz receiver front-end. The designed LNA shows 9.23 dB gain and 2.01 dB noise figure (NF). The mixer is designed to operate at RF=1.9 GHz, LO=2.0 GHz and IF=100 MHz with a gain of 14.3 dB and single sideband noise figure (SSB NF) of 9.6 dB. The mixer presents a bandwith of 8 GHz
The two basic parts of a receiver operating in K band: a low noise amplifier and a mixer, have been ...
This thesis treats the design and characterization of different mixer and multifunctional monolithic...
In this paper, the feasibility of a V-band MMIC chipset is tested by the design of a Low-Noise Ampli...
The design of a Gilbert Cell Mixer and a low noise amplifier (LNA), using GaAs PHEMT technology is p...
This paper describes the design and performance of a GaAs monolithic Low Noise Amplifier and Mixer d...
In this project, the design of receiver front-ends (RFEs) were investigated at microwave frequency o...
Mixers are key devices for front-end components in any transceiver of a communication system. The pe...
This paper presents design of analog mixer using modified Gilbert cell topology for use in RF front....
The design and characterization of an up-converting double balanced Gilbert cell mixer in a 0.5 µm I...
The technology, design procedure and measurements of an E-band (71-86 GHz) high performance gallium ...
In the communication system, Low noise amplifier, oscillator and Mixer are the key components at the...
This paper presents a novel implementation of a wideband Low Noise Amplifier (LNA) for wireless comm...
In this paper the design of resistive PHEMT mixers and their applications in fully integrated millim...
[[abstract]]A compact and broadband 25-75-GHz fully integrated double-balance Gilbert-cell mixer usi...
The trend in cellular chipset design today is to incorporate support for a larger number of frequenc...
The two basic parts of a receiver operating in K band: a low noise amplifier and a mixer, have been ...
This thesis treats the design and characterization of different mixer and multifunctional monolithic...
In this paper, the feasibility of a V-band MMIC chipset is tested by the design of a Low-Noise Ampli...
The design of a Gilbert Cell Mixer and a low noise amplifier (LNA), using GaAs PHEMT technology is p...
This paper describes the design and performance of a GaAs monolithic Low Noise Amplifier and Mixer d...
In this project, the design of receiver front-ends (RFEs) were investigated at microwave frequency o...
Mixers are key devices for front-end components in any transceiver of a communication system. The pe...
This paper presents design of analog mixer using modified Gilbert cell topology for use in RF front....
The design and characterization of an up-converting double balanced Gilbert cell mixer in a 0.5 µm I...
The technology, design procedure and measurements of an E-band (71-86 GHz) high performance gallium ...
In the communication system, Low noise amplifier, oscillator and Mixer are the key components at the...
This paper presents a novel implementation of a wideband Low Noise Amplifier (LNA) for wireless comm...
In this paper the design of resistive PHEMT mixers and their applications in fully integrated millim...
[[abstract]]A compact and broadband 25-75-GHz fully integrated double-balance Gilbert-cell mixer usi...
The trend in cellular chipset design today is to incorporate support for a larger number of frequenc...
The two basic parts of a receiver operating in K band: a low noise amplifier and a mixer, have been ...
This thesis treats the design and characterization of different mixer and multifunctional monolithic...
In this paper, the feasibility of a V-band MMIC chipset is tested by the design of a Low-Noise Ampli...