In this paper, the feasibility of a V-band MMIC chipset is tested by the design of a Low-Noise Amplifier (LNA) operating in the 59-66 GHz frequency band and two Mixers exploiting two different topologies that convert signals from the 60-60.4 GHz band to 8-8.4 GHz band and vice versa. The MMICs have been designed exploiting OMMIC’s 70 nm and 130 nm GaAs technologies. LNA shows a 23 dB gain and a sub-2 dB Noise Figure in the whole operating band, while the two Mixers show a 11-12 dB conversion loss, along with LO isolation towards RF and IF port higher than 22 dB and a simulated Input 1 dB Compression Point of 10 dBm
This paper describes the design and performance of a GaAs monolithic Low Noise Amplifier and Mixer d...
Abstract—In this paper a new design of MMIC based LNA is outlined. This design uses a discrete 100-n...
The present paper describes a set of GaAs MMIC developed by Alenia Aerospazio (ALS) in cooperation w...
In this paper, the feasibility of a V-band MMIC chipset is tested by the design of a Low-Noise Ampli...
The feasibility of a W-band (81-86 GHz) downconverter for space-borne communications is verified in ...
This work discusses MMICs for the realization of spaceborn multi-Gigabit satellite communication sys...
The technology, design procedure and measurements of an E-band (71-86 GHz) high performance gallium ...
Designing wideband low noise amplifiers (LNAs) at millimeter wave frequencies (>30 GHz) is rather...
A complete MMIC-based chipset for multi-Gigabit satellite communication links in the designated E-Ba...
The present paper describe a number of GaAs MMIC developed by Alenia Aerospazio for Ka Band satellit...
We demonstrated high power and low noise GaAs MMIC amplifiers for K- to Ka-band space equipment. For...
Each year GaAs MMIC technology finds greater application in high volume, low-cost telecommunications...
The design and performance of an L-Band GaAs chip-set is presented.The chip-set consists of a 6-bit ...
A QV band receiver and converter unit, including a novel low noise MMIC amplifier at 50GHz, is being...
Recent advances in printed circuit and packaging technology of microwave and millimeter wave circuit...
This paper describes the design and performance of a GaAs monolithic Low Noise Amplifier and Mixer d...
Abstract—In this paper a new design of MMIC based LNA is outlined. This design uses a discrete 100-n...
The present paper describes a set of GaAs MMIC developed by Alenia Aerospazio (ALS) in cooperation w...
In this paper, the feasibility of a V-band MMIC chipset is tested by the design of a Low-Noise Ampli...
The feasibility of a W-band (81-86 GHz) downconverter for space-borne communications is verified in ...
This work discusses MMICs for the realization of spaceborn multi-Gigabit satellite communication sys...
The technology, design procedure and measurements of an E-band (71-86 GHz) high performance gallium ...
Designing wideband low noise amplifiers (LNAs) at millimeter wave frequencies (>30 GHz) is rather...
A complete MMIC-based chipset for multi-Gigabit satellite communication links in the designated E-Ba...
The present paper describe a number of GaAs MMIC developed by Alenia Aerospazio for Ka Band satellit...
We demonstrated high power and low noise GaAs MMIC amplifiers for K- to Ka-band space equipment. For...
Each year GaAs MMIC technology finds greater application in high volume, low-cost telecommunications...
The design and performance of an L-Band GaAs chip-set is presented.The chip-set consists of a 6-bit ...
A QV band receiver and converter unit, including a novel low noise MMIC amplifier at 50GHz, is being...
Recent advances in printed circuit and packaging technology of microwave and millimeter wave circuit...
This paper describes the design and performance of a GaAs monolithic Low Noise Amplifier and Mixer d...
Abstract—In this paper a new design of MMIC based LNA is outlined. This design uses a discrete 100-n...
The present paper describes a set of GaAs MMIC developed by Alenia Aerospazio (ALS) in cooperation w...