In this letter, we present and test-to the best of our knowledge, for the first time-, an 8-bit (256-state) reconfigurable RF-MEMS attenuator, from 10 MHz up to 110 GHz, realized in the CMM-FBK technology. Resistive loads, in series and shunt configuration, are selectively inserted on the RF line by means of electrostatic MEMS ohmic switches. The network exhibits several attenuation levels in the range of -10/-45 dB that are rather flat up to 50 GHz, and a certain number of configurations with VSWR smaller than 4 from nearly dc up to 110 GHz, and better than 2 on a frequency span of ~80 GHz
International audienceThis paper presents a novel application of MEMS to RF signals: microwave power...
A wideband power attenuator in RF-MEMS multilayer technology, for attenuating an electromagnetic sig...
Today's wireless telecommunication industry is driven by the demand for low cost and highly efficien...
In this letter, we present and test—to the best of our knowledge, for the first time—, an 8-bit (256...
RF-MEMS technology is proposed as a key enabling solution for realising the high-performance and hig...
RF-MEMS technology is proposed as a key enabling solution for realising the high-performance and hig...
RF-MEMS technology is indicated as a key enabling solution to realise the high-performance and highl...
In this paper we present a power attenuator for RF (RadioFrequency) and microwave signals entirely d...
RF-MEMS technology is emerging as a key enabling solution to address demanding requirements that upc...
In this work we present a novel implementation of a multi-state RF (Radio Frequency) power attenuato...
In this work we present a novel implementation of a multi-state RF (Radio Frequency) power attenuato...
After fluctuating expectations and disillusionments, RF-MEMS technology is starting to make its way ...
Looking at 2030, the landscape of technology will be dominated by paradigms like 6G, Super-IoT (Inte...
Micromachining and RF Micro-Electro-Mechanical Systems (RF MEMS) have been identified as two of the ...
There is an increased demand on efficient use of frequency spectrum required by the modern wireless ...
International audienceThis paper presents a novel application of MEMS to RF signals: microwave power...
A wideband power attenuator in RF-MEMS multilayer technology, for attenuating an electromagnetic sig...
Today's wireless telecommunication industry is driven by the demand for low cost and highly efficien...
In this letter, we present and test—to the best of our knowledge, for the first time—, an 8-bit (256...
RF-MEMS technology is proposed as a key enabling solution for realising the high-performance and hig...
RF-MEMS technology is proposed as a key enabling solution for realising the high-performance and hig...
RF-MEMS technology is indicated as a key enabling solution to realise the high-performance and highl...
In this paper we present a power attenuator for RF (RadioFrequency) and microwave signals entirely d...
RF-MEMS technology is emerging as a key enabling solution to address demanding requirements that upc...
In this work we present a novel implementation of a multi-state RF (Radio Frequency) power attenuato...
In this work we present a novel implementation of a multi-state RF (Radio Frequency) power attenuato...
After fluctuating expectations and disillusionments, RF-MEMS technology is starting to make its way ...
Looking at 2030, the landscape of technology will be dominated by paradigms like 6G, Super-IoT (Inte...
Micromachining and RF Micro-Electro-Mechanical Systems (RF MEMS) have been identified as two of the ...
There is an increased demand on efficient use of frequency spectrum required by the modern wireless ...
International audienceThis paper presents a novel application of MEMS to RF signals: microwave power...
A wideband power attenuator in RF-MEMS multilayer technology, for attenuating an electromagnetic sig...
Today's wireless telecommunication industry is driven by the demand for low cost and highly efficien...