This paper presents a model of active-integrated power amplifiers and antennas in a scanning array environment. The model links together load-pull data and unit-cell antenna simulations through a synthesized power combining and matching network to determine the active load reflection seen by the individual transistors. From this an estimate of the overall power-added efficiency, interconnect losses and radiated output power is calculated for a complete scan range at a given operating frequency. The model is intended to provide a fast, first-order indication of the most suitable technology choice and design strategy for a given operating frequency and transmit power requirement
A prototype array of dual polarized connected dipoles has been manufactured. The feed structure is c...
Many of today's satellite communication and radar systems necessitate phased array antennas that are...
Better mobile connections possible by including human factor and agility in antennas and their chara...
This article reviews the current state-of-the-art of active-integrated antennas co-designed with pow...
Next-generation mobile wireless technologies demand higher data capacity than the modern sub-6 GHz t...
This paper presents the design of a Ka-band active transmitarray consisting of radiating waveguide e...
An approach for designing a beam-steering active phased array of antenna elements with integrated po...
The paper presents general properties of arrays of connected slot or dipole antennas providing guide...
An active integrated antenna array is designed through a new design low called Deep Integration. Amp...
Connected array antennas are planar radiators in which the mutual coupling between the neighboring e...
An active integrated antenna array is designed through a new design low called Deep Integration. Amp...
Modern wireless systems, especially at millimeterwave, place increasingly stringent requirements on ...
This article reviews the current state-of-the-art of active-integrated antennas co-designed with pow...
Loss reduction to improve the power efficiency in active integrated antenna (AIA) is a key design dr...
A prototype array of dual polarized connected dipoles has been manufactured. The feed structure is c...
Many of today's satellite communication and radar systems necessitate phased array antennas that are...
Better mobile connections possible by including human factor and agility in antennas and their chara...
This article reviews the current state-of-the-art of active-integrated antennas co-designed with pow...
Next-generation mobile wireless technologies demand higher data capacity than the modern sub-6 GHz t...
This paper presents the design of a Ka-band active transmitarray consisting of radiating waveguide e...
An approach for designing a beam-steering active phased array of antenna elements with integrated po...
The paper presents general properties of arrays of connected slot or dipole antennas providing guide...
An active integrated antenna array is designed through a new design low called Deep Integration. Amp...
Connected array antennas are planar radiators in which the mutual coupling between the neighboring e...
An active integrated antenna array is designed through a new design low called Deep Integration. Amp...
Modern wireless systems, especially at millimeterwave, place increasingly stringent requirements on ...
This article reviews the current state-of-the-art of active-integrated antennas co-designed with pow...
Loss reduction to improve the power efficiency in active integrated antenna (AIA) is a key design dr...
A prototype array of dual polarized connected dipoles has been manufactured. The feed structure is c...
Many of today's satellite communication and radar systems necessitate phased array antennas that are...
Better mobile connections possible by including human factor and agility in antennas and their chara...