NEC has engineered a compact Power Amplifier Module (PAM) designed to cut energy draw in 5G base station Radio Units.
NEC has announced the development of a high-efficiency, compact 10mm x 6mm GaN-based Power Amplifier Module (PAM) for the sub-6GHz band, designed for integration into 5G base station Radio Units (RUs) ...
TOKYO--(BUSINESS WIRE)--Mitsubishi Electric Corporation (TOKYO: 6503) announced today that it will begin shipping samples of a new Gallium Nitride (GaN) power amplifier module for use in 5G massive ...
NEC announced the development of a high-efficiency, compact Power Amplifier Module (PAM) for the sub-6GHz band, designed for integration into 5G base station Radio Units (RUs).
Compact, high-efficiency module will enhance installation ease and power efficiency Mitsubishi Electric developed its 7GHz GaN PAM using proprietary matching-circuit technology and high-performance ...
This article is part of the TechXchange: Gallium Nitride (GaN). NXP rolled out a family of gallium-nitride (GaN)-based RF power amplifiers (PAs) that uniquely leverages top-side cooling to reduce the ...
Demand is increasing for power amplifier chips and other RF devices for 5G base stations, setting the stage for a showdown among different companies and technologies. The power amplifier device is a ...
Hosted on MSN
Researchers achieve record-breaking RF GaN-on-Si transistor performance for high-efficiency 6G power amplifiers
Imec researchers have set a new benchmark in RF transistor performance for mobile applications. They present a gallium nitride (GaN) MOSHEMT (metal-oxide-semiconductor high-electron-mobility ...
Communication satellites and flying antenna platforms can contribute to the comprehensive and resilient operation of global mobile networks of the fifth and sixth generation (5G, 6G). However, as ...
TOKYO--(BUSINESS WIRE)--Mitsubishi Electric Corporation (TOKYO: 6503) announced today that it will begin shipping samples of a new 16W-average-power gallium nitride (GaN) power amplifier module (PAM) ...
Results that may be inaccessible to you are currently showing.
Hide inaccessible results