Build on Qorvo Expertise
U.S.-based RF foundry and engineering expertise for manufacturable, mission-ready designs.
RF performance decisions extend well beyond the component. We bring a system-level perspective to the tradeoffs, backed by broad RF technology expertise. Meet with our team to discuss your current program or design challenge, including:
RF performance decisions extend well beyond the component. We bring a system-level perspective to the tradeoffs, backed by broad RF technology expertise. Meet with our team to discuss your current program or design challenge, including:
Every application brings a different set of RF challenges. We combine technology depth with application expertise to solve them at the system level.

Maximize detection and range while managing power, efficiency, thermal and array size within system constraints.

Enable multi-band, multi-orbit architectures while managing flat-panel architectures and terminal footprint.

Operate across contested spectrum with wide bandwidth and output power, while responding to changing threats.

Increase throughput in a crowded spectrum while maintaining signal integrity.
Deep knowledge of tradeoffs that impact performance, size, power, thermal management and integration.
RF technologies across the signal chain drive system architecture and performance.
Technology depth and application expertise translate design requirements into practical RF solutions.

Sunday, October 4, 2026 Room 6

Wednesday, October 7, 2026 Room 12

Thursday, October 8, 2026 Room 11

Monday, October 5, 2026 Room 2

Tuesday, October 6, 2026 Room 13

This e-book explains how new SATCOM technologies are advancing communication networks and meeting growing performance expectations.

GaN-on-SiC SSPAs reduce SWaP-C while improving reliability in high-power RF systems.

Optimize RF receiver performance by understanding the impact of input linearity.

This book explains how GaN technology works and how its solutions help businesses, consumers, and governments wirelessly connect to the world around them.
Answers to common questions about RF system design and our capabilities.
Qorvo offers beamformer ICs, GaN and GaAs amplifiers and integrated transmit/receive front-end modules for radar architectures. These technologies give designers more options for managing output power, sensitivity, thermal performance and array size within system constraints.
Our SATCOM terminal products include beamforming and RF technologies for flat-panel arrays. The portfolio covers key design considerations including beam steering, power efficiency, thermal management and terminal footprint across multi-orbit architectures.
Contested spectrum puts pressure on bandwidth, output power and response time, with direct effects on efficiency, thermal management and RF architecture.
Integrating functions such as power amplification, low-noise amplification, switching and protection can reduce component count and simplify the RF front end. The resulting architecture can also improve power efficiency, thermal management and use of available board or array space.
GaN-on-SiC PAs combine high RF power density and wide bandwidth with the high thermal conductivity of the SiC substrate. These characteristics make it well suited for high-power radar, SATCOM and EW architectures where efficiency, power density and system size are closely linked.
Qorvo combines RF technology depth with application expertise to evaluate decisions across the signal chain. This system-level perspective connects component choices with the architecture and performance goals of the overall design.
Yes. Visitors can schedule time with Qorvo experts during EuMW 2026 to talk about current RF programs and system design challenges.
RF performance decisions extend well beyond the component. We bring a system-level perspective to the tradeoffs, backed by broad RF technology expertise. Meet with our team to discuss your current program or design challenge, including:
RF performance decisions extend well beyond the component. We bring a system-level perspective to the tradeoffs, backed by broad RF technology expertise. Meet with our team to discuss your current program or design challenge, including:
Every application brings a different set of RF challenges. We combine technology depth with application expertise to solve them at the system level.

Maximize detection and range while managing power, efficiency, thermal and array size within system constraints.

Enable multi-band, multi-orbit architectures while managing flat-panel architectures and terminal footprint.

Operate across contested spectrum with wide bandwidth and output power, while responding to changing threats.

Increase throughput in a crowded spectrum while maintaining signal integrity.
Deep knowledge of tradeoffs that impact performance, size, power, thermal management and integration.
RF technologies across the signal chain drive system architecture and performance.
Technology depth and application expertise translate design requirements into practical RF solutions.

Sunday, October 4, 2026 Room 6

Wednesday, October 7, 2026 Room 12

Thursday, October 8, 2026 Room 11

Monday, October 5, 2026 Room 2

Tuesday, October 6, 2026 Room 13

This e-book explains how new SATCOM technologies are advancing communication networks and meeting growing performance expectations.

GaN-on-SiC SSPAs reduce SWaP-C while improving reliability in high-power RF systems.

Optimize RF receiver performance by understanding the impact of input linearity.

This book explains how GaN technology works and how its solutions help businesses, consumers, and governments wirelessly connect to the world around them.
Answers to common questions about RF system design and our capabilities.
Qorvo offers beamformer ICs, GaN and GaAs amplifiers and integrated transmit/receive front-end modules for radar architectures. These technologies give designers more options for managing output power, sensitivity, thermal performance and array size within system constraints.
Our SATCOM terminal products include beamforming and RF technologies for flat-panel arrays. The portfolio covers key design considerations including beam steering, power efficiency, thermal management and terminal footprint across multi-orbit architectures.
Contested spectrum puts pressure on bandwidth, output power and response time, with direct effects on efficiency, thermal management and RF architecture.
Integrating functions such as power amplification, low-noise amplification, switching and protection can reduce component count and simplify the RF front end. The resulting architecture can also improve power efficiency, thermal management and use of available board or array space.
GaN-on-SiC PAs combine high RF power density and wide bandwidth with the high thermal conductivity of the SiC substrate. These characteristics make it well suited for high-power radar, SATCOM and EW architectures where efficiency, power density and system size are closely linked.
Qorvo combines RF technology depth with application expertise to evaluate decisions across the signal chain. This system-level perspective connects component choices with the architecture and performance goals of the overall design.
Yes. Visitors can schedule time with Qorvo experts during EuMW 2026 to talk about current RF programs and system design challenges.