RF Semiconductor Market Poised for 8.5% CAGR Growth Through 2025

With a compound annual growth rate (CAGR) of 8.5%, the RF Semiconductor Market is expected to increase from USD 17.4 billion in 2020 to USD 26.2 billion in 2025.
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According to the new market research report "RF Semiconductor Market by Device (Filter, Power Amplifier, Switch, Low Noise Amplifier), Frequency Band, Material (GaAs, GaN, Si) Application (Consumer Devices, Automotive, Telecommunication, Aerospace & Defense), and Region - Global Forecast to 2025," the RF Semiconductor Market is projected to grow from USD 17.4 billion in 2020 to USD 26.2 billion by 2025, at a CAGR of 8.5% during the forecast period.

This growth is driven by the increasing demand for high-speed mobile communication, advancements in wireless technologies, and the rising adoption of RF semiconductors in consumer electronics, automotive, and telecommunication applications. The need for enhanced performance, efficiency, and miniaturization in RF devices is pushing manufacturers to innovate and adopt new materials like GaAs and GaN, which offer superior performance compared to traditional silicon-based devices. The telecommunication sector, in particular, is expected to witness significant growth due to the ongoing deployment of 5G networks and the increasing penetration of IoT devices, further propelling the demand for RF semiconductors.

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The increasing importance of advanced RF devices in radar and electronic warfare systems, coupled with the rising penetration of LTE and advanced technologies, are key factors driving the growth of the RF Gallium Nitride (GaN) Market. Advanced RF devices are crucial in radar and electronic warfare systems due to their high efficiency, power density, and frequency capabilities, which enhance the performance and reliability of these critical defense applications. Additionally, the widespread adoption of LTE and the evolution of advanced communication technologies require robust and efficient RF components to support higher data rates and improved network performance. GaN technology, known for its superior power handling and thermal conductivity, is becoming increasingly vital in meeting these demands. Consequently, the growing application of GaN in these areas is fueling the expansion of the RF GaN Market, positioning it for substantial growth in the coming years.

Filters to hold highest market share in RF semiconductor market during the forecast period.

Filters are expected to hold the largest market share by 2025, driven by rapid advancements in the telecom sector globally. Both developed and emerging countries are witnessing significant technological shifts, transitioning from 3G to 4G/LTE and now into 5G. This progression has resulted in a substantial increase in network traffic through mobile devices, leading to heightened network interferences across communication channels. As the industry embraces 5G technology, the number of filters required per smartphone is anticipated to rise significantly. This surge in demand for filters, which are essential for mitigating interference and ensuring clear signal transmission, is poised to drive the market's dominant share during the forecast period. The critical role of filters in supporting the efficient functioning of advanced telecom networks underscores their growing importance in the evolving landscape of mobile communication technology.

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Gallium Nitride based RF devices to exhibit highest CAGR in market during forecast period.

GaN-based RF devices are projected to experience the highest CAGR in the market during the forecast period. This growth is attributed to the unique capabilities of GaN devices, which can deliver high RF power output over broad bandwidths at high frequencies. As the telecom industry shifts towards the adoption of 5G networks, especially for frequencies above 6GHz, traditional silicon devices fall short of meeting the stringent requirements of these advanced networks, as they operate efficiently only below 3GHz. GaN devices, with their superior performance in high-frequency applications, are well-suited to support the demanding needs of 5G infrastructure. Their ability to handle higher power densities and operate at higher temperatures makes them ideal for the next generation of wireless communication, driving their rapid adoption and significant market growth during this period.

Consumer Electronics application to lead RF semiconductor market during forecast period.

The consumer devices application is expected to lead the RF semiconductor industry during the forecast period. The surging global demand for mobile wireless communications and mobile multimedia applications is driving the growth of mobile devices. As end-users increasingly demand high-speed data communication, smartphone manufacturers are continuously striving to meet these needs. To enable global use, RF front-end (RFFE) modules must support a wide array of bands. Additionally, OEMs face constant pressure to differentiate their consumer devices from competitors, making the integration of advanced RF components in smartphones a critical factor. The enhanced performance and capabilities provided by these advanced RF components are essential for meeting the ever-growing expectations of consumers, thereby driving the significant market share of consumer devices in the RF semiconductor industry.

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Automotive vertical to witness highest growth rate.

The automotive vertical is increasingly incorporating various LEDs, infrared components, image sensors, and laser diodes to enhance vehicle functionality and safety. Light sensors play a crucial role in detecting ambient light, enabling automatic switching of headlights, and in detecting rain, triggering the activation of windshield wipers. The adoption of LEDs for lighting applications in the automotive sector has also surged. LEDs offer numerous advantages, including greater design flexibility, improved aesthetics, enhanced compatibility, extended lifespan, and superior power efficiency. These benefits make LEDs an ideal solution for automotive lighting, from headlights and taillights to interior illumination, driving the sector's continuous evolution towards more advanced, efficient, and visually appealing lighting systems.

Euroepan RF semiconductor market to grow at significant rate during the forecast period.

Increasing concerns regarding the safety of travelers and vehicles on roads have led to the widespread adoption of intelligent transportation systems (ITS) in Europe. The European Transport Safety Council (ETSC) emphasizes the integration of these advanced systems to enhance road safety. RF semiconductors are a critical component of ITS, enabling efficient communication and control within these networks. The growing implementation of ITS is anticipated to drive the demand for RF semiconductors during the forecast period. Additionally, in 2018, the European Commission mandated that 11 safety features be included in all new cars starting from 2021, presenting a significant opportunity for the RF semiconductor market. The high adoption rate of 4G, with continuously improving coverage across Europe, further supports the increased deployment of ITS, underscoring the region's commitment to leveraging advanced technology for safer transportation.

RF Semiconductor Companies:

  • Qorvo (US),
  • Skyworks (US),
  • Analog Devices (US),
  • Qualcomm (US),
  • NXP Semiconductors (Netherlands),
  • Cree (US),
  • MACOM (US),
  • Microchip Technology (US),
  • Murata Manufacturing (Japan),
  • Texas Instruments (US),
  • Maxim Integrated (US),
  • Mercury Systems (US),
  • ON Semiconductor (US),
  • RFHIC (South Korea),
  • RichWave (Taiwan),
  • STMicroelectronics (Switzerland),
  • Sumitomo Electric Drives Innovations (Japan),
  • TDK Electronics (Germany),
  • Teledyne (US),
  • Toshiba (Japan).

News Covered:

https://www.prnewswire.com/news-releases/rf-semiconductor-market-worth-26-2-billion-by-2025--exclusive-report-by-marketsandmarkets-301017058.html

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