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Smart Communications
Gallium Nitride (GaN) RF power devices, as the core component of the third-generation semiconductors, have outstanding performance such as high frequency, high power density, high efficiency, and high temperature resistance. They have become the key support for the new generation of communication infrastructure and are widely applied in two core fields: satellite internet communication and 6G communication.
Satellite Internet
For scenarios such as satellite communication, unmanned aerial vehicle communication, airborne communication, and long-distance emergency communication, GaN RF power devices, with their advantages of high power, long-distance transmission, strong anti-interference capability, and lightweight design, build stable and reliable all-domain interconnection links, enhance signal coverage and transmission efficiency, and facilitate the efficient implementation of satellite internet.
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6G Communication
In core equipment such as macro base stations, micro base stations, AAU, and RRU, GaN RF power devices significantly enhance RF power efficiency, reduce energy consumption, and decrease equipment size. They perfectly fit Sub-8GHz, millimeter wave, and Massive MIMO technologies, facilitating high-density deployment, wide coverage, large capacity, and low power consumption of communication base stations, and providing strong impetus for the construction of the next-generation mobile communication network.
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Low-Altitude Economy

Gallium Nitride (GaN) RF power devices, as the core component of the third-generation semiconductors, with their outstanding features such as high power density, high efficiency, and wide frequency band, deeply adapt to the development needs of the low-altitude economy. They play a key supporting role in two core scenarios: anti-attack of unmanned aircraft and low-altitude intelligent IoT interconnection, helping to promote the safe and efficient development of the low-altitude economy.

Low-altitude Intelligent IoT: Empowering Efficient Global Connectivity
In the field of low-altitude intelligent IoT, gallium nitride RF power devices have broken through the bottleneck of wireless transmission technology, providing core support for ultra-range communication and real-time high-definition data transmission of low-altitude IoT devices, and facilitating the large-scale and regular application of the low-altitude intelligent IoT system. Their core characteristics of high frequency, high efficiency and wide bandwidth can achieve stable wireless signal transmission in low-altitude scenarios, enabling various low-altitude intelligent IoT devices to complete data communication over dozens of kilometers with ultra-range, ensuring high-speed and low-latency transmission of high-definition images and sensor data. Even in low-altitude complex airspace and electromagnetic interference environments, signal transmission remains stable and reliable, effectively empowering the intelligent and efficient development of the low-altitude field.
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Drone countermeasures: Strengthening the low-altitude security barrier
In the field of low-altitude security control, gallium nitride RF power devices are the "core power engine" of unmanned aerial vehicle countermeasures systems, capable of effectively addressing the risks of unauthorized intrusions. With their extremely high power density, they can amplify interference signals to 10-500W, achieving long-range interference up to 5-8 kilometers. Their wide bandwidth feature can fully cover the commonly used frequency bands of unmanned aerial vehicles (from 100 MHz to 8 GHz), meeting various countermeasures requirements. Leveraging the high power-added efficiency characteristic, these devices have low energy consumption, small heat dissipation, and can dynamically adjust power output to avoid unintended interference. Their lightweight feature is suitable for various equipment forms such as handheld and vehicle-mounted devices, and are widely applied in key areas like airports and borders for low-altitude security protection.
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Multi-Market Applications
Gallium Nitride (GaN) RF power devices, as the core component of the third-generation semiconductors, with their outstanding features such as high power density, high efficiency, and wide bandwidth, have greatly enhanced various fields. They play an irreplaceable supporting role in phased array radars and RF energy, and contribute to technological breakthroughs and efficiency upgrades in the industry.
Radio frequency energy: Generating new impetus for multi-scenario applications
In the radio frequency energy market, gallium nitride radio frequency power devices have broken through technical barriers and empowered various fields such as industry, healthcare, and daily life. Their high efficiency and wide bandwidth characteristics enable the efficient conversion of electrical energy into radio frequency energy, suitable for plasma processing, medical ablation, wireless charging and other scenarios; they help improve the quality and efficiency of industrial processing, upgrade medical diagnosis and treatment, promote the development of wireless charging towards higher power and longer distance, and inject new momentum into the high-quality development of related industries.
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Phased array radar: Strengthening the defense line for precise detection and perception
Phased Array Radar: Strengthening the Defense Line for Precise Detection and Perception In the field of phased array radar, gallium nitride RF power devices are the core for enhancing radar performance, and are widely used in defense and military industries, aerospace, civil security, and other scenarios. Their extremely high power density and high-frequency characteristics enable the radar to achieve rapid beam scanning and multi-target tracking, with the detection efficiency improving by more than 30% compared to traditional devices. The high power additional efficiency significantly reduces energy consumption and heat dissipation pressure, enabling the radar to be miniaturized and lightweight, and adapting to various deployment forms such as airborne and shipborne, providing stable support for precise detection and perception across all domains.
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