The ACASOM 1450MHz–1550MHz 10W GaN RF Module is a next-generation component engineered with advanced Gallium Nitride architecture to deliver strong efficiency and stable operation. It is designed for professional platforms where compact size, reliability, and predictable performance are essential.
With efficiency reaching up to 72%, the module helps reduce thermal stress while improving long-term operational stability. Its enhanced power density compared to conventional technologies enables smaller system footprints without sacrificing capability.
Intelligent power management supports dynamic scaling from 10W to 100W with automatic load adaptation. Broadband operation ensures consistent performance across the entire frequency range, while response latency below 1.5ms supports fast system behavior.
The SWaP-optimized design and modular structure simplify deployment across multiple platforms. Integrated diagnostics and real-time monitoring enhance operational transparency and reliability.
Technical Specifications:
| Parameter | Value |
| Frequency Range | 1450–1550MHz |
| Output Power | 10W |
| Efficiency | Up to 72% |
| Power Scaling | 10W–100W |
| Frequency Stability | ±0.25ppm |
| Harmonics Suppression | >65dB |
| Phase Noise | <-110dBc/Hz @ 1kHz |
| Response Latency | <1.5ms |
| Operational Availability | 99.98% duty cycle |
| Compliance | MIL-STD-461G |
| Environmental Protection | IP67 |
| Shock/Vibration | DO-160G |
| Architecture | GaN |
Why Choose This Module:
- High-efficiency GaN architecture.
- Compact size with strong power density.
- Stable broadband performance.
- Intelligent power management.
- SWaP-optimized engineering.
- Modular design for easier integration.
- Integrated diagnostics and monitoring.
Applications:
- Professional RF platforms.
- Layered network architectures.
- Mobile deployment systems.
- Fixed infrastructure environments.
- Reliability-focused engineering projects.
- Advanced RF monitoring ecosystems.
Important Notes:
- Technology is controlled under ITAR regulations.
- Authorized use is limited to certified defense and security organizations.
- Export license is required for international transfer.
FAQ:
- Is the module suitable for integration into existing RF systems?
Yes. Its modular architecture is designed to support seamless integration. - What advantages does GaN technology provide?
It enables higher efficiency, improved thermal stability, and increased power density. - Can the module operate continuously?
It is rated for up to 99.98% operational availability under continuous duty cycles. - How stable is the signal performance?
Frequency stability of ±0.25ppm and low phase noise help ensure predictable operation. - Does it support adjustable power levels?
Yes. Dynamic power scaling with automatic load adaptation is supported. - Does the module meet industry standards?
The module complies with MIL-STD-461G and features IP67 environmental protection.
The 1450–1550MHz 10W GaN RF module is a modern high-performance component designed for advanced RF architectures. Leveraging Gallium Nitride technology, it delivers strong efficiency, improved thermal behavior, and higher power density compared to traditional RF solutions. These advantages allow engineers to develop compact yet capable systems while maintaining operational reliability.
Broadband capability combined with intelligent power management ensures stable performance across the operational spectrum. Dynamic scaling and automatic load adaptation provide flexibility for evolving technical requirements, while the SWaP-optimized design supports deployments where size, weight, and power consumption are critical factors.
Compliance with MIL-STD-461G, IP67 protection, and DO-160G certification demonstrate readiness for demanding environments. Integrated diagnostics and real-time monitoring further enhance system transparency and long-term planning.
At Chipomi, the focus is on supplying professional-grade RF components that meet the expectations of modern engineering teams. This GaN module combines advanced technology, reliability, and integration flexibility, making it a strong choice for next-generation RF systems.
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