The ACASOM 960–1100MHz 50W GaN circulator isolator module is a high-power RF component engineered for integration into professional radio frequency infrastructures where signal stability and output consistency are critical.
Built on Gallium Nitride technology, the module delivers superior power density, improved thermal resilience, and reliable operation under sustained load conditions. Compared to traditional LDMOS architectures, GaN enables more efficient performance during continuous operation.
Operating across the 960–1100MHz range with 50W (47dBm) output power, the module supports systems that require strong RF energy and predictable transmission characteristics. The ceramic-based enclosure promotes effective thermal regulation, helping maintain operational readiness over extended periods.
Integrated open-circuit protection enhances system reliability, while the aluminum housing improves durability and heat dissipation. The SMA-F connector allows straightforward integration into existing engineering platforms.
Technical Specifications:
| Parameter | Value |
| Frequency Range | 960–1100MHz |
| Operating Voltage | 28V |
| Flatness | ±0.5dB |
| Output Power | 50W / 47dBm |
| Current | 3.6A @28V |
| Efficiency | 45% @47dBm |
| LED Status | Red |
| Operating Temperature | -30℃~85℃ |
| Storage Temperature | -40℃~150℃ |
| Humidity | <95%RH |
| RF Port | SMA-F |
| Power Socket | 15cm red/black wire |
| Shell Material | Aluminum |
| Dimensions | 132×53×17mm |
| Net Weight | 0.25kg |
Why Choose This Module:
- 50W output supports infrastructure-grade RF deployments.
- GaN architecture improves efficiency under sustained load.
- Thermally stable design enables continuous operation.
- Balanced power-to-energy ratio simplifies system design.
- Compact footprint for its power class.
- Integrated protection enhances operational reliability.
Applications:
- Fixed RF infrastructures.
- High-power radio platforms.
- Perimeter electronic networks.
- Engineering projects requiring high signal density.
- Industrial RF deployments.
- Professional radio frequency systems.
Package Includes:
Sweep Signal Source ×1
Important Notes:
- Requires a 28V / 5A power supply.
- Effective heat dissipation is recommended.
- Attach the antenna before powering the module.
- Operation may require compliance with regulatory and licensing requirements.
FAQ:
- Is the module suitable for continuous operation?
Yes, it is designed for long-duration use with proper cooling. - Does it require active cooling?
Additional heat dissipation is recommended for high-power setups. - What connector is used?
SMA-F, widely adopted in professional RF systems. - What power supply is recommended?
A stable 28V source with adequate current capacity. - What type of systems is this module intended for?
Infrastructure-level and fixed RF deployments. - Does protection circuitry improve reliability?
Yes, open-circuit protection helps reduce operational risks.
The ACASOM 960–1100MHz 50W GaN RF module is engineered for modern radio frequency infrastructures where output power, stability, and operational reliability are essential. Leveraging Gallium Nitride technology, the module achieves higher power density and improved thermal resilience compared to legacy amplifier platforms.
With 50W output power, it supports infrastructure-grade deployments that require consistent signal strength over extended operating cycles. The ±0.5dB flatness contributes to predictable RF behavior, enabling engineers to design systems with confidence.
Its ceramic thermal structure supports sustained performance, while the aluminum enclosure enhances durability and assists with heat management. Together, these features make the module suitable for demanding professional environments.
The SMA-F interface ensures compatibility with widely used RF cables and components, helping reduce integration complexity across existing platforms. GaN technology further improves energy efficiency and operational stability during sustained use.
Professionals sourcing RF hardware from Chipomi gain access to components engineered for integration flexibility, dependable output characteristics, and long-term performance across advanced radio frequency systems.
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