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Log-periodic FPV drone control antenna 720–1050 MHz Aeronetix, 8–9 dBi
Log-periodic FPV drone control antenna 720–1050 MHz Aeronetix, 8–9 dBi is designed for stable reception of control signals across a wide frequency range. With a directional radiation pattern and 8–9 dBi gain, the antenna provides reliable communication over medium and long distances, even in environments with significant RF interference.
The log-periodic design ensures consistent performance across the entire frequency band without sensitivity drops. A beamwidth of 80° / 55° offers a balance between extended range and controlled coverage, making it suitable for ground stations and repeater setups.
We are a team of veterans
We work with control systems in real-world conditions where link stability determines operational effectiveness. We understand the importance of proper antenna selection for noisy environments and long-distance operation.
We choose solutions based on practical use, frequency requirements, and operational conditions. Our approach focuses on delivering stable and predictable performance.
Technical specifications
| Parameter | Value |
|---|---|
| Type | Log-periodic antenna |
| Frequency range | 720–1050 MHz |
| Gain | 8–9 dBi |
| Beamwidth | 80° / 55° |
| Dimensions | 280 × 185 × 15 mm |
| Weight | 70 g |
| Power handling | up to 10 W |
| Application | Control signal reception |
| Manufacturer | Aeronetix |
Comment / comments
The log-periodic structure provides stable SWR across the entire frequency range, which is critical for modern adaptive-frequency control systems. This helps maintain signal integrity when switching channels.
The 8–9 dBi gain significantly improves range and signal quality compared to dipole antennas. Directional characteristics reduce background noise and improve link stability in interference-heavy environments.
Who it is suitable for
Military
Suitable for ground control stations and repeaters where link stability is critical. Provides reliable reception over long distances. Enables operation in complex RF environments. Used in both mobile and stationary systems. Suitable for field deployment.
FPV operators and technical units
Suitable for control systems operating in the 700–1000 MHz range. Provides improved range and signal stability. Used in ground stations and repeater setups. Enables operation in challenging conditions. Suitable for enhancing control links.
Engineers and system developers
Used in building and testing control systems. Provides predictable performance across a wide frequency range. Suitable for laboratory and field testing. Ensures stable characteristics. Used in system development.
Control and communication systems
Suitable for receiving nodes in various technical solutions. Provides stable signal when properly aligned. Used in stationary and mobile systems. Enables operation in noisy environments. Suitable for specialized applications.
Enthusiasts and professional users
Suitable for building custom long-range control systems. Enables operation across a wide frequency range. Provides stable results when properly configured. Used for testing and tuning. Offers flexibility in system design.