60W 2500–2700MHz GaN Drone Jammer Module
60W 2500–2700MHz GaN drone jammer module with built-in analog sweep source, DC12–14V, 12A max, SMA female, LED protection, 138×50.5×17mm, 0.22kg.
Technical Specifications
| Parameter | Specification | Notes |
| Frequency range | 2500–2700 MHz | Covers common drone control, video, and 2.4 GHz ISM links. |
| Output power | 60 W | Typical; output VSWR ≤2.0. |
| Supply voltage | DC 12–14 V | Switch control: +5 V or floating = ON; ground = OFF. |
| Current draw | 12 A max | Use a supply with headroom. |
| Modulation source | Built-in high-speed sweep source | Analog interference generation. |
| Analog scan speed | High-speed sweep | Exact rate depends on configuration. |
| Input / output impedance | 50 Ω | SMA female output; VSWR ≤2.0. |
| Protection LEDs | Power switch, over-voltage, over-temperature | Basic status indication. |
| Operating temperature | -20 to +65°C | Add airflow for long high-power use. |
| Dimensions (L×W×H) | 138 × 50.5 × 17 mm | Compact module. |
| Weight | 0.22 kg | Module only. |
| Base material | Aluminum alloy (typical) | Metal housing with heat-spreader base |
Product Details
Overview
This 60W 2500–2700MHz GaN drone jammer module is an analog integrated RF source. It uses a gallium nitride power stage, which helps deliver high output in a small housing. The band covers 2.5GHz to 2.7GHz, a range used by drone video links, remote controls, and some Wi-Fi devices. A built-in high-speed sweep source creates analog interference without an external signal generator. The module runs from DC12–14V and draws up to 12A. Efficiency is at least 40%. The compact size is 138×50.5×17mm, and it weighs only 0.22kg. It is a component for system builders, not a finished consumer product.

Why GaN Matters
GaN transistors handle higher power density than many older technologies. That means more RF output from a smaller board. It also can improve efficiency and thermal performance when the module is mounted correctly. At 60W, heat still matters. The case must be fixed to a metal plate or heatsink for longer use. Good airflow keeps the module inside its -20°C to +65°C range. The SMA female output has VSWR ≤2.0. Use a matched 2.5–2.7GHz antenna or a proper load. Never run it with no load.
Control and Protection
The switch control is simple. Apply +5V or leave the pin floating to turn the module on. Ground the pin to turn it off. This input only controls the module; it is not the main power switch. LEDs show power, over-voltage, and over-temperature status. These indicators help during setup and troubleshooting. For safe operation, use a stable DC12–14V supply rated for at least 12A. Voltage drop can reduce output and stability. Keep coaxial cables short and rated for the power. Poor connections raise VSWR and may trigger protection.
Installation Notes
Mount the drone jamming module on a flat metal surface. Use thermal paste if needed. Keep the antenna away from people and sensitive electronics. A directional antenna can focus energy toward a known approach path. An omnidirectional antenna covers more angles but may reduce range. Range depends on antenna gain, cable loss, terrain, and the drone link budget. Start with short tests. Check current, temperature, and LED status. If the module gets too hot, reduce duty cycle or add forced air. Do not touch the output connector while power is on. RF energy can be harmful.
Typical Uses
This 60W 2500–2700MHz GaN drone jammer module fits counter-drone systems, facility protection, border monitoring, and RF test benches. It can also be used for shielded lab setups where a 2.5–2.7GHz analog sweep is needed. It is not a standalone jammer. You need a power supply, antenna, cables, and a housing. Check local laws before use. Jamming and RF transmission are regulated in most countries. The buyer is responsible for compliance. If your project needs a compact 60W GaN source in this band, this module is a practical building block.




