80W GaN Jammer Module: Powerful 2200–2400MHz Counter-UAS Solution
This 80W GaN jammer module covers 2200–2400MHz with built-in sweep source, VSWR protection, and 24–29V DC input. Ideal for counter-drone systems.
Technical Specifications
| Parameter | Specification | Notes |
| Frequency range | 2200–2400MHz | Covers common drone control/video bands |
| Output power | 80W | CW-capable with adequate cooling |
| Supply voltage | DC24V–29V | 28V nominal recommended |
| Current draw | 10.0A max | At full output, 28V input |
| Modulation source | Internal high-speed sweep source | Analog modulation, no external generator needed |
| Analog scan speed | High-speed | Sweeps across full 2200–2400MHz band |
| Input / output impedance | 50Ω | SMA female output connector |
| Protection LEDs | Power, overvoltage, over-temperature | Visual status on module |
| Operating temperature | -20°C to +65°C | Derate output above +65°C ambient |
| Dimensions (L×W×H) | 168.5×84.5×23mm | Compact for vehicle or fixed arrays |
| Weight | 0.55kg | Lightweight for portable deployments |
| Base material | Aluminum alloy chassis | GaN-on-SiC RF transistors |
Product Details
Compact Power for Modern Counter-UAS Deployments
The 80W GaN jammer module is built for teams that need serious RF disruption in a small footprint. It targets the 2200–2400MHz range, a band heavily used by consumer and commercial drones for control and video links. At just 168.5×84.5×23mm and 0.55kg, it drops easily into vehicle-mounted arrays, fixed-site towers, or portable kits.

What sets this unit apart is the internal high-speed sweep source. You do not need an external signal generator. The module produces its own analog modulation, sweeping rapidly across the band to deny drone receivers a stable lock. That analog scan speed matters when you are up against frequency-hopping systems.
Why GaN Changes the Math
Gallium nitride technology gives this 80W GaN jammer module two practical advantages. First, efficiency stays at or above 40 percent, so heat buildup is manageable even during long transmit cycles. Second, the wideband performance is cleaner. You get consistent output power across 2200–2400MHz without the deep roll-off common in older LDMOS designs.
The module runs from DC24V–29V and draws up to 10A at full output. A single 28V battery bank or rack supply can drive multiple units. The built-in absorptive VSWR protection means an accidentally disconnected antenna or a badly matched load will not instantly destroy the final stage.
Built-In Protections and Simple Control
Field equipment fails in predictable ways: overvoltage, overheating, bad antennas. This 80W GaN jammer module includes an absorptive VSWR protection device, plus LED indicators for power, overvoltage, and over-temperature conditions. If something goes wrong, you see it immediately on the module itself.
Switching is equally straightforward. Apply +5V or leave the control pin floating to transmit. Ground the pin to shut the module off. That TTL-style logic works with almost any microcontroller, relay board, or manual switch panel.
Integration Notes for System Builders
The output connector is SMA female, which keeps cabling simple for short runs inside a chassis. For longer runs to a panel-mount antenna, use a short low-loss jumper. The module’s output VSWR spec of ≤2.0 means it tolerates typical antenna mismatches without folding back.
One thing to keep in mind: this is a raw RF deck, not an FCC-authorized consumer product. It is intended for authorized government, defense, and security applications. Export controls may apply depending on your location.




