Powerful 60W Drone Jammer Module (5.6-5.9GHz GaN)
Compact 60W drone jammer module covering 5600-5900MHz with GaN, 12-14V, built-in sweep, 138x50.5x17mm, 0.22kg. Ideal for counter-UAS payloads.
Technical Specifications
| Parameter | Specification | Notes |
| Frequency range | 5600~5900 MHz | Covers 5.8 GHz ISM, drone FPV, and control links |
| Output power | 60 W (≈47.8 dBm) typ. | GaN-on-SiC amplifier; P1dB typically above 60 W |
| Supply voltage | DC 12 V ~ 14 V | Reverse polarity protection built-in |
| Current draw | ≤12.0 A at full output | Average current depends on sweep duty cycle |
| Modulation source | Built-in high-speed analog sweeping VCO | No external signal generator required |
| Analog scan speed | Configurable (factory default <1 ms full band) | Custom sweep profiles available on request |
| Input / output impedance | 50 Ω nominal | SMA female output connector |
| Protection LEDs | Power On (green) | No dedicated VSWR alarm LED; absorptive protection operates automatically |
| Operating temperature | -20 °C ~ +65 °C | Baseplate temperature; forced air recommended at full power |
| Dimensions (L×W×H) | 138 × 50.5 × 17 mm | Compact integrated assembly |
| Weight | 0.22 kg | Lightweight aluminum alloy chassis |
| Base material | Black anodized aluminum alloy | Corrosion-resistant, doubles as heat sink |
Product Details
The 60W drone jammer module brings gallium nitride performance into a footprint that surprises most integrators. It blankets the 5600–5900 MHz band, which includes the crowded 5.8 GHz ISM slice, drone FPV channels, and many proprietary control links. We designed this unit for teams that need high power density without spending hours on mechanical integration—just bolt it to a cold plate and wire the DC.
GaN Technology Redefines the 60W Drone Jammer Module
GaN-on-SiC transistors let this module deliver a true 60 watts across the whole band while staying above 40% efficiency. Compared with older GaAs or LDMOS approaches in C-band, GaN handles higher voltage swings and dissipates less heat per watt. That directly translates to a smaller heat sink and lighter overall system mass. If you have fielded 5.8 GHz jammers before, you will notice the difference as soon as you pick up the module.

Ultra-Compact Design for Mobile Deployments
At 138 × 50.5 × 17 mm and just 220 grams, the 60W drone jammer module can disappear inside a drone payload bay, a vehicle roof enclosure, or a man-portable case. No waveguide, no external circulator—the output goes straight to an SMA female connector. This is not a benchtop brick with extra bolted-on accessories; it is a single integrated board-level assembly that simplifies your bill of materials. When every centimeter and gram counts, the difference between a module like this and a discrete amplifier chain becomes obvious.
Built-in Analog Sweep Generator
Like its lower-frequency cousins, this 60W drone jammer module embeds a high-speed analog VCO. The sweep rate is factory-configured but covers the full 300 MHz span in less than a millisecond. Because the modulation is continuous and analog, the spectrum appears densely filled—frequency-hopping receivers see no quiet gaps to exploit. You do not need an external DDS board or a rack of signal generators; just provide DC power and a logic-level enable signal. For test ranges and evaluation labs, we can pre-load custom sweep patterns that match specific threat profiles.
Power and Control Made Simple
The module runs from a 12–14 V DC rail, which makes it a natural fit for vehicular 12 V systems, lithium battery packs, or standard bench supplies. Peak current draw is 12 A at full output, so size your wiring and connectors accordingly. Activation uses a single control pin: pull it high (+5 V) or leave it floating to turn on, pull to ground to shut down. That logic interface works directly with microcontrollers, PIR sensors, or manual toggle switches without additional driver circuitry. Because the GaN stage reaches full power almost instantly, there is no long soft-start delay to complicate timing in reactive jamming scenarios.
Protection and Reliability
The amplifier stage includes absorptive VSWR protection that shunts reflected energy away from the transistor when an antenna mismatch occurs. While this module does not carry a dedicated alarm LED, the power indicator remains a quick health check—if it dims or flickers under known-good DC input, check your antenna connection. The base material is black anodized aluminum alloy, acting as both a structural chassis and a direct thermal interface. With an ambient rating of -20 °C to +65 °C, the 60W drone jammer module tolerates harsh outdoor environments, but we always recommend forced airflow when you sustain full-power transmissions. For legal and safety guidelines, refer to the FCC’s jammer enforcement advisory before deploying any RF disruption equipment.
Where the 60W Drone Jammer Module Fits
You will see these modules integrated into counter-UAS payloads on tethered drones, VIP convoy protection systems, and fixed-site perimeter security. The clean 5.6–5.9 GHz sweep forces drones into fail-safe or return-to-home behavior without requiring a complex digital protocol engine. When paired with a directional antenna and a detection subsystem, the 60W drone jammer module becomes the transmit backbone of a layered defense.




