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80W Drone Jammer Module 840-1000MHz: Ultimate Counter-Drone Power

Technology: GaN
Frequency Range: 900MHz
Connector Type: SMA Female
Output Power: 80W

80W drone jammer module 840-1000MHz: GaN analog jammer, 80W output, 840-1000MHz sweep, DC24-29V, 0.55kg, built-in VSWR protection. Counter-UAS ready.

Technical Specifications

ParameterSpecificationNotes
Frequency range840-1000 MHzCovers popular drone command/video bands
Output power80 W typicalMinimum 80 W CW across the band
Supply voltageDC 24~29 VStandard battery or vehicle supply
Current draw≤10.0 AAt maximum output power
Modulation sourceBuilt-in high-speed analog sweep generatorNo external generator required
Analog scan speedConfigurable, up to 100 MHz/µsOptimized for frequency-hopping threats
Input / output impedance50 Ω nominalSMA female output connector
Protection LEDsVSWR alarm (red), Power indicator (green)Absorptive protection active
Operating temperature-20°C to +60°CSuitable for outdoor enclosures
Dimensions (L×W×H)168.5 × 84.5 × 23 mmCompact GaN-on-SiC layout
Weight0.55 kgLightweight for mobile integration
Base materialGaN-on-SiC HEMTHigh power density substrate

Product Details

When you need to knock rogue drones out of the sky, the 80W drone jammer module 840-1000MHz gives you a compact, no-nonsense RF blanket. We built this unit around a gallium nitride (GaN) final stage and a built-in high-speed analog sweep source, so you don’t need to bolt on an external signal generator or a fragile linear supply. One module, one connection to your antenna, and you’re sweeping the entire band.

80W Drone Jammer Module 840-1000MHz: Ultimate Counter-Drone Power


Key Features of the 80W Drone Jammer Module 840-1000MHz

The 80W drone jammer module 840-1000MHz punches out a full 80 watts across 840–1000 MHz, covering the most common drone control, telemetry, and FPV video frequencies. It runs off a standard 24–29 V DC rail (battery or vehicle power) and draws under 10 A at full throttle, which keeps your thermal management simple. TTL switching is straightforward: float the control pin or feed it +5 V to activate, pull it to ground to shut down. No complicated serial commands, no software headaches. Just clean, broadband jamming power when you need it.

GaN Technology Advantages

Why GaN? In a word, density. This 80W drone jammer module 840-1000MHz squeezes gallium nitride on silicon carbide into a footprint of just 168.5 × 84.5 × 23 mm while maintaining 40%+ efficiency. That means less heat, smaller heatsinks, and more usable RF per watt compared to older LDMOS blocks. GaN also handles reflected power gracefully, which pairs perfectly with the onboard absorptive VSWR safeguard. Read a deep dive on GaN’s benefits in counter-UAS hardware .

Integrated High-Speed Analog Sweep Source

Most high-power jamming setups force you to feed in a modulated waveform from an external generator. The 80W drone jammer module 840-1000MHz flips that script. Its internal analog sweep engine whips through the 840–1000 MHz band at a rapid, configurable rate, producing a moving wall of interference. Frequency-hopping drones and agile video links don’t get a chance to breathe. You get truly autonomous sweep jamming without extra boxes, cables, or sync issues. Engineers appreciate how this design shrinks their bill of materials while making field repairs quick and painless.

Built-In Protection & Mechanical Design

Weighing only 0.55 kg, the 80W drone jammer module 840-1000MHz is easy to embed in tactical poles, domes, or man-portable backpacks. The absorptive VSWR protection stage isn’t a tacked-on afterthought—it actively dissipates reflected energy before it can stress the GaN transistor. Front-panel LEDs give you at-a-glance status: green for power, red for high VSWR. Operating temperature spans -20°C to +60°C, so the module stays reliable whether you’re working desert heat or cold mountain ops. SMA female output and filtered DC input keep integration clean and repeatable.

Real-World Applications

Security teams plug the 80W drone jammer module 840-1000MHz into fixed-site counter-UAS towers, rapid-deployment drone gun systems, and convoy protection suites. Because a single module blankets 840–1000 MHz, it can neutralize multiple consumer and commercial drone models simultaneously without channel hopping. When mission uptime matters, the all-in-one architecture strips out common failure points—no external modulator, no messy coaxial patch cords, just a straightforward RF block that delivers 80 W of pure disruption.

If your next project demands a rugged, high-efficiency jamming core that won’t bog down your SWaP budget, the 80W drone jammer module 840-1000MHz offers a field-proven foundation.

Frequently Asked Questions

Q: What frequencies does the 80W drone jammer module 840-1000MHz jam?
A: It sweeps continuously from 840 to 1000 MHz, effectively disrupting typical drone RC links, telemetry, and analog/digital FPV video channels used by many consumer and commercial UAVs.
Q: How much RF power can I expect at the SMA output?
A: You get a stable 80 W continuous-wave output when supplied with 24–29 V DC. The gallium nitride design ensures this power holds across the full band, not just at a narrow sweet spot.
Q: Does the module survive a disconnected or damaged antenna?
A: Absolutely. The internal absorptive VSWR protection dumps reflected energy safely, and the red LED warns you of high mismatch—saving the GaN final stage from burnout.
Q: Is the jamming modulation fixed, or can I override it?
A: The built-in analog sweep source handles fast band-sweeping by default. If your system requires external modulation, you can inject it through the control interface, though most users rely on the integrated generator for simplicity.

Case Studies

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Guangxi Army Drone Defense Project – Field Report

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The Background & Real Pain Points Deploying a robust counter‑unmanned aerial system (C‑UAS) along Guangxi’s strategic terrain is no textbook...
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Heilongjiang Weather Center Completes Anti-Drone System Upgrade with Three High-Power Drone Jammer Modules

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Back in early 2026, the meteorological center in Heilongjiang Province found itself dealing with an issue that wasn’t on anyone’s...
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