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30W Drone Jammer Module 2010-2170MHz: Unrivaled GaN Jamming Power

Technology: GaN
Frequency Range: 2.1GHz
Connector Type: SMA Female
Output Power: 30W

30W drone jammer module with GaN, 2010-2170MHz, 30W RF output, 24-29V DC, 3.2A max, compact 115.5x46.5x21mm. Integrated analog sweep source, ideal for UAV countermeasures.

Technical Specifications

ParameterSpecificationNotes
Frequency range2010–2170MHzCovers global mobile satellite & 4G/5G bands
Output power30W (typical)Saturated CW/sweep mode
Supply voltageDC 24V–29VCompatible with 24/28V battery systems
Current draw≤3.2A @ 29VEfficient for portable applications
Modulation sourceBuilt-in high-speed sweepNo external signal generator needed
Analog scan speedFixed internal rateOptimized for drone receiver desensitization
Input / output impedance50Ω (typical)SMA-female connectors
Protection LEDsPower ON (green), VSWR alarm (red)Immediate antenna mismatch warning
Operating temperature-20°C to +65°CIndustrial grade
Dimensions (L×W×H)115.5×46.5×21mmFits into compact chassis
Weight0.21kg (7.4 oz)Lightweight for airborne or handheld use
Base materialAluminum alloy with Ni-platingShielding & heat dissipation

Product Details

In the fast‑evolving field of counter‑UAS defense, field‑proven disruption power cannot be optional. The 30W drone jammer module delivers an uncompromising blend of brute‑force output and surgical frequency coverage inside a 115.5 × 46.5 × 21 mm footprint. Built on gallium nitride technology, it turns DC power into a wall of noise that paralyzes rogue drone video and control links between 2010 and 2170 MHz.

30W Drone Jammer Module 2010-2170MHz: Unrivaled GaN Jamming Power

Why GaN Makes the 30W Drone Jammer Module Superior

Gallium nitride pushes this 30W drone jammer module well beyond what older LDMOS designs can deliver. With efficiency consistently above 40%, the RF deck wastes far less energy as heat, allowing the aluminum alloy chassis to keep thermals in check even at 3.2 A peak draw. The result is true 30 W continuous‑wave output that stays clean under real‑world VSWR swings. Experts note that GaN’s faster switching and higher breakdown voltage make it ideal for wide‑band jamming tasks (learn more from IEEE GaN research). 

Technical Capabilities and Analog Sweep

At the core sits a high‑speed analog sweep generator, not a stepped DDS. That means the jamming waveform glides continuously across the full 2010–2170 MHz span, denying frequency‑hopping drones any quiet moment to re‑establish a command link. The sweep rate is adjustable via a UART interface, giving integrators deep control over disruption rhythms without redesigning the RF chain. TTL‑level on/off logic (+5 V or float to jam, ground to mute) transforms the 30W drone jammer module into a plug‑and‑respond node that security management platforms can trigger in milliseconds.

Integration Guidelines for the 30W Drone Jammer Module

Supply 24–29 V DC with at least 3.5 A headroom – voltage sag under 30 W load is the fastest way to clip output power. The SMA female port mates with most common jumper cables, while the built‑in VSWR LED instantly turns red if an antenna mismatch threatens the GaN final stage. Always mount the module to a flat, thermal‑greased surface and add forced airflow when ambient temperature nears the +65 °C limit. At only 0.21 kg, the 30W drone jammer module shines in man‑portable drone‑gun setups; integrate it with our compact battery management units for a lightweight, fully mobile jamming backpack.

Real‑World Deployment Scenarios

Airport perimeter patrols, VIP convoy escorts, and stadium security teams already trust the 30W drone jammer module to blind nuisance quadcopters instantly. Because it blankets the 2.1 GHz consumer‑drone video band, most targets either auto‑land or execute a return‑to‑home failsafe. Fixed‑installation racks often stack several modules for multi‑band coverage, yet this single unit handles the critical 2.1 GHz slice autonomously.

With conservative 3.2 A current draw and a proven GaN foundation, service life stretches into thousands of operational hours. For harsh outdoor use, house the module in an IP67‑rated enclosure with proper RF gasketing and it will soldier through dust, rain, and temperature swings without missing a beat. Whether you need a rapid‑prototyping workhorse or a permanent counter‑UAS anchor, the 30W drone jammer module keeps your airspace secure.

Frequently Asked Questions

Q: What frequency range does this 30W drone jammer module cover?
A: It sweeps 2010–2170 MHz, the predominant band for commercial drone video downlinks and remote‑control uplinks. The analog source guarantees no frequency sits untouched during a sweep cycle.
Q: How do I switch the RF output on and off?
A: Apply +5 V DC or leave the control pin unconnected to activate jamming. Pull the same pin to ground to mute the output instantly. This TTL‑compatible logic simplifies automation.
Q: What power supply is required for continuous 30W operation?
A: Provide a regulated 24–29 V DC source with a minimum 3.5 A capacity. A stable supply preserves the module’s >40% efficiency and prevents output power drops during sustained jamming.
Q: Can the module survive outdoor all‑weather use?
A: The electronics operate between -20 °C and +65 °C, but the bare board must be enclosed in an IP‑rated housing to protect the SMA connector and PCB. The aluminum base material efficiently transfers heat to a larger heatsink.

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