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150W Drone Jammer Module: Dominant 870-960MHz GaN High-Power

Technology: GaN
Frequency Range: 900MHz
Connector Type: SMA Female
Output Power: 150-200W

150W drone jammer module delivers 150W CW across 870-960MHz. GaN efficiency, 24-29V, 15A max, built-in VSWR protection and analog sweep. Compact 168.5x84.5x23mm.

Technical Specifications

ParameterSpecificationNotes
Frequency range870~960 MHzCovers ISM 900 MHz, drone control, telemetry and video links
Output power150 W (CW)GaN MMIC, continuous analog sweep
Supply voltage24~29 V DCCompatible with 6S-7S LiPo or regulated PSU
Current draw≤15.0 A @ 28 VPeak consumption at full 150 W output
Modulation sourceInternal high-speed analog sweepGlitch-free coverage, resists frequency hopping
Analog scan speed1 MHz/µs to 50 MHz/µs (typical)Adjustable via UART interface
Input / output impedance50 ΩStandard RF system match
Protection LEDsVSWR alarm (red), Power ON (green)Built-in absorptive VSWR protection circuit
Operating temperature-20 to +65 °CIndustrial range; derating may apply above 50 °C
Dimensions (L×W×H)168.5 × 84.5 × 23 mmCompact single-board design
Weight0.55 kgLightweight aluminum alloy chassis
Base materialAluminum alloy with conductive coatingCorrosion-resistant and heatsink-ready

Product Details

When drone pilots shift to 900 MHz ISM bands to escape common 2.4 GHz jammers, operators need serious counter-fire. The 150W drone jammer module fills that gap with a brutal 150-watt continuous wave sweep from 870 to 960 MHz. This isn’t a repackaged LDMOS brick—it’s a gallium nitride (GaN) power stage squeezed into a 168.5 × 84.5 × 23 mm chassis, ready to blind long-range fixed-wing drones and heavy-lift multirotors at the edge of their control range.

150W Drone Jammer Module: Dominant 870-960MHz GaN Power

Understanding the Sub-GHz Drone Threat

Most commercial drone jammers focus on 2.4 GHz and 5.8 GHz. Yet industrial and military-grade UAVs often fall back to 900 MHz links—Long Range (LoRa), cross-band repeaters, and even certain DJI lightbridge modes dip into this spectrum. A 150W drone jammer module doesn’t just raise the noise floor; it saturates receivers within a wide radius. The analog sweep source inside glides across the entire 870–960 MHz span seamlessly, meaning frequency-hopping protocols that step randomly get hit dozens of times per second. That kind of coverage leaves zero safe channels.

Why GaN Drives the 150W Drone Jammer Module

Hitting 150 watts of clean RF from a 24–29 V DC rail demands efficiency that silicon LDMOS simply cannot sustain. Gallium nitride’s high electron mobility lets this 150W drone jammer module push past 40% efficiency even at full tilt, pulling just 15 amps peak. Less waste heat translates to a smaller heatsink and longer mission durations when battery-powered. According to research published by GaN transistor reliability studies, GaN RF transistors also withstand higher VSWR mishandling—a critical trait when an antenna gets damaged in the field. Pair the module with our high-gain directional panel antennas to project every watt onto the threat axis.

Installation and Power Demands

Integrating a 150W drone jammer module is not like plugging in a Wi-Fi card. The current draw spikes to 15 A, so wiring must be at least 12 AWG and kept short. Supply 24–29 V DC from a LiPo brick or a regulated PSU; voltage droop under load can instantly chop output power. The SMA female port mates with standard 50-ohm feeders, but always torque it to spec—loose connections at 150 W create arcs and destroy connectors. TTL on/off control (+5 V or float to jam, ground to mute) allows a microcontroller or remote switch to command the module without bulky relays. A dedicated DC power management board helps avoid brownouts during sustained jamming cycles.

Field-Proven Reliability and Protection

What separates this 150W drone jammer module from cheap boards is the built-in absorptive VSWR protection. Instead of reflecting damaging power back into the final stage when an antenna fails, the protection circuit soaks it up and triggers a red LED on the board. The green power LED stays solid when rails are healthy. Inside an IP65 enclosure and paired with a fan, the module chugs along from -20°C to +65°C. At 0.55 kg, it’s light enough for tripod-mounted systems, vehicle-roof domes, or man-portable direction-finding setups. Routine maintenance of the 150W drone jammer module is minimal—the GaN MMIC simply refuses to quit under heavy cyclic loads.

From border surveillance towers to counter-smuggling drone operations over ports, the 150W drone jammer module turns an entire 900 MHz band into unusable territory. Its analog sweep, GaN backbone, and protective features mean you set it, forget it, and let physics do the dirty work.

Frequently Asked Questions

Q: What frequency range does the 150W drone jammer module target?
A: It covers 870–960 MHz continuously, hitting common sub-GHz drone control, telemetry, and video links. The analog sweep ensures no frequency escapes, even with agile hopping protocols.
Q: How do I activate the jammer?
A: Apply +5 V DC or leave the control pin floating to begin jamming. Ground the pin to stop. This TTL interface integrates directly with drone detection systems for automated response.
Q: What battery can power this 150W drone jammer module?
A: A 6S to 7S LiPo pack (22.2–25.9 V nominal) or a 28 V regulated supply works. Ensure the source can deliver 15 A continuous; voltage sag will reduce output power significantly.
Q: Does it have antenna mismatch protection?
A: Yes, an absorptive VSWR protection circuit absorbs reflected energy and triggers a red LED. This prevents damage when the antenna disconnects or breaks, making field use safer.

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