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60W UAV Jamming Module GaN 1805-1920MHz

Technology: GaN
Frequency Range: 1.8GHz
Connector Type: SMA Female
Output Power: 60W

60W UAV jamming module, 60W output, 1805-1920MHz, built-in high-speed sweep source, 12-14V DC, 13A max, SMA female, 138x50.5x17mm, 0.22kg. For counter-drone integration.

Technical Specifications

ParameterSpecificationNotes
Frequency range1805–1920 MHzCovers drone video downlink and control sub-bands
Output power60 W typicalMeasured at 50 Ω, full band
Supply voltageDC 12 V to 14 VCompatible with 12 V battery systems
Current draw≤13 AAt 14 V, full output
Modulation sourceBuilt-in high-speed analog sweepNo external generator needed
Analog scan speedContinuous full-band sweepProprietary high-speed rate
Input / output impedance50 Ω, VSWR ≤2.0SMA female connector
Protection LEDsGreen (power), Red (alarm)Over-temp and high VSWR indication
Operating temperature-20 °C to +65 °CAmbient and baseplate range
Dimensions (L×W×H)138 × 50.5 × 17 mmUltra-slim single-board module
Weight0.22 kgLightweight GaN construction
Base materialTreated aluminum alloyOptimized for thermal conduction

Product Details

60W UAV Jamming Module GaN 1805-1920MHz

Target the 1.8 GHz Drone Band with 60 Watts

The 1805–1920 MHz range is a critical corridor for many commercial and modified drone video downlinks, as well as certain command-and-control protocols. Low-power jammers often fail here because digital video links tolerate weak interference. The 60W UAV Jamming Module pushes a full 60 watts into this band, overwhelming receivers with enough power density to sever the video feed. Paired with a moderate-gain antenna, it creates a secure exclusion zone from the moment it powers on. GaN transistor technology makes this output possible in a board that weighs just 220 grams.

Low Voltage, High Current: Built for Battery Operation

One immediate advantage is the 12–14 V DC supply requirement. Unlike modules that demand 28 V, this 60W UAV Jamming Module runs directly from common lithium battery packs or vehicle 12 V buses. At full output, it draws up to 13 A, a current easily handled by a standard DC-DC converter or a dedicated battery protection circuit. This low-voltage design simplifies portable counter-drone kits, backpack jammers, and drone-mounted counter-UAS payloads where higher voltage would require an extra boost stage. The module reaches its rated 60 watts without a high-voltage rail, cutting power supply size and cost.

Internal Sweep Source Eliminates External Generators

You don’t need an external signal generator, DDS board, or modulation cabling. A high-speed analog sweep source is already integrated into the 60W UAV Jamming Module. It continuously races across the 115-megahertz bandwidth, producing a moving curtain of interference that denies frequency-hopping video and control links a clean channel. The sweep rate is tuned to catch fast-agile protocols before they can lock. Because the sweep is generated directly before the GaN final stage, the output spectrum stays clean with minimal spurs. Power up the module and jamming begins instantly—no bench tuning required.

Simple TTL Control and LED Status Feedback

Turning the module on and off follows the same straightforward logic as other modules in this family: float the control pin or apply +5 V to activate, pull to ground to deactivate. A microcontroller GPIO or a physical toggle switch can handle this without buffering. Two onboard LEDs provide immediate feedback—green confirms DC presence, red indicates an alarm condition such as over-temperature or high VSWR. If an antenna fault occurs, the GaN stage folds back output power automatically, preventing transistor damage. These protections allow the 60W UAV Jamming Module to survive real-world mistakes that would destroy unprotected amplifiers.

Compact and Lightweight for Tight Enclosures

Measuring only 138 by 50.5 by 17 millimeters, the module slips into places where bulky amplifier pallets cannot go. It fits inside compact weatherproof enclosures, drone detection turrets, and handheld jammer grips. At 0.22 kilograms, it adds negligible weight to a multi-band platform. The SMA female output connector keeps the footprint small while handling 60 watts comfortably when the load VSWR stays below 2.0:1. Multiple 60W UAV Jamming Modules can be arranged side by side to cover different bands without mechanical interference, giving system integrators maximum layout flexibility.

GaN Efficiency Keeps Heat Down

Efficiency of at least 40 percent means less energy wasted as heat and more converted to useful RF power. The base plate acts as both structural mount and thermal spreader, optimized for conduction cooling when bolted to a finned heatsink or a metal enclosure wall. Rated for continuous operation from -20 °C to +65 °C, the module maintains stable output power without thermal drift. For sustained sorties or fixed-site deployments, this thermal performance keeps the 60W UAV Jamming Module on the air without cooling fans or liquid loops in most scenarios, reducing overall system complexity.

Frequently Asked Questions

Q: What makes the 12 V input significant for the 60W UAV Jamming Module?
A: The 12–14 V DC requirement allows direct operation from standard lithium batteries and vehicle electrical systems. There is no need for a step-up converter to 28 V, which reduces power supply size, cost, and complexity in portable counter-drone equipment.
Q: Does the 60W UAV Jamming Module require an external signal source?
A: No. An integrated high-speed analog sweep source is built in, continuously scanning the full 1805–1920 MHz band. This produces a moving interference pattern effective against frequency-hopping video and control links with no external modulation gear needed.
Q: What protections are included against antenna mismatch or overheating?
A: Onboard circuits monitor VSWR and temperature. If a high VSWR or over-temperature condition occurs, output power automatically rolls back. A red alarm LED illuminates, giving immediate visual feedback to prevent GaN transistor damage.
Q: Can the 60W UAV Jamming Module be used in a multi-band platform?
A: Yes. Its compact 138 x 50.5 mm footprint and slim 17 mm profile allow multiple modules to be mounted side by side for different frequency bands. The lightweight aluminum construction keeps total payload weight low in stacked configurations.

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