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100W GaN Anti Drone Module: 400-500MHz Countermeasure Power

Technology: GaN
Frequency Range: 900MHz
Connector Type: N Female
Output Power: 100W

Deploy the 100W GaN anti drone module covering 400-500MHz with 50dBm output, 28V supply, and fast analog scan. Compact 150x80x22mm design.

Technical Specifications

ParameterSpecificationNotes
Frequency range400-500MHzInstant wideband
Output power50±1dBm (100W)Measured at 28V
Supply voltage28V28-32V range acceptable
Current draw≤9.2AAt full 100W output
Modulation sourceBuilt-in high-speed noiseVCO, DDS, SDR customizable
Analog scan speed270KHzCustom 100-500KHz available
Input / output impedance50 OhmN-female connector
Protection LEDsPower, over-voltage, over-tempVisual status indicators
Operating temperature-20°C to +65°CNormal operation range
Dimensions (L×W×H)150*80*22mmCompact form factor
Weight800gLightweight design
Base materialCopper carrier with GaN-on-SiCPatented thermal management

Product Details

When you need reliable RF power to disrupt unwanted drone activity, the 100W GaN anti drone module delivers exactly what the mission demands. Built on a gallium nitride-on-silicon carbide platform with a copper carrier base, this module combines high efficiency with excellent thermal handling. The patented thermal management approach keeps temperatures under control even during extended transmission cycles.

100W GaN Anti Drone Module: 400-500MHz Countermeasure Power

The module operates across the full 400-500MHz band without retuning. This instant wideband capability matters in the field where threats can appear on different frequencies without warning. You get clean AB-class amplification with 50-ohm input and output impedance for straightforward system integration.

Core Design Philosophy

This 100W GaN anti drone module prioritizes reliability and compactness. At 150 x 80 x 22mm and just 800 grams, it fits into portable countermeasure systems, vehicle-mounted platforms, and fixed site installations without adding unnecessary bulk.

The built-in high-speed noise modulation source generates effective jamming signals across the band. For teams with specific waveform requirements, customization options include VCO, DDS, or SDR-based sources. Analog scan speed starts at 270KHz and can be tailored from 100KHz to 500KHz depending on your operational profile.

RF Performance in Real Conditions

Output power sits at a solid 50dBm (100W) with a current draw under 9.2A from a 28-32V DC supply. The N-female connector provides robust RF coupling suitable for field deployment. Built-in protection LEDs indicate power status, over-voltage conditions, and over-temperature events at a glance.

The GaN-on-SiC architecture means you are not fighting thermal runaway when the module runs hot. Copper base material pulls heat away efficiently, extending component life and maintaining stable output characteristics.

Integration Flexibility

System integrators will appreciate the clean 50-ohm I/O design. No exotic matching networks required. The module accepts standard RF drive levels and produces predictable output across the entire 400-500MHz span.

For counter-UAS applications, this frequency band covers critical control and navigation links used by many commercial and hobbyist drones. Pairing multiple modules with different frequency coverage creates a broader protection umbrella.

Frequently Asked Questions

Q: What frequency range does this module cover?
A: The module operates from 400MHz to 500MHz with instant wideband performance. No retuning or band switching is needed for full coverage within this range.
Q: Can I customize the modulation source?
A: Yes. The default configuration includes a built-in high-speed noise modulation source. Custom options include VCO, DDS, and SDR-based sources with scan speeds from 100KHz to 500KHz.
Q: What power supply does the module require?
A: The module accepts 28V DC nominal, with a working range of 28-32V. Current consumption stays under 9.2A at maximum 100W output power.
Q: How is thermal management handled?
A: The module uses a GaN-on-SiC design mounted on a copper carrier base with patented thermal treatment technology. This ensures stable operation from -20°C to +65°C ambient conditions.

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