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100W LoRa FPV Jammer Module | 800–1000MHz GaN

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

100W GaN LoRa/FPV jammer module, 800–1000MHz, DC24–29V, 12A max, built-in high-speed sweep source, SMA female, 168.5×84.5×23mm, 0.55kg.

Technical Specifications

ParameterSpecificationNotes
Frequency range800–1000 MHzWideband coverage
Output power100WEfficiency ≥40%; VSWR ≤2.0
Supply voltageDC24–29VRegulated supply recommended
Current draw12.0A maxAt full output
Modulation sourceBuilt-in high-speed sweep sourceAnalog interference all-in-one module
Analog scan speedHigh-speed sweepFactory-set; contact us for exact rate
Input / output impedance50 ohmsSMA female output; VSWR ≤2.0
Protection LEDsPower switch, over-voltage, over-temperatureStatus indicators
Operating temperature-20 to +65°CEnsure airflow
Dimensions (L×W×H)168.5×84.5×23 mmCompact case
Weight0.55 kgModule only
Base materialGaN amplifier stageGallium nitride RF technology

Product Details

If you work with drone detection, LoRa links, or FPV video, you know 800–1000 MHz is crowded. This 100W LoRa FPV Jammer Module is a compact GaN RF block for authorized testing. It covers 800–1000 MHz, outputs 100W, and runs from DC24–29V. A built-in high-speed sweep source removes the need for an external signal generator. The output uses an SMA female connector. Output VSWR is ≤2.0.

100W LoRa FPV Jammer Module | 800–1000MHz GaN

Why 800–1000 MHz Matters

This band carries many LoRa, ISM, telemetry, and FPV control or video links. Full-range coverage helps you test receiver behavior, link margins, and shielding. The 100W output gives headroom for cable loss and antenna gain in lab, chamber, or field work. Good VSWR keeps the amplifier stable. SMA female output makes it easy to add filters, attenuators, or antennas. For controlled trials, this 100W LoRa FPV jammer module is a practical size.

GaN Power in a Small Case

The RF stage uses GaN technology. GaN handles high power density better than older silicon designs. Efficiency is ≥40%, so heat still matters, but it is manageable. The module measures 168.5×84.5×23 mm and weighs 0.55 kg. It fits portable cases and fixed racks. Supply is DC24–29V, with 12.0A max current. Use a clean supply with margin. Short cables reduce voltage drop.

Control and Monitoring

Switch control is simple: +5V or floating means on; grounding means off. This works with controllers, relays, and GPIO lines. Three LEDs show power, over-voltage, and over-temperature status. Troubleshooting is faster. Built-in absorptive VSWR protection helps absorb reflected power if the antenna match changes. It reduces stress on the GaN stage. Still, test with a proper load before connecting an antenna.

Thermal and Installation Notes

Operating temperature is -20 to +65°C. Do not block airflow. Mount the module on a metal plate when possible. Use thermal paste or a gap pad if the case gets hot. Keep RF cables short and power-rated. Check VSWR before full power. For fixed installs, add a fan or heatsink. For portable use, leave space around the housing. Standard SMA female connectors are useful, but cheap adapters add loss.

Key Applications

Common uses include receiver sensitivity tests, link robustness checks, counter-drone research, and RF shielding validation. The 100W LoRa FPV Jammer Module can also support training exercises where a known RF stress signal is required. Because it covers the full 800–1000 MHz range, you can test multiple devices without swapping hardware. The analog scan source is built in, so the setup stays simple. Pair it with a suitable antenna and attenuator for repeatable results.

What to Plan Before You Buy

Check your allowed frequency range and power limit. Choose a DC24–29V supply that can deliver at least 12A. Plan cooling for continuous work. Use a 50-ohm load for first power-up. Measure VSWR. Keep coax short and rated for 100W. If you need remote control, the +5V/ground switch interface is easy to wire. Add a directional coupler if you want to monitor output.

Compliance

RF jamming is tightly regulated. Use this module only for authorized testing, defense, research, and lab work. Follow local laws. Do not disrupt public networks or emergency services.

Final Thoughts

This 100W LoRa FPV Jammer Module combines 800–1000 MHz coverage, GaN output, a high-speed sweep source, and simple switch control. It is not a plug-and-play toy. It needs proper power, cooling, and RF care. For engineers who need a compact 100W analog interference module, it is a focused starting point. Test safely and stay compliant.

Frequently Asked Questions

Q: What is the frequency range of this module?
A: It covers 800–1000 MHz, making it suitable for LoRa, ISM, telemetry, and FPV link testing in authorized setups.
Q: How much RF power does it output?
A: Typical output is 100W. Efficiency is ≥40%, and output VSWR is ≤2.0. Use proper cooling and a matched antenna or load.
Q: What power supply is required?
A: Use DC24–29V. Maximum current draw is 12.0A. A regulated supply with extra current margin is recommended for stable full-power operation.
Q: Does it need an external signal generator?
A: No. It has a built-in high-speed sweep source. Switch control is +5V or floating for on, ground for off.

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