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60W LDMOS Drone Jammer Module: Ultimate 5.8 GHz Power

Technology: LDMOS
Frequency Range: 5.8GHz
Connector Type: SMA Female
Output Power: 60W

60W LDMOS drone jammer module for 5725-5850 MHz. 12-14V DC, 12A max, SMA output, built-in high-speed sweep source, VSWR ≤2.0, 138x50.5x17mm, 0.22kg.

Technical Specifications

ParameterSpecificationNotes
Frequency range5725–5850 MHzFull band sweep
Output power60 W typicalSaturated output
Supply voltageDC 12–14 V12 V nominal recommended
Current draw12 A maxAt full output
Modulation sourceInternal high-speed sweepNo external source needed
Analog scan speedHigh speedBuilt into module
Input / output impedance50 ΩSMA female output
Protection LEDsPower, overvoltage, over-tempVisual status
Operating temperature-20 to +65 °CBaseplate cooling required
Dimensions (L×W×H)138 × 50.5 × 17 mmThin aluminum housing
Weight0.22 kgExcluding cables
Base materialAluminumLightweight and thermally conductive

Product Details

The 60W LDMOS drone jammer module is a compact, all-in-one RF countermeasure source for the 5.8 GHz ISM band. It covers 5725-5850 MHz with a built-in high-speed analog sweep generator, so no external modulator or VCO is needed. The module outputs through an SMA female connector and runs from a simple 12-14 V DC rail. At just 138 x 50.5 x 17 mm and 0.22 kg, it drops easily into portable drone defense kits, fixed-site boxes, or vehicle-mounted arrays.

60W LDMOS Drone Jammer Module: Ultimate 5.8 GHz Power

RF Performance of the 60W LDMOS Drone Jammer Module

This 60W LDMOS drone jammer module delivers a typical 60 W saturated output across the full 5725-5850 MHz range. Efficiency is rated at 40% or better, which keeps heat manageable for the small aluminum chassis. Maximum current draw is 12 A at 12 V, so a 150 W supply gives comfortable headroom. Output VSWR is specified at ≤2.0 into a 50-ohm load. The internal matching network is optimized for wideband operation, and the module tolerates brief open or short conditions at the SMA port without immediate damage.

Built-In Sweep Source and TTL Control

Inside the 60W LDMOS drone jammer module, a high-speed analog sweep source continuously moves the RF carrier across the band. That sweeping action disrupts frequency-hopping and spread-spectrum drone control links more effectively than a fixed tone. To enable output, apply +5 V or leave the control pin floating. Grounding the pin shuts the module off. Three LEDs report power status, overvoltage, and over-temperature, so you can see at a glance if the module is healthy or needs attention.

Mechanical Design and Thermal Notes

The base material is aluminum, and the total weight is only 0.22 kg. Dimensions of 138 x 50.5 x 17 mm make this 60W LDMOS drone jammer module one of the thinnest 5.8 GHz sources in its class. For reliable operation from -20 to +65°C, bolt the baseplate to a metal plate or heat sink. At 60 W output, the module dissipates roughly 90 W of heat, so even a small fan or chassis airflow helps keep the temperature stable during long jamming cycles.

Regulatory and Integration Notes

Before deploying any 60W LDMOS drone jammer module, check local laws. Jamming transmitters are heavily restricted in many countries. For example, the FCC prohibits the sale or operation of signal jammers in the United States. See the FCC jammer enforcement page for details.

Antenna Matching and Use Cases

The output VSWR of ≤2.0 assumes a 50-ohm antenna. Use a wideband patch or panel antenna covering 5.7-5.9 GHz with a return loss better than 10 dB across the band. If the antenna mismatch is higher, the module’s internal protection circuits reduce stress but sustained mismatch lowers output power. This 60W LDMOS drone jammer module works well in counter-UAS briefcases, portable shoulder packs, and fixed perimeter units. The internal sweep source means you only need DC power and an antenna to build a working jammer.

Frequently Asked Questions

Q: What frequency band does the 60W LDMOS drone jammer module cover?
A: It covers 5725 to 5850 MHz with 60 W output and a VSWR of ≤2.0. The internal sweep source continuously moves the carrier across the full band.
Q: How do I turn the module on and off?
A: Apply +5 V or leave the control pin floating to enable output. Ground the pin to disable. The LEDs show power, overvoltage, and over-temperature status.
Q: Can I run this module from a 12 V car battery?
A: Yes. The module accepts DC 12-14 V input, and maximum current draw is 12 A. A 150 W supply or a healthy car battery with a 15 A fuse works well.
Q: Does the module need an external signal generator?
A: No. The 60W LDMOS drone jammer module has a built-in high-speed analog sweep source, so you only need DC power and a suitable 50-ohm antenna.

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