LS02 Dual-Channel Handheld Drone Jamming Equipment, easy to carry, for defending against drones

drone jammer
December 01, 2025
Category Connection: Handheld Drone Jammer
Brief: Join us for a close-up look at the LS02 Dual-Channel Handheld Drone Jamming Equipment and see it in action. This video demonstrates how this portable device effectively defends against drones, showcasing its dual-channel operation and ease of use in real-world scenarios.
Related Product Features:
  • Dual-channel operation covering 2400MHz-2500MHz and 5725MHz-5850MHz frequency bands for comprehensive drone defense.
  • High output power of 47dBm (50W) per channel ensures effective jamming performance.
  • Compact and portable design with dimensions of 250*110*54mm and weight under 4kg for easy carrying.
  • Wide supply voltage range of DC +12V to +28V with optional battery for flexible power options.
  • Efficient operation with power consumption under 200W and efficiency rating of 50% or higher.
  • Omnidirectional fiberglass spring antennas with 3±1dBi gain provide reliable signal coverage.
  • Standard aviation socket WS20-2 power interface and NJ impedance 50 ohms RF interface for easy connectivity.
  • Handheld form factor designed specifically for portable anti-drone operations and quick deployment.
FAQs:
  • What frequency bands does the LS02 drone jammer cover?
    The LS02 operates on two frequency channels: Channel 1 covers 2400MHz to 2500MHz, and Channel 2 covers 5725MHz to 5850MHz, providing comprehensive coverage against common drone communication frequencies.
  • How portable is the LS02 handheld drone jamming device?
    The LS02 is designed for maximum portability with compact dimensions of 250*110*54mm and weighing less than 4kg, making it easy to carry and deploy quickly in various operational scenarios.
  • What power requirements does the LS02 have?
    The device operates on DC power from +12V to +28V with optional battery support, consuming less than 200W while maintaining high efficiency of 50% or greater for extended operational use.