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300-1500MHz 100W Digital Modulation Anti-FPV Amplifier Module | ANOEKO

ANOEKO‘s 300-1500MHz 100W digital modulation anti-FPV amplifier module features FPGA control, 42dB gain, and customizable frequency for effective FPV drone countermeasures. Ideal for integration into portable and fixed C-UAS systems....
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300-1500MHz 100W Digital Modulation Anti-FPV Amplifier Module

Product Overview

The 300-1500MHz 100W Digital Modulation Anti-FPV Amplifier Module from ANOEKO is a high-performance countermeasure solution specifically engineered to disrupt FPV (First-Person View) drone operations. This compact module integrates a programmable countermeasure signal source with a high-power amplifier, delivering up to 100W of output power across a 300-1500MHz frequency range.

Unlike conventional jammers that rely on fixed-frequency noise, this module utilizes an FPGA logic chip as the main controller, combined with a frequency-locked VCO (Voltage-Controlled Oscillator), to generate precise digital modulation signals that effectively override FPV drone remote control frequencies. The result is a highly targeted and efficient countermeasure that minimizes collateral interference while maximizing disruption capability.

This all-in-one solution eliminates the need for separate signal source and power amplifier components, significantly simplifying system integration for drone defense applications.

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Key Features

FPGA-Controlled Digital Modulation

The module's core intelligence is built around an FPGA logic chip, which generates internally programmed digital modulation signals. These signals are modulated onto the carrier frequency established by the VCO, creating a precisely tailored countermeasure waveform that matches FPV drone remote control protocols. This digital approach ensures consistent, reliable performance across a wide range of FPV drone models.

Wide Frequency Coverage & Customization

Supporting 300-1200MHz and 2.4GHz bands, the module can be customized to target specific FPV drone remote control frequencies. The ability to tailor the frequency band to match the target drone's communication protocol ensures maximum effectiveness against evolving FPV threats.

High-Power Output

Delivering 60W to 100W of output power (with 100W optional), this high anti-drone module provides the necessary power to effectively jam FPV drones at significant distances. The module features an N-type RF output interface for easy connection to antennas. Interference distance is directly correlated with output power and antenna gain – greater power and higher antenna gain result in longer effective countermeasure ranges.

Industrial-Grade Design

Built with industrial-grade chips and designed for industrial applications, the module operates reliably in demanding environments. The compact form factor measures 170*77*24.5 mm and weighs just 750g, making it ideal for integration into portable, vehicle-mounted, or fixed C-UAS systems.

Comprehensive Monitoring & Communication

The module supports temperature, current, and voltage detection, as well as RF output power monitoring. It features 485 communication protocol and TTL communication interfaces, enabling digital communication with a signal source to configure frequency band and output power settings. The RF output connector is an N-type female, with an SMB-JE input.

Technical Specifications

ParameterSpecification
Frequency Range300-1500MHz (customizable to 300-1200MHz, 2.4GHz)
Operating Voltage28-32V DC (typical 32V)
Maximum Output Power100W (60W-100W optional)
Work Efficiency≥35% @ 100W
Maximum Gain42dB
Gain Flatness≤5dB
Standard Input Power7dBm
Maximum Non-Damaging Power≤10dBm
Input Port VSWR≤2.0
Power Stability±1.0dB @ -40℃ ~ +55℃
Operating Temperature-10℃ ~ +55℃
High & Low Temperature Test-10℃ ~ +55℃
Power Supply InterfaceFeedthrough Capacitor
RF Output ConnectorN-type female
RF Input ConnectorSMB-JE
Communication Interface485 protocol, TTL communication
Dimensions170 × 77 × 24.5 mm
Weight750g
Mounting Holes152.3 × 71.5 mm

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Applications

This wide bandwidth module is specifically designed for FPV drone countermeasures, making it an essential component in modern C-UAS (Counter-Unmanned Aircraft Systems). Typical applications include:

  • Portable anti-drone systems – Compact design enables integration into handheld or man-portable countermeasure devices

  • Fixed-site drone defense – Ideal for protecting critical infrastructure, military installations, and public venues

  • Vehicle-mounted systems – Suitable for mobile counter-UAS platforms requiring robust, reliable performance

  • Customized anti-drone solutions – Frequency and power parameters can be tailored to specific operational requirements

Why Choose ANOEKO's Anti-FPV Module?

Customized Anti-Drone Module Solutions

Every FPV drone threat is unique. ANOEKO offers customized anti-drone module solutions with adjustable frequency bands and output power configurations to match specific operational needs. Whether you're protecting an airport, a military base, or a public event, this module can be tailored to your exact requirements.

Effective FPV Countermeasures

The module's digital modulation technology is specifically optimized to counter FPV drone remote control signals. The interference signal is filtered through the RF front stage and amplified for maximum effectiveness, ensuring reliable disruption of FPV drone operations.

Easy Integration

With its compact footprint, N-type RF output, and standard communication interfaces, this RF Amplifier Module is designed for seamless integration into existing or new C-UAS systems. The module operates on a 24-28V power supply and requires only an antenna connection to become fully operational.

Installation & Operation

The module requires a 24-28V DC power supply and should be connected to a 50Ω impedance antenna for optimal performance. The RF output is via the N-type female connector. For best results, ensure unobstructed line-of-sight between the countermeasure signal and the target FPV drone – the interference distance is maximized in unshielded environments.

Proper heat dissipation must be ensured during operation, as the module generates significant heat at 100W output. The operating temperature should not exceed the specified range.


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