FZX's 10W 5725-5850MHz anti drone module is engineered for the challenges of modern drone security. As experts in drone jammers, anti drone modules, and anti-drone solutions, we provide a frequency customization option to ensure the module meets your unique operational demands.
In the realm of safeguarding against location tracking and addressing drone incursions, the 10W 5725-5850MHz Drone UAV GPS Jammer Module serves as the primary module for anti-drone measures. Specifically designed to disrupt the GPS and WiFi frequencies that are frequently utilized by drones, this module plays a crucial role in enhancing airspace security and mitigating the risks associated with unauthorized drone activities.
Project | Index | Unit | Remark | ||
Frequency Range | 5725-5850 | MHz | Customers can customize the frequency | ||
Operating Voltage | 28 | V | 28-32V | ||
Maximum output power | 40±0.5 | dBm | 10W@≤1A | ||
Gain | 35±1 | dB | Peak-to-peak | ||
In-band fluctuations | ≤2 | dB | Peak-to-peak | ||
Spurious emissions | Within work zone | ≤-15dBm/1MHz | dBm |
Center frequency plus CW signal to maximum Output power time measurement |
|
Outside work zone | 9KHz~1GHz | No higher than normal noise floor clutter | dBm | ||
1G~12.75GHz | dBm | ||||
Output voltage standing wave ratio | ≤1.30 | Without power, standard network output -10dBm | |||
≤1.30 | Power Up, Dual Directional Coupler Test | ||||
High and low temperature test | Working temperature | -10~+55 | ℃ | Low temperature can start | |
Gain stability | ±1.5 @-40℃~+55℃ | dB | |||
Power stability | ±1 @-40℃~+55℃ | dB | |||
Power supply requirements | ≥2A@+28Vdc; | Continuous wave output 10W | |||
Power supply interface | Power cord red positive black negative | red positive black negative | |||
RF output connector | SMA | SMA external screw female seat | |||
Electric current | ≤1 | A | |||
Size | 25.6*111.7*17 | mm | |||
Weight | 0.14 | Kg |
The function of a drone countermeasure anti drone module (Radio Frequency module) is to disrupt the communication and navigation systems of drones by emitting specific radio frequencies, thereby preventing their normal operation. These modules are typically integrated into drone countermeasure systems and serve the following key roles:
1. **Communication Interference**: The anti drone module can transmit on the same frequencies as drone control signals, disrupting the communication link between the drone and its operator. This can cause the drone to lose control and activate its safety mode or return-to-home function.
2. **Navigation Disruption**: Many drones rely on GPS or other satellite navigation systems for positioning and navigation. The anti drone module can emit interference signals that disrupt GPS reception, leading to inaccurate positioning and limitations in flight capabilities.
3. **Forced Landing or Return**: By disrupting the drone's communication and navigation systems, the anti drone module can compel the drone to land or return to its takeoff point following predetermined safety protocols.
4. **Prevention of Unauthorized Activities**: In sensitive areas or special events, the anti drone module can prevent drones from engaging in unauthorized surveillance, filming, or payload drops, thus safeguarding privacy and security.
5. **Protection of Critical Infrastructure**: Deploying anti drone modules around military bases, government facilities, airports, and other critical infrastructure can prevent drones from approaching, reducing security risks.
6. **Maintaining Airspace Safety**: During large public events or emergency situations, the anti drone module ensures airspace safety by preventing drone interference with aviation traffic or rescue operations.
In summary, the drone countermeasure anti drone module disrupts drone operations through the emission of targeted radio frequencies, compelling drones to land or return home, thereby protecting the security and privacy of specific areas.