5.8G UAV Signal Jammer Module 30W 45 DBM
frequency | 430-450/860-873/ 902-928/1100-1300 1560-1620/2400-2500/customize
|
Work Temperature | -20~+70 |
Max Output Power | 5W/10W |
Work Voltage | DC24 |
Max Gain | 37/40dBm |
Power Amplifier Efficiency | 40 |
Size |
119*53*2.5
|
Weight | 200(g) |
The Drone Jamming Module represents an innovative leap in the realm of Anti Drone Systems, providing a robust and sophisticated solution for the neutralization of unauthorized drone activities. As drones become increasingly ubiquitous, the need for effective Anti-Drone System Modules has never been more critical, especially in the context of security, privacy, and safety. This state-of-the-art module is a comprehensive component of an Anti Drone Defense System, designed to effectively disrupt the operation of intrusive drones through advanced jamming techniques.
At the heart of this module lies its versatile jamming capabilities, which include Continuous, Pulse, and Sweep modes. The Continuous jamming mode offers a relentless and steady stream of interference, ensuring a persistent barrier against drone signals. The Pulse mode provides bursts of jamming energy, creating a pattern of disruption that can confuse and disable the targeted drone's communication. The Sweep mode is particularly effective, as it cycles through a range of frequencies to target a broad spectrum of drone communication bands, making it highly effective against a wide array of drone models.
The control of this module is facilitated through an RS485 Control Interface, a standard that ensures reliable data transmission over long distances. This interface allows for the module to be integrated into existing security systems with ease, while also enabling precise control over the jamming frequencies and modes. The RS485 interface provides the flexibility and scalability needed to adapt to various operational requirements and makes the module an ideal choice for both small-scale and large-scale Anti Drone Defense Systems.
With dimensions of 390mm X 340mm X 120mm, the Drone Jamming Module boasts a compact form factor that allows it to be deployed in a variety of environments without being obtrusive. Despite its small size, it delivers powerful performance and can be installed in strategic locations to create a protective shield against unwanted drones. The sleek design ensures it can be integrated seamlessly into any security setup without compromising aesthetics or functionality.
The jamming source of this module is a Digital Source, which ensures a clean, controlled, and efficient signal disruption. Digital jamming provides a more focused and precise method of signal interference compared to traditional analog sources, resulting in a higher success rate in neutralizing drone threats. The digital nature of the jamming source also allows for easy updates and modifications to the firmware, ensuring that the system can evolve and adapt to new drone communication methods as they arise.
Energy efficiency is another key aspect of this module, with a Power Consumption of ≤20W. This low energy requirement ensures that the module can operate for extended periods without placing excessive demands on power resources. It makes the Drone Jamming Module not only environmentally friendly but also cost-effective to run, as it minimizes the energy costs associated with operating an Anti Drone Defense System. Despite its modest power consumption, the module does not compromise on performance, providing reliable jamming capabilities that can secure areas from drone intrusions.
In summary, the Drone Jamming Module is an essential component of modern Anti Drone Systems. Its versatile jamming modes, reliable control interface, compact dimensions, cutting-edge digital jamming source, and low power consumption make it an ideal solution for a wide range of applications. Whether deployed in private, commercial, or government settings, this module stands as a formidable barrier against the unauthorized use of drones, ensuring security and peace of mind in an age where aerial threats are becoming increasingly common.