I. Sector-Specific/Omnidirectional Coverage for Enhanced Signal
Countermeasure Accuracy This highly integrated sector signal countermeasure device employs
a combined sector-specific and omnidirectional coverage operating
mode. Through multi-channel RF links and intelligent beam control
technology, it achieves precise suppression of key areas and blind
spot coverage in the surrounding environment. The device can
flexibly switch between directional sector and omnidirectional
modes according to the application scenario, performing zoned
identification and hierarchical processing of target signals,
effectively reducing interference from irrelevant areas and
improving spectrum utilization efficiency. Simultaneously, combined
with intelligent power allocation algorithms and dynamic frequency
band identification technology, it makes the countermeasure signal
more targeted, maintaining stable output even in complex
electromagnetic environments, significantly improving
countermeasure accuracy and operational safety. It is suitable for
various application scenarios such as key protection areas, mobile
deployments, and temporary control. II. Product Parameters | Parameter Item | Technical Specifications |
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| Equipment Countermeasure Performance Parameters |
| | Countermeasure Frequency Band | 868MHz/900MHz (Frequency band can be customized) 1.2G/1.5G/2.4G/5.2G/5.8G/433MHz/ | | Target | Flight control link, navigation signal | | Countermeasure Distance | 1-3000m (subject to local electromagnetic environment) | | Response Speed | 2.5s | | Connection Method | Network connection |
III. Modular Design for Convenient Network Deployment The equipment adopts a highly modular structure design. The RF
unit, power module, control unit, and heat dissipation system are
all independent modules, which can be flexibly combined and
expanded according to actual mission requirements. Modules are
connected through standardized interfaces, supporting rapid
disassembly and maintenance, significantly reducing deployment and
upgrade costs. In network applications, multiple devices can form a
distributed collaborative working system through wired or wireless
means, achieving regional cascade coverage and centralized
management. The system supports master-slave control, zone
scheduling, and remote centralized monitoring. It can be quickly
deployed in various configurations—fixed, vehicle-mounted, or
portable—to meet specific site requirements, enhancing overall
system flexibility and scalability. IV. IP Protection Rating Enclosure Design The enclosure utilizes a high-strength metal structure and a sealed
industrial design, providing excellent dustproof, waterproof, and
impact resistance. The equipment achieves an IP65 or higher
protection rating, enabling stable operation in complex outdoor
environments such as rain, snow, sandstorms, and high humidity. The
enclosure surface is treated with an anti-corrosion coating,
effectively resisting salt spray and UV aging, extending the
equipment's lifespan. Simultaneously, the internal design employs
independent air ducts and a heat-conducting structure, ensuring
good heat dissipation while maintaining sealing performance,
guaranteeing reliable long-term full-power operation, suitable for
all-weather outdoor fixed deployments and mobile work environments. V. Local Data Storage Support The equipment incorporates a highly reliable local data storage
module, capable of real-time recording and saving operation logs,
spectrum data, alarm information, and equipment status. The system
supports cyclic storage and historical data query functions,
facilitating later analysis and task review. By combining local
storage with remote export, users can quickly obtain critical
operational data, improving management and maintenance efficiency.
Simultaneously, the device supports independent operation even when
the network is offline; all operations and events are automatically
saved and synchronized to the management platform once the network
is restored, ensuring data integrity and security, and meeting the
needs of long-term unattended operation and critical application
scenarios.
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