Product Details
Place of Origin: China
Brand Name: jindowin
Certification: Design Patent Certificate,Computer Software Copyright Registration Certificate,Utility Model Patent Certificate,Testing Report of Lightning Protection Products Testing Center of Shanghai Lightning Protection Center, etc.
Model Number: JDY-600
Payment & Shipping Terms
Minimum Order Quantity: 1
Price: $21000
Packaging Details: Flight Case
Delivery Time: 30 days
Payment Terms: T/T,Western Union,MoneyGram,D/P,D/A,L/C
Supply Ability: 200 per month
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Jamming Frequency Bands:
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2.4G/5.8G/900MHz/800MHz/GNSS
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Jamming Distance:
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1-3000m (subject To Local Electromagnetic Environment)
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Jamming Angles:
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360° Horizontally, 90° Vertically
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Target Objects:
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Flight Control Links, Navigation Signals
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Response Speed:
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≤ 2.5 S
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Countermeasure Methods:
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Directional/omnidirectional Strikes, Arbitrary Combination Of Sector Strikes
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Pattern:
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Integrated Wireless Communication Module
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Function:
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Supports Multi-drone Management
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Volume:
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Powerful Data Storage Capabilities
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Feature:
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Easy To Install And Configure
|
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Jamming Frequency Bands:
|
2.4G/5.8G/900MHz/800MHz/GNSS
|
|
Jamming Distance:
|
1-3000m (subject To Local Electromagnetic Environment)
|
|
Jamming Angles:
|
360° Horizontally, 90° Vertically
|
|
Target Objects:
|
Flight Control Links, Navigation Signals
|
|
Response Speed:
|
≤ 2.5 S
|
|
Countermeasure Methods:
|
Directional/omnidirectional Strikes, Arbitrary Combination Of Sector Strikes
|
|
Pattern:
|
Integrated Wireless Communication Module
|
|
Function:
|
Supports Multi-drone Management
|
|
Volume:
|
Powerful Data Storage Capabilities
|
|
Feature:
|
Easy To Install And Configure
|
Precisely Tracking UAV Movements: The remotely managed GNSS detection system for permanent UAV control provides high-precision GPS positioning. No matter how far the UAV flies, the system can track its position in real time via satellite signals. The system uses a high-performance GNSS receiver with strong anti-interference capabilities, ensuring accurate acquisition of UAV positioning information even in complex environments. Thus, whether the UAV is flying among urban buildings, in open fields, or in remote mountainous areas, the system can accurately locate it and transmit flight data in real time, greatly improving the reliability of UAV control and monitoring.
| Parameter | Value | Description |
|---|---|---|
| Interference Frequency Band | 2.4GHz / 5.8GHz / 900MHz / 800MHz / GNSS | |
| Interference Distance | 1-3000 meters | (depending on the local electromagnetic environment) |
| Interference Angle | 360° horizontally, 90° vertically | |
| Target | Flight control link, navigation signal | |
| Response Speed | ≤ 2.5 seconds | |
| Countermeasures | Directional/omnidirectional sector strike | freely combinable |
Stable Operation Under High Load: This system is equipped with an advanced heat dissipation design, enabling it to maintain stability under high load conditions. Whether working continuously for extended periods or operating in extreme weather conditions, the system's heat dissipation mechanism effectively dissipates heat, preventing overheating and performance degradation. The heat dissipation module uses a high-efficiency copper pipe and cooling fan design, ensuring stable operation under high power loads, extending the equipment's lifespan, and preventing overheating from affecting system reliability and accuracy.
Ensuring System Security: To ensure system security, the GNSS detection system is equipped with multi-level user access control. System administrators can set different permissions for different users, ensuring that only authorized users can operate and modify system settings. This granular user access control not only improves system security but also effectively prevents unauthorized personnel from interfering with or tampering with data. Furthermore, the system supports multi-factor authentication, further enhancing its protection capabilities and ensuring that UAV control and monitoring are not subject to malicious external attacks or abuse.
Optimizing Operations Based on Historical Data: This GNSS detection system possesses a self-learning capability, allowing it to analyze and optimize based on historical data. During long-term operation, the system automatically collects flight data, identifying and predicting UAV flight trends and patterns. Through continuous learning and adjustment, the system can improve its response speed and accuracy to UAV behavior and optimize flight control strategies. In addition, the system assesses potential risks based on historical data and takes corresponding preventative measures in advance, improving safety and efficiency during flight.