Detalhes do produto
Lugar de origem: China
Marca: JDY
Número do modelo: JDY-1000T
Termos do pagamento & do transporte
Quantidade de ordem mínima: 1
Preço: $285714
Detalhes da embalagem: mala de voo
Tempo de entrega: 30 dias
Termos de pagamento: D/A, D/P, Western Union
Habilidade da fonte: 200 por mês
|
Precisão do Azimute:
|
10°(RMS)
|
Potência total de RF:
|
≥95W
|
Método de controle:
|
Tela sensível ao toque
|
Freqüência de bloqueio:
|
800 MHz~6000 MHz
|
Banda de frequência:
|
300 GHz a 6 GHz
|
Recursos de segurança:
|
Desligamento automático para evitar superaquecimento
|
Modos de interferência:
|
5 bandas selecionáveis
|
Mostrar:
|
Indicador LED para status de energia e sinal
|
Função de rede:
|
4G/5g (opcional)
|
Modo de carregamento:
|
DC25,2V / 3A
|
Conformidade:
|
Certificado FCC e CE
|
Tamanhos:
|
300mm*260mm*140mm
|
Bateria:
|
Removível, tempo de troca ≤60s
|
Horário de trabalho contínuo:
|
30-40 minutos
|
Banda de interferência:
|
2.4G 5.8G 5.2G 433M 900M 1.5GHz
|
|
Precisão do Azimute:
|
10°(RMS)
|
|
Potência total de RF:
|
≥95W
|
|
Método de controle:
|
Tela sensível ao toque
|
|
Freqüência de bloqueio:
|
800 MHz~6000 MHz
|
|
Banda de frequência:
|
300 GHz a 6 GHz
|
|
Recursos de segurança:
|
Desligamento automático para evitar superaquecimento
|
|
Modos de interferência:
|
5 bandas selecionáveis
|
|
Mostrar:
|
Indicador LED para status de energia e sinal
|
|
Função de rede:
|
4G/5g (opcional)
|
|
Modo de carregamento:
|
DC25,2V / 3A
|
|
Conformidade:
|
Certificado FCC e CE
|
|
Tamanhos:
|
300mm*260mm*140mm
|
|
Bateria:
|
Removível, tempo de troca ≤60s
|
|
Horário de trabalho contínuo:
|
30-40 minutos
|
|
Banda de interferência:
|
2.4G 5.8G 5.2G 433M 900M 1.5GHz
|
With the rapid development of drone technology, anti-drone technology has received increasing attention. To effectively counter the threat of drones, especially in complex battlefield environments, improving the overall performance of anti-drone systems has become a key issue. The highly integrated anti-drone electro-optical radar signal detection and jamming system integrates electro-optical and radar signal detection and jamming functions into a single system, reducing hardware size and improving operational convenience. This integrated design makes the system more compact and flexible in deployment, while also facilitating real-time monitoring and control by operators. The reduced system size means easier installation and use in various complex environments, while improving response speed and efficiency.
![]()
This system is specifically designed for anti-drone combat environments, providing all-weather, all-round protection capabilities. Whether day or night, the system can monitor the dynamics of aerial drones in real time through integrated electro-optical and radar sensors, enabling accurate identification and location. The system is adaptable to complex combat environments, including mountainous and urban terrain, providing highly reliable protection personnel. Furthermore, the system possesses powerful jamming capabilities, effectively disrupting the communication and positioning systems of drones and destroying their combat capabilities.
This anti-drone system can operate stably under diverse climatic conditions. Whether in bright sunshine, stormy nights, or even in severe weather such as snow, the system maintains high efficiency. Its design takes into account the interference factors of different climates, and through optimized hardware and software integration, it achieves high stability. Especially in low visibility, harsh weather, or complex electromagnetic environments, the system still provides reliable detection and jamming capabilities, ensuring the completion of combat missions.
In addition to real-time anti-drone combat capabilities, the system can also provide security assessments and improvement suggestions through continuous data analysis. During long-term use, the system automatically collects various combat data, analyzes it, and generates detailed evaluation reports. This data helps users understand the current protective effectiveness and provides further optimization suggestions based on the actual situation. Through this feedback, users can adjust tactics in a timely manner, improve the system's responsiveness, and further enhance protective effectiveness.