Web Device Management UI for long-range wireless video data link transmitter and receiver
Users can view the current parameter configuration through the Web devices management UI and modify it according to the needs of the application, the user can access the device through the Network Port Browser, and the default IP address of the Sky end is 192.168.1 12, the default address of the ground end is 192.168.1 11.
Nota: To change any configuration parameters via the web UI, users need to reboot the hardware system for the changed configuration to take effect.




































Local IP: Nearby your computer, almost is the wireless video data receiver’s IP address;
Remote IP: Nearby the camera, almost the wireless video data transmitter’s IP address.
Group IP: If you do not want to use broadcast mode, you can use multicast mode, the above Remote IP is changed to the multicast address, and all devices participating in multicast reception need to configure the same multicast address.
192.168.1.255 represents broadcast mode transmission
192.168.1.incógnita represents point-to-point transmission
Nota: DLB only supports multicast addresses in the 224.0.0.0~224.0.0.255 segments, considering that some addresses are reserved, it is recommended to use addresses above 224.0.0.23.

Uart1/Uart2/Uart3 correspond to D1/D2/D3 interfaces
Baudrate: Sets the baud rate of the corresponding data serial port on the local and remote devices.
Remote Port: UDP transmits the send port (different UARTS have to be configured with different port numbers. )
Listening Port: UDP transmits the receive port (different UARTS have to be configured with different port numbers).
Maximum gap(Sra): Set the maximum transmission interval of the corresponding serial port data (used to capture the end of the serial port data frame, it is recommended to configure it to be smaller than the actual transmission).
Maximum packet: Set the maximum sending frame size of the corresponding serial port data (the one that needs to be configured is larger than the actual transmission). note: When using UDP broadcast mode transmission, ensure that the values of the Remote Port and Listening Port are different.

Frecuencia: Wireless band (800M/1.4G/2.4G).
Ancho de banda: Wireless bandwidth (3M/5M/10M/20M).
Fuerza: (without PA) potencia de salida (dBm).


Tipo de dispositivo: Central Node or Access Node.
Frequency Hopping: Automatic frequency hopping switch.
SMTP( Slave Max Tx Power): Access node maximum transmits power (dBm).

The Debug page is used to manually send AT commands or view real-time wireless feedback data.

Set Password command
| Formato | ATSP$(password),$(password) For example ATSP123456,123456 |
| Parámetros | contraseña de clave AES: 6-bit password (ASCII) contraseña de clave AES: 6-bit password (ASCII) (repetir para confirmar) |
| Objetivo | Used to set the AES key of the transceiver |
| Return value | For example ATSP123456,123456_ ATSP123456 OK |
| Observaciones | 1. When the password is all 0, turn off AES encryption. 2. Establecer comando, save when power off |
Once you’re on the Debug page, the browser shakes the WebSocket handshake with the devices, and after the handshake passed, the browser prints “WebSocket connect success.” “Indicates that the handshake was successful; otherwise it displays “WebSocket connect failed, please refresh the web page and try again!” En este momento, you need to re-enter the Debug page to shake hands again, until the prompt handshake is successful, and then you can perform follow-up operations.

Measure pages are used to call built-in iperf3 programs for testing (modo UDP).
Once you’re on the measure page, the browser will shake hands with the devices by WebSocket, and after the handshake passed, the browser prints “WebSocket connect success.” “Indicates that the handshake was successful; otherwise it displays “WebSocket connect failed, please refresh the web page and try again!” En este momento, you need to re-enter the Measure page to shake hands again and know that the handshake is successful before you can perform follow-up operations.

This menu is used to view the device’s system software firmware version and to update the software firmware via the Web UI.
If you have any questions about the operation of Web Device Management UI, please feel free to contact us.
-
Drone Swarm Mesh Network 100km 60Mbps Radio Link 4 Nodes 2x Frecuencia salto 2x amplificador de potencia de 5 vatios -
Módulo transmisor de vídeo FPV 170-860Mhz transmisor inalámbrico de audio y vídeo RF para cámara FPV 3W PA 50km -
IP MESH 100Mbps Transceptor de datos de video inalámbrico 2x5W PA 16 brincar -
Drone Link para transmisión inalámbrica de radiotelemetría y datos de vídeo de largo alcance entre el UAV y la estación de control terrestre -
UAV drone módulo de enlace de datos de vídeo transmisor de vídeo inalámbrico y receptor para cámara transceptor TDD de largo alcance bidireccional vcan1401 -
Transmisor-receptor de video COFDM Entrada AV Salida HDMI FPV, Inalámbrico 10km-15km-30km de largo alcance más barato y más largo COFDM-912T -
1740-1840MHZ 2WPA 30 km de transmisor de video de drones de largo alcance y receptor con SBUS TTL -
30Km de larga distancia COFDM HDMI transmisor receptor de vídeo inalámbrico conjunto completo Audio Video TX RX para UAV Drone 1080P 908T -
Módulo de enlace de Control RC de datos de vídeo inalámbrico UAV bidireccional transceptor bidireccional de largo alcance transmisor-receptor Vcan1681 -
Transmisor de datos de video inalámbrico de largo alcance y receptor para dron UAV Robot -
Transmisor y receptor de video inalámbrico para cámara, HDMIHD H265 264 codificador 1W/2.5W PA 1080P60 Vcan1726 -
22Km 55km 80km 100km 150km transmisor de vídeo inalámbrico de larga distancia receptor transceptor de transmisión PA 2W 5W 10W -
transmisor de telemetría de video de drones-receptor-receptor UAV Radio Link TDD Transceptor -
10W PA 150KM enlace de datos de vídeo aéreo de largo alcance UAV transmisor de transmisión inalámbrica receptor de mano táctico de banda ancha -
30-Milisegundo Drone UAV HDMI Transmisor de vídeo inalámbrico Sistema de transmisión inalámbrica de latencia ultrabaja Vcan1729 -
IP Mesh Manet Transceptor con tablero de audio-IP bidireccional para Robot UAV Drone -
150Km 100mpbs de salto de frecuencia en 2 bandas UAV Radio Link Tasa de transmisión alta y anti-interferencia -
Transceptor de red ad hoc sin centros de largo alcance con enlace de datos de vídeo inalámbrico de malla para drones 150-200 km
Tabla de contenido
Web Device Management UI for Long-Range Wireless Video Data Link Transmitter and Receiver
los Web Device Management UI provides a comprehensive interface for configuring, monitoring, and managing long-range wireless video data link transmitters and receivers. This user-friendly interface allows operators to access the system through a web browser over the network, enabling real-time monitoring and remote configuration of all connected devices. Users can view current parameter settings, modify configurations according to the application requirements, and optimize the performance of wireless video transmission systems for UAVs, en UGV, USVs, and other long-distance monitoring setups.
Por defecto, el Sky (transmisor) end has an IP address of 192.168.1.12, y el Suelo (receptor) end has an IP address of 192.168.1.11. Users can connect to these IP addresses using any standard web browser. It is important to note that after changing any configuration parameters via the Web UI, a system reboot is required for the changes to take effect.
Key Configuration Functions
- IP Address and Networking Configuration – Users can set static IP addresses, assign gateway and subnet masks, and configure network roles for both transmitters and receivers. Each unit can be set as a nodo central o nodo de acceso, supporting flexible deployment in point-to-point, punto a multipunto, or full mesh topologies.
- Serial Port Management (UART1, UART2, UART3) – The UI allows configuring all connected serial ports. This includes setting the velocidad de transmisión, transmission mode (UDP/TCP), remote port, listening port, maximum gap time, y maximum packet size. Proper configuration ensures seamless integration with telemetry systems, PTZ camera controls, or other sensor devices.
- Audio and Video Parameter Configuration – Users can adjust audio sampling, encoding parameters, and video transmission quality settings. This ensures that both audio and video signals are transmitted with high fidelity over long distances while maintaining low latency.
- Frequency and Bandwidth Settings – The Web UI provides full control over the operating frequency band (P.EJ., 800 megahercio, 1.4 GHz, 2.4 GHz) and bandwidth selection (3 megahercio, 5 megahercio, 10 megahercio, 20 megahercio). Operators can select appropriate frequency channels to avoid interference in busy RF environments. Frequency hopping (FHSS) can also be enabled for improved resilience against interference.
- Bandwidth Allocation for Uplink and Downlink – In bidirectional systems, bandwidth can be allocated independently for uplink (receiver to transmitter) and downlink (transmitter to receiver). This allows users to optimize the system for video-heavy downlink or control-data-heavy uplink as required.
- Cifrado y seguridad – The Web UI supports multiple encryption methods, incluso SNOW, AES, and ZUC. Users can configure AES-256 encryption by setting a six-character ASCII password using the ATSP command, ensuring secure data transmission. Setting the password to all zeros disables encryption. Once configured, the encryption key is stored and remains active even after a system power cycle.
- Debug Page – The debug interface allows operators to manually send AT commands to the device for advanced configuration and troubleshooting. The WebSocket handshake must be completed successfully before executing commands. When the handshake is successful, the browser displays “WebSocket connect success,” confirming proper communication with the device.
- Performance Testing with Iperf3 – The Measure page integrates the built-in Iperf3 tool to test network throughput in real-time. Users can test UDP or TCP data rates between the transmitter and receiver to ensure optimal system performance. Successful WebSocket handshake verification is required before running performance tests.
- System Management and Firmware Upgrade – The Web UI provides tools to view the current versión de firmware and update the system software directly from the browser. Users can also set or modify the management page password to secure access.
- Multicast and Broadcast Configuration – For group video transmission, the system supports multicast mode, where a single transmitter sends video to multiple receivers using a shared multicast IP address. Broadcast mode uses 192.168.1.255, while point-to-point communication uses 192.168.1.x addresses. Multicast addresses should be selected within the 224.0.0.0–224.0.0.255 range, preferably above 224.0.0.23 to avoid reserved addresses.
- Local vs Remote IP – The Local IP typically refers to the receiver’s network address near the operator, while the Remote IP corresponds to the transmitter near the camera. Correct configuration ensures proper routing of video and control data over the network.
Advanced Functions and Notes
- All parameter changes require a system reboot to take effect.
- The UI allows fine-tuning of maximum packet size and transmission interval to optimize data integrity and latency.
- Multiple UART interfaces allow integration with telemetry systems, RC control, and sensor networks.
- The UI supports both AES-256 encryption and user-defined passwords for secure wireless links.
- Built-in diagnostic tools, including real-time signal strength monitoring and handshake status verification, simplify troubleshooting.
- Firmware upgrades can be performed remotely via the browser without physical access to the device.
los Web Device Management UI provides a centralized and efficient way to manage long-range wireless video data links. Whether deployed on UAVs, en UGV, USVs, or stationary monitoring systems, this interface gives operators full control over network parameters, seguridad, serial port configurations, video/audio settings, and system performance. By enabling remote access, performance testing, and firmware management, the Web UI significantly reduces setup time, improves system reliability, and allows operators to adapt quickly to changing field conditions.
In conclusion, el Web Device Management UI is an essential tool for professionals working with long-range wireless video transmission systems, offering advanced management capabilities, secure configuration options, and intuitive monitoring to maximize the performance of COFDM or OFDM-based wireless networks.
Q: Can I translate the device’s web interface into my local language and add custom logos? Is there an API for editing modules ourselves?
UN: Sí, it is possible to customize your device’s web interface. We provide the language files and the original English source text. You can translate the interface into Russian and supply your custom logo images. Our software engineers will then create an updated version of the firmware/software with your changes.
Important: Please ensure that all menu language files are edited in UTF-8 encoding to prevent display issues or garbled text. Currently, we do not provide a public API for direct edits, but this method allows full customization of your device’s web interface.



Haz una pregunta
Gracias por tu respuesta. ✨