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Wireless Broadband Ethernet Video Data Transceiver Module Support 32 MESH Network Nodes

Categories Video Transmitter And Receiver Module
Brand Name: Hincn
Model Number: HCL6-M
Place of Origin: China
MOQ: 1pc
Price: US$1,299.00~US$4,287.00
Payment Terms: ,T/T,Western Union,D/P,D/A,L/C,MoneyGram
Supply Ability: 699 pcs/month
Delivery Time: 7~14 working days
Packaging Details: carton package
Modulation: TDD OFDM
Frequency: 566~678MHz, 1420~1530MHz
Encryption: AES128
RF Power: 24± 1dBm* 2 channels+ external RF power amplifier
Networking mode: Mesh
Mesh networking Nodes: Up to 32 nodes
Company Info.
Hincn Limited
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Wireless Broadband Ethernet Video Data Transceiver Module Support 32 MESH Network Nodes

Wireless Broadband Ethernet Video Data Transceiver Module Support 32 MESH Network Nodes
Key Features
  • TDD OFDM video transmitter receiver module for video data Link
  • RF Power: 24±1dBm* 2 channels+ external RF power amplifier
  • Working Frequency: 566MHz~678HMz, 1420MHz~1530MHz
  • With 3 Ethernet and 1 RS232 uart wireless data link, TTL control uart
  • Transmission range 500m~2000m (ground-to-ground), 20km~100km (UAV to ground)
  • Support maximum 32 Mesh Network nodes
Overview

HCL6-M video data transceiver module is designed for video wreless transmission with bidirectional wireless data links. This module works at 600MHz and 1.4GHz bands, with frequency hopping technology (FHSS) to ensure the stability of signal transmission.

Specifications
NameWireless Broadband Ethernet Video Data Transceiver Module Support 32 MESH Network Nodes
ModulationTDD OFDM
Model numberHCL6-M
Frequency566~678MHz, 1420~1530MHz
FHSSSupport FHSS inside each band
Bandwidths1.4/3/5/10/20MHz
ThroughputMaximum 100Mbps
RF Transmission Power23± 1dBm* 2 channels + external RF power amplifier
ConstellationQPSK, 16QAM, 64QAM self adaption
Sensitivity-102dBm (1Mbps@20MHz bandwidth)
Ethernet port3 * Ethernet ports for IP data transmission
Serial port1 * RS232 /TTL uart for serial data transmission
Transmission RangeUp to 20km~100km LOS (UAV to ground), and 2km LOS(ground to ground)
ManagementWeb UI and Control Uart
EncryptionAES128
Networking ModeMesh
Power Consumption<7W
Modem Dimensions80*57*9.1mm
Modem Weight41g
Working Temp.-20℃ ~ +65℃
Storage Temp.-40℃ ~ +80℃
Ethernet Video Transmitter and Receiver Module Input/Output Signal
Power in2PIN PH2.0mmConnector, DC in:9~30V
Ethernet 14PIN PH1.25mm Connector
Ethernet 24PIN PH1.25mm Connector
Ethernet 34PIN PH1.25mm Connector
Data uart3PIN PH1.25mm Connector, RS232(or TTL 3.3V)
Control uart3PIN PH1.25mm Connector, TTL 3.3V
Audio input and output4PIN PH1.25mm connector
USBMicro USB connector, for software upgrading
SwitchTX/RX control signal for outside power amplifier
Main-AntennaTX/RX antenna port, IPEX
Second-AntennaTX/RX antenna port, IPEX
12V outOn board 12V out (<200mA), for cool fan power supply
COFDM MESH Network Wireless Broadband Ethernet Video Transmitter and Receiver Module
The front of video data transceiver module
Close-up view of HCL6-M module connectors and ports
The back of video data transceiver module
Wireless Networking with HCL6-M Module


The HCL6-M video data transceiver module supports two operation modes: access node mode or central node mode. It can be managed through the network user interface or by sending AT commands via the control Uart. It supports the function of up to 63 access nodes connecting to one central node.

All nodes are in the same wireless local area network and share the entire transmission bandwidth (maximum 100Mbps transmission rate). The data from the central node to the access node is called downlink data, and the data from the access node to the central node is called uplink. The ratio of uplink and downlink data streams can be controlled through the network user interface or AT commands.

When using it for point-to-point transmission, the uplink and downlink data streams also share the entire transmission bandwidth (maximum 100Mbps transmission rate).


Mesh networking

  • Mesh networking capacity: Up to 32 nodes (N2 ≤ N ≤ 32).
  • Transmission: Supports unicast, multicast and broadcast functions. Any node can communicate with each other in these three modes.
  • Time synchronization: can be self-synchronized independently without the need for an external clock.
  • Power control: all nodes will adaptively adjust the transmission power, support fixed power configuration, and this configuration will be permanently effective.
  • Topology structure: Supports multi-hop routing topology with up to 32 nodes and 31 hops.
  • R routing: automatically adjusts the route, and can also permanently configure a fixed route.
  • Data rate level: uses adaptive average allocation of system rate.
  • Transmission delay (Note: N is the number of nodes within two hops, hop count: H) Common scenario calculation formula, one-way delay index formula (MS): 6*H + (5/2) * N/2 * H * 3, two -way delay multiplied by 2; Two-node optimized delay: one-way delay between two nodes <= 10 ms; Four-node link optimized delay: three-hop one-way delay between four nodes <= 10 ms; Typical system delay (based on big data statistics): Six-point chain network, three hops, one-way delay: 50 ms; 8 points, all points are one-hop, one-way delay: 36 ms; 8 points, serial 7 hops: one-way 170 ms.
  • Startup time delay: Network establishment delay of the logical main control node after startup 20 - 80 seconds. (Usually, the logical main control node is the first to be started); Cold start: Network access delay of the logical access node is less than 30 seconds and receives the signal from the logical main control node; Hot start: Delay of the secondary node to connect to the network is less than 1 second (common single-hop node network scenario)





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