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1×32 Evenly distributed rack type splitter
The optical splitter is a component of the EPON/GPON network. It is a passive device that connects the OLT and the ONU. Its function is to distribute the downstream data and centralize the upstream data. The optical splitter has one uplink optical interface and several downlink optical interfaces. The optical signals from the uplink optical interface are allocated to all downlink optical interfaces, and the optical signals from the downlink optical interface are allocated to the only uplink optical interface. When an optical signal is transferred from the uplink optical interface to the downlink optical interface, the optical power decreases. The same is true when the optical signal is transferred from the downlink optical interface to the uplink optical interface. The optical signal strength of each downlink optical interface can be the same or different. The optical splitter is centrally installed in the optical splitter box (indoor or outdoor type); When the ONU distribution is more dispersed or the number of fiber cores in the resident network is insufficient, the two-stage and multistage splitting methods can be used. The optical shunt ratio should be selected by considering the transmission distance of the EPON system, the number of users on the ONU band, and the bandwidth allocation in the PON system. In general, when FTTH mode and FTTB+LAN mode are used, the optical shunt ratio should be designed according to 1x32.
1×16 Evenly distributed rack type splitter
The optical splitter is a component of the EPON/GPON network. It is a passive device that connects the OLT and the ONU. Its function is to distribute the downstream data and centralize the upstream data. The optical splitter has one uplink optical interface and several downlink optical interfaces. The optical signals from the uplink optical interface are allocated to all downlink optical interfaces, and the optical signals from the downlink optical interface are allocated to the only uplink optical interface. When an optical signal is transferred from the uplink optical interface to the downlink optical interface, the optical power decreases. The same is true when the optical signal is transferred from the downlink optical interface to the uplink optical interface. The optical signal strength of each downlink optical interface can be the same or different. The optical splitter is centrally installed in the optical splitter box (indoor or outdoor type); When the ONU distribution is more dispersed or the number of fiber cores in the resident network is insufficient, the two-stage and multistage splitting methods can be used. The optical shunt ratio should be selected by considering the transmission distance of the EPON system, the number of users on the ONU band, and the bandwidth allocation in the PON system. In general, when FTTH mode and FTTB+LAN mode are used, the optical shunt ratio should be designed according to 1x32.
1×8 Evenly distributed rack type splitter
The optical splitter is a component of the EPON/GPON network. It is a passive device that connects the OLT and the ONU. Its function is to distribute the downstream data and centralize the upstream data. The optical splitter has one uplink optical interface and several downlink optical interfaces. The optical signals from the uplink optical interface are allocated to all downlink optical interfaces, and the optical signals from the downlink optical interface are allocated to the only uplink optical interface. When an optical signal is transferred from the uplink optical interface to the downlink optical interface, the optical power decreases. The same is true when the optical signal is transferred from the downlink optical interface to the uplink optical interface. The optical signal strength of each downlink optical interface can be the same or different. The optical splitter is centrally installed in the optical splitter box (indoor or outdoor type); When the ONU distribution is more dispersed or the number of fiber cores in the resident network is insufficient, the two-stage and multistage splitting methods can be used. The optical shunt ratio should be selected by considering the transmission distance of the EPON system, the number of users on the ONU band, and the bandwidth allocation in the PON system. In general, when FTTH mode and FTTB+LAN mode are used, the optical shunt ratio should be designed according to 1x32.
HA404VWB 4-port 100Mbps Gigabit hybrid+2-port POST+WiFi ONU
HA404VWB is an indoor ONU that provides users with 1 Gigabit (100/1000Mbps adaptive) RJ45 connector (LAN1),3 100Mbps adaptive (10/100Mbps adaptive) RJ45 connector (LAN2,3,4) and 2 POTS analog phone RJ11 ports, and supports WiFi function. Combined with the OLT unified network management system, remote fault diagnosis and location can be realized, reducing maintenance workload. It is mainly used in FTTH/FTTO networking, and can effectively ensure the stable transmission of telephone and data services.
HA432G 1 port 2.5G+1 port Gigabit 86 panel ONU
HA432G is a room 86 panel ONU, providing users with one 2.5G and one Gigabit (100/1000Mbps adaptive) RJ45 electrical port. With the OLT unified network management at the office, it can realize remote fault diagnosis and location, reducing maintenance workload. It is mainly used in FTTH/FTTO networking to effectively ensure the stable transmission of data services.
HA431GV 1-port Gigabit+1-port POST 86 panel ONU
The HA431GV is a room 86 panel ONU, which provides users with one Gigabit (100/1000Mbps adaptive) RJ45 electrical port and one POTS analog telephone RJ11 port. With the OLT unified network management at the office, remote fault diagnosis and location can be realized, reducing maintenance workload. It is mainly used in FTTH/FTTO networking to effectively ensure the stable transmission of data services.
HA431G Single Port Gigabit 86 Panel ONU
The HA431G is a room 86 panel ONU, providing users with one gigabit (100/1000Mbps adaptive) RJ45 electrical port. With the OLT unified network management system at the office, it can realize remote fault diagnosis and location, reducing maintenance workload. It is mainly used in FTTH/FTTO networking to effectively ensure the stable transmission of data services.
HA414VWB 4-port 100Mbps Gigabit hybrid+2-port POST+WiFi ONU
HA414VWB is an indoor ONU that provides users with 1 Gigabit (100/1000Mbps adaptive) RJ45 connector (LAN1),3 100Mbps adaptive (10/100Mbps adaptive) RJ45 connector (LAN2,3,4) and 2 POTS analog phone RJ11 ports, and supports WiFi function. Combined with the OLT unified network management system, remote fault diagnosis and location can be realized, reducing maintenance workload. It is mainly used in FTTH/FTTO networking, and can effectively ensure the stable transmission of telephone and data services.
HA414VW 4-port 100Mbps/Gigabit hybrid+1-port POST+WiFi ONU
HA414VW is an indoor ONU, providing users with 1 Gigabit (100/1000Mbps adaptive) RJ45 electrical port (LAN1),3 100 Gigabit (10/100Mbps adaptive) RJ45 electrical port (LAN2,3,4) and 1 POTS analog telephone RJ11 port, and supports WiFi function. Combined with the OLT unified network management system, remote fault diagnosis and location can be realized, reducing maintenance workload. It is mainly used in FTTH/FTTO networking, and can effectively ensure the stable transmission of telephone and data services.