HA7304G-J GPON OLT

HA7304G-J GPON OLT, which provides 4 GPON ports, 4 GE/10GE SFP/SFP+(10GE) optical uplink ports ,SFP uplink ports support optical and copper sfp modules.

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HA7308NX rack mounted 8-port OLT equipment

HA7308NX complies with China Telecom EPON equipment standards. HA7308NX is a small capacity 8-port OLT device launched by Shenzhen Haishuo Technology Co., Ltd. It can be combined with the HA7200 series ONU and passive optical distribution network (ODN) to form a passive optical network, achieving performance management, fault management, and configuration management of the device. The HA7308NX adopts a 1U rack design, supporting 8 EPON optical ports, 8 Gigabit RJ45 electrical ports, 4 Gigabit SFP optical ports, and 4 Gigabit SFP+optical ports for uplink. Under 1:64 split light, 4 PON ports can support up to 512 ONU device access. Supporting a transmission distance of 20km while ensuring high bandwidth, it can provide full line speed L2/L3 layer forwarding capability, and supports up and down symmetric bandwidth of 1.25Gbps. Support concise local CLI serial port management; Support remote management methods such as TELNET; Support unified network management based on SNMP graphical interface; The device supports remote online upgrades; Support remote diagnosis of terminals and rapid fault localization.

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HA7308G-J 8PON GPON OLT

HIOSO HA7308G-J GPON OLT, which provides 8 GPON ports, 4 GE/10GE SFP/SFP+(10GE) optical uplink ports ,SFP uplink ports support optical and copper sfp modules. HIOSO HA7308G-J has high reliability, highly dense broadband access and robust switching and routing abilities, is a new generation of broadband and multiservice access OLT devices oriented towards the service-integrated network.

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HA7316G-J HiOSO 16PON GPON OLT 4 GE/10GE SFP/SFP+ UPLINK PORT 1CONSOLE PORT 1 MGMT PORT SUPPORT WEB SNMP CLI RJ45

OVERVIEW: 1. Ports - HIOSO HA7316G-J GPON OLT provides 16 GPON ports and 4 GE/10GE SFP/SFP+(10GE) optical uplink ports. SFP uplink ports support both optical and copper sfp modules. 2. Characteristics -It has high reliability, highly dense broadband access and strong switching and routing capabilities, being a new generation of OLT devices for service-integrated networks. 3. Functions - HIOSO HA7316G-J integrates network security, supports data, voice and video, and provides continuous forwarding, graceful restarting and ring protection. 4. ONU Support - Each PON port of HIOSO HA7316G-J supports up to 128 ONUs, and the whole device supports up to 1024 ONUs. 5. Telecom Operations - HIOSO HA7316G-J supports various telecom operations and management features like MAC address binding and filtering, bandwidth control, VLAN, and traffic control. It also supports VLAN internal traffic exchange and non-convergence access of IPTV users, and one sub rack supports 2048 multicast channels.

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HA7000R Rack

The HA7000 is a rack mounted small and medium-sized OLT device launched by HIOSO Technology. The HA7000 series is a 19 inch, 3U rack with dual power backup, supporting up to 8 OLT cards, and each PON port can support 64 ONUs connected simultaneously. The HA7000 series has high integration, flexible application, high reliability, and is characterized by being manageable, easy to expand, and flexible networking. It is suitable for various application scenarios and can meet the needs of various application scenarios. The HA7000R rack provides multiple slots for inserting 8 HA7104 OLT module cards and 1 M7000 network management proxy card. All OLT module cards are centrally managed by the M7000 network management proxy card.

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HA432G 2 PORTS PANEL ONU

HA432G (1*XPON+1GE+1*2.5GE Built-in ONT(86 Type)) is a broadband access device specially designed to meet the needs of fixed network operators for FTTH. The panel-type ONU can be easily installed in 86-type electrical boxes on enterprise campuses.

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1×2 Fiber optical fast connector

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.

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1×2 Not Fiber optical fast connector

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.

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1×4 Fiber optical fast connector

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.

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