EW-F600P 32-Port PoF Optical Router for GPON/EPON ONU Networks
EW-F600P 32-Port PoF Optical Router for GPON/EPON ONU Networks
• 32-port PoF Optical Router with integrated OLT functions for GPON/EPON ONU networks.
• Transmits optical data and centralized power to remote ONUs over hybrid cables up to 300 meters.
• Gold-plated PCB design, low-power integrated circuitry, and secondary cascade support.
• Compatible with other systems and platforms; tested for vibration, network load, and PoF load.
EW-F600P Optical Router
EW-F600P optical router is an optoelectronic device that integrates a 1+32-channel optical distribution unit and 32-channel 48V power supply unit. It can provide data transmission and long-distance power supply to the optical network unit (ONU) at the same time through the optoelectronic hybrid cable. The maximum transmission distance is 300 meters, and it supports secondary cascading. It is widely used in all-optical transmission networking solutions such as parks, hotels, and video surveillance.
- PoF Optical Router
- PoF All-Optical Solution
- Flexible Networking
- Fiber Router

EW-F600P optical router is suitable for a variety of usage scenarios. PoF power supply is convenient, with no external power supply required. The device can transmit both power and data through the optical-electrical composite cable.
Only One Power Port Is Required
PoF Optical Router
Data and power can be transmitted to the ONU through optical-electric hybrid cables, up to 300 meters long. No power supply is required from the machine room to the terminal, making the whole process passive.
Secondary Cascade
Router for GPON OLT
After EW-F600P is connected to the OLT, it can continue to perform secondary cascading and split light to meet more usage scenarios.
| Item | EW-F600P |
| User Interface | 32*PoF SC (Out) |
| 1*PON (Out) | |
| 1*PON (In) | |
| PON | GPON and EPON mode self-adaptation
Interface mode: Optical-electric composite cable |
| GPON: upstream 1.25Gbps /downstream 2.5Gbps
Optical Power: -7dBm~-28dBm |
|
| EPON: upstream 1.25Gbps /downstream 1.25Gbps
Transmit optical power: 0~4dBm Optical Power: -7dBm~-27dBm |
|
| Size | 445mm x 310mm x 44mm |
| Environment | Operating temperature: -10°C~50°C |
| Operating humidity: 0%~85% (non-condensing) | |
| Storage temperature: -40°C~80°C | |
| Storage temperature: 5%~95% (non-condensing) | |
| Power Supply | AC: 100-240V 50/60Hz |
| Power Consumption | <800W |
- Support -10°C~50°C working environment.
- Support PoF, single-port power supply maximum support 80W, total power 800W.
- Input: 1*PON (IN).
- Output: 32*PoF SC (Out).
- Cascade port: 1*PON (Out), Maximum supported two-level cascade.
Product Overview
EW-F600P is a 32-port PoF optical router designed for GPON and EPON ONU networks. It integrates a 1+32-channel optical distribution unit with a 32-channel 48V power supply unit, providing centralized data transmission and remote power delivery through an optical-electric hybrid cable. It can be deployed as part of complete PoF solutions for offices, hotels, campuses, and video surveillance networks.Key Advantages
- 32 PoF SC output ports for multi-branch ONU deployment
- One PON input and one PON cascade output
- GPON and EPON auto-adaptation
- Data and power transmission through optical-electric hybrid cable
- Transmission distance of up to 300 meters
- Support for secondary cascade
- Up to 80W PoF power output per port
- Up to 800W total power output
- Suitable for parks, hotels, and video surveillance networks
Technical Parameter
| Item | EW-F600P |
|---|---|
| User Interface | 32 × PoF SC (Out) |
| PON | 1 × PON (Out) |
| PON | 1 × PON (In) |
| PON Mode | GPON and EPON mode self-adaptation |
| Interface Mode | Optical-electric composite cable |
| GPON | Upstream 1.25Gbps / Downstream 2.5Gbps |
| GPON Optical Power | -7dBm ~ -28dBm |
| EPON | Upstream 1.25Gbps / Downstream 1.25Gbps |
| EPON Transmit Optical Power | 0 ~ 4dBm |
| EPON Optical Power | -7dBm ~ -27dBm |
| Size | 445mm × 310mm × 44mm |
| Operating Temperature | -10°C ~ 50°C |
| Operating Humidity | 0% ~ 85% (non-condensing) |
| Storage Temperature | -40°C ~ 80°C |
| Storage Humidity | 5% ~ 95% (non-condensing) |
| Power Supply | AC: 100-240V 50/60Hz |
| Power Consumption | <800W |
Flexible PoF Networking for Distributed Sites
With GPON/EPON auto-adaptation, this PoF router can connect multiple remote ONU branches through its optical distribution ports. Fiber optic, network cable, and optical-electric composite cable can be selected according to different terminal requirements. The flexible PoF network architecture is suitable for corporate offices, hotel apartments, video surveillance systems, and campus networks.Centralized Power for Remote PoF ONUs
Only one power connection is required at the central equipment side. As a PoF optical gateway, the EW-F600P delivers data and power to remote PoF ONUs through an optical-electric hybrid cable over distances of up to 300 meters. A PoF ONU terminal or four-port PoF ONU can then provide network access for cameras and other terminal devices without a separate local power adapter.Secondary Cascade for PoF Network Expansion
After connecting to the OLT, the EW-F600P can use its PON cascade output to connect to another EW-F600P or a compatible downstream distribution device. This PoF router cascade extends the ONU connection structure and supports additional remote terminals without changing the main upstream layout. The cascade design should be planned according to cable distance, optical loss, bandwidth, and total power load. When planning a cascaded PoF network, consider cable length, optical budget, and total power capacity. A PoF network planning guide provides practical guidance for these factors.Key Feature
PoF All-Optical Solution
The EW-F600P combines optical routing and centralized PoF power distribution in one device. Connected to an upstream OLT, it sends the PON signal and power to compatible remote ONUs through optical-electric hybrid cable, helping simplify cabling in distributed all-optical networks.Flexible Networking
With GPON/EPON auto-adaptation and multi-branch PoF output, the EW-F600P can be integrated into different PON access environments. It is suitable for projects where remote ONUs are distributed across multiple rooms, floors, or buildings, including parks, hotels, and video surveillance networks.Centralized Power for Remote ONUs
Compatible remote ONUs can receive network data and power through the same PoF hybrid cable. With a transmission distance of up to 300 meters under suitable conditions, the EW-F600P helps reduce the need for local power outlets and separate power adapters at remote terminals.Secondary Cascade
After connecting to the OLT, the EW-F600P can use its PON output for secondary cascade and extend the network to a downstream distribution level. The maximum supported cascade is two levels. Cascade planning should consider cable distance, optical loss, endpoint power demand, and total network load.Compatibility and Testing
The EW-F600P is compatible with other systems, platforms, and network products when the PON mode, optical interface, and PoF requirements are properly matched. Before using third-party ONUs, check the GPON/EPON mode, connector type, optical budget, management requirements, and power demand. The product is tested for vibration, network load, and PoF load to support reliable operation in multi-branch PoF network deployments.PoF Network Applications
Parks and Campus Networks
In a park or campus network, remote buildings and facilities may be spread across a wide area. Running both fiber and separate power cables to every endpoint can make deployment more complicated. The EW-F600P provides a centralized PoF distribution point for multiple remote branches. It can help connect compatible ONUs and terminals across different zones while keeping the network architecture organized around the equipment room.Hotels and Apartments
Hotels and apartment buildings often require network access in rooms, corridors, service areas, and shared facilities. A centralized PoF design can reduce the need for local power adapters at each remote ONU location. The EW-F600P can be integrated into a structured fiber access system where different PoF outputs serve different floors, rooms, or building sections. The final endpoint may provide Ethernet, Wi-Fi, voice, or PoE services depending on the selected ONU or terminal.Video Surveillance Networks
Surveillance cameras and related network devices are often installed in locations where power access is limited or difficult to expand. A PoF architecture can provide both network connectivity and remote power through a hybrid cable. The EW-F600P is suitable for centralized distribution in video surveillance projects that use compatible PoF terminals. Project designers should match the power output of each port with the actual requirement of the connected camera, ONU, access point, or PoE device.Structured All-Optical Networks
The EW-F600P can also be used as part of a broader PoF solution. In this type of architecture, the OLT provides the upstream PON access, the EW-F600P distributes the signal and power, and compatible remote terminals provide user-side network services. This division of functions makes it easier to plan the network by layer:- OLT for upstream PON access and network control
- EW-F600P for centralized PoF distribution
- Hybrid cable for data and power transmission
- Remote ONU or terminal for local Ethernet, Wi-Fi, or PoE access
Compatibility and Deployment Considerations
The EW-F600P should be selected as part of a complete PON and PoF system rather than as an isolated router. Before ordering, confirm the following items:- Whether the upstream OLT uses GPON or EPON
- Whether the remote ONU supports the selected PON mode
- Whether the ONU accepts PoF optical-electric hybrid cable input
- Whether the connector type matches the EW-F600P PoF SC output
- Whether the optical power budget covers the planned cable distance
- Whether the endpoint power demand is within the port limit
- Whether the total project load is within the available PoF power
- Whether the installation environment remains within the operating temperature range
- Whether a cascade is required and how many distribution levels are planned
- Whether the OLT and ONU management requirements have been tested





