SONET OC-192&SDH STM-64 10G 1550nm 120km XFP Optical Transceiver with amplifier
Product Details:
Place of Origin: | China |
Brand Name: | Hilink |
Certification: | CE,ROHS,FCC |
Model Number: | HL-XFP |
Payment & Shipping Terms:
Minimum Order Quantity: | 1pcs |
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Price: | Negotiable |
Packaging Details: | Static bag, Plastic bag, Retail box or by required |
Payment Terms: | L/C, T/T, Western Union |
Supply Ability: | 500/pcs/month |
Detail Information |
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Name: | 10G 120km XFP | Wavelength: | 1550nm |
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Connector: | LC | Warranty: | 3 Years |
Transmission Distance: | 120km | Operating Case Temperature: | 0°C~+70°C |
High Light: | xfp optical transceiver,xfp fiber transceiver |
Product Description
SONET OC-192&SDH STM-64 10G 1550nm 120km XFP Optical Transceiver with amplifier
SONET OC-192&SDH STM-64 10G 1550nm 120km XFP Optical Transceiver (with amplifier)
Features
- XFP MSA Rev 4.5 Compliant
- Data rate from 9.95Gbps to 11.3Gbps
- Cooled EML with isolator
- APD receiver
- link length up to 120km (with amplifier)
- Low Power Dissipation 3.5W Maximum
- XFI and lineside loopback Mode Supported
- -5ºC to 70ºC Operating Case Temperature
- Diagnostic Performance Monitoring of module temperature,
- Supply Voltages, laser bias current, transmit optical power, and receive optical power
- RoHS compliant (lead free)
Applications
- SONET OC-192&SDH STM 64
- Ethernet (10GBASE and 10GBASE with FEC)
- Fiber Channel (10G and 10G with FEC)
Description
Haili 120km XFP Transceiver is designed for 10G SDH/SONET and 10G Fiber Channel applications.
The transmitter section incorporates a colded EML laser, and the receiver section consists of a APD photodiode integrated with a TIA, Integrated low power dual CDR with Electronic Dispersion Compensation
(EDC). This module can be used to compensate channel impairments caused by either single mode fiber up to 120 km .All modules satisfy class I laser safety requirements. Haili XFP transceiver provides an enhanced monitoring interface, which allows real-time access to device operating parameters such as transceiver temperature, laser bias current, transmitted optical power, received optical power and transceiver supply voltage.