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Juniper XFP-10GE-DW61.42 10Gb/s XFP 80km Duplex LC SMF Transceiver
- Data Rate: 10Gb/s
- Form Factor: XFP
- Reach: 80km
- Fiber Type: Single-Mode Fiber (SMF)
- Connector Type: LC (Duplex)
- Wavelength: 1561.42nm
- Application: Long-haul enterprise and service provider networks
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Product Overview
The Juniper XFP-10GE-DW61.42 is a 10Gb/s XFP transceiver designed for 80km transmission over single-mode fiber (SMF). It operates at 1561.42nm and uses an LC duplex connector.
Technical Information
| Product Type | Transceiver Module |
| Interface | 10 Gigabit Ethernet |
| Form Factor | XFP |
| Fiber Mode | Single Mode |
Additional Specifications
| Max Distance | 80 km |
| Connector | LC |
| Wavelength | 1561.42 nm |
Product Description
The Juniper XFP-10GE-DW61.42 is a high-performance XFP (10 Gigabit Small Form Factor Pluggable Plus) transceiver module designed for 10Gb/s data transmission over extended distances of up to 80 kilometers. It is intended for use with single-mode fiber (SMF) optic cables, making it suitable for critical long-haul applications in enterprise networks, data center interconnects, and service provider infrastructures. The module operates at a specific wavelength of 1561.42nm, a key parameter for compatibility within optical networks, especially those utilizing Dense Wavelength Division Multiplexing (DWDM) or requiring precise wavelength allocation. It features an LC duplex connector, which is the industry standard for secure and reliable fiber optic connections, facilitating easy installation and maintenance. The XFP form factor provides a compact and hot-swappable solution for integration into compatible network devices. This transceiver is engineered to deliver reliable and consistent performance in demanding network environments. It typically supports Digital Diagnostic Monitoring (DDM) capabilities, which allow network administrators to monitor essential operational parameters such as optical transmit and receive power, temperature, and voltage in real-time. This feature is vital for proactive network management, performance optimization, and efficient troubleshooting of optical links.



