10G XFP 2km SMF Transceiver: 10G-XFP-2

10G XFP 2km SMF Transceiver Overview
Our 10G XFP 2km transceiver provides reliable short-reach connectivity for metro networks. Supporting up to 2km transmission over single-mode fiber at 1310nm wavelength, this 10G XFP module delivers 6.2 dB link budget and multi-rate operation from 1.24 to 11.32 Gbps. XFP MSA compliant with LC/UPC duplex connectors, ideal for campus interconnects and metro access applications.
- Media Type: Single-Mode Fiber (SMF), Multi-Mode Fiber (MMF) -OM3/OM4/OM5
- Fiber Count: Duplex
- Connector: Double LC/UPC
- Maximum Distance: 2 km
- Guaranteed Link Budget: 6.2 dB
- Tx Wavelenght: 1310 nm
- Supported Data Rate: 1.24 Gbps - 11.32 Gbps
- DDM/DOM: Supported
- Temperature Range: Standard 0°-70°C
10G XFP 2km Pricing
10G XFP 2km SMF Transceiver Specification
Form Factor | XFP |
Media Type | Single-Mode Fiber (SMF), Multi-Mode Fiber (MMF) -OM3/OM4/OM5 |
Fiber Count | Duplex |
Connector | Double LC/UPC |
Maximum Distance | 2 km |
Guaranteed Link Budget | 6.2 dB |
TX Wavelength | 1310 nm |
RX Wavelength | 1310 nm |
Supported Data Rate | 1.24 Gbps - 11.32 Gbps |
Supportet Ethernet Applications | 10G Ethernet (10.31Gbps), Gigabit Ethernet (1.25 Gbps) |
Supported Fiber Channel Applications | 10G Fiber Channel (10.52 Gbps), 1G Fiber Channel (1.0625 Gbps), 2G Fiber Channel (2.125 Gbps), 4G Fiber Channel (4.25 Gbps), 8G Fiber Channel (8.5 Gbps) |
Optical Transport Network (OTN) Applications | ODU0 (1.244Gbps), ODU1 (2.498Gbps), OTU1 (2.66Gbps), ODU2 (10.037Gbps), ODU2e (10.399Gbps), OTU1e (11.049Gbps), OTU1f (11.27Gbps), OTU2 (10.70Gbps), OTU2e (11.095Gbps), OTU2f (11.32Gbps) |
SDH/SONET Standards | STM-16 (2.488 Gbps), STM-64 (9.95Gbps) |
DDM/DOM | Supported |
Tx Wavelength Bandwidth | 100 nm (1260-1360 nm) |
Rx Wavelength Bandwidth | 100 nm (1260-1360 nm) |
Minimum Transmitting Power | -8.2 dBm |
Maximum Transmitting Power | 0 dBm |
Receiver Sensitivity | -14.4 dBm |
Receiver Overload | 0.5 dBm |
Dispersion | 100-100 ps/nm ps/nm |
Transmitter Type | DFB Laser |
Receiver Type | PIN photodiode |
Temperature Range | Standard 0°-70°C |
Power | +3.3V single power supply |
Compliance | CE, Class 1 FDA and IEC60825-1 Laser Safety Compliant, RoHS, INF-8077i XFP MSA Rev.4.5 |
10G XFP 2km SMF Transceiver Datasheet
v2Complete technical specifications and product details
10G XFP 2km SMF Transceiver Description
Our EDGEOPTIC 10G-XFP-2 is a multi-vendor compatible 10G XFP dual-fiber optical module designed for short-reach 10 Gigabit Ethernet applications operating over both single-mode and multimode fiber cabling. While XFP represents a legacy transceiver form factor approaching end-of-life status in many deployments, this module continues to serve critical infrastructure requiring XFP compatibility. The 10G-XFP-2 operates at 1310nm wavelength for both transmission and reception, supporting data rates from 1.24 to 11.32 Gbps across multiple protocol standards and applications. Our 10G XFP 2km transceiver utilizes DFB (Distributed Feedback) laser technology for transmission paired with PIN photodiode for optical reception. The transceiver ensures a 6.2 dB guaranteed optical link budget, which determines the maximum transmission distance capabilities. Over single-mode fiber, the transceiver reliably reaches distances up to 2 kilometers, while maintaining backward compatibility with OM3/OM4/OM5 multimode fiber for shorter reach applications. However, distance is just an indicative parameter calculated for convenience of identification – ultimately we calculate distance considering minimal optical budget and average attenuation of optical cabling in the industry.
The 10G-XFP-2 compatible module features hot-pluggable XFP architecture with duplex LC/UPC connectors as the optical interface. The electrical interface conforms to INF-8077i XFP MSA Rev.4.5 specifications, ensuring compatibility with legacy XFP host systems supporting multiple vendor equipment platforms. Our 10G XFP transceiver can be encoded to maintain compatibility and successfully operate across 80+ brands of network equipment. The module incorporates DDM/DOM (Digital Diagnostic Monitoring) functionality providing real-time operational data including transmitted and received optical power levels, module temperature, laser bias current, and supply voltage. This diagnostic information is accessible via the MSA-compatible EEPROM interface, enabling comprehensive monitoring of transceiver operational parameters. The module operates within standard 0 to 70°C temperature range, with appropriate thermal management for sustained operation in controlled telecommunications environments.
Standards compliance encompasses IEEE 802.3ae for 10 Gigabit Ethernet, alongside comprehensive SDH/SONET specifications supporting STM-16 through STM-64, and multi-rate Fiber Channel support from 1G to 10G. Additionally, the transceiver supports Optical Transport Network applications including ODU0 through ODU2e and OTU1 through OTU2f standards. The transceiver achieves multi-vendor interoperability through strict adherence to industry MSA standards, though equipment implementing vendor-specific module validation may require custom EEPROM programming for seamless compatibility. Our 10G XFP transceiver maintains CE/RoHS certification and complies with Class 1 FDA and IEC60825-1 laser safety standards.
Typical applications include campus network interconnects, enterprise backbone connections requiring XFP compatibility, and existing metropolitan area network infrastructure where 2km reach suffices. The dual media compatibility enables deployment flexibility across mixed fiber infrastructures, supporting both legacy multimode and modern single-mode installations. The multi-rate capability accommodates legacy Gigabit Ethernet operation at 1.25 Gbps alongside native 10 Gigabit rates, providing operational flexibility for mixed-speed network deployments where XFP form factor remains mandatory. Because our focus centers on providing top quality service, we perform comprehensive quality checks before delivery. Consequently, we conduct optical parameter measurements, connector cleanliness tests, and XFP transceiver EEPROM memory data validation tests for every module.