Genuine Ciena NTTA01BJE6 FTLC1181RDNL-NT WOTRCDZFAA 100GBASE-LR4 CFP 1310nm 10km SMF
The Ciena NTTA01BJE6 is a high-performance 100GBASE-LR4 CFP optical transceiver engineered for long-reach 100 Gigabit Ethernet and OTU4 transport. Manufactured by Finisar under OEM part number FTLC1181RDNL-NT, this module aggregates 10×10.3Gbps electrical lanes into 4×25.78Gbps LAN-WDM optical lanes (1295 / 1300 / 1304 / 1309 nm) to deliver 103 Gbps over duplex single-mode fiber up to 10 km. Compliant with IEEE 802.3ba Clause 88, ITU-T G.959.1, and CFP MSA 1.4, it features Digital Optical Monitoring (DOM/DDM) via MDIO and supports hot-pluggable 148-pin operation. Assembled in the USA, this module is validated for Ciena 6500, 5400, and Waveserver platforms.
Ciena Part Number
NTTA01BJE6
Product Model
FTLC1181RDNL-NT
Wavelength
1295/1300/1305/1309 nm
Transmission Distance
10km
Standards
IEEE 802.3ba Clause 88 100GBASE-LR4, ITU-T G.959.1
Operating Temperature
0°C ~ 70°C
Typical Applications
✅100GE long-haul backbone links in metro and regional carrier networks
✅OTU4 client interfaces on Ciena 6500 / 5400 Packet-Optical platforms
✅Data Center Interconnect (DCI) up to 10km
✅100G enterprise core switching and aggregation
✅Service provider edge and leased-line 100G services
✅Multi-vendor interoperability (Cisco CFP-100G-LR4, Huawei CFP-100G-LR4, Nokia 3HE04821AA)
Product Highlights
✨【Genuine Ciena Transceiver Manufactured by Finisar 】fully validated factory optical & environmental tests, zero-alarm operation on Ciena OTN transport equipment
✨【Universal Standard 100G LR4 LAN-WDM Solution 】 IEEE standardized tight-spacing optical design with cross-brand interoperability, compatible with other LR4 transceivers, not interoperable with CWDM4 MUX/DEMUX
✨【Stable 10km Single-Mode Long-Reach Transmission 】No optical repeater amplifier required to cut hardware costs for metropolitan data center and metro site backbone networking
✨【4 Independent Lane DOM Remote O&M 】NMS separately reads optical power & temperature of each lane to accurately isolate single-channel fiber attenuation and laser aging faults