3HE01389AA Nokia (Alcatel-Lucent) Compatible 1000BASE-EZX 120km SFP

NOKIA (Alcatel) compatible 3HE01389AA - Key Features
- Compatibility: NOKIA (Alcatel)
- Media Type: Single-Mode Fiber (SMF)
- Fiber Count: Duplex
- Connector: Double LC/UPC
- Maximum Distance: 120 km
- Average Link Budget: 32 dB
- Tx Wavelength: 1550 nm
- Supported Data Rate: 0.1 Gbps - 1.25 Gbps
- DDM/DOM: Supported
- Temperature Range: Standard 0°-70°C
NOKIA (Alcatel) 3HE01389AA Price
NOKIA (Alcatel) compatible 3HE01389AA Specifications
Form Factor | SFP |
Media Type | Single-Mode Fiber (SMF) |
Fiber Count | Duplex |
Connector | Double LC/UPC |
Maximum Distance | 120 km |
Average Link Budget | 32 dB |
TX Wavelength | 1550 nm |
RX Wavelength | 1550 nm |
Supported Data Rate | 0.1 Gbps - 1.25 Gbps |
Supported Ethernet Applications | Gigabit Ethernet (1.25 Gbps), 100M Ethernet (100Mbps) |
Supported Fiber Channel Applications | 1G Fiber Channel (1.0625 Gbps) |
DDM/DOM | Supported |
Tx Wavelength Bandwidth | 37 nm (1528-1565 nm) |
Rx Wavelength Bandwidth | 37 nm (1528-1565 nm) |
Minimum Transmitting Power | 0 dBm |
Maximum Transmitting Power | 5 dBm |
Receiver Sensitivity | -32 dBm |
Receiver Overload | -7 dBm |
Dispersion | 2600-2700 ps/nm ps/nm |
Transmitter Type | DFB Laser |
Receiver Type | APD Photodiode |
Temperature Range | Standard 0°-70°C |
Power | +3.3V single power supply |
Compliance | CE, Class 1 FDA and IEC60825-1 Laser Safety Compliant, INF-8074i, RoHS, SFP MSA |
NOKIA (Alcatel) compatible 3HE01389AA Datasheet
v5Complete technical specifications and product details
NOKIA (Alcatel) compatible 3HE01389AA Description
EdgeOptic's 3HE01389AA compatible is a Nokia-coded version of the EdgeOptic 1.25G-SFP-120D multi-vendor 1000BASE-EZX SFP transceiver. It ships in a duplex LC/UPC SFP form factor over single-mode fiber, with a 1550 nm DFB laser transmitter and APD photodiode receiver covering a 1528 to 1565 nm band. The average optical link budget is 32 dB, supporting a maximum reach of 120 km on single-mode fiber. Minimum transmit power is 0 dBm and maximum transmit power is 5 dBm, with a receiver sensitivity of −32 dBm and a receiver overload point of −7 dBm.
Chromatic dispersion tolerance is rated at 2600 to 2700 ps/nm. Digital diagnostics monitoring is supported per SFF-8472, giving visibility into transmit power, receive power, bias current, supply voltage and temperature. The module runs from a single 3.3V supply across a standard commercial temperature range of 0 to 70°C. Supported applications are Gigabit Ethernet at 1.25 Gbps, within a data rate range of 1.063 to 1.25 Gbps, and 1G Fibre Channel at 1.0625 Gbps.
Do not confuse the 3HE01389AA with the 3HE01389CA, an industrial-rated variant of the same 120 km module; confirm the CA part number for extended temperature deployments before ordering. The 3HE01389AA-160 code and any DWDM sub-code variants are separate Nokia part numbers with different reach and wavelength plans and are not equivalent to this base SKU. Verify this module against Nokia's compatibility matrix for the specific chassis and line card before ordering.
The transceiver meets CE, Class 1 laser safety under FDA and IEC 60825-1, the INF-8074i SFP MSA, and RoHS. For volume pricing or alternate vendor coding, contact our sales team.
Frequently Asked Questions
Is the 3HE01389AA a 1G SFP or a 10G SFP+ module?
The 3HE01389AA is a 1000BASE-EZX Gigabit Ethernet SFP module rated at 1.25 Gbps, not a 10G SFP+ part. It fits a standard SFP cage only; a 10G SFP+ port expects a different physical module and will not accept this part. Confirm the port type on the target line card before ordering to avoid a form factor mismatch.
What is the difference between the 3HE01389AA and the 3HE01389CA?
The 3HE01389AA covers the standard commercial temperature range of 0 to 70°C. The 3HE01389CA is Nokia's industrial-rated version of the same 120 km, 1550 nm module for environments outside that standard range. Check the exact operating temperature needed at the deployment site and order the matching part number; the two SKUs are not interchangeable at the extremes of their temperature ratings.