60KM SFP+ TX1330DFB Laser RX1270nm Optical Transceiver Module 10Gbps BIDI LC
Applications
10GBASE-BX |
10GBASE-LR at 10.3125Gbps |
10GBASE-LW at 9.953Gbps |
Other Optical Links |
PRODUCT FEATURES
Up to 40km on 9/125um SMF
perating case temperature: 0 to 70 °C
ll-metal housing for superior EMI performance
Low power consumption, less than 1.5w
10Gb/s serial optical interface compliant to 802.3ae 10GBASE-ER/EW
Electrical interface compliant to SFF-8431 specifications for enhanced 8.5 and 10 Gigabit small form factor pluggable module “SFP+”
1330nm DFB transmitter ,1270nm PIN-TIA
Advanced firmware allow customer system encryption information to be stored in transceiver
Cost effective SFP+ solution, enables higher port densities and greater bandwidth
2-wire interface for management specifications compliant with SFF 8472 digital diagnostic monitoring interface for optical transceivers
PRODUCT DESCRIPTION
The SFP+10G modules offer customers a wide variety of 10 Gigabit Ethernet connectivity options for data center, enterprise wiring closet, and service provider transport applications.It is a mallest 10G form factor Supports 10GBASE Ethernet and OTU2/OTU2e .
The SFP+10G module electrical interface is compliant to SFI electrical specifications. The transmitter input and receiver output impedance is 100 Ohms differential. Data lines are internally AC coupled. The module provides differential termination and reduce differential to common mode conversion for quality signal termination and low EMI. SFI typically operates over 200 mm of improved FR4 material or up to about 150mmof standard FR4 with one connector.
SFP+10G modules Complaint with IEEE 802.3ae 10GBASE-LR,Electrical interface compliant to SFF-8431 specifications for enhanced 8.5 and 10 Gigabit SFP module “SFP+”,1330nm DFB transmitter, PIN photo-detector,LC connector,2-wire interface for management specifications compliant with SFF 8472 digital diagnostic, Compliant with SFF8472 Digital Diagnostic Standard(DDM)
Optical module also be called optical fiber module, the translation should be transceiver module. The function of the optical module is the photoelectric conversion, and the transmitter converts the electrical signal into the optical signal. After the transmission through the optical fiber, the receiving end converts the optical signal into the electrical signal. SFP is a kind of optical module.
Optical fiber module classification: according to function:It includes optical receiving module, optical transmitting module, optical transceiver module and optical transmitting module
Parameter | Symbol | Min. | Typ. | Max. | Unit | Notes |
Maximum Supply Voltage | Vcc3 | -0.5 | - | 4.0 | V | |
Storage Temperature | TS | -40 | - | 85 | °C | |
Operating Humidity | - | 5 | - | 95 | % | |
Maximum Supply Voltage | Vcc3 | -0.5 | - | 4.0 | V |
Parameter | Symbol | Min. | Typ. | Max. | Unit | Notes |
Power Supply Voltage | Vcc | 3.13 | 3.30 | 3.47 | V | |
Power Supply Current | Icc | - | - | 300 | mA | |
Case Operating Temperature | Top | 0 | - | 70 | °C | |
Data Rate | - | - | 10.3125 | - | Gb/s | |
9/125um G652 SMF | Lmax | - | - | 20 | Km |
Spec
Parameter | Symbol | Min | Typ | Max | Unit | Ref. |
Transmitter | ||||||
Output Opt. Power | PO | 0 | 5 | dBm | ||
Side-Mode Suppression Ratio | SMSR | 30 | dB | |||
RMS Spectral Width(-20dB) | σ | 1 | nm | |||
Optical Extinction Ratio | ER | 3.5 | 4.5 | dB | ||
Tx Jitter(SONET)20KHZ-80MHZ | Txj1 | 0.3 | UI | 3 | ||
Tx Jitter(SONET)4MHZ-80MHZ | TXj2 | 0.1 | UI | 3 | ||
Path penalty at 800ps/nm@9.95Gb/s | 2 | dB | ||||
Relative Intensity Noise | RIN | -128 | dB/Hz | |||
Center Wavelength | λc | 1320 | 1330 | 1340 | nm | |
Receiver | ||||||
RX Sensitivity @10.3 Gb/s | SENS | -16 | dBm | 1,2 | ||
Receiver Overload | -1 | dBm | ||||
Optical Center Wavelength | λC | 1260 | 1270 | 1280 | nm | |
LOS De-Assert | LOSD | -17 | dBm | |||
LOS Assert | LOSA | -30 | dBm | |||
LOS Hysteresis | 0.5 | 2 | 6 | dB |
Notes:
1. Measured with conformance signals defined in FC-PI-2 Rev. 10.0 specifications.
2. Measured with PRBS 231-1 at 10-12 BER.
3. GR-253-CORE Issue 4.
4. With optical input power at the receiver between -1 ~ -11dBm