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1270 - 1450nm SFP+ ER Optical Transceiver Modules For Cisco Switches Duplex LC Connector

    Buy cheap 1270 - 1450nm SFP+ ER Optical Transceiver Modules For Cisco Switches Duplex LC Connector from wholesalers
     
    Buy cheap 1270 - 1450nm SFP+ ER Optical Transceiver Modules For Cisco Switches Duplex LC Connector from wholesalers
    • Buy cheap 1270 - 1450nm SFP+ ER Optical Transceiver Modules For Cisco Switches Duplex LC Connector from wholesalers

    1270 - 1450nm SFP+ ER Optical Transceiver Modules For Cisco Switches Duplex LC Connector

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    Brand Name : E-link China
    Model Number : LNK-CSFP-10Gxx-40
    Certification : CE, RoHS, FCC
    Payment Terms : T/T, Western Union, MoneyGram, Paypal
    Supply Ability : 1000000000pcs/Month
    Delivery Time : 3-5 working days
    Price : Negotiation
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    1270 - 1450nm SFP+ ER Optical Transceiver Modules For Cisco Switches Duplex LC Connector

    10Gb/s CWDM 1270~1450nm 40km SFP+ ER Optical Transceiver Module


    Features:

    • Support multi protocol from 9.95Gb/s to 11.3Gb/s
    • Hot pluggable SFP+ footprint
    • Compliant with SFF 8472 and IEE802.3ae
    • Transmission distance of 40km over single mode

    • fiber
    • 1270~1450nm CWDM DFB transmitter
    • PIN Receiver
    • Duplex LC connector
    • 2-wire interface for management and diagnostic monitor
    • Single Power 3.3V supply voltages
    • Temperature range -5°C to 70°C
    • Power dissipation: <1.5W
    • RoHS Compliant Part

    Applications:

    • 10GBASE-ER/EW Ethernet
    • 40km 10G Fiber channel
    • SONET OC-192/SDH
    • CWDM Networks

    Description:

    E-link’ LNK-10G SFP+ ER Small Form Factor 10Gb/s (SFP+) transceivers are compliant with the current SFP+ Multi-Source Agreement (MSA) Specification. The high performance cooled 1270~1450nm CWDM DFB transmitter and high sensitivity PIN receiver provide superior performance for Ethernet applications up to 40km optical links.

    The SFP+ Module compliants with SFF-8431, SFF-8432 and IEEE 802.3ae 10GBASE-ER. Digital diagnostics functions are available via a 2-wire serial interface, as specified in SFF-8472.

    Specification:

    • Absolute Maximum Ratings
    ParameterSymbolMin.TypicalMax.Unit
    Storage TemperatureTS-40+85°C
    Case Operating TemperatureTA070°C
    Maximum Supply VoltageVcc-0.54V
    Relative HumidityRH085%

    • Electrical Characteristics (TOP = 0 to 70 °C, VCC = 3.135 to 3.465 Volts)
    ParameterSymbolMin.TypicalMax.UnitNote
    Supply VoltageVcc3.1353.465V
    Supply CurrentIcc380mA
    Power ConsumptionP1.5W
    Transmitter Section:
    Input differential impedanceRin100Ω1
    Tx Input Single Ended DC Voltage Tolerance (Ref VeeT)V-0.34V
    Differential input voltage swingVin,pp180700mV2
    Transmit Disable VoltageVD2VccV3
    Transmit Enable VoltageVENVeeVee+0.8V
    Receiver Section:
    Single Ended Output Voltage ToleranceV-0.34V
    Rx Output Diff VoltageVo300850mV
    Rx Output Rise and Fall TimeTr/Tf30ps4
    LOS FaultVLOS fault2VccHOSTV5
    LOS NormalVLOS normVeeVee+0.8V5

    Note:

    1. Connected directly to TX data input pins. AC coupling from pins into laser driver IC.
    2. Per SFF-8431 Rev 3.0
    3. Into 100 ohms differential termination.
    4. 20%~80%
    5. LOS is an open collector output. Should be pulled up with 4.7k – 10kΩ on the host board. Normal operation is logic 0; loss of signal is logic 1. Maximum pull-up voltage is 5.5V.

    • Optical Characteristics (TOP = 0 to 70°C, VCC = 3.135 to 3.465 Volts)
    ParameterSymbolMin.TypicalMax.UnitNote
    Transmitter Section:
    Center Wavelengthλcλ-6.5λ+6.5nm
    spectral width△λ1nm
    Average Optical PowerPavg+0+5dBm1
    Laser Off PowerPoff-30dBm
    Extinction RatioER3.5dB
    Transmitter Dispersion PenaltyTDP3.2dB2
    Relative Intensity NoiseRin-128dB/Hz3
    Optical Return Loss Tolerance20dB
    Receiver Section:
    Center Wavelengthλr12601460nm
    Receiver SensitivitySen-16dBm4
    Stressed Sensitivity (OMA)SenST-13dBm4
    Los AssertLOSA-30-dBm
    Los De-assertLOSD-17dBm
    Los HysteresisLOSH0.5dB
    OverloadSat0dBm5
    Receiver ReflectanceRrx-12dB

    Note:

    1. Average power figures are informative only, per IEEE802.3ae.
    2. TWDP figure requires the host board to be SFF-8431compliant. TWDP is calculated using the Matlab code provided in clause 68.6.6.2 of IEEE802.3ae.
    3. 12dB reflection.
    4. Conditions of stressed receiver tests per IEEE802.3ae. CSRS testing requires the host board to be SFF-8431 compliant.
    5. Receiver overload specified in OMA and under the worst comprehensive stressed condition.

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