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1.25Gbps SFP Bi-Directional Transceiver, 20KM Reach Tx1310nm/Rx1490nm

    Buy cheap 1.25Gbps SFP Bi-Directional Transceiver, 20KM Reach Tx1310nm/Rx1490nm from wholesalers
     
    Buy cheap 1.25Gbps SFP Bi-Directional Transceiver, 20KM Reach Tx1310nm/Rx1490nm from wholesalers
    • Buy cheap 1.25Gbps SFP Bi-Directional Transceiver, 20KM Reach Tx1310nm/Rx1490nm from wholesalers
    • Buy cheap 1.25Gbps SFP Bi-Directional Transceiver, 20KM Reach Tx1310nm/Rx1490nm from wholesalers

    1.25Gbps SFP Bi-Directional Transceiver, 20KM Reach Tx1310nm/Rx1490nm

    Ask Lasest Price
    Brand Name : TAKFLY
    Model Number : TK-Bxx92-3LCD20
    Certification : CE,ROHS,REACH,ISO9001,ISO14001
    Price : US$0.01 ~ US$1200/PC
    Payment Terms : L/C, D/A, D/P, T/T, Western Union, MoneyGram
    Delivery Time : 3-7working days
    • Product Details
    • Company Profile

    1.25Gbps SFP Bi-Directional Transceiver, 20KM Reach Tx1310nm/Rx1490nm

    Description
    • The SFP-BIDI transceivers are high performance, cost effective modules supporting dual data-rate of 1.25Gbps/1.0625Gbps and 20KM transmission distance with SMF.
    • The transceiver consists of three sections: a FP laser transmitter, a PIN photodiode integrated with a trans-impedance preamplifier (TIA) and MCU control unit. All modules satisfy class I laser safety requirements.
    • The transceivers are compatible with SFP Multi-Source Agreement (MSA) and SFF-8472. For further information, please refer to SFP MSA.

    Features

    • Dual data-rate of 1.25Gbps/1.063Gbps operation
    • 1310nm FP laser and PIN photodetector for 20KM transmission
    • Compliant with SFP MSA and SFF-8472 with simplex LC receptacle
    • Digital Diagnostic Monitoring: Internal Calibration or External Calibration
    • Compatible with SONET OC-24-LR-1
    • Compatible with RoHS
    • +3.3V single power suppl
    • Operating case temperature range: 0 °C to +70 °C (Commercial)/-40 °C to +85 °C (Industrial)

    Applications

    1. Gigabit Ethernet
    2. Fiber Channel
    3. Switch to Switch interface
    4. Switched backplane applications
    5. Router/Server interface
    6. Other optical transmission systems

    Module Block Diagram


    Absolute Maximum Ratings

    ParameterSymbolMinTypMaxUnitRef.
    Maximum Supply VoltageVcc-0.54.7V
    Storage TemperatureTS-4085°C
    Case Operating TemperatureTOP070°C

    Electrical Characteristics (TOP = 0 to 70℃, VCC = 3.15 to 3.60Volts)

    ParameterSymbolMinTypMaxUnitRef.
    Supply VoltageVcc3.153.33.6V
    Supply CurrentIcc185280mA
    Transmitter
    Input differential impedanceRin100Ω1
    Single ended data input swingVin,pp2501200mV
    Transmit Disable VoltageVDVcc–1.3VccV
    Transmit Enable VoltageVENVeeVee+ 0.8V2
    Transmit Disable Assert Time10us
    Receiver
    Single ended data output swingVout,pp250800mV3
    Data output rise timetr100175ps4
    Data output fall timetf100175ps4
    LOS FaultVLOS faultVcc–0.5VccHOSTV5
    LOS NormalVLOS normVeeVee+0.5V5
    Power Supply RejectionPSR100mVpp6

    Notes:

    1. Connected directly to TX data input pins. AC coupled thereafter.
    2. Or open circuit.
    3. Into 100 ohms differential termination.
    4. 20 – 80 %
    5. Loss Of Signal is LVTTL. Logic 0 indicates normal operation; logic 1 indicates no signal detected.
    6. Receiver sensitivity is compliant with power supply sinusoidal modulation of 20 Hz to 1.5 MHz up to specified value applied through the recommended power supply filtering network.

    Electrical Input / Output Characteristics

    Transmitter
    ParameterSymbolMin.TypMax.UnitNote
    Diff. input voltage swing120820mVpp1

    Tx Disable input

    HVIH2.0Vcc+0.3

    V

    LVIL00.8

    Tx Fault output

    HVOH2.0Vcc+0.3

    V


    2

    LVOL00.8
    Input Diff. ImpedanceZin100Ω
    Receiver
    ParameterSymbolMin.TypMax.UnitNote
    Diff. output voltage swing340650800mVpp3

    Rx LOS Output

    HVOH2.0Vcc+0.3V

    2

    LVOL00.8

    Notes:

    1. TD+/- are internally AC coupled with 100Ω differential termination inside the module.

    2. Tx Fault and Rx LOS are open collector outputs, which should be pulled up with 4.7k to 10kΩ resistors on the host board. Pull up voltage between 2.0V and Vcc+0.3V.

    3. RD+/- outputs are internally AC coupled, and should be terminated with 100Ω (differential) at the user SERDES


    Optical Characteristics

    Transmitter

    ParameterSymbolMin.TypMax.UnitNote
    Operating WavelengthλC126013101360nm
    Ave. output power (Enabled)Po-9-3dBm1
    Extinction RatioER10dB1
    RMS spectral widthΔλ4nm
    Rise/Fall time (20%~80%)Tr/Tf0.26ps2
    Output Eye MaskTelcordia GR-253-CORE and ITU-T G.957 compatible
    Notes:

    1. Measure at 2^23-1 NRZ PRBS pattern

    2. Transmitter eye mask definition

    Receiver
    ParameterSymbolMin.TypMax.UnitNote
    Operating Wavelength14701510nm
    SensitivityPsen-22dBm1
    Min. overloadPimax-3dBm
    LOS AssertPa-36dBm
    LOS De-assertPd-24dBm2
    LOS HysteresisPd-Pa0.56dB
    Notes:

    1. Measured with Light source 1310nm (1490nm), ER=10dB; BER =<10^-12 @PRBS=2^23-1 NRZ.

    2. When LOS de-asserted, the RX data+/- output is signal output.

    Pin Definitions and Functions


    PINNameFunctionNotes
    1VeeTTx ground
    2Tx FaultTx fault indication, Open Collector Output, active “H”1
    3Tx DisableLVTTL Input, internal pull-up, Tx disabled on “H”2
    4MOD-DEF22 wire serial interface data input/output (SDA)3
    5MOD-DEF12 wire serial interface clock input (SCL)3
    6MOD-DEF0Model present indication3
    7Rate selectNo connection
    8LOSRx loss of signal, Open Collector Output, active “H”4
    9VeeRRx ground
    10VeeRRx ground
    11VeeRRx ground
    12RD-Inverse received data out5
    13RD+Received data out5
    14VeeRRx ground
    15VccRRx power supply
    16VccTTx power supply
    17VeeTTx ground
    18TD+Transmit data in6
    19TD-Inverse transmit data in6
    20VeeTTx ground

    Notes:


    1. When high, this output indicates a laser fault of some kind. Low indicates normal operation. And should be pulled up with a 4.7 – 10KΩ resistor on the host board.
    2. TX disable is an input that is used to shut down the transmitter optical output. It is pulled up within the module with a 4.7 – 10KΩ resistor. Its states are: Low (0 – 0.8V): Transmitter on (>0.8, < 2.0V): Undefined High (2.0V~Vcc+0.3V): Transmitter Disabled Open: Transmitter Disabled
    • Mod-Def 0,1,2. These are the module definition pins. They should be pulled up with a 4.7K – 10KΩ resistor on the host board. The pull-up voltage shall be VccT or VccR.
    • Mod-Def 0 has been grounded by the module to indicate that the module is present Mod-Def 1 is the clock line of two wire serial interface for serial ID
    • Mod-Def 2 is the data line of two wire serial interface for serial ID
    1. When high, this output indicates loss of signal (LOS). Low indicates normal operation.
    2. RD+/-: These are the differential receiver outputs. They are AC coupled 100Ω differential lines which should be terminated with 100Ω (differential) at the user SERDES. The AC coupling is done inside the module and is thus not required on the host board.
    3. TD+/-: These are the differential transmitter inputs. They are AC-coupled, differential lines with 100Ω differential termination inside the module. The AC coupling is done inside the module and is thus not required on the host board.

    Digital Diagnostic Functions


    TAKFLY TK-B3424-3LCD20 transceivers support the 2-wire serial communication protocol as defined in the SFP MSA. It is very closely related to the E2PROM defined in the GBIC standard, with the same electrical specifications.

    The standard SFP serial ID provides access to identification information that describes the transceiver’s capabilities, standard interfaces, manufacturer, and other information.


    Additionally, TAKFLY SFP transceivers provide a unique enhanced digital diagnostic monitoring interface, which allows real-time access to device operating parameters such as transceiver temperature, laser bias current, transmitted optical power, received optical power and transceiver supply voltage. It also defines a sophisticated system of alarm and warning flags, which alerts end-users when particular operating parameters are outside of a factory set normal range.


    The SFP MSA defines a 256-byte memory map in E2PROM that is accessible over a 2-wire serial interface at the 8bit address 1010000X (A0h). The digital diagnostic monitoring interface makes use of the 8 bit address 1010001X (A2h), so the originally defined serial ID memory map remains unchanged. The interface is identical to, and is thus fully backward compatible with both the GBIC Specification and the SFP Multi Source Agreement.


    The operating and diagnostics information is monitored and reported by a Digital Diagnostics Transceiver Controller (DDTC) inside the transceiver, which is accessed through a 2-wire serial interface. When the serial protocol is activated, the serial clock signal (SCL, Mod Def 1) is generated by the host. The positive edge clocks data into the SFP transceiver into those segments of the E2PROM that are not write-protected. The negative edge clocks data from the SFP transceiver. The serial data signal (SDA, Mod Def 2) is bi-directional for serial data transfer. The host uses SDA in conjunction with SCL to mark the start and end of serial protocol activation. The memories are organized as a series of 8-bit data words that can be addressed individually or sequentially.Digital diagnostics for the TK-B3424-3LCD20 are Internally calibrated by default.


    Typical Interface Circuit



    Package Dimensions



    Regulatory Compliance

    FeatureReferencePerformance
    Electrostatic discharge (ESD)IEC/EN 61000-4-2Compatible with standards
    Electromagnetic Interference (EMI)FCC Part 15 Class B EN 55022 Class B (CISPR 22A)Compatible with standards
    Laser Eye SafetyFDA 21CFR 1040.10, 1040.11 IEC/EN 60825-1, 2Class 1 laser product
    Component RecognitionIEC/EN 60950, ULCompatible with standards
    ROHS2002/95/ECCompatible with standards
    EMCEN61000-3Compatible with standards

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