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10G SFP+ 10KM Transceiver

Min. Order: 10 Piece/Pieces
Trade Term: FOB
Payment Terms: L/C, T/T

Company Profile

Location: China (Mainland)
Business Type: Manufacturer, Trading Company, Distributor/Wholesaler

Product Detail

Model No.: FPSPP3110GL-10
Brand Name: Fiberpon
Wavelength: 1310nm
Rate: 10Gb/s
Voltage: +3.3V
Connector: LC
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Product Description

Feature

    Support Multi Rate 1.25-10.709Gbps  1310nm FP and PIN receiver
    SFI electrical interface
    SFP+ MSA package with duplex LC connector  Hot pluggable
    2-wire interface for integrated Digital Diagnostic monitoring
    Very low EMI and excellent ESD protection +3.3V power supply
    Power consumption less than 1 W
    Operating case temperature: 0~+70°C
 
Applications
 
    High-speed storage area networks
    Computer cluster cross-connect
    Custom high-speed data pipes
    LTE optical repeater application 
 
Description
FPSPP311GL-10  is  a  high  performance,  cost effective modules, which is supporting Multi Rate 1.25-10.709Gbps, and transmission distance up to 10km on SM fiber. The transceiver consists of two sections: The transmitter section incorporates a 1310nm  FP  driver  and  re-timer.  The  receiver section consists of a PIN photodiode integrated with  a  transimpedance  preamplifier (TIA).  The module is hot pluggable into the 20-pin connector. The high-speed electrical interface is base on low voltage logic, with nominal 100 Ohms differential impedance and AC coupled in the module.
The  optical  output  can  be  disabled  by  LVTTL logic high-level input of TX_DIS. Transmit Fault (Tx_Fault) is provided to indicate that the module transmitter has detected a fault condition related to laser operation or safety. Loss of signal (RX_LOS) output is provided to indicate the loss of an input optical signal of receiver. A serial EEPROM in the transceiver allows the user to access transceiver monitoring and configuration data via the  2-wire SFP Management Interface. This interface uses a single address, A0h, with a memory map divided into  a  lower  and  upper  area.  Basic  digital diagnostic (DD) data is held in the lower area while specific data is held in a series of tables in the high memory area
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