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Multi Mode Cisco Sfp Mini Gbic Transceiver Module 40km Distance EML Transmitter

E-link China Technology Co., Ltd.

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Address: 5F, Building D South, Jinshenghui Science Park, No. 3, Dafu Road, Fucheng Street, Guanlan, Longhua District, Shenzhen, China

Contact name:Michael Guo

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Multi Mode Cisco Sfp Mini Gbic Transceiver Module 40km Distance EML Transmitter

Country/Region china
City & Province shenzhen guangdong
Categories Mobile Phone Straps
InquireNow

Product Details

  

10G SFP+ 1550nm 40km Single Mode SFP Optical Transceiver Module

PRODUCT FEATURES

lUp to 11.3Gbps Data Links

  • Up to 40km transmission on SMF
  • EML transmitter and PIN receiver
  • Metal enclosure for lower EMI
  • 2-wire interface with integrated Digital Diagnostic monitoring
  • Hot-pluggable SFP+ footprint
  • Specifications compliant with SFF-8472
  • Compliant with SFP+ MSA with LC connector
  • Single 3.3V power supply
  • Industrial case operating temperature range: -40°C to 85°C

lWithout CDR or with CDR supported 9.95 to 11.3Gb/s reference-free

  • Low power dissipation:

LNK-10G-SFP-L45: 1.4W power dissipation without CDR for Industrial temperature LNK-10G-SFP-L45C: 1.5W power dissipation with CDR for Industrial temperature

 

APPLICATIONS

l10GBASE-ER/EW & 10G Ethernet

  • 10G SONET/SDH, OTU2/2e

 

STANDARD

  • Compliant to SFF-8431
  • Compliant to SFF 8472
  • RoHS Compliant.

 

Ordering information

 

 

 

 

Product part Number

 

 

Media

 

 

Wavelength (nm)

 

 

Transmission Distance(km)

Temperature Range

(Tcase)

(℃)

 

 

With/Without CDR

LNK-10G-SFP-L45Single-mode fiber155040-40~85Without CDR
LNK-10G-SFP-L45CSingle-mode fiber155040-40~85With CDR

Product Selection

 

E-LINK’s LNK-10G-SFP-L45 serial SFP+ transceiver is designed for use in 10-Gigabit Ethernet links up to 40km over single mode fiber. The module consists of 1550 EML Laser, InGaAs PIN and Preamplifier in a high-integrated optical sub-assembly. Digital diagnostics functions are available via a 2-wire serial interface, as specified in SFF-8472. The module data link up to 40km in 9/125um single mode fiber.

 

  1. Absolute Maximum Ratings

 

 

ParameterSymbolMin.Typ.Max.UnitNote
Storage TemperatureTs-40-85ºC 
Relative HumidityRH5-95% 
Power Supply VoltageVCC-0.3-4V 
Signal Input Voltage Vcc-0.3-Vcc+0.3V 

 

  1. Recommended Operating Conditions

 

ParameterSymbolMin.Typ.Max.UnitNote

 

Case Operating Temperature

 

Top

0-70

 

ºC

 
-40 85LNK-SFP-10G-L45
Power Supply VoltageVCC3.143.33.47V 
Data RateBR 10.312511.3Gbps 
Max transmission DistanceTD 40 km 
Coupled fiberSingle mode fiber9/125um SMF

 

  1. Optical Characteristics

 

ParameterSymbolMin.Typ.Max.UnitNote
Transmitter
Average Launched PowerPO-1 +3dBmNote (1)
Extinction RatioER8.2  dB 
Center Wavelengthλc153015501565nm 
Spectrum Band Width (-20dB)σ  1.0nm 
SMSR 30  dB 
Transmitter OFF Output PowerPOff  -30dBm 
Transmitter and Dispersion PenaltyTDP  2.0dB 
Output Eye MaskCompliant with IEEE 802.3ae  
Receiver
Input Optical Wavelengthλ1270 1610nm 
Receiver SensitivityPsen  -16.0dBmNote (2)
Input Saturation Power (Overload)Psat0  dBm 
LOS AssertLOSA-30  dBm 
LOS De-assertLOSD  -17dBm 

 

LOS Detect HysteresisPhys0.5  dB 

 

Note:

  1. Launched power (avg.) is power coupled into a single mode fiber with master connector.(Before of Life)
  2. Measured with conformance test signal for BER = 10^–12.@10.3125Gbps, PRBS=2^31-1,NRZ;Optical source with worst ER,Wavelength between 1530nm and 1565nm;back to back

 

 

IV.Electrical Characteristics

 

ParameterSymbolMinTypMaxUnitNOTE
Supply VoltageVcc3.143.33.46V 

 

 

Supply Current (Note 1)

 

 

 

Icc

  370

 

 

 

mA

 
  430LNK-SFP-10G-L45
  400 
  460LNK-SFP-10G-L45C
Transmitter      
Input differential impedanceRin 100 Ω2
Single ended data input swingVin-pp180 700mV 
Transmit Disable VoltageVDis2.0 VccV3
Transmit Enable VoltageVENVee Vee+ 0.8V 
Transmit Disable Assert Time   10us 
Receiver      
Differential data output swingVout-pp400 800mV4
Data output rise timetr28  ps5
Data output fall timetf28  ps5
LOS output high levelVLOS-H2.0 VCCHOSTV6
LOS output low levelVLOS-LVee Vee+0.8V6
Power Supply RejectionPSR100  mVpp7

 

Notes:

 

  1. Measured with receive Pin=Psen, Vcc=3.3V, operation temperature range, without air flow
  2. Connected directly to TX data input pins. AC coupled .

 

  1. Or open circuit.
  2. Into 100 ohms differential termination. 5. 20 – 80 %.
  1. Loss Of Signal is LVTTL. Logic 0 indicates normal operation; logic 1 indicates no signal detected.
  2. 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.

Pin out of Connector Block on Host Board

 

PinSymbolName/DescriptionNOTE
1

V

EET

Transmitter Ground (Common with Receiver Ground)1
2

T

FAULT

Transmitter Fault.2
3

T

DIS

Transmitter Disable. Laser output disabled on high or open.3
4SDA2-wire Serial Interface Data Line4
5SCL2-wire Serial Interface Clock Line4
6MOD_ABSModule Absent. Grounded within the module4
7RS0no connection 
8LOSLoss of Signal indication. Logic 0 indicates normal operation.5
9RS1Internally connect to circuit ground 
10

V

EER

Receiver Ground (Common with Transmitter Ground)1
11

V

EER

Receiver Ground (Common with Transmitter Ground)1
12RD-Receiver Inverted DATA out. AC Coupled 
13RD+Receiver Non-inverted DATA out. AC Coupled 

 

14

V

EER

Receiver Ground (Common with Transmitter Ground)1
15

V

CCR

Receiver Power Supply 
16

V

CCT

Transmitter Power Supply 
17

V

EET

Transmitter Ground (Common with Receiver Ground)1
18TD+Transmitter Non-Inverted DATA in. AC Coupled. 
19TD-Transmitter Inverted DATA in. AC Coupled. 
20

V

EET

Transmitter Ground (Common with Receiver Ground)1

Notes:

  1. Circuit ground is internally isolated from chassis ground.
  2. T is an LVTTL output. A high output indicates a transmitter fault caused by either the TX bias current or

FAULT

the TX output power or the laser temperature exceeding the preset alarm thresholds. A low output indicates normal operation. In the low state, the output is pulled to <0.8V.

  1. Laser output disabled on T >2.0V or open, enabled on T <0.8V.

DIS DIS

  1. Should be pulled up with 4.7kΩ- 10kΩ on host board to a typical 3.3V voltage. MOD_ABS pulls low to indicate module is plugged in.
  2. LOS is open collector output. It should be pulled up with 4.7kΩ – 10kΩ on host board to a typical 3.3V voltage. Logic 0 indicates normal operation; logic 1 indicates loss of signal.

 

 

VI.Digital Diagnostic Functions

E-LINK’s LNK-SFP-10G-L45 serial transceivers support the 2-wire serial communication protocol as defined in the SFP+MSA. The standard SFP serial ID provides access to identification information that describes the transceiver’s capabilities, standard interfaces, manufacturer, and other information.

 

Additionally, E-LINK 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 EEPROM that is accessible over a 2-wire serial interface at the 8 bit 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 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.

 

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