Generic Compatible 10GB/S Bidi SFP+ Lr 10km Transceiver Module

Product Details
Customization: Available
Usage: Telephone, Computer, Workstation, Server, Mobile phone, Data Center
Type: Both Wired and Wireless
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  • Generic Compatible 10GB/S Bidi SFP+ Lr 10km Transceiver Module
  • Generic Compatible 10GB/S Bidi SFP+ Lr 10km Transceiver Module
  • Generic Compatible 10GB/S Bidi SFP+ Lr 10km Transceiver Module
  • Generic Compatible 10GB/S Bidi SFP+ Lr 10km Transceiver Module
  • Generic Compatible 10GB/S Bidi SFP+ Lr 10km Transceiver Module
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Basic Info.

Model NO.
T2733(3327)S-LR(I)
Support Network
Ethernet, GPRS, Data, Voice
Information content
Data, Voice, Message
Certification
CE, ISO, RoHS, FCC
Condition
New
Transport Package
Blister Pack
Trademark
Linksall
Origin
China
HS Code
8517706000
Production Capacity
100, 000 Per Year

Packaging & Delivery

Package Size
5.00cm * 5.00cm * 5.00cm
Package Gross Weight
1.000kg

Product Description

10Gb/s BIDI SFP+ Transceiver 10KMLASX-T2733(3327)S-LR(I)

Product Features
 
  • Up to 10.7Gbps Data Links
  • Up to 10km transmission on 9/125μm SMF
  • DFB laser and PIN receiver
  • Hot-pluggable SFP+ footprint
  • Compliant with SFP+ MSA with Simplex LC Receptacle
  • Single +3.3V Power Supply
  • Power dissipation <1.2W
  • Monitoring Interface Compliant with SFF-8472
  • Operating case temperature: Commercial 0 to +70°C, Industrial -40 to +85°C
  • Metal Enclosure, Excellent EMI & ESD Protection
  • RoHS compliant and Lead Free

Applications
 
  • 10Gbps Optical systems
  • 10GBASE-LR at 10.3125Gbps
  • 10GBASE-LW at 9.953Gbps
  • LTE systems
  • Other Optical links
  • Standard:Compliant to IEEE Std 802.3ae 10GBASE-LR/LW;Compliant to SFF-8472;Compliant to SFF-8431;RoHS Compliant

Product Description
 Link-all's 10KM BIDI SFP+ transceivers are high performance, cost effective modules supporting data rateupto 10.7Gbps and 10km transmission distance with SMF.
The SFP+ Module compliants with SFF-8431, SFF-8432 and IEEE 802.3ae 10GBASE-LR. Digitaldiagnostics functions are available via a 2-wire serial interface, as specified in SFF-8472.
The fully SFP compliant form factor provides hot pluggability, easy optical port upgrades and low EMIemission.
  • Compliant to SFF-8431
  • Compliant to SFF 8472
  • RoHS Compliant.

Absolute Maximum Ratings  
Parameter Symbol Min. Typ. Max. Unit
Storage Temperature Ts -40 - +85 ºC
Relative Humidity RH 5 - 85 %
Power Supply Voltage VCC -0.5 - 4.5 V
Recommended Operating Conditions
Parameter Symbol Min. Typ. Max. Unit Note
Case Operating Temperature Commercial   0 - +70 ºC Without air flow
Industrial   -40 - +85
Power Supply Voltage VCC 3.135 3.3 3.465 V  
Power Supply Current ICC -   350 mA  
Data Rate BR   10.3125   Gbps  
Transmission Distance TD   - 10 km  
Coupled fiber Single mode fiber 9/125um SMF

Optical and Electrical Characteristics Notes:  
Parameter Symbol Min Typical Max Unit Notes
Transmitter
Centre Wavelength λc 1260 1270 1280 nm 1270nmTx/1330nmRx
1320 1330 1340 1330nmTx/1270nmRx
Spectral Width(-20dB) Δλ     1 nm  
Side-Mode Suppression Ratio SMSR 30 -   dB  
Average Output Power Pout -3 - +2 dBm 1
Extinction Ratio ER 3.5     dB  
Data Input Swing Differential VIN 180   850 mV 2
Input Differential Impedance ZIN 90 100 110 Ω  
TX Disable Disable   2.0   Vcc V  
Enable   0   0.8 V  
TX Fault Fault   2.0   Vcc V  
Normal   0   0.8 V  
Receiver
Input Optical Wavelength λIN 1320 1330 1340 nm 1270nmTx/1330nmRx
1260 1270 1280 1330nmTx/1270nmRx
Receiver Sensitivity Sen     -14.4 dBm 3
Receiver Overload   0.5     dBm 3
LOS De-Assert LOSD     -15.5 dBm  
LOS Assert LOSA -30     dBm  
LOS Hysteresis   0.5     dB  
Data Output Swing Differential Vout 300   900 mV 4
LOS High 2.0   Vcc V  
Low     0.8 V  
Note:
1. The optical power is launched into SMF.
2. PECL input, internally AC-coupled and terminated.
3. Measured with a PRBS 231-1 test pattern @10312Mbps, BER≤1×10-124. Internally AC-coupled.

Timing and Electrical Notes: 
Parameter Symbol Min Typical Max Unit
Tx Disable Negate Time t_on     1 ms
Tx Disable Assert Time t_off     10 µs
Time To Initialize, including Reset of Tx Fault t_init     300 ms
Tx Fault Assert Time t_fault     100 µs
Tx Disable To Reset t_reset 10     µs
LOS Assert Time t_loss_on     100 µs
LOS De-assert Time t_loss_off     100 µs
Serial ID Clock Rate f_serial_clock   100 400 KHz
MOD_DEF (0:2)-High VH 2   Vcc V
MOD_DEF (0:2)-Low VL     0.8 V
Pin Function Definitions
Pin Symbol Name/Description Note
1 VEET 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
4 SDA 2-wire Serial Interface Data Line 4
5 SCL 2-wire Serial Interface Clock Line 4
6 MOD_ABS Module Absent. Grounded within the module 4
7 RS0 Rate Select 0 5
8 LOS Loss of Signal indication. Logic 0 indicates normal operation. 6
9 RS1 No connection required 1
10 VEER Receiver Ground (Common with Transmitter Ground) 1
11 VEER Receiver Ground (Common with Transmitter Ground) 1
12 RD- Receiver Inverted DATA out. AC Coupled  
13 RD+ Receiver Non-inverted DATA out. AC Coupled  
14 VEER Receiver Ground (Common with Transmitter Ground) 1
15 VCCR Receiver Power Supply  
16 VCCT Transmitter Power Supply  
17 VEET Transmitter Ground (Common with Receiver Ground) 1
18 TD+ Transmitter Non-Inverted DATA in. AC Coupled.  
19 TD- Transmitter Inverted DATA in. AC Coupled.  
20 VEET Transmitter Ground (Common with Receiver Ground) 1
  Notes:
1. Circuit ground is internally isolated from chassis ground.
2. Tis an open collector/drain output, which should be pulled up with a 4.7k- 10k Ohms resistor on the host board if intended for use. Pull up voltage should be between 2.0V to Vcc + 0.3V.A high outputindicates a transmitter fault caused by either the TX bias current or the TX output power exceeding thepreset alarm thresholds. A low output indicates normal operation. In the low state, the output is pulled to
<0.8V.
3. Laser output disabled on T >2.0V or open, enabled on T <0.8V.
4. Should be pulled up with 4.7kΩ- 10kΩ host board to a voltage between 2.0V and 3.6V. MOD_ABS pulls line low to indicate module is plugged in.
5. Internally pulled down per SFF-8431 Rev 4.1.
6. LOS is open collector output. It should be pulled up with 4.7kΩ- 10kΩ on host board to a voltagebetween 2.0V and 3.6V. Logic 0 indicates normal operation; logic 1 indicates loss of signal.
EEPROM Information and Management
 The SFP+ 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'scapabilities, standard interfaces, manufacturer, and other information.
Additionally, The SFP+ transceivers provide a unique enhanced digital diagnostic monitoring interface, whichallows 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 asophisticated system of alarm and warning flags, which alerts end-users when particular operatingparameters 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 interfaceat the 8 bit address 1010000X (A0h).The digital diagnostic monitoring interface makes use of the 8 bitaddress 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 TransceiverController (DDTC) inside the transceiver, which is accessed through a 2-wire serial interface. When the serialprotocol is activated, the serial clock signal (SCL, Mod Def 1) is generated by the host. The positive edgeclocks data into the SFP transceiver into those segments of the E2PROM that are not write-protected. Thenegative edge clocks data from the SFP transceiver. The serial data signal (SDA, Mod Def 2) is bi-directionalfor serial data transfer. The host uses SDA in conjunction with SCL to mark the start and end of serialprotocol activation. The memories are organized as a series of 8-bit data words that can be addressedindividually or sequentially.
Table 1. EEPROM Serial ID Memory Contents (A0h)
Data
Address
Length
(Byte)
Name of
Length
Description and Contents
Base ID Fields
0 1 Identifier Type of Serial transceiver (03h=SFP)
1 1 Reserved Extended identifier of type serial transceiver (04h)
2 1 Connector Code of optical connector type (07=LC)
3-10 8 Transceiver 10G Base-XX
11 1 Encoding 64B/66B
12 1 BR, Nominal Nominal baud rate, unit of 100Mbps
13-14 2 Reserved (0000h)
15 1 Length(9um) Link length supported for 9/125um fiber, units of 100m
16 1 Length(50um) Link length supported for 50/125um fiber, units of 10m
17 1 Length(62.5um) Link length supported for 62.5/125um fiber, units of 10m
18 1 Length(Copper) Link length supported for copper, units of meters
19 1 Reserved  
20-35 16 Vendor Name SFP+ vendor name
36 1 Reserved  
37-39 3 Vendor OUI SFP+ transceiver vendor OUI ID
40-55 16 Vendor PN Part Number
56-59 4 Vendor rev Revision level for part number
60-62 3 Reserved  
63 1 CCID Least significant byte of sum of data in address 0-62
Extended ID Fields
64-65 2 Option Indicates which optical SFP signals are implemented(001Ah
= LOS, TX_FAULT, TX_DISABLE all supported)
66 1 BR, max Upper bit rate margin, units of %
67 1 BR, min Lower bit rate margin, units of %
68-83 16 Vendor SN Serial number (ASCII)
84-91 8 Date code Manufacturing date code
92-94 3 Reserved  
95 1 CCEX Check code for the extended ID Fields (addresses 64 to 94)
Vendor Specific ID Fields
96-127 32 Readable Vendor specific data, read only
128-255 128 Reserved Reserved for SFF-8079
Digital Diagnostic Monitor Characteristics
Data Address Parameter
96-97 Transceiver Internal Temperature
98-99 VCC3 Internal Supply Voltage
100-101 Laser Bias Current
102-103 Tx Output Power
104-105 Rx Input Power
Regulatory Compliance
The SFP+ complies with international Electromagnetic Compatibility (EMC) and international safetyrequirements and standards (see details in Table following).
Feature Reference Performance
Electrostatic Discharge
(ESD) to the Electrical Pins
MIL-STD-883E Method 3015.7 (HBM) Class 1(>500V)
Electrostatic Discharge (ESD) to
the Simplex LC Receptacle
IEC 61000-4-2
GR-1089-CORE
Compatible with
standards
Electromagnetic Interference
(EMI)
FCC Part 15 Class B EN 55022 Class B
(CISPR 22A)
Compatible with
standards
Laser Eye Safety IEC/EN 60825-1, 2 Class 1 laser product
ROHS IEC 62321: 2013 Compatible with
standards
Ordering Information
Ordering P/Ns Description
LASX-T2733S-LR 10Gb/s BIDI SFP+ Transceiver 1270nmTx/1330nmRx 10KM DDM,
LC/UPC Receptacle, Commercial Temperature
LASX-T3327S-LR 10Gb/s BIDI SFP+ Transceiver 1330nmTx/1270nmRx 10KM DDM,
LC/UPC Receptacle, Commercial Temperature
LASX-T2733S-LRI 10Gb/s BIDI SFP+ Transceiver 1270nmTx/1330nmRx 10KM DDM,
LC/UPC Receptacle, Industrial Temperature
LASX-T3327S-LRI 10Gb/s BIDI SFP+ Transceiver 1330nmTx/1270nmRx 10KM DDM,
LC/UPC Receptacle, Industrial Temperature
Notes:
1. Default case operating temperature is 0 ~ +70°C. If you need -40 ~ +85°C products, add"I" after PartNumber.
2. If you need more customized services, please contact us.
Warnings
Handling Precautions:

This device is susceptible to damage as a result of electrostatic discharge (ESD). A static free environment ishighly recommended. Follow guidelines according to proper ESD procedures.
Laser Safety:
Radiation emitted by laser devices can be dangerous to human eyes. Avoid eye exposure to direct or indirectradiation.
Notice:
The information provided on this page contains the product target specifications which are subject to changewithout notice.
Check with Link-all Sales Office for product updates, changes in specifications, sample availability andproduction release dates.
Generic Compatible 10GB/S Bidi SFP+ Lr 10km Transceiver ModuleGeneric Compatible 10GB/S Bidi SFP+ Lr 10km Transceiver ModuleGeneric Compatible 10GB/S Bidi SFP+ Lr 10km Transceiver ModuleGeneric Compatible 10GB/S Bidi SFP+ Lr 10km Transceiver Module

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