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Finisar 10GBase-ER/EW XFP 40km

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1. Ac X 25 X X425 pm Beginning Of Life Transmitter Dispersion Penalty TDP 2 dB 800 ps nm Sidemode Supression ratio 30 Tx Jitter SONET 20kHz 80MHz 0 3 UI 2 Tx Jitter SONET 4MHz 80MHz 0 1 UI 2 Relative Intensity Noise RIN 130 dB Hz Receiver Receiver Sensitivity 9 95Gb s to 16 dBm 10 7Gb s Receiver Sensitivity 11 1Gb s to Rsens2 15 dBm 11 3Gb s Stressed Receiver Sensitivity Rsens2 11 3 dBm 11 1Gb s Maximum Input Power 1 dBm Optical Center Wavelength 1270 1600 nm Receiver Reflectance Rx 27 dB Path penalty at 40km up to 10 7Gb s 2 dB 3 LOS De Assert LOSp 22 dBm LOS Assert LOS 28 dBm LOS Hysteresis 0 5 dB Notes 1 Guaranteed minimum OMA for 9 9Gb s 11 3Gb s GR 253 CORE Issue 4 3 Dispersion penalty is measured in loopback using 18 ps nm km fiber SMF 28 Path penalty is 2dB at 10 7Gb s N Finisar Corporation 11 January 2011 Rev B1 Page 6 FTLX3612M3xx 40km DWDM Product Specification January 2011 Finisar V General Specifications Parameter Symbol Min Typ Max Units Ref Bit Rat BR 955 i Bit Error Ratio d Max Supported Link Length Lmax 40 km 1 Notes 1 SONET OC 192 IR 2 OC 192 IR 3 10GBASE ER EW 10G Fibre Channel ITU T G 709 10GBASE ER EW FEC 10G Fibre Channel FEC 2 Tested with a 2 1 PRBS VI Environmental Specifications The FTLX3612M3xx transceiver has an o
2. range The operating and diagnostics information is monitored and reported by a Digital Diagnostics Transceiver Controller DDTC inside the transceiver which is accessed through the 2 wire serial interface When the serial protocol is activated the serial clock signal SCL pin is generated by the host The positive edge clocks data into the XFP transceiver into those segments of its memory map that are not write protected The negative edge clocks data from the XFP transceiver The serial data signal SDA pin 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 The 2 wire serial interface provides sequential or random access to the 8 bit parameters addressed from 000h to the maximum address of the memory For more detailed information including memory map definitions please see the XFP MSA documentation Finisar Corporation 11 January 2011 Rev Page 8 Finisar FTLX3612M3xx 40km DWDM XFP Product Specification January 2011 IX Mechanical Specifications Finisar s transceivers are compliant with the dimensions defined by the XFP Multi Sourcing Agreement MSA 22 15 77 95 Finisar Corporation 11 January 2011 cH B
3. P Mop ABS 12 19 GND SDA 11 20 vcc2 SCL 10 21 DOWN VCC3 p 9 22 2 e TOWARD 54 8 vecs _ TOWARD ASIC ax BEZzEL GND 24 REFCLK P 5 mH 25 REFCLK TX DIS ps 5 26 GND a INTERRUPT 4 27 GND 4 3 28 TD _ VEES mmm 2 29 TD GND 1 30 GND Diagram of Host Board Connector Block Pin Numbers and Names II Absolute Maximum Ratings Parameter Symbol Min Typ Max Unit Ref Maximum Supply Voltage 1 Vcc3 0 5 4 0 V Maximum Supply Voltage 2 5 0 5 6 0 Storage Temperature Ts 40 85 Case Operating Temperature Top 5 70 C Finisar Corporation 11 January 2011 Rev Page 4 FTLX3612M3xx 40km DWDM XFP Product Specification January 2011 Finisar Electrical Characteristics Top 5 to 70 Vccs 4 75 to 5 25 Volts Parameter Symbol Min Typ Max Unit Ref Main Supply Voltage 5 4 75 5 25 Supply Voltage 2 Vcc3 3 13 3 45 V Supply Current Vcc5 supply Icc5 350 mA Supply Current Vcc3 supply Icc3 750 mA Module total power P 3 5 W 1 Transmitter Input differential impedance Ri 100 2 Differential data input swing Vin pp 120 820 mV Transmit Disable Voltage Vp 2 0 Vcc V 3 Transmit Enable Voltage VEn GND GND 0 8 Transmit Disable Assert Time 10 us Receiver Differential data output sw
4. pu 7 00 1 d 1 3 i 30 t N A V 09 1 95 94069 1414 3 2 4310 SWF 16 00 5 S E pour pe aS S MADE IN MALAYSIA amp 20 85 l 39 00 _ Transceiver dimensions are mm Rev Page 9 FTLX3612M3xx 40km DWDM Product Specification January 2011 X Layout and Bezel Recommendations 22 1 CROSS HAT COMPONENT 5 MIN CHED AREA DEHOTES HG TRACE CHASSIS GROUND N DATUM AND ESTABLISHED BY CUSTOMER S 5 A DATUM 18 TOP SURFACE GF HOST BOARD 3 INDICATED SURFACES TO BE CONDUCTIVE ANG CONNECTED CHASSIS GROUND t CUT 254 SESSA Finisar Fie EE e _ AES SSR Kw THIS AREA GENOTE 3 6 KEEP QUT TRACES ALLOWED 3 2 MIN PLO PM amp 5 MAX 5 2 MIN XFP Host Board Mechanical Layout dimensions are in mm Finisar Corporation 11 January 2011 Rev SEE DETAIL Z SSS PIN IF 7 E E ER 7 ni insir aa ZA 3 26 16 ALK LS EN HOLES Page 10 FTLX3612M3xx 40km DWDM Product Specification January 2011 Finisar 1 PAN CENTERL
5. 3xx 40km DWDM Product Specification January 2011 Finisar FTLX3612M315 FTLX3612M320 FTLX3612M322 FTLX3612M327 FTLX3612M332 FTLX3612M334 FTLX3612M339 FTLX3612M344 FTLX3612M346 FTLX3612M351 FTLX3612M356 FTLX3612M358 60 FILX3612M560 190 1595 Note gt Please contact your Finisar representative for non standard channels indicated with an 4 Finisar Corporation 11 January 2011 Rev Page 2 FTLX3612M3xx 40km DWDM XFP Product Specification January 2011 Finisar I Pin Descriptions Pin Logic Symbol Name Description Ref 1 GND Module Ground 1 2 5 Optional 5 2 Power Supply Not required 3 LVTTL I Mod Desel Module De select When held low allows the module to respond to 2 wire serial interface commands 4 LVTTL O Interrupt bar Indicates presence of an important condition 2 Interrupt which can be read over the serial 2 wire interface 5 LVTTL I TX_DIS Transmitter Disable Transmitter laser source turned off 6 5 5 Power Supply 7 GND Module Ground 1 8 3 3 Power Supply 9 VCC3 3 3V Power Supply 10 LVTTL I SCL Serial 2 wire interface clock 2 11 LVTTL SDA Serial 2 wire interface data line 2 12 LVTTL O Mod Abs Module Absent Indicates module is not present Grounded 2 in the module 13 LVTTL O Mod NR Module Not Ready Finisar defines it as a logi
6. Finisar Product Specification 40km Multi Rate DWDM Optical Transceiver FTLX3612M3xx PRODUCT FEATURES e Supports 9 95Gb s to 11 3Gb s bit rates e 100GHz channel spacing on the ITU C band Hot pluggable XFP footprint 9 RoHS 6 Compliant lead free R Temperature stabilized 1550nm EML transmitter e Supports 300ps nm to 800ps nm APPLICATIONS e 3 3V and 5V power supplies e SONET OC 192 IR 2 SDH STM 64 2 Duplex LC connector SONET OC 192 IR 3 Power dissipation 3 5W a e SD e Built in digital diagnostic functions 10GBASE ER EW Commercial temperature range IOGBASE ER EW FEC e 40 106 Fibre Channel Reference clock not required 40km 10G Fibre Channel FEC Finisar s 40km DWDM FTLX3612M3xx Small Form Factor 10Gb s XFP transceivers comply with the current XFP Multi Source Agreement MSA Specification They also comply with SONET OC 192 IR 2 192 IR 3 SDH STM S 64 2b STM S 64 3b as well as with 10 Gigabit Ethernet IOGBASE ER EW per IEEE 802 3ae and 40km 10G Fibre Channel applications Digital diagnostics functions are available via a 2 wire serial interface as specified in the XFP MSA The transceiver is RoHS compliant and lead free per Directive 2002 95 and Finisar Application Note AN 2038 PRODUCT SELECTION FTLX3612M3xx xx 100GHz ITU Grid wavelength see next page Finisar Corporation 11 January 2011 Rev Page 1 FTLX3612M
7. INE RECTANGULAR 3 1 AN 01 5540 05 x Ke 2 ET x 4a T Nj c E 18 3 UX oF 15 3 UX T Ls 2 Rs 4 1 d T 16 OY RAN J M 9 90 03 60 08S Re Le 30 PLC 20 05 55350 05 DETAIL z SCALE 8 1 k XFP Detail Host Board Mechanical Layout dimensions are in mm Finisar Corporation 1 1 January 2011 Rev Page 11 FTLX3612M3xx 40km DWDM XFP Product Specification January 2011 Finisar Mes HEZEL OPENING ABOVE HOST HOAHD m 18 50 4 FOR PCI RECOMMENDED DIMENSION 1S 0 AS MINIMUM PITCH ILLUSTRATED ES SEE SECTION B 8 FOR CALCULATION DF GASKET THICKNESS AFTER COMPRESSION XFP Recommended Bezel Design dimensions are in mm Finisar Corporation 1 1 January 2011 Rev Page 12 FTLX3612M3xx 40km DWDM Product Specification January 2011 Finisar XI References l 10 Gigabit Small Form Factor Pluggable Module XFP Multi Source Agreement MSA Rev 4 5 August 2005 Documentation is currently available at http www xfpmsa org 2 Application Note AN 2035 Digital Diagnostic Monitoring Interface for Optical Transceivers Finisar Corporation December 2003 3 Directiv
8. cal OR 2 between LOS and Loss of Lock in TX RX 14 LVTTL O RX LOS Receiver Loss of Signal indicator 2 15 GND Module Ground 1 16 GND Module Ground 1 17 CML O RD Receiver inverted data output 18 CML O RD Receiver non inverted data output 19 GND Module Ground 1 20 VCC2 1 8V Power Supply Not Required 21 LVTTL I P_Down RST Power Down When high places the module in the low power stand by mode and on the falling edge of P Down initiates a module reset Reset The falling edge initiates a complete reset of the module including the 2 wire serial interface equivalent to a power cycle 22 VCC2 1 8V Power Supply Not Required 23 GND Module Ground 1 24 PECL I RefCLK Reference Clock non inverted input AC coupled on the host board Not required 25 PECL I RefCLK Reference Clock inverted input AC coupled on the host board Not required 26 GND Module Ground 1 27 GND Module Ground 1 28 CML I TD Transmitter inverted data input 29 CML I TD Transmitter non inverted data input 30 GND Module Ground 1 Notes 1 Module circuit ground is isolated from module chassis ground within the module 2 Open collector should be pulled up with 4 7k 10kohms on host board to a voltage between 3 15V Finisar Corporation 11 January 2011 and 3 6V Rev Bl Page 3 FTLX3612M3xx 40km DWDM Product Specification January 2011 Finisar GND 15 16 10 14 13 18 RD
9. e 2002 95 of the European Council Parliament and of the Council the restriction of the use of certain hazardous substances in electrical and electronic equipment January 27 2003 4 Application Note AN 2038 Finisar Implementation Of RoHS Compliant Transceivers Finisar Corporation January 21 2005 XII Revision History Revision Date Description Al 5 26 2010 e Document created 1 11 2011 Removed Preliminary from datasheet XIII For More Information Finisar Corporation 1389 Moffett Park Drive Sunnyvale CA 94089 1133 Tel 1 408 548 1000 Fax 1 408 541 6138 sales finisar com www finisar com Finisar Corporation 11 January 2011 Rev Page 13
10. ing Vout pp 340 650 850 4 Data output rise time t 38 ps 5 Data output fall time tr 38 ps 5 LOS Fault Vios fat 0 5 Vecyost 6 LOS Normal VLOS norm GND GND 0 5 V 6 Power Supply Rejection PSR See Note 6 below 7 Notes 1 Maximum total power value is specified across the full temperature and voltage range 2 After internal AC coupling 3 Oropencircuit 4 Into 100 ohms differential termination 5 20 80 96 6 Loss Of Signal is open collector to be pulled up with a 4 7k 10kohm resistor to 3 15 3 6V Logic 0 indicates normal operation logic 1 indicates no signal detected 7 Per Section 2 7 1 in the XFP MSA Specification Finisar Corporation 11 January 2011 Rev Page 5 FTLX3612M3xx 40km DWDM XFP Product Specification January 2011 Finisar IV Optical Characteristics Top 5 to 70 C Vccs 4 75 to 5 25 Volts Please note that the Transmitter of the FTLX3612M3xx becomes operational within 5 seconds of power up This is due to the time required for the EML to reach its optimum operating temperature Parameter Symbol Min Typ Max Unit Ref Transmitter Output Opt Pwr 9 125 SMF Pour 1 2 dBm Optical Extinction Ratio ER 8 2 dB Optical Modulation Amplitude OMA 2 1 1 Center Wavelength Spacing 100 GHz Transmitter Center Wavelength End 100 X X 100 pm Of Life Transmitter Center Wavelength
11. perating case temperature range from 0 C to 70 Parameter Symbol Min Typ Max Units Ref Case Operating Temperature Storage Temperature VII Regulatory Compliance Finisar transceivers are Class 1 Laser Products They are certified per the following standards Feature Agency Standard Certificate Number Laser Eye FDA CDRH CDRH 21 CFR 1040 and Laser Notice 50 9210176 77 Safety Laser Eye TUV EN 60825 1 1994 A11 1996 A2 2001 72101686 Safety IEC 60825 1 1993 A1 1997 A2 2001 IEC 60825 2 2000 Edition 2 Electrical TUV EN 60950 72101686 Safety Electrical UL CSA CLASS 3862 07 2283290 Safety CLASS 3862 87 Copies of the referenced certificates are available at Finisar Corporation upon request Finisar Corporation 11 January 2011 Rev Page 7 FTLX3612M3xx 40km DWDM Product Specification January 2011 Finisar VIII Digital Diagnostics Functions As defined by MSA Finisar transceivers provide digital diagnostic functions via a 2 wire serial interface which allows real time access to the following operating parameters Transceiver temperature e Laser bias current Transmitted optical power Received optical power Transceiver supply voltage It also provides a sophisticated system of alarm and warning flags which may be used to alert end users when particular operating parameters are outside of a factory set normal

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