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Finisar FTLX1341E2 network transceiver module

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1. Finisar Corporation October 2008 Rev B Page 2 FTLX1341E2 Product Specification October 2008 Finisar Receive Functions i eo Reserved Reserved For Future Use RX LANE 0 AC coupled Module XAUI Output Lane 0 RX LANE 1 differential Module XAUI Output Lane 1 RX LANE 2 48 Module XAUI Output Lane 2 o 51 Module XAU Ompmt Lane 3 __ RX LANE 3 51 Module XAUI Output Lane 3 DC Power 00000000 0 0 DC Power GND 0V DC 1 2 3 33 34 Ground connection for signal ground 35 36 37 40 on the module 43 46 49 52 53 54 57 60 63 66 69 70 APS 12V 7 8 28 29 Input Adaptive Power Supply _ ARSE Rs pti APS input inside transponder APS SET Feedback input from APS Connected to GND through a 1180Q resistor inside the A UDCS Nominal por pe Nominal Reserved J26 Reserved for APD Reeved 13 Resmed Finisar Corporation October 2008 Rev B Page 3 FTLX1341E2 Product Specification October 2008 Electrical Pad Layout A pg lt Bezel NI RESERVED RESERVED GND TX LANES TX TANES GND TX LANEZ TX LANE2 GND TX LANET TX LANET GND TX LANEO TXUANEO GND GND RESERVED RESET
2. Transponder Total Power Consumption Supply Voltage 5 0 V Voes 475 50 525 V Supply Curent 49 m amp Supply Current 3 3V Kc 830 mA Supply Voltage APS Vecas 1152 12 1248 V Supply Current APS em so m P Measured at reference thermal location see Figure 3 See also Environmental Performance Electrical DC Characteristics Vccs 4 75 V to 5 25 V 3 14 V to 3 47 V Vcc aps 1 152 V to 1 248 V to 70 C 1 2 V CMOS 1 8 V CMOS Compatible I O DC Characteristics PRTAD RESET TX_ONOFF External Pull up Resistor for Open Drain Rp 10 22 KQ Heh voae Ga 1 E 1 Output Low vu 5 Ww 05 _ Input High Voltage Va 08 15 V mutton Vollage vn O 0 Input Pull down Current a 20 120 pA MDIO I O Characteristics MDIO MDC MDIODataHoldTime 10 ts _ Delay from MDC Rising Edge to MDIO a ns Data Change Clock Rate fmx SM OupuLowVolag 03 oa V Output Low Current l 20 mA Input High Voltage VW 084 12 15 V Input Low Voltage Ww 03 J 036 V Pull up Supply Voltage 084 12 15 V Input Capacitance Cw 10
3. VEND SPECIFIC TX ON OFF MODDETECT VEND SPECIFIC VEND SPECIFIC MDG Finisar LONO PATADA RX LANES PRTADS RX LANES l PRTADZ GND PATADI RAX LANE2 PHTAD RX LANE2e VEND SPECIFIC GND APS SET AX LANE RESERVED LRXTANE1 0 APS SENSE GND APS AX LANEO AX LANEO GND RESERVED RESERVED J GND AW LOND Bottom of Transceiver PCB as viewed through top Top of Transceiver PCB Figure 1 X2 Transponder Electrical Pad Layout II Absolute Maximum Ratings Limit Values Parameter Symbol min max Unit T 44 85 Supply Valiage 50V 9 6 SuplyVolage33V 0 4 V SuppyVolageAPS Ve 0 J 15 V Static Discharge Voltage All Pin ST 50 V Average Receive Optical Power Riema 15 dBm Notes 1 Non condensing 2 HBM Stresses in excess of the absolute maximum ratings can cause permanent damage to the device Finisar Corporation October 2008 Rev B Page 4 FTLX1341E2 Product Specification October 2008 Finisar III Electrical Characteristics Recommended Operating Conditions Parameter Symbol Symbol Operating Case Temperature Case Temperature
4. pF Load Capacitance Gow 40 pF External Pull up Resistance Row 20 Q Power On Reset and TX ONOFF According to XENPAK MSA Issue 3 0 Draft 4 0 2002 9 9 Characteristics P For 1 8 V CMOS V 1 65 V min Va 0 15 max Vi 7 1 17 V min V 0 63 V max 2 Roull up 10 to 1 8 V 9 Y 18V in AC coupled a loy 100 uA Finisar Corporation October 2008 Rev B Page 5 FTLX1341E2 Product Specification October 2008 Finisar Electrical AC Characteristics Vecs 4 75 V to 5 25 V Vecs 3 14 V to 3 47 V Vcc 1 152 V to 1 248 Tc 0 C to 70 C sms i T gp Tom Uto Input AC Characteristics TXLANE 0 3 Baud Rate R XAUIIN Gbit s Ethernet 3 125 Baud Rate Tolerance Rro 100 100 ppm Differential Input Impedance 80 10 1020 Q Differential ReturnLoss 10 dB Input Differential Skew teww oo 75 ps Jitter Amplitude Tolerance pT 06 Output AC Characteristics RXLANE 0 3 Baud Rate R XAUIOUT Gbit s Ethernet 3 125 Baud Rate Variation 100 100 ppm Output Differential Impedance Zo 80 10 w Differential Output Return Loss 151 10 dB D 100 MHz to 2 5 GHz 2 At crossing point Per IEEE Std 802 3ae IV Optical Chara
5. 3aq 2006 2 Optical eye mask per IEEE802 3aq 2006 TWDP is calculated using the Matlab code provided in clause 68 6 6 2 of IEEE802 3aq 2006 Receiver overload specified in OMA and under the worst comprehensive stressed condition V General Specifications Optical Interface Standard Specifications Fiber 850nm OFL Bandwidth Symbol FDDI FDDI 160MHz km OM1200MHz km m ae 400MHz km 50um OM SUMMA OM2500MHz km Lmax a OM32000MHzkm D Operating range as defined by IEEE standards Longer reach possible depending upon link implementation Finisar Corporation October 2008 Rev B Page 7 Notes FTLX1341E2 Product Specification October 2008 Finisar Environmental Performance Operating case temperature 0 C to 70 C Operating humidity 0 95 RH non condensing Fibers and Connectors The transponder has SC receptacles for both Tx and Rx The transponder is designed for multimode SC cables 0 polished endface PC 70 pin Connector The module interface connector is a 70 pin printed circuit board edge connection with a 0 5 mm pitch The appropriate mating connector for the customer PCB 1s a 70 pin SMT dual row right angled edge connector 0 5 mm pitch Tyco Electronics part number 1367337 1 Molex part number 74441 0003 or equivalent Rail Requirement The X2 rail system required to mount the X2 module is fully defined by the MSA Tyco Electronics part number
6. 0 0600060 a SX e 36 0 Co oS Se Cx XX XXX gt 52522 X OX X 24 2X 2 X 9 2 Se SSS y a 8 r m m r PULL SLEEVE EXTRACTION ZONE REFERENCE POINT FOR TEMPERATURE SENSOR DIMENSIONS IN MM Figure 3 X2 Mechanical Dimensions IX References The following references are provided for informational purposes only The parameters and operational behavior outlined in this specification describe the complete functionality of the 10G Transponder Contact Finisar for any items concerning the operational characteristics of this device 1 IEEE 802 3ae 2002 August 30 2002 2 IEEE Std 802 3aq 2006 3 X2 MSA Rev 2 06 January 30 2003 X 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 October 2008 Rev B Page 10
7. 1367608 1 designed for belly to belly applications and 1367610 1 designed for single sided board mount to fit into the standard host PCB footprint or equivalent For further details please refer to vendor supplied information Aqueous Wash Finisar X2 transponders are neither solderable nor aqueous washable and are not intended for these processes VI Regulatory Compliance Standard ESD EIA JESD22 A114 B Class la gt 500 V Electrostatic Discharge to the MIL STD 883D Electrical Pins HBM Method 3015 7 Immunity mE EN 61000 4 2 Discharges ranging from 2 kV to 25 kV to the Against Electrostatic Discharge IEC 61000 4 2 front end faceplate receptacle cause no damage ESD to the Module Receptacle to module under recommended conditions Immunity EN 61000 4 3 With field strength of 10 V m noise frequency Against Radio Frequency IEC 61000 4 3 ranges from 10 MHz to 2 GHz No effect on Electromagnetic Field module performance between the specification limits Emission FCC 47 CFR Noise frequency range Electromagnetic Interference Part 15 Class B 30 MHz to 40 GHz EMI EN 55022 Class B Radiated emission does not exceed specified CISPR 22 limits when measured with module inside a shielding enclosure with a MSA conforming cutout Finisar Corporation October 2008 Rev B Page 8 FTLX1341E2 Product Specification October 2008 Finisar Eye Safety Finisar FTLX1341E2 transponders are Class 1 Laser Prod
8. Finisar Product Specification RoHS 6 Compliant 10GBASE LRM X2 Transponder FTLX1341E2 PRODUCT FEATURES Hot pluggable X2 MSA form factor Total power consumption 4 0 W maximum RoHS 6 compliant lead free Temperature range 0 C to 70 C Transmission distance up to 220m Uncooled 1310 nm directly modulated Fabry Perot FP laser Built In Advanced Electronic Dispersion Compensation EDC SC connector multimode fiber Full duplex transmission mode Digital Optics Monitoring DOM Power supply 45 0 V 3 3 V Adaptable Power Supply APS 1 2 V XAUI electrical interface 4x 3 125 Gb s Ethernet Management and control via MDIO 2 wire bus 70 pin connector Separated signal chassis ground APPLICATIONS Mid Pak module variance for IEEE 802 3aq 2006 front panel mounting De latch mechanism with low extraction force 10 Gb s Ethernet transmission on legacy multimode fiber The Finisar FTLX1341E2 transponder incorporates Electronic Dispersion Compensation EDC which provides correction for the severe modal dispersion that may occur during propagation through links up to 220m on legacy installed FDDI multimode fiber The EDC device incorporates a Feed Forward Equalizer FFE and a Decision Feedback Equalizer DFE The EDC also contains sophisticated clock recovery architecture for extracting a robust clock from extremely distorted signals PRODUCT SELECTION FTLX1341E2 Ma
9. cteristics RMS Spectral Width Mask bs M tT Tr RMS spectral width nm ES N E a a el E ede EN EN EN EN EN EN EN EN EN EN NENNEN ae See I 1260 1280 1300 1320 1340 1360 Wavelength nm Figure 2 Transmitter Maximum RMS Spectral Width Finisar Corporation October 2008 Rev B Page 6 FTLX1341E2 Product Specification October 2008 Finisar Optical Specifications Symbol Min Transmitter Optical Modulation Amplitude OMA 45 15 dBm Average Launch Power Pag 65 05 dBm Peak Launch Power Pw 3 dBm ee ee 1260nm n See Fi Spectral Width 1260nm 1300nm Ass 1300nm 1355nm Opica Extinction Ratio I R d IL evem Penalty meo a A canoe m E Tramsmitter Reflectance o Z o 2 dB Receiver Osee in OMA Comprehensive Stressed Receiver dBm itivi MA 10 312 Sensitivity OMA 10 3125Gb s Poser ae lt 5 m 120 1355 m p I 23 Signal Detect DeassertLevel Psp 144 Bm X Signal Detect Assert Level 250 __ i dBm 05 15 dB Notes D Maximum RMS spectral width as specified by Figure 68 3 in IEEE802
10. ucts They are certified per the following standards Feature Agency Standard Certificate Number r3 FDA CDRH CDRH 21 CFR 1040 and Laser Notice 50 9210176 77 Laser Eye EN 60825 1 1994 11 1996 2 2001 Safety TUV IEC 60825 1 1993 A1 1997 A2 2001 R 72082131 IEC 60825 2 2000 Edition 2 TUV EN 60950 R 72082131 Safety Electrical CLASS 3862 07 UL CSA CLASS 3862 87 1439230 Copies of the referenced certificates are available from Finisar Corporation upon request VII DOM Parameters Parameter min typ max Unit Transponder Temperature Monitor Accuracy 5 5 Laser Bias Current Monitor Accuracy J10 0 Transmit Power Monitor Accuracy 3 3 dB Receive Power Monitor Accuracy l 3 73 dB P 0 to 70 C case temperature 0 to 12 5 mA d 8 2 dBm to 40 5 dBm VIII Mechanical Specifications Parameter Symbol Uni min typ max Module Retention Force hich sreng Fran 30 N Module Insertion Force Cm 4 N Module Extraction Foree with Kick out Em 6 N Module Extraction Force withoutkick out Fa 25 xN Pull Sleeve front face color 1s orange Finisar Corporation October 2008 Rev B Page 9 FTLX1341E2 Product Specification October 2008 Finisar Package Outline UNCOMPRESSED EMI GASKET DF 00000000
11. ximum reach as defined by IEEE Longer reach possible depending upon link implementation Finisar Corporation October 2008 Rev B Page FTLX1341E2 Product Specification October 2008 Finisar I Pin Description Signal Name Management and Monitoring Ports MDIO Open Drain I O 17 Management Data I O Requires output external 10 22 kQ pull up to the 1 2V CMOS APS on host input CMOS CMOS CMOS CMOS CMOS CMOS LASI Open Drain Link Alarm Status Interrupt Output Open Drain Compatible Output with 10 20 kQ pull up on host Logic high Normal Operation Logic low Status Flag Triggered RESET 1 2 V I 10 Reset Input CMOS Open Drain Compatible Input with 22 kQ pull up to APS internal to transponder Logic high Normal Operation Logic low RESET Vendor Specific 11 15 16 24 Vendor Specific Pins Leave unconnected when not used TX ON OFF 1 2 V I 12 TX ON OFF Input CMOS Open Drain Compatible Input with 22 kQ pull up to APS internal to transponder Logic high Transmitter On Logic low Transmitter Off MOD DETECT 14 Module Detect Pulled low inside transponder through a 1 KQ resistor to Ground Transmit Functions Ex L1 ee Reserved I 67 Reserved For Future Use TX LANE 3 AC coupled I 65 Module XAUI Input Lane 3 Internally biased I 64 Module XAUI Input Lane 3 TX LANE 2 differential I 62 Module XAUI Input Lane 2 TX LANE 1 I 58 Module XAUI Input Lane 1 I 25 Module XAUI Input Lane 0

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