Datasheet. 10G CWDM SFP+ 1270nm~1450nm 40km Transceiver for SMF CWDM-SFP10G-40S. Features. Application

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10G CWDM SFP+ 1270nm~1450nm 40km Transceiver for SMF CWDM-SFP10G-40S Features Hot-Pluggable SFP+ Footprint 10-Wavelengths CWDM DFB Transmitter from 1270nm to 1450nm, with step 20nm 14dB Power Budget Duplex LC connector Power Dissipation <1.2W Build-in digital diagnostic functions, including optical power monitoring Commercial temperature range: 0 C to 70 C Compliant with SFP+ MSA Specification SFF-8431 Compliant with SFF-8472 MSA Application 10GBASE-ER/EW 10G Ethernet 10GBASE-ER at 10.31Gbps 10GBASE-EW at 9.95Gbps OBSAI rates 6.144 Gb/s, 3.072 Gb/s, 1.536 Gb/s, 0.768Gb/s CPRI rates 9.830 Gb/s,7.373Gb/s, 6.144 Gb/s, 4.915 Gb/s, 2.458 Gb/s, 1.229 Gb/s, 0.614Gb/s Other optical links 1

Description The CWDM-SFP10G-40S series optical transceiver is designed for fiber communications application such as 10G Ethernet, which fully compliant with the specification of SFP+ MSA SFF-8431. This module is designed for single mode fiber and operates at a nominal wavelength of CWDM wavelength. There are ten center wavelengths available from 1270nm to 1450nm, with each step 20nm. A guaranteed optical link budget of 14 db is offered. The module is with the SFP+ connector to allow hot plug capability. Single 3.3V power supply is needed. The optical output can be disabled by LVTTL logic high-level input of TX_DIS. Loss of signal (RX_LOS) output is provided to indicate the loss of an input optical signal of receiver. This module provides digital diagnostic functions via a 2-wire serial interface as defined by the SFF-8472 specification. Product Specifications I. General Product Characteristics Parameter Symbol Min Typ. Max Units Ref. Module Form Factor BR 9.95 10.5 Gb/s 1 Number of Lanes BER 10-12 2 Maximum Aggregate Data Rate L max 40 km Notes: 1. 10GBASE-ER, 10GBASE-EW, 1200-SM-LL-L 10GFC. 2. Tested with a PRBS 2 31-1 test pattern. 2

Copyright 2009-2015 Fiberstore Optical Communication System CWDM Wavelength 18 Wavelengths from 1270nm to 1610nm, each step 20nm. Band Nomenclature Wavelength(nm) Min Typ. Max A 1264 1270 1277.5 O-band Original B 1284 1290 1297.5 C 1304 1310 1317.5 D 1324 1330 1337.5 E 1344 1350 1357.5 F 1364 1370 1377.5 G 1384 1390 1397.5 E-band Extended H 1404 1410 1417.5 I 1424 1430 1437.5 J 1444 1450 1457.5 K 1464 1470 1477.5 S-band Short Wavelength L 1484 1490 1497.5 M 1504 1510 1517.5 N 1524 1530 1537.5 C-band Conventional O 1544 1550 1557.5 L-band Long Wavelength P 1564 1570 1577.5 Q 1584 1590 1597.5 R 1604 1610 1617.5 Page +86 3 +86 of (755) 4 (755) 8300 8300 3611 3611 sales@fiberstore.com +86 sales@fs.com (755) 8300 3611 3 www.fiberstore.com sales@fiberstore.com FSCOM www.fiberstore.com

Copyright 2009-2015 Fiberstore Optical Communication System II. Absolute Maximum Ratings Parameter Symbol Min Typ. Max Unit Maximum Supply Voltage 1 Vcc -0.5 4.0 V Storage Temperature Ts -40 85 C Case Operating Temperature Tc 0 70 C Supply Voltage Vcc 3.13 3.3 3.45 V Supply Current Icc (0 C to 70 C) 350 ma III. Electrical Characteristics Parameter Symbol Min Typ. Max Unit Notes Transmitter CML Inputs(Differential) Vin 150 1200 mvpp 1 Input Impedance (Differential) TX_DISABLE Input Voltage - High TX_DISABLE Input Voltage - Low TX_FAULT Output Voltage - High TX_FAULT Output Voltage - Low Zin 85 100 115 ohm 2 Vcc+0.3 V 0 0.8 V 2 Vcc+0.3 V 0 0.5 V Page +86 4 +86 of (755) 4(755) 8300 8300 3611 3611 sales@fiberstore.com +86 sales@fs.com (755) 8300 3611 4 www.fiberstore.com sales@fiberstore.com FS.COM Page 4 www.fiberstore.com of 6

Receiver CML Outputs (Differential) Vout 350 700 mvpp 1 Output Impedance (Differential) Zout 85 100 115 ohm RX_LOS Output Voltage - High 2 Vcc+0.3 V RX_LOS Output Voltage - Low 0 0.8 V MOD_DEF ( 2:0 ) Notes: 1. After internal AC coupling. 2. Reference the SFF-8472 MSA. VoH 2.5 V VoL 0 0.5 V 2 IV. Optical Characteristics Parameter Symbol Min Typ. Max Unit Notes Transmitter Optical Wavelength λ λ C -6 λ C λ C +7.5 nm 2-20dB Spectrum Width Δλ 1 nm Side Mode Suppression Ratio SMSR 30 db Output Opt. Pwr: 9/125 SMF P out -1 +4 dbm 1 Optical Extinction Ratio ER 3.5 db Average Launch Power of OFF Transmitter P OFF -30 dbm 5

Signaling Speed per Lane 10.5 GBd 1 Transmitter Dispersion Penalty TDP 2 db Receiver Receiver Sensitivity @ 10.5Gb/s P min -15 dbm 3 Maximum Input Power P max -0.5 dbm Optical Center Wavelength λ 1260 1420 nm Receiver Reflectance Rrf -27 db LOS De-Assert LOS D -16 dbm LOS Assert LOS A -28 dbm LOS Hysteresis 1 db Notes: 1. Output power is coupled into a 9/125µm SMF. 2. ITU-T G.694.2 CWDM wavelength from 1270nm to 1450nm, each step 20nm. 3. Average received power; BER less than 1E-12 and PRBS 2 31-1 test pattern. 6

V. Pin Description Towad Host BOTTOM OF BOARD AS VIEWED FROM TOP THROUGH BOARD TOP VIEW OF BOARD TOP VIEW OF BOARD Pin Num. Name Function Plug Seq. Notes 1 VeeT Transmitter Ground 1 Note 5 2 TX Fault Transmitter Fault Indication 3 Note 1 3 TX Disable Transmitter Disable 3 4 SDA Module Definition 2 3 7 Note 2, Module disables on high or open 2-wire Serial Interface Data Line.

5 SCL Module Definition 1 3 2-wire Serial Interface Clock. 6 MOD-ABS Module Definition 0 3 Note 3 7 RS0 RX Rate Select (LVTTL). 3 Rate Select 0, optionally controls SFP+ module receiver. This pin is pulled low to VeeT with a >30K resistor. 8 LOS Loss of Signal 3 Note 4 9 RS1 TX Rate Select (LVTTL). 1 Rate Select 1, optionally controls SFP+ module transmitter. This pin is pulled low to VeeT with a >30K resistor. 10 VeeR Receiver Ground 1 Note 5 11 VeeR Receiver Ground 1 Note 5 12 RD- Inv. Received Data Out 3 Note 6 13 RD+ Received Data Out 3 Note 6 14 VeeR Receiver Ground 1 Note 5 15 VccR Receiver Power 2 3.3V ± 5%, Note 7 16 VccT Transmitter Power 2 3.3V ± 5%, Note 7 17 VeeT Transmitter Ground 1 Note 5 18 TD+ Transmit Data In 3 Note 8 19 TD- Inv. Transmit Data In 3 Note 8 20 VeeT Transmitter Ground 1 Note 5 Notes: 1. TX Fault is an open collector/drain output, which should be pulled up with a 4.7K 10KΩ resistor on the host board. Pull up voltage between 2.0V and VccT/R+0.3V. When high, output indicates a laser fault of some kind. Low indicates normal operation. In the low state, the output will be pulled to < 0.8V. 8

2. TX disable is an input that is used to shut down the transmitter optical output. It is pulled up within the module with a 4.7K~10 KΩ resistor. Its states are: Low (0 0.8V): Transmitter on (>0.8, < 2.0V): Undefined High (2.0 3.465V): Transmitter Disabled Open: Transmitter Disabled 3. Module Absent, connected to VeeT or VeeR in the module. 4. LOS (Loss of Signal) is an open collector/drain output, which should be pulled up with a 4.7K 10 KΩ resistor on host board. Pull up voltage between 2.0V and VccT/R+0.3V. When high, this output indicates the received optical power is below the worst-case receiver sensitivity (as defined by the standard in use). Low indicates normal operation. In the low state, the output will be pulled to < 0.8V. 5. VeeR and VeeT may be internally connected within the SFP+ module. 6. RD-/+: These are the differential receiver outputs. They are AC coupled 100Ω differential lines which should be terminated with 100Ω (differential) at the user SERDES. The AC coupling is done inside the module and is thus not required on the host board. The voltage swing on these lines will be between 370 and 700 mv differential (185 350mV single ended) when properly terminated. 7. VccR and VccT are the receiver and transmitter power supplies. They are defined as 3.3V ±5% at the SFP+ connector pin. Maximum supply current is 350mA. Recommended host board power supply filtering is shown below. Inductors with DC resistance of less than 1 ohm should be used in order to maintain the required voltage at the SFP+ input pin with 3.3V supply voltage. When the recommended supply filtering network is used, hot plugging of the SFP+ transceiver module will result in an inrush current of no more than 30mA greater than the steady state value. VccR and VccT may be internally connected within the SFP+ transceiver module. 8. TD-/+: These are the differential transmitter inputs. They are AC-coupled, differential lines with 100Ω differential termination inside the module. The AC coupling is done inside the module and is thus not required on the host board. The inputs will accept differential swings of 150 1200 mv (75 600mV single-ended), though it is recommended that values between 150 and 1200 mv differential (75 600mV single-ended) be used for best EMI performance. 9

VI. Mechanical Specifications 10

Test Center FS.COM transceivers are tested to ensure connectivity and compatibility in our test center before shipped out. FS.COM test center is supported by a variety of mainstream original brand switches and groups of professional staff, helping our customers make the most efficient use of our products in their systems, network designs and deployments. The original switches could be found nowhere but at FS.COM test center, eg: Juniper MX960 & EX 4300 series, Cisco Nexus 9396PX & Cisco ASR 9000 Series, HP 5900 Series & HP 5406R ZL2 V3(J9996A), Arista 7050S-64, Brocade ICX7750-26Q & ICX6610-48, Avaya VSP 7000 MDA 2, etc. Cisco ASR 9000 Series(A9K-MPA-1X40GE) ARISTA 7050S-64(DCS-7050S-64) Juniper MX960 Brocade ICX 7750-26Q Extreme Networks X670V VIM-40G4X Mellanox M3601Q Dell N4032F HP 5406R ZL2 V3(J9996A) AVAYA 7024XLS(7002QQ-MDA) 11

Optical Communication System Test Assured Program FS.COM truly understands the value of compatibility and interoperability to each optics. Every module FS.COM provides must run through programming and an extensive series of platform diagnostic tests to prove its performance and compatibility. In our test center, we care of every detail from staff to facilities professionally trained staff, advanced test facilities and comprehensive original-brand switches, to ensure our customers to receive the optics with superior quality. Our smart data system allows effective product management and quality control according to the unique serial number, properly tracing the order, shipment and every part. Our in-house coding facility programs all of our parts to standard OEM specs for compatibility on all major vendors and systems such as Cisco, Juniper, Brocade, HP, Dell, Arista and so on. With a comprehensive line of originalbrand switches, we can recreate an environment and test each optics in practical application to ensure quality and distance. The last test assured step to ensure our products to be shipped with perfect package. 12

Copyright 2009-2015 Fiberstore Optical Communication System Order Information Part Number Description CWDM-SFP10G-20SP SFP+, 10GBase-LR, CWDM 1270nm-1330nm, SMF, 20km, LC, DOM CWDM-SFP10G-20L SFP+, 10GBase-LR, CWDM 1350nm-1610nm, SMF, 20km, LC, DOM CWDM-SFP10G-40S SFP+, 10GBase-ER, CWDM 1270nm-1450nm, SMF, 40km, LC, DOM CWDM-SFP10G-40L SFP+, 10GBase-ER, CWDM 1470nm-1610nm, SMF, 40km, LC, DOM CWDM-SFP10G-80L SFP+, 10GBase-ZR, CWDM 1470nm-1610nm, SMF, 80km, LC, DOM Note: 10G CWDM SFP+ transceiver module is individually tested on corresponding equipment such as Cisco, Arista, Juniper, Dell, Brocade and other brands, and passes the monitoring of FS.COM intelligent quality control system. Page 5 of 6 sales@fs.com 13 FS.COM

Contact Us North America(Seattle): Fiberstore INC 820 SW 34th Street Bldg W7 Suite H, Renton, WA 98057 United States Tel: +1(877) 205 5306 Eastern America: FS.COM INC 380 Centerpoint Blvd New Castle, DE 19720 United States Europe(Germany): FS.COM GmbH NOVA Gewerbepark Building 7, Am Gfild 7, 85375 Neufahrn bei Munich, Germany Tel:+49 (0) 89 414176412 Europe(United Kingdom): Fiberstore LTD 2nd Floor, Quayside Tower, Broad Street, Birmingham, B1 2HF United Kingdom Tel:+44 (0) 121 698 2099 Asia(China): Fiberstore Co., Limited Room 2702, 27 Floor Yisibo Software Building Haitian Second Road, Yuehai Street Nanshan District Shenzhen, 518054, China Tel:+86 (755) 8300 3611 Australia: FS.COM PTY LTD 57-59 Edison Rd, Dandenong South, VIC3175, Austrilia ABN 71 620 545 502 Tel:+61 (2)8317 1119 Addresses, phone number and fax number also have been listed at www.fs.com. Please e-mail us at sales@fs.com or call us for assistance. All statements, technical information, and recommendations related to the products here are based upon information believed to be reliable or accurate. However, the accuracy or completeness thereof is not guaranteed, and no responsibility is assumed for any inaccuracies. Please contact FS for more information. Fiber Optic Transceivers Copyright 2009-2018 FS.COM All Rights Reserved.