Dual & Single Fiber DWDM Mux Demux

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Data Center & Cloud Computing DATASHEET Dual & Single Fiber DWDM Mux Demux Data Center & Cloud Computing Infrastruture Solutions REV.1.0 2018

DWDM Mux Demux 01 1 Introduction FS.COM designs and offers all types of fiber optical transmission products to support Storage, Data and Telecom Networks. Our high-quality and cost-effective components allow customers to build the most cost-effective and reliable transmission networks. If our products online can't meet your flexible requirements, FS.COM also supports different kinds of customizations, including: General Specifications Ⅰ No. of Channel: 4ch, 8ch, 16ch, 32ch, 40ch, 80ch, etc. available Ⅱ Wavelengths: Any wavelength combination in the C-band Ⅲ Line Type: Dual/Single Fiber Ⅳ Line & Client Port: LC/SC/FC/ST, UPC/APC polish Ⅴ Ⅵ Special Service: Monitor/Expansion/1310nm port Housing: FMU/FLG/FUD plug-in module 1U/2U 19" rack mount ABS pigtailed module Technical Specifications Ⅶ WDM Technologies: TFF vs AWG (including AAWG & TAWG) Ⅷ Industrial Temperature for Outside- Plant Applications

DWDM Mux Demux 2 General Specifications I. No. of Channel & Wavelengths DWDM Channels Defined by the ITU-T G.694.1, the DWDM channel spacing ranges from 12.5GHz to 200GHz. Typical DWDM systems use 48 channels at 100GHz spacing (0.8nm) or 96 channels at 50GHz spacing (0.4nm). Most DWDM wavelengths in use are found in the C-band (1530 1565nm). Hybrid CWDM/DWDM System DWDM wavelengths are within the wavelength range of CWDM, which have much smaller channel spacing, so CWDM wavelengths near DWDM can be used to transmit the DWDM wavelengths. A hybrid C/DWDM system is built to expand the existing CWDM system, keeping initial startup costs low. CWDM Channels (Bandwidth) 1530nm (±6.5 nm) 1550nm (±6.5 nm) DWDM Channels (Center Wavelength) C52-C61 (1528.77-1535.82 nm) C27-C42 (1543.73-1555.75 nm) 10 DWDM channels insertion into CWDM 1530nm wavelength 16 DWDM channels insertion into CWDM 1550nm wavelength Note: Connect the line port of DWDM Mux Demux to CWDM 1530nm/1550nm wavelength.

DWDM Mux Demux 3 II. Line Type Dual Fiber Applications Dual fiber DWDM Mux/Demux transmits and receives optical signals of same wavelengths into two fibers. The DWDM transceiver connected to DWDM Mux/Demux should have the same wavelength as the client port. Single Fiber Applications In single fiber applications, DWDM Mux/Demux transmits and receives optical signals of different wavelengths into a fiber in the opposite direction. It utilizes a single fiber for both transmitting and receiving, which reduces overall costs, and increases the capacity of the fiber. Take the example of a generate bidirectional transmission of channel C21 and C22 below. Site A Site B C21 TX C21 RX C21 C22 C23 C33 C35 RX C22 TX C23 RX C24 TX C33 RX C34 TX C35 8ch Single Fiber DWDM MUX & DEMUX Single Fiber 8ch Single Fiber DWDM MUX & DEMUX TX C22 RX C23 TX C24 RX C33 TX C34 RX C35 C24 C34 C36 RX C36 TX C36 The wavelength of the transceiver mainly based on the transmit wavelength of the client port on the DWDM Mux/Demux. Side A should be C21, Side B should be C22.

DWDM Mux Demux 01 4 III. Special Service Monitor Port It is used to monitor or test the power signal, usually at a 1% ratio, 2%, 3%, 5%, etc, also available. By connecting with measurement or monitoring equipment, such as power meters, spectrum analyzer, or FMT AIU/OPD card, the signal can be inspected without interrupting the existing network. Expansion Port It is used to add or expand more channels to the network, by connecting it with the line port of another DWDM Mux/Demux supporting different wavelengths. 1310nm Port The 1310nm is actually WDM wavelength. Many optical transceivers, especially the CWDM and DWDM SFP/SFP+ transceiver, support long-haul transmission over these two wavelengths. By connecting with the same wavelength optical transceivers, this port can be used to add 1310nm wavelength into existing DWDM networks. PS: DWDM Mux/Demux can't add 1550nm port due to DWDM wavelength range near 1550nm wavelength. 1310nm for 40G LR4/ER4, 100G CFP LR4 1310nm for 40G LR4/ER4, 100G CFP LR4 λ1 λn DWDM Mux & Demux TX RX 1% 1% RX TX DWDM Mux & Demux λ1 λn Mux& Demux Expansion port for future capacity expansion Expansion port for future capacity expansion Mux& Demux

DWDM Mux Demux 01 5 IV. Housing & Enclosure FS.COM provides 4 different package options for DWDM Mux Demux, including FMU/FUD plug-in module, 1U/2U 19" rack mount, and splice pigtailed ABS module, as well as the matched chassis. FLG plug-in module and FLG 3-slot 1U rack can also be provided. If you need, please e-mail to sales@fs.com. FMU 2-slot 1U Rack FUD 4-slot 1U Rack 250mm 250mm 431.5mm 44mm 431.5mm 44mm 215mm 200.5mm 42.3mm 215mm 200mm 20.2mm FMU Plug-in module FUD Plug-in module 1 2 3 4 250mm 44mm 431.5mm 1U/2U 19'' Rack Mount 2U Size: 482.6mm(W) x 250mm(D) x 88.1mm(H) ABS Pigtailed module Specifications about ABS Pigtailed module: 1 Cable Diameter: 0.9mm/2.0mm/3.0mm Pigtail Length: 0.25~2m 2 3 Connector: With/Without connectors 4 ABS Size: 141x 115x 18mm, 120x 80x 18mm, 100x 80x 10mm

DWDM Mux Demux 01 6 Technical Specifications V. WDM Technologies: TFF vs AWG TFF - Thin Film Filters ( 16ch) In optical communication system, many modular DWDM Filters and just about all CWDM optics derive from the TFF technology. The mature technology offers good temperature stability, channel-to-channel isolation, and a broad passband. But when channel counts is beyond 16, insertion losses are accumulated. AWG - Arrayed Waveguide Gratings (> 16ch) Then AWG technology emerges as the main technical approach in high-channelcount applications. The key advantage of AWGs over TFF is that their cost is not dependent on wavelength count making them extremely cost-effective for high channel count applications. The other advantages are the flexibility in selecting channel numbers and spacing. 1 Athermal AWG (AAWG) vs. Thermal AWG (TAWG) AWG includes Athermal AWG and Thermal AWG. AAWG have equivalent performance to standard TAWG but require no electrical power, software or temperature. 2 AWG Gaussian vs. Flat-top Response Gaussian profiles offer lower insertion loss with a narrower pass band. Flat-top multiplexers offer broader pass band with a higher insertion loss, its' advantage is the precision requirement for the transmission signal. VI. Industrial Temperature for Outside-Plant Applications Industrial temperature -40 ~ 85 C can meet the requirements of outside-plant applications. DWDM Mux Demux devices based on the TFF technology can be customized as industrial temperature. Generally, operating temperature about TFF devices is -5 C~ +75 C, storage temperature is -40 C~+85 C. If you need even more requirements, welcome to contact tech@fs.com or sales@fs.com. We will do our absolute best to optimize your total solution.

DWDM Mux Demux 01 7 Product List ID Description FS P/N Customized DWDM Mux Demux #70411 Dual Fiber DWDM Mux Demux DWDM-DF #70412 Single Fiber DWDM Mux Demux, Side-A DWDM-SFA #70851 Single Fiber DWDM Mux Demux, Side-B DWDM-SFB DWDM Mux Demux in stock -- Dual Fiber #33485 40ch C21-C60 Dual Fiber DWDM Mux Demux, w/monitor Port FMU-D402160M #35887 40ch C21-C60 Dual Fiber DWDM Mux Demux, w/1310 and Monitor Port FMU-D402160M3 #72430 16ch C21-C36 Dual Fiber DWDM Mux Demux, w/monitor Port, Expansion Port and 1310nm Port D162136EM3 #50123 16ch C21-C36 Dual Fiber DWDM Mux Demux, w/expansion Port FMU-D162136E #72431 CWDM/DWDM Hybrid Solution, 16ch C27-C42 Dual Fiber DWDM Mux Demux, w/monitor Port, Expansion Port and 1310nm Port D162742EM3 #26569 C/DWDM Hybrid, 16ch C27-C42 Dual Fiber DWDM Mux Demux FMU-D162742 #72432 8ch C21-C28 Dual Fiber DWDM Mux Demux, w/monitor Port, Expansion Port, and 1310nm Port #72433 CWDM/DWDM Hybrid Solution, 8ch C53-C60 Dual Fiber DWDM Mux Demux, w/monitor Port, Expansion Port and 1310nm Port FMU- FMU- FMU- MD082128EM3 FMU- MD085360EM3 #30568 8ch C53-C60 Dual Fiber DWDM Mux Demux, w/expansion Port FMU-MD085360E #57884 16ch C43-C58 Dual Fiber DWDM Mux Demux, w/expansion Port FMU-D164358E #66601 96ch CH15-CH62.5 Dual Fiber DWDM Mux Demux, AAWG FMU-D961562.5 DWDM Mux Demux in stock -- Single Fiber #50117 8ch C21-C35 Single Fiber DWDM Mux Demux w/expansion Port, Side-A FMU-MD08EA #50116 8ch C22-C36 Single Fiber DWDM Mux Demux w/expansion Port, Side-B FMU-MD08EB

DWDM Mux Demux 8 01 Related Products Optic WDM Transceivers DWDM-SFP10G-80 FMT Multiple-Services Transport Platform Fiber Optic Cables MTP/MPO Fiber Cables DWDM-XFP10G-80 DWDM EDFA Ultra HD Fiber Cables DWDM-X210G-40 DCM (Dispersion Compensation) Fiber Patch Cables DWDM-XPK10G-40 OEO (WDM Transponders) Ruggedized Fiber Cables DWDM-SFP1G-ZX OLP/OBP (Optical Protection) Pre-terminated Multifiber Cables Cables Management Fiber Testers & Tools FTTx Cables and Assembles Cable Manager & Wire Duct Fiber Optic Cleaner Fiber Splitters Cable Ties Fiber Tester Fiber Distribution Terminal FTTx Transmission

DWDM Mux Demux 01 9 Appendix DWDM Channel Wavelengths Ch. No. Freq (THz) WL (nm) Ch. No. Freq (THz) WL (nm) 1 H62 196.25 1527.6 49 H38 193.85 1546.518 2 C62 196.2 1527.99 50 C38 193.8 1546.917 3 H61 196.15 1528.38 51 H37 193.75 1547.316 4 C61 196.1 1528.774 52 C37 193.7 1547.715 5 H60 196.05 1529.163 53 H36 193.65 1548.115 6 C60 196 1529.553 54 C36 193.6 1548.515 7 H59 195.95 1529.944 55 H35 193.55 1548.915 8 C59 195.9 1530.334 56 C35 193.5 1549.315 9 H58 195.85 1530.725 57 H34 193.45 1549.715 10 C58 195.8 1531.116 58 C34 193.4 1550.116 11 H57 195.75 1531.507 59 H33 193.35 1550.517 12 C57 195.7 1531.898 60 C33 193.3 1550.918 13 H56 195.65 1532.29 61 H32 193.25 1551.319 14 C56 195.6 1532.681 62 C32 193.2 1551.721 15 H55 195.55 1533.073 63 H31 193.15 1552.122 16 C55 195.5 1533.465 64 C31 193.1 1552.524 17 H54 195.45 1533.858 65 H30 193.05 1552.926 18 C54 195.4 1534.25 66 C30 193 1553.329 19 H53 195.35 1534.643 67 H29 192.95 1553.731 20 C53 195.3 1535.036 68 C29 192.9 1554.134 21 H52 195.25 1535.429 69 H28 192.85 1554.537 22 C52 195.2 1535.822 70 C28 192.8 1554.94 23 H51 195.15 1536.216 71 H27 192.75 1555.343 24 C51 195.1 1536.609 72 C27 192.7 1555.747 25 H50 195.05 1537.003 73 H26 192.65 1556.151 26 C50 195 1537.397 74 C26 192.6 1556.555 27 H49 194.95 1537.792 75 H25 192.55 1556.959 28 C49 194.9 1538.186 76 C25 192.5 1557.363 29 H48 194.85 1538.581 77 H24 192.45 1557.768 30 C48 194.8 1538.976 78 C24 192.4 1558.173 31 H47 194.75 1539.371 79 H23 192.35 1558.578 32 C47 194.7 1539.766 80 C23 192.3 1558.983 33 H46 194.65 1540.162 81 H22 192.25 1559.389 34 C46 194.6 1540.557 82 C22 192.2 1559.794 35 H45 194.55 1540.953 83 H21 192.15 1560.2 36 C45 194.5 1541.349 84 C21 192.1 1560.606 37 H44 194.45 1541.746 85 H20 192.05 1561.01 38 C44 194.4 1542.142 86 C20 192 1561.42 39 H43 194.35 1542.539 87 H19 191.95 1561.83 40 C43 194.3 1542.936 88 C19 191.9 1562.23 41 H42 194.25 1543.333 89 H18 191.85 1562.64 42 C42 194.2 1543.73 90 C18 191.8 1563.05 43 H41 194.15 1544.128 91 H17 191.75 1563.45 44 C41 194.1 1544.526 92 C17 191.7 1563.86 45 H40 194.05 1544.924 93 H16 191.65 1564.27 46 C40 194 1545.322 94 C16 191.6 1564.68 47 H39 193.95 1545.72 95 H15 191.55 1565.09 48 C39 193.9 1546.119 96 C15 191.5 1565.5

FS.COM business radiate worldwide, if you need more efficient solutions for Data Center, Optical Transport Network, and Enterprise Network, please contact us at sales@fs.com For more information visit www.fs.com FS.COM DATA CENTER & CLOUD COMPUTING 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. Copyright 2009-2018 FS.COM All Rights Reserved.