• FCWDM-8B
    FCWDM-8B
  • FCWDM8/1A
    FCWDM8/1A
  • FCWDM8/1A (Rear View)
    FCWDM8/1A (Rear View)
  • FCWDM8/2A (Rear View)
    FCWDM8/2A (Rear View)
  • FCWDM16A
    FCWDM16A
  • FCWDM-8B thum
  • FCWDM8/1A thum
  • FCWDM8/1A (Rear View) thum
  • FCWDM8/2A (Rear View) thum
  • FCWDM16A thum

CWDM Mux/Demux

Bi-directional Mux/DeMux of up to 16 wavelengths. The same model can be used for transmitting and receiving on each end.

  • TECH DATA
  • TECH NOTE

CWDM Mux/Demux

[ Slot-in Module Types ]
Model Ch. Wavelength Occupancy
FCWDM-8B 8 1471 nm - 1611 nm 8 Slots
FCWDM-8B-13 8 1271 nm - 1451 nm
[ Rack Mount Types ]
Model Ch. Wavelength Size
FCWDM8/1A 8 1471 - 1611 nm 1 RU
FCWDM8/1A-13 8 1271 - 1451 nm
FCWDM8/2A 2 each of 8 2 each of 1471 - 1611 nm
FCWDM8/2A-13 2 each of 8 2 each of 1271 - 1451 nm
FCWDM16A 16 1271 - 1611 nm

Key Features and Benefits

  • Bi-directional 8 or 16 wavelengths.
  • Passive and stand-alone products.
  • Easy to use - Just plug in SC-type connectors.
  • FCWDM-8B(-13) can be loaded into 161UPSC; enables 8-wavelength CWDM within 1RU frame.
  • CWDM Mux/Demux wiring

    Loading example (rear view of 161UPSC)

Specifications

FCWDM-8B (-13) FCWDM8/1A (-13) FCWDM8/2A (-13) FCWDM16A
Connectors SC
Passband +/- 6.5 nm (ITU-T G.695)
Min. Passband Ripple 0.5 dB
Max. Insertion Loss* 2.0 dB 3.3 dB
Min. Isolation 30 dB
Dimensions (mm) 146 x 43.4 x 94.2 482.6 x 44 x 362.3
Weight (approx.) 210 g 1700 g 1800 g 1890 g
Wavelengths Details (nm) 1271-1451: 1271/1291/1311/1331/1351/1371/1431/1451
1471-1611: 1471/1491/1511/1531/1551/1571/1591/1611

* Insertion loss includes ripple, PDL, and connector loss

Wavelength Multiplexing Systems

Multiplexing

“Multiplexing” is a technology that allows multiple signals with different wavelengths to be transmitted together over a single optical fiber. Three general types of multiplexing — WDM, CWDM and DWDM — offer increasing signal-carrying capacities, as described below.

Multiplexing (CWDM)

Wavelength Division Multiplexing (WDM)

WDM is the simplest form of multiplexing and uses two wavelengths of 1310nm and 1551nm. Unlike when using and optical divider, insertion loss can be kept below 0.5dB.

Coarse Wavelength Division Multiplexing (CWDM)

CWDM systems use 8 wavelengths (20nm grid) primarily between 1471nm and 1611nm. To these it is also possible to add 8 more between 1271nm and 1451nm to allow a maximum of 16 wavelengths to be carried as a single multiplexed transmission. An ultra-thin membrane filter on the optical multiplexer/demultiplexer (mux/demux) keeps insertion loss at just 2-3dB. *CWDM standardized through ITU G695.

Optical Converter (TX for CWDM)

Canare’s CWDM optical converter uses a DFB laser, which offers a much tighter spectrum than FP lasers. Up to 16 different wavelengths fall within 1271nm and 1611 nm in 20nm intervals. The wavelengths in the 20nm grid between 1391nm and 1411nm are not used because their proximity to the water peak results in too much attenuation

Optical Fiber Transmission Loss Characteristics

Optical Multiplexer/Demultiplexers

The optical signals output from the optical converter (TX) are combined into a single signal by the multiplexer (mux) and transmitted along a single optical fiber. At the receiving end, these combined optical signals are demultiplexed (demux) to split them back into their original component 8 signals.
Optical mux/demuxers are bi-directional, so the same model can be used for transmitting and receiving on each end. It’s also possible to use 4 wavelengths out of the 8 for transmitting and the remaining four for receiving. Both 8-wavelength and 16-wavelength models are available, and combining these with an optical converter allows a variety of system constructions with many uses.

Optical Converter (RX)

Canare’s optical converter (RX) converts an optical signal comprised of 8 different wavelengths into electrical signals. This converter is common to all wavelengths and one converter is required for each wavelength.

8-wavelength CWDM system example
  • Once optical fiber cables have been laid, multiplexing the transmissions carried on them eliminates the need to purchase and install new cables when more transmission lines are needed.
  • Eight Canare optical converters and an FCWDM-8B mux/demuxer can be installed compactly on a single 161UPSC 1RU-size platform, effectively allowing an 8-wavelength transmission system to be achieved in just 1RU of space.

History

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