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OVERVIEW
• The Cisco DWDM XENPAK supports 10GBASE Ethernet.
• The hot-swappable input/output device plugs into an Ethernet XENPAK port of a Cisco switch or router to link the port with the network.
• The Cisco DWDM XENPAK supports the Cisco quality identification (ID) feature that enables a Cisco Systems® switch or router to identify whether or not the module is a Cisco certified and tested XENPAK module.
• The Cisco DWDM XENPAK supports 32 non-tunable ITU 100 GHz wavelengths compatible with the Cisco ONS DWDM channel plan.
• The Cisco DWDM XENPAK supports digital optical monitoring capability.
Figure 1. Cisco DWDM XENPAKs
PLATFORM SUPPORT
Connectors and Cabling
• Equipment: Standard XENPAK interface
Note: Only connections with patch cords with PC or UPC connectors are supported. Patch cords with APC connectors are not supported. All cables and cable assemblies used must be compliant with the standards specified in the standards section.
Dimension:
Environmental Conditions and Power Requirements
• Operating temperature range: 32 to 122°F (0 to 55°C)
• Storage temperature range: -40 to 185°F (-40 to 85°C)
Optical Parameters
Table 1. Optical Parameters
Parameter |
Symbol |
Minimum |
Typical |
Maximum |
Units |
Notes and Conditions |
Transmitter |
||||||
Spectral Width
|
0.2
|
nm
|
Full width, -20dB from maximum, with Resolution bandwidth (RBW) = 0.01 nm
|
|||
Transmitter Center Wavelength
|
x - 100
|
x
|
x + 100
|
pm
|
Refer to Table 2 for center wavelengths
|
|
Side-Mode Suppression Ratio
|
SMSR
|
30
|
dB
|
|||
Transmitter Extinction Ratio
|
OMI
|
9
|
dB
|
|||
Transmitter Optical Output Power
|
P out
|
-1.0
|
3.0
|
dBm
|
Average power coupled into single-mode fiber
|
|
Receiver |
||||||
Receiver Optical Input Wavelength
|
1530
|
1565
|
nm
|
|||
Receiver Damage Threshold
|
-1
|
dBm
|
||||
Dispersion Tolerance
|
-500
|
1600
|
ps/nm
|
|||
Power-Limited Performance (measured at optical signal-to-noise ratio [OSNR] of 30 dB at 0.1-nm RBW)
|
||||||
Optical Input Power
|
P in
|
-24.0
|
-7.0
|
dBm
|
See footnote*
|
|
Dispersion Power Penalty
|
3
|
dB
|
See footnote*
|
|||
Noise-Limited Performance (measured at OSNR of 23 dB at 0.1-nm RBW)
|
||||||
Optical Input Power
|
P in
|
-17.0
|
-7.0
|
dB
|
See footnote*
|
|
Dispersion OSNR Penalty
|
3
|
dB
|
See footnote*
|
Note: 1. Parameters are specified over temperature and at end of life unless otherwise noted.
2. When shorter distances of single-mode fiber are used, an inline optical attenuator (10-dB) must be used to avoid overloading and damaging the receiver.
3. The receive-only WDM XENPAK has no transmitter. The receiver matches the receiver specifications given above.
4. To prevent burst errors, Cisco suggests the use of appropriate optical attenuation in front of the receiver when interoperating X2 DWDM and XENPAK DWDM specifically under the following conditions:
- When the input power on the receiver exceeds -14dBm,
- When the optical signal to noise ratio is less than 30dB @ 0.1nm RBW
- When total chromatic dispersion is greater than 1500ps/nm
The attenuation should be chosen to limit the input power into the receiver to be less than -14dBm.
WARRANTY
ORDERING INFORMATION
Table 2. Cisco DWDM XENPAK Product Information
Product Number |
Description |
ITU Channel |
DWDM-XENPAK-60.61= |
10GBASE-DWDM 1560.61 nm XENPAK (100-GHz ITU grid)
|
21
|
DWDM-XENPAK-59.79= |
10GBASE-DWDM 1559.79 nm XENPAK (100-GHz ITU grid)
|
22
|
DWDM-XENPAK-58.98= |
10GBASE-DWDM 1558.98 nm XENPAK (100-GHz ITU grid)
|
23
|
DWDM-XENPAK-58.17= |
10GBASE-DWDM 1558.17 nm XENPAK (100-GHz ITU grid)
|
24
|
DWDM-XENPAK-56.55= |
10GBASE-DWDM 1556.55 nm XENPAK (100-GHz ITU grid)
|
26
|
DWDM-XENPAK-55.75= |
10GBASE-DWDM 1555.75 nm XENPAK (100-GHz ITU grid)
|
27
|
DWDM-XENPAK-54.94= |
10GBASE-DWDM 1554.94 nm XENPAK (100-GHz ITU grid)
|
28
|
DWDM-XENPAK-54.13= |
10GBASE-DWDM 1554.13 nm XENPAK (100-GHz ITU grid)
|
29
|
DWDM-XENPAK-52.52= |
10GBASE-DWDM 1552.52 nm XENPAK (100-GHz ITU grid)
|
31
|
DWDM-XENPAK-51.72= |
10GBASE-DWDM 1551.72 nm XENPAK (100-GHz ITU grid)
|
32
|
DWDM-XENPAK-50.92= |
10GBASE-DWDM 1550.92 nm XENPAK (100-GHz ITU grid)
|
33
|
DWDM-XENPAK-50.12= |
10GBASE-DWDM 1550.12 nm XENPAK (100-GHz ITU grid)
|
34
|
DWDM-XENPAK-48.51= |
10GBASE-DWDM 1548.51 nm XENPAK (100-GHz ITU grid)
|
36
|
DWDM-XENPAK-47.72= |
10GBASE-DWDM 1547.72 nm XENPAK (100-GHz ITU grid)
|
37
|
DWDM-XENPAK-46.92= |
10GBASE-DWDM 1546.92 nm XENPAK (100-GHz ITU grid)
|
38
|
DWDM-XENPAK-46.12= |
10GBASE-DWDM 1546.12 nm XENPAK (100-GHz ITU grid)
|
39
|
DWDM-XENPAK-44.53= |
10GBASE-DWDM 1544.53 nm XENPAK (100-GHz ITU grid)
|
41
|
DWDM-XENPAK-43.73= |
10GBASE-DWDM 1543.73 nm XENPAK (100-GHz ITU grid)
|
42
|
DWDM-XENPAK-42.94= |
10GBASE-DWDM 1542.94 nm XENPAK (100-GHz ITU grid)
|
43
|
DWDM-XENPAK-42.14= |
10GBASE-DWDM 1542.14 nm XENPAK (100-GHz ITU grid)
|
44
|
DWDM-XENPAK-40.56= |
10GBASE-DWDM 1540.56 nm XENPAK (100-GHz ITU grid)
|
46
|
DWDM-XENPAK-39.77= |
10GBASE-DWDM 1539.77 nm XENPAK (100-GHz ITU grid)
|
47
|
DWDM-XENPAK-38.98= |
10GBASE-DWDM 1538.98 nm XENPAK (100-GHz ITU grid)
|
48
|
DWDM-XENPAK-38.19= |
10GBASE-DWDM 1538.19 nm XENPAK (100-GHz ITU grid)
|
49
|
DWDM-XENPAK-36.61= |
10GBASE-DWDM 1536.61 nm XENPAK (100-GHz ITU grid)
|
51
|
DWDM-XENPAK-35.82= |
10GBASE-DWDM 1535.82 nm XENPAK (100-GHz ITU grid)
|
52
|
DWDM-XENPAK-35.04= |
10GBASE-DWDM 1535.04 nm XENPAK (100-GHz ITU grid)
|
53
|
DWDM-XENPAK-34.25= |
10GBASE-DWDM 1534.25 nm XENPAK (100-GHz ITU grid)
|
54
|
DWDM-XENPAK-32.68= |
10GBASE-DWDM 1532.68 nm XENPAK (100-GHz ITU grid)
|
56
|
DWDM-XENPAK-31.90= |
10GBASE-DWDM 1531.90 nm XENPAK (100-GHz ITU grid)
|
57
|
DWDM-XENPAK-31.12= |
10GBASE-DWDM 1531.12 nm XENPAK (100-GHz ITU grid)
|
58
|
DWDM-XENPAK-30.33= |
10GBASE-DWDM 1530.33 nm XENPAK (100-GHz ITU grid)
|
59
|
WDM-XENPAK-REC= |
10GBASE-WDM receive-only XENPAK
|
REGULATORY AND STANDARDS COMPLIANCE
Safety
• Laser Class I 21CFR1040
• Network Equipment Building Standards (NEBS) Level 3