Cisco 10 Gigabit Dense WDM Transceiver DWDM-SFP10G-31.12
- اطلاعات مربوط به تاریخ های پایان فروش و پایان پشتیبانی فنی (EOL/EOS - End-of-Sale and End-of-Life)
- تاریخ معرفی محصول:
- تاریخ پایان فروش:
- تاریخ پایان پشتیبانی:
In today's fast-paced digital landscape, enterprises and service providers are under constant pressure to expand network capacity without incurring massive infrastructure costs. Dense Wavelength Division Multiplexing (DWDM) technology has emerged as a cornerstone for high-bandwidth optical transport, allowing multiple data channels to travel simultaneously over a single optical fiber pair. Cisco’s portfolio of 10 Gigabit Ethernet DWDM transceiver modules provides organizations with a scalable, highly reliable solution to meet these escalating bandwidth requirements.
These optical modules seamlessly bridge the gap between high-speed routing platforms and optical transport systems. By integrating DWDM technology directly into Cisco switches and routers, businesses can eliminate the need for costly transponder equipment. This direct integration streamlines network design, reduces operational complexity, and offers a future-proof path for network expansion across metro and enterprise environments.
Product overview
The Cisco 10G DWDM module portfolio offers a comprehensive range of form factors to support diverse networking hardware. A key component is the Cisco DWDM SFP+ module, which delivers 10-Gigabit connectivity in a compact, low-power form factor. It supports 40 distinct ITU 100-GHz wavelengths, making it an ideal choice for high-density enterprise switches and edge routers requiring long-reach optical transport up to 80 kilometers.
For existing and legacy deployments, Cisco provides the DWDM XFP, DWDM X2, and DWDM Xenpak modules. The DWDM XFP module offers broad platform compatibility and comes in both fixed-wavelength and tunable variants. The Tunable DWDM XFP allows operators to configure wavelengths dynamically across the C-band, significantly reducing spare inventory costs. Meanwhile, the DWDM X2 and Xenpak modules allow organizations to extend the lifecycle of established modular switches while integrating them directly into modern DWDM networks.
Together, these product lines—comprising SFP+, XFP (Fixed and Tunable), X2, and Xenpak—support standard 10GbE and SDH/SONET data rates across standard ITU channels, giving IT leaders maximum flexibility when designing optical backbones.
Features and benefits
- Cost-Effective Bandwidth Scaling: Maximizes fiber efficiency by multiplexing multiple 10G channels over existing fiber lines, delaying the need for expensive new optical deployments.
- Broad Platform Compatibility: Fully interoperable with a wide range of Cisco switches and routers, including Catalyst, ASR, and CRS product lines.
- Advanced Tunability Options: Tunable C-band modules lower inventory overhead by replacing multiple fixed-wavelength spares with a single configurable unit.
- Real-Time Optical Monitoring: Features Digital Optical Monitoring (DOM) capabilities, giving administrators real-time insight into optical parameters like power and temperature.
- High-Density and Low Power: Compact form factors like the DWDM SFP+ enable high port density on line cards while consuming minimal power per gigabit.
- Hot-Swappable Design: Facilitates easy maintenance and field upgrades without requiring network shutdown, ensuring maximum system uptime.
- Long-Reach Performance: Supports link distances of up to 80 kilometers over standard single-mode fiber without inline optical amplification.
Use Dense Wavelength-Division Multiplexing (DWDM) SFP+ modules to integrate WDM transport directly into your Cisco 10 Gigabit Ethernet switches and routers.
Product overview
The Cisco 10GBASE DWDM SFP+ Modules (Figure 1) are fiber transceivers for a wide variety of Cisco switches, routers, and other equipment. They allow enterprises and service providers to provide scalable and easy-to-deploy 10-Gbps LAN and WAN services in their networks.

Cisco DWDM SFP+ Module
Features and benefits
The Cisco 10GBASE Dense Wavelength-Division Multiplexing SFP+ Modules offer the following features and benefits:
● Smallest SFP+ module footprint in the industry
● Hot-swappable input/output device plugs into an Ethernet SFP+ port of a Cisco switch or router to link the port with the network
● Support for a “pay-as-you-grow” model for investment protection
● Digital optical monitoring capability for enhanced diagnostics and troubleshooting
● Supports the Cisco Quality Identification (ID) feature, which enables a Cisco switch or router to identify whether or not the module is an SFP+ module certified and tested by Cisco
Cisco DWDM-SFP10G-XX.XX modules
The Cisco DWDM-SFP10G-XX.XX suite of fixed wavelength, linear electrical interface, transceiver modules supports OTN data rates.
● Supports 10-Gigabit data rates from 9.9G to 11.1G (LAN, WAN, and OTU2/OTU2e) to accommodate different applications
● DWDM fixed module supports 40 non-tunable ITU 100-GHz wavelengths detailed in Table 5
Cisco DWDM-SFP10G-C module
The Cisco DWDM-SFP10G-C tunable transceiver module supports OTN data rates. The DWDM-SFP10G-C has a linear electrical interface receiver that requires EDC (Electronic Dispersion Compensation) PHY on the host board.
● Supports 10-Gigabit data rates from 9.9G to 11.1G (LAN, WAN, and OTU2/OTU2e) to accommodate different applications
● DWDM tunable module supports 96 tunable ITU 50-GHz wavelengths
● 80km reach assuming fiber chromatic dispersion of 20 ps/(nm*km)
● Tunability enables minimized inventory and simplified, rapid deployment
Cisco DWDM-SFP10G-C-S module
The Cisco DWDM-SFP10G-C-S tunable transceiver modules is Ethernet only. The DWDM-SFP10G-C-S has a limiting electrical interface receiver, which does not require EDC PHY on the host board. The DWDM-SFP10G-C-S can be plugged into any SFP+ port.
● DWDM tunable module supports 96 tunable ITU 50-GHz wavelengths
● Reach of 70 km, assuming fiber chromatic dispersion of 20 ps/(nm*km)
● Tunability enables minimized inventory and simplified, rapid deployment
Platform support
The Cisco DWDM SFP+ modules are supported across a variety of Cisco switches, routers, and optical transport devices. For more details, refer to the Cisco transceivers compatibility matrix at: https://tmgmatrix.cisco.com/home
Connectors and cabling
● Equipment: standard SFP+ interface
● Network: dual LC/PC connector
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.
Product specifications
Optical parameters
Table 1 shows the main optical characteristics for the standard non-tunable Cisco DWDM SFP+ modules, DWDM-SFP10G-XX.XX.
Table 1. Optical Parameters for DWDM SFP+, DWDM-SFP10G-XX.XX
| Parameter |
Symbol |
Minimum |
Typical |
Maximum |
Units |
Notes and Conditions |
| Transmitter |
||||||
| Spectral width |
0.2 |
nm |
Full width, -20 dB 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 |
9 |
dB |
||||
| Transmitter optical output power |
Pout |
-1.0 |
3.0 |
dBm |
Average power coupled into single-mode fiber |
|
| Receiver |
||||||
| Receiver optical input wavelength |
1530 |
1565 |
nm |
|||
| Receiver damage threshold |
4.0 |
dBm |
||||
| Receiver overload |
-7 |
dBm |
||||
| Receiver Power Performance |
||||||
|
|
Units |
Range |
Notes and Conditions |
|||
| Performance at 10G LAN and 10G WAN Rates (NO-FEC Applications) |
||||||
| Input power range |
dBm |
-7 to -23 |
At BER=1E-12, back-to-back, unamplified link |
|||
| Input power range (dispersion-limited) |
dBm |
-7 to -20 |
At BER=1E-12, -500 to +1600 ps/nm chromatic dispersion*, unamplified link |
|||
| Input power range (dispersion- and noise-limited) |
dBm |
-7 to -17 |
At BER=1E-12, -500 to +1600 ps/nm chromatic dispersion*, amplified link with min 27dB OSNR (0.1nm RBW) |
|||
| Performance at OTU2/OTU2e rates (FEC applications) |
||||||
| Input power range |
dBm |
-7 to -27 |
At BER=1E-3 (pre-EFEC), back-to-back, unamplified link |
|||
| Input power range (dispersion-limited) |
dBm |
-7 to -24 |
At BER=1E-3 (pre-EFEC), -500 to +1300 ps/nm chromatic dispersion, unamplified link |
|||
| Input power range (dispersion- and noise-limited) |
dBm |
-7 to -17 |
At BER=1E-3 (pre-EFEC), -500 to +1100 ps/nm chromatic dispersion, amplified link with min 16dB OSNR (0.1nm RBW) |
|||
| Input power range (dispersion- and noise-limited) |
dBm |
-7 to -17 |
At BER=1E-5 (pre-GFEC), -500 to +1100 ps/nm chromatic dispersion, amplified link with min 19dB OSNR (0.1nm RBW) |
|||
Table 2 shows the main optical characteristics for the tunable linear interface Cisco DWDM SFP+ modules.
Table 2. Optical Parameters for Tunable linear electrical interface DWDM SFP+, DWDM-SFP10G-C
| Parameter |
Symbol |
Minimum |
Typical |
Maximum |
Units |
Notes and Conditions |
| Transmitter |
||||||
| Spectral width |
0.2 |
nm |
Full width, -20 dB from maximum, with Resolution Bandwidth (RBW) = 0.01 nm |
|||
| Transmitter center wavelength |
x - 25 |
x |
x + 25 |
pm |
Refer to Table 3 for center wavelengths |
|
| Side-mode suppression ratio |
SMSR |
30 |
dB |
|||
| Transmitter extinction ratio |
9 |
dB |
||||
| Transmitter optical output power |
Pout |
-1 |
3.0 |
dBm |
Average power coupled into single-mode fiber |
|
| Receiver |
||||||
| Receiver optical input wavelength |
1525 |
1570 |
nm |
|||
| Receiver damage threshold |
4.0 |
dBm |
||||
| Receiver overload |
-7.0 |
dBm |
||||
| Receiver Power Performance |
||||||
|
|
Units |
Range |
Notes and Conditions |
|||
| Performance at 10G LAN and 10G WAN Rates (NO-FEC Applications) |
||||||
| Input power range |
dBm |
-7 to -23 |
At BER=1E-12, back-to-back, unamplified link |
|||
| Input power range (dispersion-limited) |
dBm |
-7 to -20 |
At BER=1E-12, -500 to 1600 ps/nm chromatic dispersion, unamplified link |
|||
| Input power range (dispersion- and noise-limited) |
dBm |
-7 to -18 |
At BER=1E-12, -500 to 1600 ps/nm chromatic dispersion, amplified link with min 19dB OSNR (0.5nm RBW) |
|||
| Performance at OTU2/OTU2e Rates (FEC Applications) |
||||||
| Input power range |
dBm |
-7 to -27 |
At BER=1E-3 (pre-EFEC), back-to-back, unamplified link |
|||
| Input power range (dispersion-limited) |
dBm |
-7 to -24 |
At BER=1E-3 (pre-EFEC), -500 to 1300 ps/nm chromatic dispersion, unamplified link |
|||
| Input power range (dispersion- and noise-limited) |
dBm |
-7 to -18 |
At BER=1E-3 (pre-EFEC), -500 to 1100 ps/nm chromatic dispersion, amplified link with min 14.5dB OSNR (0.1nm RBW) |
|||
| Input power range (dispersion- and noise-limited) |
dBm |
-7 to -18 |
At BER=1E-5 (pre-GFEC), -500 to 1100 ps/nm chromatic dispersion, amplified link with min 17dB OSNR (0.1nm RBW) |
|||
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 must be used to avoid overloading and damaging the receiver.
Table 3 shows the main optical characteristics for the tunable Cisco limiting interface DWDM SFP+ modules.
Table 3. Optical Parameters for Tunable limiting electrical interface DWDM SFP+, DWDM-SFP10G-C-S.
| Parameter |
Symbol |
Minimum |
Typical |
Maximum |
Units |
Notes and Conditions |
| Transmitter |
||||||
| Spectral width |
0.2 |
nm |
Full width, -20 dB from maximum, with Resolution Bandwidth (RBW) = 0.01 nm |
|||
| Transmitter center wavelength |
x - 25 |
x |
x + 25 |
pm |
Refer to Table 4 for center wavelengths |
|
| Side-mode suppression ratio |
SMSR |
30 |
dB |
|||
| Transmitter extinction ratio |
9 |
dB |
||||
| Transmitter optical output power |
Pout |
-1 |
3.0 |
dBm |
Average power coupled into single-mode fiber |
|
| Stimulated Brillouin Scattering (SBS) Threshold |
10 |
dBm |
||||
| Receiver |
||||||
| Receiver optical input wavelength |
1525 |
1570 |
nm |
|||
| Receiver damage threshold |
4.0 |
dBm |
||||
| Receiver overload |
-7.0 |
dBm |
||||
| Receiver Power Performance |
||||||
|
|
Units |
Range |
Notes and Conditions |
|||
| Performance at 10G LAN (NO-FEC Application) |
||||||
| Input power range |
dBm |
-7 to -22 |
At BER=1E-12, back-to-back, unamplified link |
|||
| Input power range (dispersion-limited) |
dBm |
-7 to -22 |
At BER=1E-12, -400 to 1400 ps/nm chromatic dispersion, unamplified link |
|||
| Input power range (dispersion- and noise-limited) |
dBm |
-7 to -20 |
At BER=1E-12, -400 to 1400 ps/nm chromatic dispersion, amplified link with min 20dB OSNR (0.5nm RBW) |
|||
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 must be used to avoid overloading and damaging the receiver.
Table 4 shows the 96 DWDM ITU-50GHz channels to which the DWDM-SFP10G-C-S and DWDM-SFP10G-C devices can be tuned.
Table 4. ITU 50-GHz Center Wavelengths and Channel Numbering for DWDM-SFP10G-C and DWDM-SFP10G-C-S
| Channel ID |
Frequency (THz) |
Wavelength (nm) |
Channel ID |
Frequency (THz) |
Wavelength (nm) |
| 1 |
191.35 |
1566.72 |
49 |
193.75 |
1547.32 |
| 2 |
191.4 |
1566.31 |
50 |
193.8 |
1546.92 |
| 3 |
191.45 |
1565.90 |
51 |
193.85 |
1546.52 |
| 4 |
191.5 |
1565.50 |
52 |
193.9 |
1546.12 |
| 5 |
191.55 |
1565.09 |
53 |
193.95 |
1545.72 |
| 6 |
191.6 |
1564.68 |
54 |
194 |
1545.32 |
| 7 |
191.65 |
1564.27 |
55 |
194.05 |
1544.92 |
| 8 |
191.7 |
1563.86 |
56 |
194.1 |
1544.53 |
| 9 |
191.75 |
1563.45 |
57 |
194.15 |
1544.13 |
| 10 |
191.8 |
1563.05 |
58 |
194.2 |
1543.73 |
| 11 |
191.85 |
1562.64 |
59 |
194.25 |
1543.33 |
| 12 |
191.9 |
1562.23 |
60 |
194.3 |
1542.94 |
| 13 |
191.95 |
1561.83 |
61 |
194.35 |
1542.54 |
| 14 |
192 |
1561.42 |
62 |
194.4 |
1542.14 |
| 15 |
192.05 |
1561.01 |
63 |
194.45 |
1541.75 |
| 16 |
192.1 |
1560.61 |
64 |
194.5 |
1541.35 |
| 17 |
192.15 |
1560.20 |
65 |
194.55 |
1540.95 |
| 18 |
192.2 |
1559.79 |
66 |
194.6 |
1540.56 |
| 19 |
192.25 |
1559.39 |
67 |
194.65 |
1540.16 |
| 20 |
192.3 |
1558.98 |
68 |
194.7 |
1539.77 |
| 21 |
192.35 |
1558.58 |
69 |
194.75 |
1539.37 |
| 22 |
192.4 |
1558.17 |
70 |
194.8 |
1538.98 |
| 23 |
192.45 |
1557.77 |
71 |
194.85 |
1538.58 |
| 24 |
192.5 |
1557.36 |
72 |
194.9 |
1538.19 |
| 25 |
192.55 |
1556.96 |
73 |
194.95 |
1537.79 |
| 26 |
192.6 |
1556.55 |
74 |
195 |
1537.40 |
| 27 |
192.65 |
1556.15 |
75 |
195.05 |
1537.00 |
| 28 |
192.7 |
1555.75 |
76 |
195.1 |
1536.61 |
| 29 |
192.75 |
1555.34 |
77 |
195.15 |
1536.22 |
| 30 |
192.8 |
1554.94 |
78 |
195.2 |
1535.82 |
| 31 |
192.85 |
1554.54 |
79 |
195.25 |
1535.43 |
| 32 |
192.9 |
1554.13 |
80 |
195.3 |
1535.04 |
| 33 |
192.95 |
1553.73 |
81 |
195.35 |
1534.64 |
| 34 |
193 |
1553.33 |
82 |
195.4 |
1534.25 |
| 35 |
193.05 |
1552.93 |
83 |
195.45 |
1533.86 |
| 36 |
193.1 |
1552.52 |
84 |
195.5 |
1533.47 |
| 37 |
193.15 |
1552.12 |
85 |
195.55 |
1533.07 |
| 38 |
193.2 |
1551.72 |
86 |
195.6 |
1532.68 |
| 39 |
193.25 |
1551.32 |
87 |
195.65 |
1532.29 |
| 40 |
193.3 |
1550.92 |
88 |
195.7 |
1531.90 |
| 41 |
193.35 |
1550.52 |
89 |
195.75 |
1531.51 |
| 42 |
193.4 |
1550.12 |
90 |
195.8 |
1531.12 |
| 43 |
193.45 |
1549.72 |
91 |
195.85 |
1530.72 |
| 44 |
193.5 |
1549.32 |
92 |
195.9 |
1530.33 |
| 45 |
193.55 |
1548.91 |
93 |
195.95 |
1529.94 |
| 46 |
193.6 |
1548.51 |
94 |
196 |
1529.55 |
| 47 |
193.65 |
1548.11 |
95 |
196.05 |
1529.16 |
| 48 |
193.7 |
1547.72 |
96 |
196.1 |
1528.77 |
Dimensions
Dimensions (H x W x D): 8.5 x 13.4 x 56.5mm. Cisco SFP+ modules typically weigh 75 grams or less.
Environmental conditions and power requirements
● Commercial Operational Temperature range (COM): 0 to 70°C (32 to 158°F)
● Storage temperature range: -40 to 85°C (-40 to 185°F)
● The maximum power consumption per Cisco SFP+ module is 1.5W
Regulatory and standards compliance standards
● GR-20-CORE: Generic Requirements for Optical Fiber and Optical Fiber Cable
● GR-326-CORE: Generic Requirements for Single-Mode Optical Connectors and Jumper Assemblies
● GR-1435-CORE: Generic Requirements for Multifiber Optical Connectors
● SFP+ MSA SFF-8431
● IEEE 802.3: 10-Gigabit Ethernet
● ITU-T G.709: Interfaces for the Optical Transport Network
● ITU-T G.975: GFEC
● ITU-T G.975.1: EFEC
● ITU-T G.694.1: DWDM frequency grid Safety
● Laser Class 1 (21CFR1040 and IEC 60825)
Ordering information
Table 5 provides the ordering information for Cisco SFP+ modules.
Table 5. Cisco DWDM SFP+ ordering information
| Product Number |
Description |
ITU Channel |
| DWDM-SFP10G-61.41= |
10GBASE-DWDM 1561.41 nm SFP+ (100-GHz ITU grid) |
20 |
| DWDM-SFP10G-60.61= |
10GBASE-DWDM 1560.61 nm SFP+ (100-GHz ITU grid) |
21 |
| DWDM-SFP10G-59.79= |
10GBASE-DWDM 1559.79 nm SFP+ (100-GHz ITU grid) |
22 |
| DWDM-SFP10G-58.98= |
10GBASE-DWDM 1558.98 nm SFP+ (100-GHz ITU grid) |
23 |
| DWDM-SFP10G-58.17= |
10GBASE-DWDM 1558.17 nm SFP+ (100-GHz ITU grid) |
24 |
| DWDM-SFP10G-57.36= |
10GBASE-DWDM 1557.36 nm SFP+ (100-GHz ITU grid) |
25 |
| DWDM-SFP10G-56.55= |
10GBASE-DWDM 1556.55 nm SFP+ (100-GHz ITU grid) |
26 |
| DWDM-SFP10G-55.75= |
10GBASE-DWDM 1555.75 nm SFP+ (100-GHz ITU grid) |
27 |
| DWDM-SFP10G-54.94= |
10GBASE-DWDM 1554.94 nm SFP+ (100-GHz ITU grid) |
28 |
| DWDM-SFP10G-54.13= |
10GBASE-DWDM 1554.13 nm SFP+ (100-GHz ITU grid) |
29 |
| DWDM-SFP10G-53.33= |
10GBASE-DWDM 1553.33 nm SFP+ (100-GHz ITU grid) |
30 |
| DWDM-SFP10G-52.52= |
10GBASE-DWDM 1552.52 nm SFP+ (100-GHz ITU grid) |
31 |
| DWDM-SFP10G-51.72= |
10GBASE-DWDM 1551.72 nm SFP+ (100-GHz ITU grid) |
32 |
| DWDM-SFP10G-50.92= |
10GBASE-DWDM 1550.92 nm SFP+ (100-GHz ITU grid) |
33 |
| DWDM-SFP10G-50.12= |
10GBASE-DWDM 1550.12 nm SFP+ (100-GHz ITU grid) |
34 |
| DWDM-SFP10G-49.32= |
10GBASE-DWDM 1549.32 nm SFP+ (100-GHz ITU grid) |
35 |
| DWDM-SFP10G-48.51= |
10GBASE-DWDM 1548.51 nm SFP+ (100-GHz ITU grid) |
36 |
| DWDM-SFP10G-47.72= |
10GBASE-DWDM 1547.72 nm SFP+ (100-GHz ITU grid) |
37 |
| DWDM-SFP10G-46.92= |
10GBASE-DWDM 1546.92 nm SFP+ (100-GHz ITU grid) |
38 |
| DWDM-SFP10G-46.12= |
10GBASE-DWDM 1546.12 nm SFP+ (100-GHz ITU grid) |
39 |
| DWDM-SFP10G-45.32= |
10GBASE-DWDM 1545.32 nm SFP+ (100-GHz ITU grid) |
40 |
| DWDM-SFP10G-44.53= |
10GBASE-DWDM 1544.53 nm SFP+ (100-GHz ITU grid) |
41 |
| DWDM-SFP10G-43.73= |
10GBASE-DWDM 1543.73 nm SFP+ (100-GHz ITU grid) |
42 |
| DWDM-SFP10G-42.94= |
10GBASE-DWDM 1542.94 nm SFP+ (100-GHz ITU grid) |
43 |
| DWDM-SFP10G-42.14= |
10GBASE-DWDM 1542.14 nm SFP+ (100-GHz ITU grid) |
44 |
| DWDM-SFP10G-41.35= |
10GBASE-DWDM 1541.35 nm SFP+ (100-GHz ITU grid) |
45 |
| DWDM-SFP10G-40.56= |
10GBASE-DWDM 1540.56 nm SFP+ (100-GHz ITU grid) |
46 |
| DWDM-SFP10G-39.77= |
10GBASE-DWDM 1539.77 nm SFP+ (100-GHz ITU grid) |
47 |
| DWDM-SFP10G-38.98= |
10GBASE-DWDM 1538.98 nm SFP+ (100-GHz ITU grid) |
48 |
| DWDM-SFP10G-38.19= |
10GBASE-DWDM 1538.19 nm SFP+ (100-GHz ITU grid) |
49 |
| DWDM-SFP10G-37.40= |
10GBASE-DWDM 1537.40 nm SFP+ (100-GHz ITU grid) |
50 |
| DWDM-SFP10G-36.61= |
10GBASE-DWDM 1536.61 nm SFP+ (100-GHz ITU grid) |
51 |
| DWDM-SFP10G-35.82= |
10GBASE-DWDM 1535.82 nm SFP+ (100-GHz ITU grid) |
52 |
| DWDM-SFP10G-35.04= |
10GBASE-DWDM 1535.04 nm SFP+ (100-GHz ITU grid) |
53 |
| DWDM-SFP10G-34.25= |
10GBASE-DWDM 1534.25 nm SFP+ (100-GHz ITU grid) |
54 |
| DWDM-SFP10G-33.47= |
10GBASE-DWDM 1533.47 nm SFP+ (100-GHz ITU grid) |
55 |
| DWDM-SFP10G-32.68= |
10GBASE-DWDM 1532.68 nm SFP+ (100-GHz ITU grid) |
56 |
| DWDM-SFP10G-31.90= |
10GBASE-DWDM 1531.90 nm SFP+ (100-GHz ITU grid) |
57 |
| DWDM-SFP10G-31.12= |
10GBASE-DWDM 1531.12 nm SFP+ (100-GHz ITU grid) |
58 |
| DWDM-SFP10G-30.33= |
10GBASE-DWDM 1530.33 nm SFP+ (100-GHz ITU grid) |
59 |
| DWDM-SFP10G-C= |
10GBASE-DWDM tunable SFP+, Linear Interface (50-GHz ITU grid) |
See Table 4 |
| DWDM-SFP10G-C-S= |
10GBASE-DWDM tunable SFP+, Limiting Interface (50-GHz ITU grid) |
See Table 4 |
