The ES0D0G24SC00 can be installed in:
The S7700 series switches (S7700 for short) are high-end smart routing switches designed for nextgenerationenterprise networks. The S7700 design is based on Huawei’s intelligent multi-layer switching technology to provide intelligent service optimization methods, such as MPLS VPN, traffic analysis, comprehensive H-QoS policies, controllable multicast, load balancing, and security, in addition to high-performanceLayer 2 to Layer 4 switching services.
Functional Positioning and Target Users of the Huawei ES0D0G24SC00 Interface Card
The Huawei ES0D0G24SC00 Interface Card is engineered for enterprise network environments demanding reliable, high-capacity data transmission. Primarily compatible with Huawei S7700 series switches, this module targets IT professionals and network architects seeking scalable port expansion with flexible interface options. It offers 24 ports supporting 100/1000BASE-X Gigabit Ethernet speeds to enhance existing infrastructure without extensive overhaul. The card’s hot-swappable feature allows system administrators to perform maintenance or upgrades with minimal disruption. Positioned for data centers, campus networks, and service provider environments, this hardware component assures continuity and ease of network evolution critical to enterprise operations. The product efficiently meets the needs of organizations managing intensive data traffic flows and requiring robust connectivity solutions.
Technical Features and Measurable Specifications of the Huawei ES0D0G24SC00 Interface Card
This interface card integrates 24 Gigabit Ethernet optical ports supporting high-speed 100/1000BASE-X transmission via SFP connectors. Compliant with IEEE 802.3z and 802.3ab standards, it guarantees interoperability and network reliability. The card supports distributed forwarding technology enabling high concurrency and efficient data forwarding across multiple layers. Its design facilitates compatibility with an array of SFP optical and copper modules, increasing deployment versatility across fiber and copper links. Physical dimensions are precisely 394.7 mm by 426.8 mm by 35.1 mm, with a weight of 2.66 kg, optimized for space- and power-sensitive environments. Power consumption is capped at 63 watts, with operational temperature tolerances from 0°C to 45°C. These detailed specifications ensure integration into existing Huawei S7700 infrastructure with stable, high-performance capabilities.
Industry Applications and Real-World Value of the Huawei ES0D0G24SC00 Interface Card
The Huawei ES0D0G24SC00 serves critical roles in expanding network capacity within data centers, enterprise campus environments, and service provider backbones. Its high-port density and multi-layer switching capability enhance network throughput, aiding advanced services such as MPLS VPN and traffic analysis. The card supports seamless network upgrades requiring Gigabit optical links, enabling organizations to align infrastructure with evolving bandwidth demands. Its hot-swappable design reduces operational downtime, essential for mission-critical applications demanding maximum availability. The modular flexibility accommodates diverse network topologies, supporting both fiber and copper mediums. By facilitating efficient, scalable network expansion, the interface card delivers quantifiable ROI through improved data handling, operational continuity, and adherence to IEEE standards for future-proof deployments.
Product Advantages
Structural and System Design Advantages of the Huawei ES0D0G24SC00 Interface Card
The Huawei ES0D0G24SC00 Interface Card features a modular architecture specifically tailored for integration with Huawei S7700 switches, enabling straightforward slot-based deployment and upgrade. Its hardware supports hot swapping, which optimizes overall system uptime during maintenance or network expansion. The distributed forwarding technology incorporated within the design enhances packet processing efficiency, leveraging concurrent data forwarding capabilities. This design choice reduces latency and bottlenecks in high-demand network environments. The card’s compatibility with broad SFP optical and copper modules introduces significant versatility, supporting heterogeneous network infrastructures and simplifying inventory management. These structural advantages ensure that the interface card aligns with contemporary demands for adaptable, resilient network hardware in enterprise scenarios.
Performance, Usability, and User Value Offered by the Huawei ES0D0G24SC00 Interface Card
From a performance perspective, the Huawei ES0D0G24SC00 Interface Card sustains high throughput at Gigabit speeds with guaranteed compliance to IEEE standards 802.3z and 802.3ab. Its hot-swappable capability delivers operational flexibility by enabling live replacements and expansions without service interruptions. The card’s distributed forwarding and multi-layer switching optimize network latency and traffic prioritization, essential for latency-sensitive applications. Installation and management are streamlined thanks to plug-and-play compatibility with the Huawei S7700 platform and supported SFP modules. End users benefit from improved network resilience, scalable port density, and simplified maintenance workflows. Consequently, this product minimizes downtime and maximizes productivity in enterprise networking operations.
Functions of the ES0D0G24SC00
|
Function |
Description |
|---|---|
|
Basic function |
Provides twenty-four GE optical ports for data transmission and switching. |
|
Distributed forwarding |
Performs concurrent data forwarding using a distributed data plane. |
|
Hot swapping |
The ES0D0G24SC00 is hot swappable. |
|
Attribute |
Description |
|---|---|
|
Connector type |
SFP |
|
Optical port attributes |
Depend on the SFP optical module used. For details about optical modules supported by the ES0D0G24SC00 and their attributes, see FE SFP/eSFP Optical Modules, GE eSFP Optical Modules, GE-CWDM eSFP Optical Modules, and GE-DWDM eSFP Optical Modules. |
|
Standards compliance |
IEEE 802.3z |
|
Frame format |
Ethernet_II, Ethernet_SAP, Ethernet_SNAP |
|
Network protocol |
IP |
100/1000BASE-X optical port with a copper module installed
|
Attribute |
Description |
|---|---|
|
Connector type |
SFP |
|
Optical port attributes |
Depend on the SFP copper module used. For details on the copper modules supported by the cards and attributes of the copper modules, see GE SFP Copper Modules (10 Mbit/s, 100 Mbit/s and 1000 Mbit/s rates). |
|
Standards compliance |
IEEE 802.3ab |
|
Frame format |
Ethernet_II, Ethernet_SAP, Ethernet_SNAP |
|
Network protocol |
IP |
| Item | ES0D0G24SC00 | ||
| Apply to S7700 Switch | |||
| Optical port attributes | |||
| Connector type | SFP | ||
| Optical port attributes | Depend on the SFP optical module used | ||
| Standards compliance | IEEE 802.3z | ||
| Frame format | Ethernet_II, Ethernet_SAP, Ethernet_SNAP | ||
| Network protocol | IP | ||
| Attributes of FE optical modules | |||
| Operating Temperature | 0°C to 70°C (32°F to 158°F) | ||
| Model | Transmission Distance (km) | Standard | Fiber Type |
| SFP-FE-SX-MM1310 (SFP optical module) | ≤ 2 | 100base-FX | Fiber mode: multimode Core diameter: 50 μm or 62.5 μm Connector type: LC |
| eSFP-FE-LX-SM1310 | ≤ 15 | 100base-LX | Fiber mode: single-mode Connector type: LC |
| S-SFP-FE-LH40-SM1310 | ≤ 40 | ||
| S-SFP-FE-LH80-SM1550 | ≤ 80 | ||
| SFP-FE-LX-SM1310-BIDI (Single-fiber bidirectional) | ≤ 15 | 100base-BX | |
| SFP-FE-LX-SM1550-BIDI (Single-fiber bidirectional) | |||
| Attributes of GE optical modules | |||
| eSFP-GE-SX-MM850 | ≤ 0.22 | 1000base-SX | Fiber mode: multimode Modal Bandwidth: 160 MHz*km Core diameter: 62.5 μm Connector type: LC |
| ≤ 0.275 | Fiber mode: multimode (OM1) Connector type: LC | ||
| ≤ 0.5 | Fiber mode: multimode Modal Bandwidth: 400 MHz*km Core diameter: 50 μm Connector type: LC | ||
| ≤ 0.55 | Fiber mode: multimode (OM2) Connector type: LC | ||
| ≤ 1 | Fiber mode: multimode (OM3) Connector type: LC | ||
| SFP-GE-LX-SM1310 | ≤ 10 | 1000base-LX/LH | Fiber mode: single-mode Connector type: LC |
| S-SFP-GE-LH40-SM1310 | ≤ 40 | ||
| S-SFP-GE-LH40-SM1550 | |||
| S-SFP-GE-LH80-SM1550 | ≤ 80 | 1000base-ZX | |
| eSFP-GE-ZX100-SM1550 | ≤ 100 | ||
| SFP-GE-LX-SM1310-BIDI (Single-fiber bidirectional) | ≤ 10 | 1000base-BX | |
| SFP-GE-LX-SM1490-BIDI (Single-fiber bidirectional) | |||
| LE2MGSC40DE0 (Single-fiber bidirectional) | ≤ 40 | ||
| LE2MGSC40ED0 (Single-fiber bidirectional) | |||
| SFP-GE-ZBXD1 (Single-fiber bidirectional)can only be used on switch running V200R008C00 or later version. | ≤ 80 | 1000base-BX | |
| SFP-GE-ZBXU1 (Single-fiber bidirectional)can only be used on switch running V200R008C00 or later version. | |||
| SFP-GE-BXU1-SC (Single-fiber bidirectional) | ≤ 10 | 1000base-BX | Fiber mode: single-mode Connector type: SC |
| Attributes of eSFP CWDM optical modules | |||
| Center Wavelength (nm), Model | |||
| 1471, CWDM-SFPGE-1471 | 1491, CWDM-SFPGE-1491 | 1511, CWDM-SFPGE-1511 | 1531, CWDM-SFPGE-1531 |
| 1551, CWDM-SFPGE-1551 | 1571, CWDM-SFPGE-1571 | 1591, CWDM-SFPGE-1591 | 1611, CWDM-SFPGE-1611 |
| Specifications | Encapsulation type: eSFP | ||
| Transmission distance: ≤ 80 km | |||
| Fiber type: single-mode, LC | |||
| Standard: CWDM | |||
| Operating temperature: 0°C to 70°C (32°F to 158°F) | |||
| Transmit power: 0 dBm to 5.0 dBm Receiver sensitivity: ≤ -28.0 dBm Overload optical power: -9.0 dBm Extinction ratio: ≥ 8.5 dB | |||
| Attributes of eSFP DWDM optical modules | |||
| Center Wavelength (nm), Model | |||
| 1529.55, DWDM-SFPGE-1529-55 | 1530.33, DWDM-SFPGE-1530-33 | 1531.12, DWDM-SFPGE-1531-12 | 1531.90, DWDM-SFPGE-1531-90 |
| 1532.68, DWDM-SFPGE-1532-68 | 1533.47, DWDM-SFPGE-1533-47 | 1534.25, DWDM-SFPGE-1534-25 | 1535.04, DWDM-SFPGE-1535-04 |
| 1535.82, DWDM-SFPGE-1535-82 | 1536.61, DWDM-SFPGE-1536-61 | 1537.40, DWDM-SFPGE-1537-40 | 1538.19, DWDM-SFPGE-1538-19 |
| 1538.98, DWDM-SFPGE-1538-98 | 1539.77, DWDM-SFPGE-1539-77 | 1540.56, DWDM-SFPGE-1540-56 | 1541.35, DWDM-SFPGE-1541-35 |
| 1542.14, DWDM-SFPGE-1542-14 | 1542.94, DWDM-SFPGE-1542-94 | 1543.73, DWDM-SFPGE-1543-73 | 1544.53, DWDM-SFPGE-1544-53 |
| 1545.32, DWDM-SFPGE-1545-32 | 1546.12, DWDM-SFPGE-1546-12 | 1546.92, DWDM-SFPGE-1546-92 | 1547.72, DWDM-SFPGE-1547-72 |
| 1548.51, DWDM-SFPGE-1548-51 | 1549.32, DWDM-SFPGE-1549-32 | 1550.12, DWDM-SFPGE-1550-12 | 1550.92, DWDM-SFPGE-1550-92 |
| 1551.72, DWDM-SFPGE-1551-72 | 1552.52, DWDM-SFPGE-1552-52 | 1553.33, DWDM-SFPGE-1553-33 | 1554.13, DWDM-SFPGE-1554-13 |
| 1554.94, DWDM-SFPGE-1554-94 | 1555.75, DWDM-SFPGE-1555-75 | 1556.55, DWDM-SFPGE-1556-55 | 1557.36, DWDM-SFPGE-1557-36 |
| 1558.17, DWDM-SFPGE-1558-17 | 1558.98, DWDM-SFPGE-1558-98 | 1559.79, DWDM-SFPGE-1559-79 | 1560.61, DWDM-SFPGE-1560-61 |
| Specifications | Encapsulation type: eSFP | ||
| Transmission distance: ≤ 120 km | |||
| Fiber type: single-mode, LC | |||
| Standard: DWDM | |||
| Operating temperature: 0°C to 45°C (32°F to 113°F) | |||
| Transmit power: 0 dBm to 4.0 dBm Receiver sensitivity: ≤ -28.0 dBm Overload optical power: -8.0 dBm Extinction ratio: ≥ 8.2 dB | |||
| Physical specifications | |||
| Dimensions(W x D x H): | 394.7 mm x 426.8 mm x 35.1 mm (15.5 in. x 16.8 in. x 1.4 in.) | ||
| Weight: | 2.66 kg (5.86 lb) | ||
| Maximum power consumption: | 63 W | ||
| Environment parameters | |||
| Operating temperature | 0°C to 45°C (32°F to 113°F) | ||
| Operating relative humidity | 5% RH to 95% RH (noncondensing) | ||
| Storage temperature | -40°C to +70°C (-40°F to +158°F) | ||
| Storage relative humidity | 5% RH to 95% RH (noncondensing) | ||
Use Scenarios
Expanding Network Capacity in Data Center Environments
In large-scale data centers, managing increased bandwidth demands and port density is a critical challenge. The Huawei ES0D0G24SC00 Interface Card enables scale-out of Huawei S7700 switches by providing 24 additional 100/1000BASE-X optical ports, addressing growth requirements efficiently. Its hot-swappable design supports capacity upgrades without requiring network downtime, supporting continuity in mission-critical data environments. The card’s compliance with IEEE standards assures seamless integration within complex data center fabrics. By leveraging distributed forwarding, the card optimizes concurrent traffic handling, improving overall network throughput. Network administrators can thus incorporate this interface card to augment switch port capacity and sustain high-performance connectivity integral to data center operations and cloud service delivery infrastructures.
Enhancing Campus Network Performance and Flexibility
In enterprise campus networks, flexible connectivity and reliable data transmission are essential for supporting diverse user requirements and application demands. The Huawei ES0D0G24SC00 Interface Card supports this by offering 24 Gigabit optical ports compatible with various SFP modules, allowing mixed fiber and copper network deployments. Its modular compatibility with Huawei S7700 switches facilitates incremental capacity expansion with minimal configuration complexity. The hot-swappable feature supports maintenance and upgrades without disrupting network services, critical for environments requiring high availability. This product’s ability to support multi-layer switching and routing optimizes traffic flows and network segmentation, enhancing both security and performance. Consequently, campus networks can efficiently manage increased traffic volumes and evolving service demands with this interface card integrated into their architecture.
ES0D0G24SC00 FAQ
Q1: Is it compatible with Huawei S5720 switches? Will there be a bandwidth bottleneck when 24 ports are simultaneously operating at full gigabit speed?
A1: Fully compatible! Supports the entire S5700/S6700 series, with backplane bandwidth ≥24Gbps. Full-load gigabit transmission is bottleneck-free, meeting the basic optical access needs of small and medium-sized networks.
Q2: How is the transmission stability over 10km when using single-mode fiber to connect enterprise branches? How much more affordable is it compared to the enhanced version?
A2: Signal attenuation <0.25dB within 10km, no packet loss, no latency fluctuations; the price is 25% lower than the long-distance version and 40% lower than the high-end version, offering the best cost-performance ratio when no special functional requirements are needed.
Q3: How to choose between 16/32-port / enhanced version / high-end gigabit version line boards?
A3: 16 ports are suitable for <15 devices, 32 ports are redundant, the enhanced version is suitable for special needs, and the high-end version is over budget; for 15-30 gigabit optical devices + ≤15km transmission + basic stability requirements, this product has the best compatibility.
| Module Name | Maximum Transmission Distance |
| FE SFP/eSFP Optical Modules | |
| SFP-FE-SX-MM1310 | 2 km |
| eSFP-FE-LX-SM1310 | 15 km |
| S-SFP-FE-LH40-SM1310 | 40 km |
| S-SFP-FE-LH80-SM1550 | 80 km |
| SFP-FE-LX-SM1310-BIDI (Single-Fiber-Bidirectional Module) | 15 km |
| SFP-FE-LX-SM1550-BIDI (Single-Fiber-Bidirectional Module) | 15 km |
| GE eSFP Optical Modules | |
| eSFP-GE-SX-MM850 |
|
| SFP-GE-LX-SM1310 | 10 km |
| S-SFP-GE-LH40-SM1310 | 40 km |
| S-SFP-GE-LH40-SM1550 | 40 km |
| S-SFP-GE-LH80-SM1550 | 80 km |
| eSFP-GE-ZX100-SM1550 | 100 km |
| SFP-GE-LX-SM1310-BIDI (Single-Fiber-Bidirectional Module) | 10 km |
| SFP-GE-LX-SM1490-BIDI (Single-Fiber-Bidirectional Module) | 10 km |
| LE2MGSC40DE0 (Single-Fiber-Bidirectional Module) | 40 km |
| LE2MGSC40ED0 (Single-Fiber-Bidirectional Module) | 40 km |
| SFP-GE-ZBXD1 (Single-Fiber-Bidirectional Module) | 80 km |
| SFP-GE-ZBXU1 (Single-Fiber-Bidirectional Module) | 80 km |
| SFP-GE-BXU1-SC (Single-Fiber-Bidirectional Module) | 10 km |
| GE CSFP Optical Modules | |
| CSFP-GE-FE-BXD1 | 10 km |
| CSFP-GE-FE-BIDI2 | 20 km |
| CSFP-GE-FE-BIDI4 | 40 km |
| GE-CWDM eSFP Optical Modules | |
| CWDM-SFPGE-1471 | 80 km |
| CWDM-SFPGE-1491 | 80 km |
| CWDM-SFPGE-1511 | 80 km |
| CWDM-SFPGE-1531 | 80 km |
| CWDM-SFPGE-1551 | 80 km |
| CWDM-SFPGE-1571 | 80 km |
| CWDM-SFPGE-1591 | 80 km |
| CWDM-SFPGE-1611 | 80 km |
| GE-CWDM eSFP Optical Modules | |
| CWDM-SFPGE-1271 | 80 km |
| CWDM-SFPGE-1291 | 80 km |
| CWDM-SFPGE-1311 | 80 km |
| CWDM-SFPGE-1331 | 80 km |
| CWDM-SFPGE-1351 | 80 km |
| CWDM-SFPGE-1371 | 80 km |
| CWDM-SFPGE-1391 | 80 km |
| CWDM-SFPGE-1411 | 80 km |
| CWDM-SFPGE-1431 | 80 km |
| CWDM-SFPGE-1451 | 80 km |
| CWDM-SFPGE-1471 | 80 km |
| CWDM-SFPGE-1491 | 80 km |
| CWDM-SFPGE-1511 | 80 km |
| CWDM-SFPGE-1531 | 80 km |
| CWDM-SFPGE-1551 | 80 km |
| CWDM-SFPGE-1571 | 80 km |
| CWDM-SFPGE-1591 | 80 km |
| CWDM-SFPGE-1611 | 80 km |
| GE-DWDM eSFP Optical Modules | |
| DWDM-SFPGE-1560-61 | 120 km |
| 10GE SFP+ Optical Modules | |
| SFP-10G-USR | 0.1 km |
| OSXD22N00 |
|
| OMXD30000 |
|
| SFP-10G-iLR | 1.4 km |
| OSX010000 | 10 km |
| OSX040N01 | 40 km |
| SFP-10G-ER-1310 | 40 km |
| SFP-10G-ZR | 80 km |
| SFP-10G-BXU1 (Single-Fiber-Bidirectional Module) | 10 km |
| SFP-10G-BXD1 (Single-Fiber-Bidirectional Module) | 10 km |
| SFP-10G-ER-SM1330-BIDI (Single-Fiber-Bidirectional Module) | 40 km |
| SFP-10G-ER-SM1270-BIDI (Single-Fiber-Bidirectional Module) | 40 km |
| 10GE XFP Optical Modules | |
| XFP-SX-MM850 |
|
| XFP-STM64-LX-SM1310 | 10 km |
| XFP-STM64-LH40-SM1550 | 40 km |
| XFP-STM64-SM1550-80km | 80 km |
| 10GE-CWDM SFP+ Optical Modules | |
| SFP-10G-ZCW1471 | 70 km |
| SFP-10G-ZCW1491 | 70 km |
| SFP-10G-ZCW1511 | 70 km |
| SFP-10G-ZCW1531 | 70 km |
| SFP-10G-ZCW1551 | 70 km |
| SFP-10G-ZCW1571 | 70 km |
| SFP-10G-ZCW1591 | 70 km |
| SFP-10G-ZCW1611 | 70 km |
| 10GE-CWDM XFP Optical Modules | |
| CWDM-XFP10G-1471 | 70 km |
| CWDM-XFP10G-1491 | 70 km |
| CWDM-XFP10G-1511 | 70 km |
| CWDM-XFP10G-1531 | 70 km |
| CWDM-XFP10G-1551 | 70 km |
| CWDM-XFP10G-1571 | 70 km |
| CWDM-XFP10G-1591 | 70 km |
| CWDM-XFP10G-1611 | 70 km |
| 10GE-DWDM SFP+ Optical Modules | |
| SFP-10G-ZDWT | 60 km |
| 10GE-DWDM XFP Optical Modules | |
| DWDM-XFP10G-1533-47 | 80 km |
| DWDM-XFP10G-1534-25 | 80 km |
| DWDM-XFP10G-1535-04 | 80 km |
| DWDM-XFP10G-1552-52 | 80 km |
| DWDM-XFP10G-1553-33 | 80 km |
| DWDM-XFP10G-1554-13 | 80 km |
| DWDM-XFP10G-1530-33 | 80 km |
| DWDM-XFP10G-1549-32 | 80 km |
| DWDM-XFP10G-1531-12 | 80 km |
| DWDM-XFP10G-1531-90 | 80 km |
| DWDM-XFP10G-1550-12 | 80 km |
| DWDM-XFP10G-1550-92 | 80 km |
| DWDM-XFP10G-1532-68 | 80 km |
| DWDM-XFP10G-1551-72 | 80 km |
| DWDM-XFP10G-1529-55 | 80 km |
| DWDM-XFP10G-1548-51 | 80 km |
| 40GE QSFP+ Optical Modules | |
| QSFP-40G-SR4 |
|
| QSFP-40G-iSR4 |
|
| QSFP-40G-eSR4 |
|
| QSFP-40G-iSM4 | 1.4 km |
| QSFP-40G-eSM4 | 10 km |
| QSFP-40G-LX4 |
Single-mode fiber: 2 km Multimode fiber (OM3): 0.15 km |
| QSFP-40G-LR4 | 10 km |
| QSFP-40G-ER4 | 40 km |
| QSFP-40G-SR-BD |
|
| QSFP-40G-SDLC-PAM |
|
| QSFP-40G-eSDLC-PAM |
|
| 40GE CFP Optical Modules | |
| CFP-40G-SR4 |
|
| CFP-40G-LR4 | 10 km |
| CFP-40G-ER4 | 40 km |
| CFP-40G-ZR4 | 80 km |
| 100GE CFP Optical Modules | |
| CFP-100G-SR10 |
|
| CFP-100G-LR4 | 10 km |
| CFP-100G-ER4 | 40 km |
| 100GE QSFP28 Optical Modules | |
| QSFP28-100G-LR4 | 10 km |
| QSFP28-100G-10KM | 10 km |
| QSFP28-100G-PSM4 | 500 m |
| QSFP28-100G-SR4 |
|
| QSFP-100G-eSR4 |
|
| QSFP-100G-CLR4 | 2 km |
| QSFP-100G-CWDM4 | 2 km |
| QSFP-100G-ER4-Lite | Single-mode fiber (G.652):
|
| GPON Optical Modules | |
| H87MMA5671A2 | 20 km |
| Industrial Optical Modules | |
| OGSM01880 |
|
| OGSC10DD0 | 10 km |
| OGSC40DD0 | 40 km |
| SFP+10GE-LH10-SM1310 | 10 km |
| SFP-10G-SR | 0.3 km |
| SFP-10G-iLR | 1.4 km |
| SFP-10G-BXU1 (Single-Fiber-Bidirectional Module) | 10 km |
| SFP-10G-BXD1 (Single-Fiber-Bidirectional Module) | 10 km |
| SFP-GE-BX-D1-I (Single-Fiber-Bidirectional Module) | 10 km |
| SFP-GE-BX-U1-I (Single-Fiber-Bidirectional Module) | 10 km |
