Huawei S9700 Switch EH1D2S08SX1E 8-Port 10GBASE-X and 8-Port 100/1000BASE-X and 8-Port 10/100/1000BASE-T Combo Interface Card (X1E, RJ45/SFP/SFP+).
The EH1D2S08SX1E can be installed in:
The Huawei EH1D2S08SX1E Interface Card serves as a specialized expansion module tailored for Huawei’s S9700 series chassis. Targeted towards network engineers managing small to medium-sized enterprise environments, this interface card integrates eight 10GBASE-X ports alongside eight combo ports that support 100/1000BASE-X and 10/100/1000BASE-T interfaces. This versatility enables seamless adaptation to diverse network media types, fulfilling complex connectivity requirements. The module’s compatibility with multiple slot configurations within the S9700 family allows for scalable upgrades and tailored network topology adjustments, providing administrators with efficient resource allocation while maintaining system reliability.
Advanced Switching Architecture and Comprehensive Standards Compliance
At its core, the Huawei EH1D2S08SX1E Interface Card employs a distributed forwarding architecture delivering an aggregate switching performance of up to 88 Gbit/s. This high throughput is supported by eight dedicated 10GBASE-X ports complemented by combo ports that offer RJ45, SFP, and SFP+ interfaces, enhancing the flexibility of network access. The module supports crucial standards such as IEEE802.3ae and IEEE802.3ab, as well as IPv4/IPv6 dual-stack protocols and link aggregation control protocol (LACP), facilitating efficient traffic management and redundancy. Furthermore, the hot-swappable design reduces downtime during maintenance, enabling swift replacements or upgrades without disrupting live operations, thus improving network resilience and availability.
Effective Deployment in Data Centers and Campus Networks
The Huawei EH1D2S08SX1E Interface Card finds extensive application across data centers and campus network infrastructures where high-performance switching and flexibility are pivotal. Its support for Huawei standard optical modules and multi-protocol interfaces ensures compatibility with a wide range of transmission distances and media types. This interface card enables scalable network bandwidth expansion while maintaining cost-effectiveness by focusing on essential functionalities without redundant features. Network administrators benefit from its robust performance in environments demanding reliable 10G connectivity and efficient load balancing facilitated by QoS and LACP protocols, ensuring consistent data flow and operational stability in critical enterprise scenarios.
Product Advantages
Modular Design and Seamless Integration
The design of the Huawei EH1D2S08SX1E Interface Card emphasizes modularity and adaptability within Huawei’s S9700 chassis systems. Its compact form factor and support for multiple slot configurations provide flexible physical integration tailored to varying network scale requirements. The combination of eight 10GBASE-X ports with mixed 100/1000BASE-X and 10/100/1000BASE-T combo ports reduces the need for additional interface cards, streamlining hardware deployment. Hot-swappable capability further enhances system maintainability by permitting live hardware replacements without network interruption. This architecture aligns with contemporary network upgrade strategies by promoting efficient use of switch resources and reducing total cost of ownership.
Robust Performance and User-Centric Maintenance
Within operational contexts, the Huawei EH1D2S08SX1E Interface Card delivers consistent high-speed data throughput and enhanced packet processing efficiency. The 88 Gbit/s forwarding capacity supports bandwidth-intensive applications while maintaining low latency across network segments. Support for key networking protocols such as IPv4/IPv6 dual-stack and LACP enhances traffic management and redundancy, crucial for engineered network reliability. Additionally, the hot-swappable feature minimizes maintenance windows and operational risk, contributing to user confidence and reduced downtime. Compatibility with standard Huawei optical modules allows end-users to implement varied transmission lengths without compromising performance, thereby maximizing investment in network infrastructure.
Functions and features of the EH1D2S08SX1E
| Function | Description |
|---|---|
|
Basic functions |
Provides eight 10GBASE-X ports and eight 10/100/1000M combo ports for data access and line-rate switching. |
|
Forwarding speed |
88 Gbit/s |
|
Distributed forwarding |
Performs concurrent data forwarding using a distributed data plane. |
|
Hot swapping |
The EH1D2S08SX1E is hot swappable. |
Attributes of a 10GBASE SFP+ port
| Attribute | Description |
|---|---|
| Connector type | SFP+ |
| Optical port attributes |
Depend on the SFP+ - SFP+ high-speed cable (1 m, 3 m, 5 m, 10 m), QSFP+ - 4*SFP+ high-speed cable (1 m, 3 m, 5 m), SFP+ optical module, or SFP+ optical cable used. For the optical modules supported by the EH1D2S08SX1E and their attributes, see 10GE SFP+ Optical Modules, 10GE-CWDM SFP+ Optical Modules and 10GE-DWDM SFP+ Optical Modules. |
| Standards compliance | IEEE802.3ae |
| Frame format | Ethernet_II, Ethernet_SAP, Ethernet_SNAP |
| Network protocol | IP |
Attributes of a 10/100/1000BASE-T port
| Attribute | Description |
|---|---|
| Connector type | RJ45 |
| Standards compliance | IEEE 802.3ab |
| Frame format | Ethernet_II, Ethernet_SAP, Ethernet_SNAP |
| Network protocol | IP |
Attributes of a 100/1000BASE-X port
| Attribute | Description |
|---|---|
| Connector type | SFP |
| Optical port attributes |
Depend on the SFP optical module used. For optical modules supported by the EH1D2S08SX1E 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 |
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Item |
Description |
|---|---|
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Physical specifications |
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Environment specifications |
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Use Scenarios
Application in Enterprise Data Center Network Expansion
In data center environments, the Huawei EH1D2S08SX1E Interface Card plays a critical role in scaling switching capacity to accommodate growing data traffic demands. This interface card supports high-speed 10GBASE-X connections for aggregation and core layers, while combo ports afford flexible access configurations accommodating mixed media interfaces. Its compliance with IEEE standards and support for IPv4/IPv6 dual-stack enable integration into complex network topologies with diverse protocol requirements. The hot-swappable design ensures that critical upgrades or hardware swaps can be executed with minimal disruption to live systems. This allows data center operators to systematically enhance bandwidth without compromising operational continuity or requiring extensive downtime.
Role in Campus Network Infrastructure and Management
Campus networks serving educational or corporate environments benefit from the deployment of the Huawei EH1D2S08SX1E Interface Card by facilitating reliable high-speed switching and adaptive port configurations. Its multi-interface combo ports allow diverse device connectivity across buildings or departments, supporting mixed Ethernet standards through a single interface card. The card’s forwarding capability and protocol support, including LACP and QoS, enhance network traffic distribution and prioritization, ensuring optimized bandwidth usage across concurrent access demands. Integration with standard Huawei optical modules simplifies installation in distributed network segments, promoting efficient network expansion and management aligned with organizational IT policies.
EH1D2S08SX1E FAQ
Q1: What are the core functions of this service board? How does its cost-effectiveness advantage manifest itself?
A1: It includes 8 10GE SFP+ ports, supporting stable distributed forwarding, link aggregation, and QoS; its core functions are complete and without redundancy, and its procurement cost is lower than high-end boards, making it suitable for scenarios with limited budgets.
Q2: Compared to high-end 8-port 10GE boards, what are its core advantages?
A2: The advantages are high cost-effectiveness (lower cost), streamlined and practical functions, no need to pay for redundant functions, and guaranteed basic forwarding stability, making it more suitable for small and medium-sized scenarios.
Q3: Does it require specific optical modules? Which core protocols does it support?
A3: It is compatible with Huawei standard SFP+ 10G optical modules (including models with different transmission distances); it supports IPv4/IPv6 dual-stack, LACP, and flow control, meeting the reliability requirements of small and medium-sized networks.
Q4: How do I determine if this service board needs to be deployed? Is the installation complex?
A4: Recommended for small and medium-sized networks that require 8 10 Gigabit ports, have a limited budget, and prioritize stability; supports hot-swapping, installation requires no professional tools, automatically recognizes the slot, and is plug-and-play.
| 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 |
