The ATN 910D-A features a compact, fixed configuration design. This architecture provides high port density in a small space. 1U space-saving chassis.
The platform supports a robust set of IPv4 and IPv6 routing protocols alongside advanced transport architectures:
In this configuration, the router sits at the network edge, collecting traffic from 2G, 3G, 4G, and 5G base stations. High-precision clock signaling passes through to the radios, while the 800 Gbps switching backplane handles high-bandwidth mobile data toward the aggregation core. 2. VIP Enterprise Private Lines Huawei Atn 910d-a Datasheet
Fine-grained hardware-based filtering for traffic blocking and management isolation.
These dates allow network planners to align their hardware refresh cycles and support contracts with the product’s official lifecycle. The ATN 910D-A features a compact, fixed configuration
In the rapidly evolving landscape of telecom and enterprise networking, the demand for reliable, high-bandwidth, and low-latency aggregation devices has never been higher. As operators transition from 4G to 5G and enterprises expand their SD-WAN capabilities, the role of the cell site gateway (CSG) becomes critical.
Includes 16 x 25GE/10GE/GE and 8 x 10GE/GE/FE ports. The platform supports a robust set of IPv4
Rugged enough for unheated telecom shelters.
The ATN 910D-A is engineered for non-blocking forwarding under real-world traffic patterns.
The Huawei ATN 910D-A is a case-shaped routing platform designed for 5G mobile backhaul, enterprise leased lines, and metro aggregation networks. As part of Huawei's NetEngine ATN series, this multiservice access router helps operators navigate the transition from legacy transport architectures to high-bandwidth, low-latency 5G transport networks.
| Sync Feature | Specification | | :--- | :--- | | Synchronous Ethernet (SyncE) | ITU-T G.8262 (EEC option 1 & 2) | | IEEE 1588v2 (PTP) | Ordinary clock, Boundary clock, Transparent clock profiles: Telecom (G.8275.1) | | GNSS input | Via external GPS/BDS module (RJ45 or 1PPS+ToD) | | Time accuracy | ±5 ns (with boundary clock mode over < 20 hops) | | Holdover performance | < 1.5 µs over 24 hours (with OCXO) |