RT2508-4S4M8
Open Enterprise Edge Router Based on Marvell OCTEON 10 CN102 Chip
The above modules can be mixed and matched, custom combinations are available. Please send us emails for more detailed information!
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Preloaded with Enterprise SONiC Routing OS
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1-Year Software Upgrade Subscription
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8 x 2.5GHz ARM64 Neoverse N2 Core
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16GB pluggable DDR5 SO-DIMM, up to 48G
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4 x 10GE, 4 x 2.5GE and 8 x 1GE, optional 8 x 1GE PoE+, 4 x 2.5GE PoE++ @150W budget
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True inline crypto engine; Optional M.2 SSD up to 4TB
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Optional PTP module with 20ns accuracy and holdover > 8 hours
Enterprise-Ready Edge Router/Gateway 8-Core ARM 64-bit Neoverse N2 | Marvell OCTEON 10 CN102
The Asterfusion RT2508-4S4M8 is a versatile, enterprise-ready edge router designed for modern networking. Built on an open architecture with modular expansion, it seamlessly adapts to campus edge and cellular WAN routing deployments, delivering up to 58Gbps switching capacity, 50Gbps Layer 3 routing throughput, and 50Gbps hardware-accelerated IPsec encryption/decryption.
Preloaded with AsterNOS-VPP, Asterfusion’s enterprise SONiC routing OS, the platform delivers an out-of-the-box open router requiring no software adaptation. By combining SONiC control plane reliability with DPDK-accelerated VPP forwarding, it supports full Internet BGP scale, OSPFv2/v3, and MP-BGP. Features like 256-way ECMP, Policy-Based Routing, Multi-VRF, and EVPN-VXLAN enable intelligent traffic steering, resilient multi-path load balancing, and secure overlay segmentation.
Open Enterprise Router Application Scenarios
The open enterprise router leverages a hardware-software disaggregated architecture, combining an Enterprise SONiC control plane with a hardware-optimized data plane. This architecture suits diverse application scenarios and flexible deployments.
Campus Edge Router: AsterNOS-VPP
- The Campus Edge Router enables edge routing scenarios for effective egress traffic management and scalable cloud federation.
- Supporting protocols such as BGP and VXLAN to manage complex traffic for edge gateways.
- Hardware-optimized vector packet technology and DPDK accelerate data plane forwarding.
- Enables exact traffic control across apps with comprehensive QoS policies.
ISP BNG/BRAS Networking
- RT2508: High-Performance BNG/BRAS for Carrier-Grade Networks
- Granular Session Management: Full IPoE/PPPoE access with integrated AAA & dynamic billing.
- Multi-dimensional H-QoS: User/Service-based scheduling for IPTV, VoIP, and Data.
Multi-WAN Internet
- HA & VRRP Sync Group: Ensures seamless WAN failover using VRRP and VRRP Sync Group to align L2 state with routing updates.
- Flexible IPv4/v6 Transition: Implements NAT, CGNAT, MAP-E, and MAP-T for scalable IPv4 reuse and IPv6 transition.
- Granular Traffic Control: Integrates dynamic SLA monitoring with Routing track to guarantee critical application performance.
Operating System
AsterNOS-VPP
AsterNOS-VPP bridges SONiC’s robust management control plane with VPP’s vector-based packet processing architecture. Replacing standard SAI with a VPP-integrated translation layer (libsaivpp), it executes L3 routing, firewall, VPN, and NAT at line rate across both hardware and virtual platforms.
To maximize forwarding efficiency, the OS leverages an optimized DPDK framework tightly integrated with Marvell hardware crypto and offload engines. It extends core routing capability through a rich suite of VPP plugins, including QUIC, SRv6, NAT64, LACP, LLDP, and SRTP, enabling granular service expansion without compromising throughput.
Rich Software Features
Domain & Location-Based Traffic Control
Domain & Location-Based Traffic Control
Enterprise Edge Security with SPI & uRPF
Enterprise Edge Security with SPI & uRPF
Wire-speed Encryption and Decryption – IPsec and WireGuard VPN
Wire-speed Encryption and Decryption – IPsec and WireGuard VPN
Point-to-Point Layer 2 Encryption – MACSec
Point-to-Point Layer 2 Encryption – MACSec
Enterprise 1G/2.5G RJ45 PoE+ Router with PTP Support(Optional)
Modern Network Monitoring & Visualization
Unified Visualization, Management & O&M with OpenWiFi Network Controller
Specification
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Hardware Panel
In The Box
FAQs
Unlike traditional routers that rely heavily on general-purpose x86 CPUs or closed proprietary ASICs, the RT2508 is built on a Marvell OCTEON CN102 DPU (8-core ARM64) and runs AsterNOS-VPP—an open routing OS combining SONiC’s control plane with a DPDK-accelerated VPP forwarding plane. This architecture offloads line-rate Layer 3 routing (50Gbps) and IPsec crypto processing (50Gbps) directly to hardware, giving you carrier-grade performance, open programmable APIs (REST API, gNMI, NETCONF), and no vendor lock-in.
No. The RT2508 features Marvell OCTEON 10 DPU’s true inline cryptographic engine, which fully offloads cipher operations (such as AES-GCM-256 and HMAC-SHA2-512) from the main processor. This enables wire-speed IPsec performance up to 50Gbps without consuming main CPU cycles or adding latency to concurrent Layer 3 routing, CGNAT, or firewall inspection.
The RT2508 offers a versatile fixed port configuration combined with rich modular options in a compact 1RU form factor:
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Fixed Interfaces: 4 x 10GE SFP+ uplink ports, 4 x 2.5GE RJ45 (PoE++ enabled), and 8 x 1GE RJ45 (PoE+ enabled).
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Wireless & Expansion Slots: Includes M.2 slots supporting optional 5G/LTE dual-SIM modules, Wi-Fi 7/6E, and M.2 NVMe SSDs (up to 4TB) for local storage, telemetry logging, or containerized applications.
The RT2508 supports both traditional network management via Klish CLI and modern network automation via REST API, gNMI, and NETCONF. Because AsterNOS-VPP runs as a containerized Linux-based OS, it includes a native AsterNOS Prometheus Exporter container. You can instantly export real-time platform metrics, interface stats, and telemetry to your Prometheus server and visualize them directly on standard Grafana dashboards.
Unlike entry-level routers that rely on unstable USB dongles, the RT2508 integrates an enterprise-grade M.2 B-key slot over PCIe 3×1 supporting native 5G NR / LTE modules (up to 5.0Gbps DL / 650Mbps UL) with GNSS support. It comes with dual SIM card slots, allowing network administrators to insert SIMs from two different carriers for physical-layer carrier redundancy, lower latency, and higher bus throughput directly tied to the DPU.



