RG-N18010-E High-Density Core Switch

The Ruijie RG-N18010-E is a high-density core switch designed for cloud architecture networks, making it an ideal solution for data centers, metropolitan area networks (MANs), and campus environments. This switch supports an impressive configuration of up to 52 x 10GE ports and 12 x 100GE ports per line card, allowing for a total of 416 x 10GE ports and 96 x 100GE ports per switch. Its robust architecture ensures non-blocking forwarding and high-speed transmission without packet loss, making it a reliable choice for demanding networking scenarios.

Description

Technical Specifications

  • Port Configuration:
    • Up to 52 x 10GE ports per line card
    • Up to 12 x 100GE ports per line card
    • Total: Up to 416 x 10GE ports and 96 x 100GE ports per switch
  • Architecture:
    • Orthogonal architecture for low transmission loss
    • Cross-line card traffic management through switch fabric modules
  • Operating System:
    • RGOS, a fully-decoupled modular OS for high availability and live upgrades
  • Redundancy Features:
    • Hardware-level dual redundancy
    • Faulty optical port isolation
    • Dual flash chips for boot redundancy
  • Cooling System:
    • In-line fan connections with Y-shaped airflow design for enhanced heat dissipation
  • Support for SDN:
    • Rapid deployment and automated operations for campus networks

Key Features

  • High Performance: Achieves high-speed transmission and non-blocking forwarding, suitable for large-scale data centers and complex network environments.
  • Robust Reliability: Multiple hardware protections and dual redundancy ensure continuous operation without downtime.
  • Efficient Cooling: Innovative fan design and airflow management improve heat dissipation, enhancing overall system reliability.
  • Modular Design: Supports a variety of line cards, allowing customization based on specific networking needs.
  • SDN Compatibility: Facilitates rapid deployment and automated network management, streamlining operations for campus networks.