Enquire: Asia & Africa - +65-98008081 USA - +1-919-995-4114

Home Switching Data Center Switches Huawei CE9855-32DQ 32x400GE Data Center Switch CE9800 AI

Huawei CE9855-32DQ 32x400GE Data Center Switch CE9800 AI

Brand:

The Huawei CE9855-32DQ is a CE9800 series 400GE data center switch designed for AI, cloud, and hyperscale environments. With 32×400GE QSFP112 ports and modular PSU/fan architecture, it supports scalable spine-leaf deployments, ultra-low latency networking, and flexible enterprise-grade infrastructure design.

OVERVIEW

  • The Huawei CE9855-32DQ is a next-generation 400GE data center switch designed to meet the growing demands of AI clusters, cloud computing, hyperscale data centers, and high-performance enterprise networks. As part of the advanced CE9800 series, this switch delivers ultra-high bandwidth with 32 × 400GE QSFP112 ports, enabling seamless spine-leaf architecture deployment and ultra-low latency performance.
  • Built for flexible data center infrastructure, the CE9855-32DQ comes without pre-installed fan and power supply modules, allowing customers to customize airflow direction and power redundancy based on deployment requirements. It supports high-density 400GE connectivity with backward compatibility options, making it ideal for scalable core, spine, and aggregation layers.
  • With carrier-grade reliability, intelligent traffic management, and energy-efficient architecture, the CE9855-32DQ ensures stable, secure, and future-ready networking for mission-critical environments.

USE CASES

  • AI and machine learning training cluster networking
  • Hyperscale cloud data center spine layer deployment
  • Enterprise core network modernization
  • High-performance computing (HPC) interconnect fabric
  • Cloud service provider backbone infrastructure
  • Data center spine-leaf architecture design
  • Large-scale virtualization and container networking
  • Big data analytics infrastructure connectivity
  • Disaster recovery and multi-site data replication networks

KEY FEATURES

  • Ultra-low latency forwarding architecture for performance-critical workloads
  • Modular power supply design for flexible redundancy planning
  • Modular fan system enabling customized airflow configurations
  • High scalability for large-scale enterprise and cloud expansion
  • Non-blocking high-performance switching architecture (as specified)
  • Supports advanced data center virtualization environments
  • Energy-efficient design optimized for modern data centers
  • Flexible deployment in core, spine, and aggregation layers
  • Built for high availability and mission-critical uptime requirements
  • Enables simplified network scaling for evolving workloads
  • Supports infrastructure modernization and AI-driven networking demands

TECHNICAL SPECIFICATIONS

  • Brand: Huawei
  • Model: CE9855-32DQ
  • Series: CE9800 Data Center Switch
  • Product Type: Data Center Ethernet Switch
  • Ports: 32 × 400GE QSFP112
  • Port Type: QSFP112
  • Port Speed: 400GE
  • Switching Architecture: High-performance non-blocking design
  • Deployment Architecture: Spine / Leaf / Core / Aggregation
  • Power Supply: Modular (PSU not included)
  • Power Redundancy: Supported via modular PSU design
  • Cooling System: Modular fan trays (not included)
  • Airflow Options: Front-to-back / back-to-front (based on fan modules)
  • Form Factor: Rack-mountable chassis
  • Network Role: Data center spine or core switch
  • Target Workload: AI clusters, cloud computing, hyperscale data centers
  • Scalability: Designed for large-scale fabric expansion

WHY CHOOSE THIS PRODUCT?

  • Organizations select this switch when building high-performance, future-ready data center fabrics that must support AI workloads and cloud-scale traffic growth.
  • It offers a strong balance of port density and scalability, making it suitable for spine or core layers in modern architectures.
  • Enterprises benefit from its 400GE-native design, reducing the need for multiple aggregation layers and simplifying network topology.
  • The modular PSU and fan design allows infrastructure teams to tailor redundancy and cooling strategies to specific environments.
  • It is particularly valuable for organizations standardizing on spine-leaf architectures for predictable performance and easier scaling.
  • Compared to lower-tier switches, it reduces long-term upgrade cycles by supporting high-capacity bandwidth from the outset.

CUSTOMER REVIEW

No Reviews Found

FAQ

No FAQs Found