NVIDIA MetroX-2 Systems

  • InfiniBand extension up to 40 km distance

  • 2x QSFP28 + 8x QSFP56 high-speed ports

  • 100GbE and 200GbE data rate support

  • Ultra-low latency RDMA-based transfer

  • Ideal for campus connectivity, disaster recovery, and data mirroring

  • Compatible with NVIDIA Quantum Management Suite

  • Hot-swappable power and cooling systems

  • Rack-mount design for easy installation

NVIDIA MetroX-2 Systems-Q9

NVIDIA MetroX-2 Systems

Seamless Long-Distance InfiniBand Connectivity

In today’s globally connected, data-intensive environments, research institutions, universities, enterprises, and data center operators face a common challenge: how to share massive volumes of data and computing resources across geographically dispersed locations with maximum efficiency and minimal latency.

NVIDIA MetroX-2 systems deliver a purpose-built solution to bridge InfiniBand data centers across distances of 10 to 40 kilometers, offering ultra-high-performance, RDMA-based data connectivity that’s secure, scalable, and easy to deploy.

MetroX-2 extends the capabilities of InfiniBand networks beyond the boundaries of a single data center, enabling campus-wide infrastructure expansion, real-time data mirroring, disaster recovery, and distributed computing power consolidation.

By leveraging Remote Direct Memory Access (RDMA) technology, MetroX-2 ensures reliable, low-latency communication across remote sites ideal for academic research, hyperscale AI, financial services, and other mission-critical industries that demand uncompromising speed and performance.

Key Benefits

  • Seamless Multi-Site Integration: Easily connect multiple InfiniBand-based data centers or storage arrays, unifying them into a single high-performance compute fabric.
  • Long-Distance Extension: Supports distances up to 40 kilometers without sacrificing data integrity or speed.
  • Ultra-Low Latency: Leverages RDMA for direct memory-to-memory data transfer, eliminating the need for CPU intervention and minimizing delays.
  • High Bandwidth: Supports dual 100GbE (QSFP28) and eight 200Gb/s (QSFP56) ports, ensuring exceptional throughput for large data workloads.
  • Flexible Deployment Options: Available in two configurations—MTQ8100-HS2F and MTQ8200-HS2F—tailored to diverse infrastructure needs.
  • Reliability and Redundancy: Engineered with enterprise-grade hardware, hot-swappable components, and robust failover mechanisms to ensure uninterrupted operation.
  • Easy Scalability: Whether expanding existing campuses or integrating new sites, MetroX-2 allows seamless scaling without complex reconfiguration.

Applications and Use Cases

  1. Academic and Research Campuses
    MetroX-2 is ideal for higher education and scientific research institutions where compute clusters are distributed across campuses.
    It enables consolidated HPC environments, large-scale simulations, and collaborative research projects to run more efficiently by sharing resources in real-time.
  2. Disaster Recovery and Business Continuity
    For enterprises needing rapid disaster recovery solutions, MetroX-2 facilitates instant failover between geographically separated data centers, ensuring minimal downtime and data loss in case of a primary site failure.
  3. Remote Data Mirroring
    Real-time data replication across facilities is made effortless with MetroX-2’s high-speed InfiniBand connectivity, enhancing both data integrity and backup capabilities.
  4. Financial Services and AI Workloads
    From high-frequency trading to distributed AI model training, MetroX-2 provides the ultra-low latency and bandwidth necessary for high-stakes, time-sensitive operations.

Technical Specifications

Feature

Details

Product Name

NVIDIA MetroX-2 Systems

Data Rate

100GbE / 200GbE

Ports

2x QSFP28 + 8x QSFP56

Network Interface

QSFP28 / QSFP56

Technology

InfiniBand with RDMA Support

Maximum Distance

Up to 40 kilometers

Latency

Ultra-Low (sub-microsecond range)

SKU (Options)

MTQ8100-HS2F / MTQ8200-HS2F

Redundancy

Hot-swappable power and cooling modules

Management

NVIDIA Quantum Management Suite Compatible

 Product Models

SKU

OPN

Data Rate

Network Interface

Ports

Technology

920-9B110-00FH-0M2

MTQ8100-HS2F

HDR

QSFP28 and QSFP56

2x EDR and 8x HDR

InfiniBand

920-9B110-00FH-0M1

MTQ8200-HS2F

HDR

QSFP28 and QSFP56

2x EDR and 8x HDR

InfiniBand

Why Choose NVIDIA MetroX-2?

Unmatched Performance Across Distances
Traditional Ethernet solutions may struggle with latency and packet loss over extended distances. MetroX-2 eliminates these concerns by using InfiniBand and RDMA technology, providing a level of speed and reliability that’s essential for modern data workloads.

Simplified Multi-Site Management
With support for NVIDIA Quantum Management Suite, administrators gain visibility and control over complex interconnect deployments. Real-time monitoring, performance optimization, and troubleshooting tools are built-in.

Future-Proof Scalability
As organizational needs grow, MetroX-2 scales effortlessly. You can expand from connecting two locations to multiple sites across a campus or even across cities while maintaining consistent, reliable performance.

Reduced Total Cost of Ownership (TCO)
By centralizing resources and enabling remote compute and storage utilization, MetroX-2 helps reduce the need for redundant hardware, lowering both capital and operational expenses.

Detailed Port Configuration

  • 2x QSFP28 Ports: Supporting EDR InfiniBand with up to 100GbE bandwidth per port, perfect for legacy system integration or specific high-bandwidth uplinks.
  • 8x QSFP56 Ports: Delivering 200Gb/s per port, designed for next-generation InfiniBand connectivity and maximum throughput.

Hardware Design and Reliability

MetroX-2 units are built with durability and continuous operation in mind:

  • Enterprise-grade, hot-swappable power supplies ensure uptime.
  • Redundant cooling systems maintain optimal thermal conditions.
  • Standard rack-mount design for seamless integration into existing data center setups.

Deployment Scenarios

  • Single Data Center Expansion: Connecting remote storage racks or additional compute nodes without relocating equipment.
  • Campus-Wide Network Fabric: Establishing a unified compute network across multiple buildings or facilities.
  • Inter-City Data Center Bridging: Extending InfiniBand capabilities to support large-scale distributed architectures over metropolitan areas.

Conclusion

NVIDIA MetroX-2 Systems represent the pinnacle of long-distance InfiniBand extension technology.

Combining ultra-high performance, scalability, and reliability, they provide a future-ready solution for enterprises and research institutions looking to expand their compute capabilities across dispersed locations.

Whether you need disaster recovery, data mirroring, or a unified multi-site HPC environment, MetroX-2 delivers uncompromising speed, efficiency, and control.

NVIDIA MetroX-2 Systems

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NVIDIA Silicon Photonics Resources

World’s First End-to-End 800Gb/s Networking

The NVIDIA Quantum-X800 platform is the next generation of NVIDIA Quantum InfiniBand, purpose-built for trillion-parameter-scale AI models and comprised of the NVIDIA Quantum-X800 InfiniBand switchNVIDIA ConnectX®-8 SuperNIC, and LinkX cables and transceivers.

The new platform supports advanced hardware-based, In-Network Computing with Scalable Hierarchical Aggregate Reduction Protocol (SHARP)™ v4, adaptive routing, and telemetry-based congestion control, enabling a new frontier of AI innovation.

The NVIDIA Quantum-X800 InfiniBand switch provides 144 ports of 800Gb/s connectivity per port. It includes hardware-based In-Network Computing with SHARP v4, adaptive routing, telemetry-based congestion control, performance isolation capabilities, and a dedicated port supporting the Unified Fabric Manager (UFM). NVIDIA Quantum-X800 switches also add advanced power-efficiency features, including low-power link state and power profiling.

The NVIDIA Quantum-X800 switch provides increased performance and power efficiency to significantly reduce scientific computing, AI workload completion time, and energy costs.

Quantum-X silicon photonics switches further reduce total power consumption and latency by minimizing the distance and number of connections between optics and electronics.

 

NVIDIA ConnectX-8 SuperNIC

The NVIDIA ConnectX-8 SuperNIC delivers 800Gb/s connectivity with ultra-low latency and supports the latest in advanced In-Network Computing. Based on the ConnectX architecture, it continues to provide accelerated MPI hardware engines, quality of service, adaptive routing, congestion control, and more.

The NVIDIA Quantum-X800 platform connectivity options with the NVIDIA LinkX® interconnect portfolio provide the maximum flexibility for building a preferred network topology, using connectorized transceivers with passive fiber cables and linear active copper cables (LACCs).

 

Description

NVIDIA MetroX-2 Systems

Seamless Long-Distance InfiniBand Connectivity

In today’s globally connected, data-intensive environments, research institutions, universities, enterprises, and data center operators face a common challenge: how to share massive volumes of data and computing resources across geographically dispersed locations with maximum efficiency and minimal latency.

NVIDIA MetroX-2 systems deliver a purpose-built solution to bridge InfiniBand data centers across distances of 10 to 40 kilometers, offering ultra-high-performance, RDMA-based data connectivity that’s secure, scalable, and easy to deploy.

MetroX-2 extends the capabilities of InfiniBand networks beyond the boundaries of a single data center, enabling campus-wide infrastructure expansion, real-time data mirroring, disaster recovery, and distributed computing power consolidation.

By leveraging Remote Direct Memory Access (RDMA) technology, MetroX-2 ensures reliable, low-latency communication across remote sites ideal for academic research, hyperscale AI, financial services, and other mission-critical industries that demand uncompromising speed and performance.

Key Benefits

  • Seamless Multi-Site Integration: Easily connect multiple InfiniBand-based data centers or storage arrays, unifying them into a single high-performance compute fabric.
  • Long-Distance Extension: Supports distances up to 40 kilometers without sacrificing data integrity or speed.
  • Ultra-Low Latency: Leverages RDMA for direct memory-to-memory data transfer, eliminating the need for CPU intervention and minimizing delays.
  • High Bandwidth: Supports dual 100GbE (QSFP28) and eight 200Gb/s (QSFP56) ports, ensuring exceptional throughput for large data workloads.
  • Flexible Deployment Options: Available in two configurations—MTQ8100-HS2F and MTQ8200-HS2F—tailored to diverse infrastructure needs.
  • Reliability and Redundancy: Engineered with enterprise-grade hardware, hot-swappable components, and robust failover mechanisms to ensure uninterrupted operation.
  • Easy Scalability: Whether expanding existing campuses or integrating new sites, MetroX-2 allows seamless scaling without complex reconfiguration.

Applications and Use Cases

  1. Academic and Research Campuses

    MetroX-2 is ideal for higher education and scientific research institutions where compute clusters are distributed across campuses.
    It enables consolidated HPC environments, large-scale simulations, and collaborative research projects to run more efficiently by sharing resources in real-time.
  2. Disaster Recovery and Business Continuity

    For enterprises needing rapid disaster recovery solutions, MetroX-2 facilitates instant failover between geographically separated data centers, ensuring minimal downtime and data loss in case of a primary site failure.
  3. Remote Data Mirroring

    Real-time data replication across facilities is made effortless with MetroX-2’s high-speed InfiniBand connectivity, enhancing both data integrity and backup capabilities.
  4. Financial Services and AI Workloads

    From high-frequency trading to distributed AI model training, MetroX-2 provides the ultra-low latency and bandwidth necessary for high-stakes, time-sensitive operations.

Technical Specifications

Feature

Details

Product Name

NVIDIA MetroX-2 Systems

Data Rate

100GbE / 200GbE

Ports

2x QSFP28 + 8x QSFP56

Network Interface

QSFP28 / QSFP56

Technology

InfiniBand with RDMA Support

Maximum Distance

Up to 40 kilometers

Latency

Ultra-Low (sub-microsecond range)

SKU (Options)

MTQ8100-HS2F / MTQ8200-HS2F

Redundancy

Hot-swappable power and cooling modules

Management

NVIDIA Quantum Management Suite Compatible

 Product Models

SKU

OPN

Data Rate

Network Interface

Ports

Technology

920-9B110-00FH-0M2

MTQ8100-HS2F

HDR

QSFP28 and QSFP56

2x EDR and 8x HDR

InfiniBand

920-9B110-00FH-0M1

MTQ8200-HS2F

HDR

QSFP28 and QSFP56

2x EDR and 8x HDR

InfiniBand

Why Choose NVIDIA MetroX-2?

Unmatched Performance Across Distances

Traditional Ethernet solutions may struggle with latency and packet loss over extended distances. MetroX-2 eliminates these concerns by using InfiniBand and RDMA technology, providing a level of speed and reliability that’s essential for modern data workloads.

Simplified Multi-Site Management

With support for NVIDIA Quantum Management Suite, administrators gain visibility and control over complex interconnect deployments. Real-time monitoring, performance optimization, and troubleshooting tools are built-in.

Future-Proof Scalability

As organizational needs grow, MetroX-2 scales effortlessly. You can expand from connecting two locations to multiple sites across a campus or even across cities while maintaining consistent, reliable performance.

Reduced Total Cost of Ownership (TCO)

By centralizing resources and enabling remote compute and storage utilization, MetroX-2 helps reduce the need for redundant hardware, lowering both capital and operational expenses.

Detailed Port Configuration

  • 2x QSFP28 Ports: Supporting EDR InfiniBand with up to 100GbE bandwidth per port, perfect for legacy system integration or specific high-bandwidth uplinks.
  • 8x QSFP56 Ports: Delivering 200Gb/s per port, designed for next-generation InfiniBand connectivity and maximum throughput.

Hardware Design and Reliability

MetroX-2 units are built with durability and continuous operation in mind:

  • Enterprise-grade, hot-swappable power supplies ensure uptime.
  • Redundant cooling systems maintain optimal thermal conditions.
  • Standard rack-mount design for seamless integration into existing data center setups.

Deployment Scenarios

  • Single Data Center Expansion: Connecting remote storage racks or additional compute nodes without relocating equipment.
  • Campus-Wide Network Fabric: Establishing a unified compute network across multiple buildings or facilities.
  • Inter-City Data Center Bridging: Extending InfiniBand capabilities to support large-scale distributed architectures over metropolitan areas.

Conclusion

NVIDIA MetroX-2 Systems represent the pinnacle of long-distance InfiniBand extension technology.

Combining ultra-high performance, scalability, and reliability, they provide a future-ready solution for enterprises and research institutions looking to expand their compute capabilities across dispersed locations.

Whether you need disaster recovery, data mirroring, or a unified multi-site HPC environment, MetroX-2 delivers uncompromising speed, efficiency, and control.

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NVIDIA MetroX-2 Systems-Q9

NVIDIA MetroX-2 Systems

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