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X710T2LOCPV3 Intel 10Gbps Dual Port OCP Gigabit Ethernet PCI-Express NIC

X710T2LOCPV3
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Brief Overview of X710T2LOCPV3

Intel X710T2LOCPV3 10Gbps Dual Port OCP Gigabit Ethernet PCI-Express NIC. Factory-Sealed New in Original Box (FSB) with 3-Years Warranty

$415.80
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SKU/MPNX710T2LOCPV3Availability✅ In StockProcessing TimeUsually ships same day ManufacturerIntel Manufacturer Warranty3 Years Warranty from Original Brand Product/Item ConditionFactory-Sealed New in Original Box (FSB) ServerOrbit Replacement Warranty1 Year Warranty
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Description

Intel X710T2LOCPV3 10GBPS Dual Port OCP Gigabit Ethernet

The Intel X710T2LOCPV3 is a high-performance dual-port 10Gbps Ethernet network interface controller designed for modern data center and enterprise networking environments. Built on PCI Express architecture, this OCP Gigabit Ethernet adapter delivers efficient, scalable, and reliable connectivity for bandwidth-intensive applications. Engineered for advanced virtualization, cloud computing, and storage networking, it supports multi-speed Ethernet operation to ensure seamless integration across evolving IT infrastructures while maintaining optimal throughput and low latency performance.

General Information

  • Manufacturer: Intel
  • Part Number: X710T2LOCPV3
  • Product Type: Network Adapter

Technical Specifications

  • Form Factor: Plug-in Card (OCP 3.0 design architecture)
  • Interface Type: PCI Express 3.0 x8
  • PCI Specification Revision: PCIe 3.0 compliant
  • Network Ports: Dual-port RJ45 / Ethernet interfaces
  • Supported Speeds: 100Mb, 1Gb, 2.5Gb, 5Gb, 10Gb Ethernet
  • Data Transfer Rate: Up to 10 Gbps per port
  • Supported Protocols: iSCSI, NFS, TCP/IP offload capabilities
  • Standards Compliance: OCP 3.0 specification
  • Network Protocol Support: 100BASE-T, Gigabit Ethernet, 2.5G/5G/10G Ethernet modes

Features and Benefits

  • High-speed dual-port 10GbE connectivity for demanding workloads
  • Optimized for virtualization, cloud infrastructure, and software-defined networking
  • Enhanced bandwidth flexibility with multi-rate Ethernet support
  • Reduced CPU utilization through intelligent offloading capabilities
  • Reliable PCIe 3.0 x8 interface ensuring stable high-throughput performance
  • Designed for scalable enterprise and hyperscale data center environments
  • Energy-efficient architecture supporting continuous high-load operations

Compatibility

  • Compatible with OCP 3.0 compliant server platforms and NIC slots
  • Designed for enterprise servers supporting PCI Express 3.0 x8 expansion
  • Works with data center-grade motherboards supporting Intel Ethernet controller architecture
  • Suitable for rack servers, blade servers, and hyperscale infrastructure systems
  • Supports major virtualization platforms including VMware, Hyper-V, and KVM environments
  • Compatible with Linux-based and Windows Server operating systems with appropriate driver support
  • Integrates with storage networking solutions using iSCSI and NFS protocols

Ideal Deployment Environments

  • Cloud computing data centers
  • Enterprise virtualization clusters
  • High-performance computing (HPC) environments
  • Storage area networks (SAN) and network-attached storage (NAS)
  • Large-scale enterprise IT infrastructures requiring scalable Ethernet connectivity

Intel X710T2LOCPV3 10GBPS Dual Port OCP Gigabit Ethernet

The Intel X710T2LOCPV3 10Gbps dual port OCP Ethernet adapter represents a high performance networking component designed for modern data center environments that require stable throughput, low latency communication, and scalable connectivity. Built on a sophisticated controller architecture, this network interface solution integrates advanced packet processing capabilities that support demanding workloads across virtualized infrastructures, enterprise servers, and cloud optimized systems. Its dual port configuration enables simultaneous data pathways that enhance redundancy and bandwidth aggregation without introducing unnecessary complexity into system design.

The underlying architecture of this adapter focuses on balancing compute efficiency with network throughput optimization. By integrating hardware offload engines, the adapter reduces CPU overhead during packet handling tasks, allowing server processors to dedicate more resources to application-level operations. This design philosophy is particularly important in environments where high density virtual machines and containerized workloads require consistent and predictable network performance.

Open Compute Project Form Factor Integration and System Design 

The Open Compute Project form factor implementation allows the Intel X710T2LOCPV3 to fit seamlessly into compatible server architectures that prioritize modularity and efficient airflow design. The OCP standard is widely adopted in hyperscale and cloud infrastructure environments due to its streamlined physical layout and improved serviceability. This adapter’s integration within such systems ensures that hardware deployment remains consistent across large scale installations.

Its structural design eliminates unnecessary enclosure overhead, enabling direct motherboard integration that improves thermal distribution and reduces mechanical constraints. This contributes to higher density server configurations where space optimization and cooling efficiency are critical design factors. The OCP interface also simplifies maintenance procedures, allowing faster replacement cycles and reduced downtime in mission critical deployments.

PCI Express Connectivity and High Bandwidth Data Transmission 

The PCI Express interface used by this network adapter provides a high speed communication channel between the network controller and the host system. This connection ensures minimal latency when transferring large data packets, which is essential for applications such as distributed computing, virtualization clusters, and real time analytics platforms. The architecture supports efficient lane utilization, enabling consistent data flow even under heavy network loads.

By leveraging advanced PCI Express signaling technology, the adapter maintains stable throughput while reducing bottlenecks that can occur in traditional network interface designs. This ensures that both inbound and outbound traffic is handled with precision, supporting workloads that demand continuous high speed data exchange across multiple endpoints.

Dual Port Network Design and Traffic Optimization 

The dual port configuration of the Intel X710T2LOCPV3 provides enhanced network flexibility by enabling multiple simultaneous connections within a single adapter module. This design is particularly valuable in environments where network redundancy and load balancing are essential. Each port operates independently, allowing administrators to segment traffic or aggregate bandwidth depending on system requirements.

In high availability infrastructures, dual port designs help maintain uninterrupted connectivity even in the event of a single link failure. This contributes to improved system resilience and supports continuous service delivery in enterprise environments where downtime can result in operational disruption. The ability to distribute workloads across two channels also improves overall network efficiency.

10 Gigabit Ethernet Performance

The adapter supports 10 Gigabit Ethernet transmission rates, enabling rapid data movement across server clusters and storage systems. This level of bandwidth is suitable for modern data driven applications that rely on high speed synchronization and large scale data replication. The hardware design ensures that packet processing remains consistent even under peak load conditions.

High throughput capability allows the adapter to support bandwidth intensive workloads such as virtual machine migration, large database replication, and real time content delivery. These scenarios require stable and predictable network performance, which is achieved through integrated hardware acceleration and optimized data handling pathways.

Virtualization Acceleration and Multi Tenant Environment

The Intel X710T2LOCPV3 is engineered to support virtualization technologies commonly used in cloud computing environments. Through hardware based acceleration features, the adapter reduces processing overhead associated with virtual machine network traffic. This results in improved performance consistency across multiple virtual instances running on the same physical host.

Multi tenant environments benefit from advanced traffic isolation mechanisms that help ensure secure and efficient distribution of network resources. Each virtual machine can maintain dedicated bandwidth allocation, reducing contention and improving application responsiveness. This makes the adapter suitable for private cloud deployments, hosting platforms, and enterprise virtualization clusters.

Hardware Offloading and CPU Efficiency Enhancement

A key design feature of this network adapter is its ability to offload computationally intensive networking tasks from the central processing unit. Functions such as checksum calculation, segmentation, and packet filtering are handled directly by the network controller. This reduces CPU utilization and improves overall system efficiency.

By minimizing CPU involvement in repetitive network processing tasks, server resources can be allocated more effectively to application workloads. This is particularly beneficial in environments running high density services, where compute resources must be optimized for maximum operational output.

Storage Networking and High Speed Data Access 

In storage intensive environments, the Intel X710T2LOCPV3 supports high speed data transfer between compute nodes and storage arrays. This improves the performance of distributed storage systems and enables faster access to large datasets. The adapter is well suited for software defined storage architectures that require consistent network throughput.

Its ability to handle large volumes of data traffic efficiently makes it an ideal component for backup systems, data replication frameworks, and cloud storage platforms. The reduction in latency ensures that storage operations remain synchronized across distributed environments.

iWARP RDMA Support and Low Latency Communication 

The network adapter supports remote direct memory access functionality through industry standard implementations that allow direct memory communication between systems. This reduces latency by bypassing traditional CPU mediated data transfer processes. The result is faster communication between servers in clustered environments.

Low latency networking is particularly important for high performance computing workloads and real time analytics systems. By minimizing data transfer overhead, the adapter helps maintain predictable performance levels even under heavy computational demand.

Driver Support and Operating System Compatibility

The adapter is supported by a wide range of operating systems commonly used in enterprise environments. Compatibility includes major Linux distributions, Windows Server platforms, and virtualization hypervisors. This broad support ensures flexible deployment across heterogeneous infrastructure environments.

Driver optimization allows seamless integration with network management tools and monitoring systems. This provides administrators with detailed visibility into network performance metrics and facilitates proactive system maintenance strategies.

Enterprise Deployment Scenarios and Cloud Infrastructure 

The Intel X710T2LOCPV3 is widely used in enterprise data centers where high availability and performance consistency are required. Its dual port architecture supports redundant network paths that enhance system reliability in mission critical applications.

In cloud infrastructure deployments, the adapter supports scalable networking models that accommodate dynamic workloads. This makes it suitable for infrastructure as a service platforms, virtualization clusters, and distributed computing environments where network efficiency directly impacts service quality.

Scalability, Reliability, and Long Term Infrastructure

Designed with long term infrastructure deployment in mind, the adapter supports scalable networking growth without requiring significant architectural changes. Its modular integration allows data centers to expand network capacity gradually while maintaining system consistency.

Reliability is reinforced through robust hardware design and error handling mechanisms that ensure stable operation under continuous load. This makes it suitable for environments that require uninterrupted network availability over extended operational cycles.

Features
Manufacturer Warranty:
3 Years Warranty from Original Brand
Product/Item Condition:
Factory-Sealed New in Original Box (FSB)
ServerOrbit Replacement Warranty:
1 Year Warranty