X710T4LOCPV3 Intel Quad Port 10Gbps Low Profile OCP PCI-Express Network Adapters
- — Free Ground Shipping
- — Min. 6-month Replacement Warranty
- — Genuine/Authentic Products
- — Easy Return and Exchange
- — Different Payment Methods
- — Best Price
- — We Guarantee Price Matching
- — Tax-Exempt Facilities
- — 24/7 Live Chat, Phone Support
- — Visa, MasterCard, Discover, and Amex
- — JCB, Diners Club, UnionPay
- — PayPal, ACH/Bank Transfer (11% Off)
- — Apple Pay, Amazon Pay, Google Pay
- — Buy Now, Pay Later - Affirm, Afterpay
- — GOV/EDU/Institutions PO's Accepted
- — Invoices
- — Deliver Anywhere
- — Express Delivery in the USA and Worldwide
- — Ship to -APO -FPO
- — For USA - Free Ground Shipping
- — Worldwide - from $30
Intel X710T4LOCPV3 Quad Port 10GBPS Network Adapter
The Intel X710T4LOCPV3 is a versatile quad‑port 10‑gigabit low‑profile OCP PCIe network adapter engineered to deliver dependable high‑speed connectivity across modern server infrastructures. Designed for environments that demand consistent throughput, flexible Ethernet speeds, and efficient data handling, this adapter enhances network performance through advanced protocol support, optimized bandwidth distribution, and robust compatibility with enterprise‑grade platforms.
General Information
- Brand: Intel
- Model Number: X710T4LOCPV3
- Product Category: High‑performance network adapter
Technical Specifications
Physical & Interface Characteristics
- Form Factor: Plug‑in card designed for low‑profile OCP slots
- Bus Interface: PCI Express 3.0 x8 for high‑bandwidth communication
- PCIe Revision: Fully compliant with PCIe 3.0 standards
- Dimensions: 4.5 in (W) × 3 in (D)
Networking Capabilities
- Port Configuration: Four multi‑speed Ethernet ports supporting 100M, 1G, 2.5G, 5G, and 10G
- Data Link Protocols: 100Mb LAN, GigE, 10 GigE, 5 GigE, 2.5 GigE
- Maximum Throughput: Up to 10 Gbps per port
- Supported Protocols: iSCSI and NFS for storage and file‑sharing operations
- Compliance Standards: IEEE 802.1AS, IEEE 802.3AZ
Performance Enhancements
- Optimized Data Handling: Designed to reduce latency and improve packet processing efficiency
- Multi‑speed Flexibility: Supports a wide range of Ethernet speeds for adaptable network planning
- Energy Efficiency: IEEE 802.3AZ ensures reduced power consumption during low‑traffic periods
Compatibility
Server & Platform Compatibility
- Enterprise Servers: Compatible with major OEM server families including Dell PowerEdge, HPE ProLiant, Lenovo ThinkSystem, and other Intel‑based platforms supporting OCP network adapters.
- Slot Requirements: Requires an OCP‑compatible low‑profile PCIe 3.0 x8 slot.
- Chassis Fit: Suitable for compact, high‑density rack servers and modular data center systems.
Operating System Support
- Windows Server: Supported across current Windows Server editions with Intel Ethernet drivers.
- Linux Distributions: Broad compatibility with Red Hat, Ubuntu, Debian, CentOS, SUSE, and other enterprise Linux platforms.
- Virtualization Platforms: Works with VMware ESXi, Microsoft Hyper‑V, Proxmox VE, and other hypervisors supporting Intel X710‑series adapters.
Network & Storage Ecosystems
- Legacy Network Integration: Backward‑compatible with 100Mb and 1GbE infrastructures for seamless upgrades.
- Storage Environments: Optimized for iSCSI and NFS‑based NAS/SAN deployments.
- Cloud & Virtualized Workloads: Suitable for NFV, SDN, and cloud‑native architectures requiring stable multi‑gigabit throughput.
Intel X710T4LOCPV3 Quad Port Network Adapter Architecture
The Intel X710T4LOCPV3 network adapter belongs to a high performance class of Ethernet interface solutions designed for modern data center infrastructure, virtualization clusters, and enterprise-grade compute environments. Built around Intel Ethernet controller architecture, this adapter integrates four independent 10 Gigabit Ethernet ports within a compact OCP PCI Express low profile form factor, allowing dense server configurations without sacrificing throughput or scalability. The design focuses on maximizing packet processing efficiency, minimizing latency, and delivering consistent bandwidth under heavy network workloads. Each port operates with dedicated resources, enabling parallel traffic handling and reducing contention across network streams in high demand environments such as cloud orchestration systems and distributed computing clusters.
The adapter is engineered to meet the requirements of scalable enterprise workloads where network congestion, virtualization overhead, and multi-tenant traffic isolation must be managed efficiently. Its architecture leverages hardware acceleration capabilities that offload compute intensive networking tasks from the host CPU, enabling more predictable system performance and improved application responsiveness. This makes it particularly suitable for environments that rely on microservices, containerized applications, and hypervisor based virtual machine deployments.
OCP PCI Express Low Profile Design
The Open Compute Project aligned PCI Express design of the Intel X710T4LOCPV3 ensures compatibility with modern server architectures that prioritize modularity, airflow efficiency, and serviceability. The low profile configuration is specifically optimized for dense server chassis where physical space is limited, enabling deployment in rack systems that support high compute density without compromising thermal performance or network capability.
By adopting the OCP NIC form factor, this adapter supports a standardized approach to server networking hardware, reducing complexity in system integration and improving interoperability across different hardware platforms. This design philosophy is particularly valuable in hyperscale environments where uniformity of hardware components simplifies maintenance, replacement cycles, and inventory management. The PCI Express interface ensures high bandwidth connectivity to the host system, allowing the adapter to fully utilize its multi port 10 Gigabit Ethernet capabilities without bottlenecking at the bus level.
Quad Port 10 Gigabit Ethernet Performance Capabilities
The four port configuration of the Intel X710T4LOCPV3 provides significant advantages in workloads that require simultaneous network segmentation or aggregated throughput. Each 10 Gigabit Ethernet port operates independently, enabling multiple traffic flows to be processed concurrently. This is particularly beneficial in scenarios involving distributed storage systems, virtual machine migration, and high frequency transaction processing where network demand is both sustained and variable.
The adapter supports advanced packet processing capabilities that improve efficiency in handling small packet workloads, which are common in modern application environments. By utilizing hardware offload engines, the adapter reduces CPU intervention in packet routing, checksum calculations, and segmentation tasks. This contributes to lower latency and more stable throughput under heavy load conditions, ensuring consistent performance across multiple network interfaces.
Advanced Virtualization Optimization
Virtualization environments benefit significantly from the Intel X710T4LOCPV3 due to its support for hardware based virtualization acceleration technologies. These include single root input output virtualization capabilities that allow a single physical network interface to be divided into multiple virtual functions. Each virtual function can be assigned to different virtual machines or containers, ensuring isolated and secure network paths with minimal overhead.
The adapter enhances virtual machine density by distributing network workloads more efficiently across system resources. This reduces bottlenecks that often occur in software defined networking stacks, especially in environments with high east west traffic patterns. The hardware based traffic management ensures that virtualized workloads maintain consistent network performance even when host systems are under heavy computational stress.
Offloading and Hardware Acceleration Mechanisms
A key strength of the Intel X710T4LOCPV3 lies in its ability to offload complex networking operations from the CPU. Tasks such as TCP segmentation, checksum calculation, packet filtering, and interrupt moderation are handled directly by the network adapter hardware. This offloading mechanism significantly reduces CPU utilization, allowing processor resources to be allocated to application level tasks rather than network processing overhead.
The adapter also incorporates intelligent packet steering mechanisms that distribute network traffic evenly across available CPU cores. This improves system balance and reduces the likelihood of core saturation under heavy network load. The result is a more stable computing environment where both networking and application performance are optimized simultaneously.
Low Profile Form Factor Engineering
The low profile design of the Intel X710T4LOCPV3 is engineered for compact server environments where physical space constraints require efficient hardware layout. Despite its compact structure, the adapter maintains full functionality across all four 10 Gigabit Ethernet ports without compromise. This makes it suitable for blade servers, rack optimized systems, and modular data center configurations where space utilization is a critical design factor.
The mechanical design ensures secure mounting within OCP compliant slots, providing stability during high vibration or high airflow conditions commonly found in enterprise data centers. The thermal design complements the low profile structure by enabling efficient heat dissipation through optimized airflow channels within the server chassis.
Data Center Networking
In modern data center environments, the Intel X710T4LOCPV3 is commonly deployed to support high throughput workloads such as virtualization clusters, software defined storage systems, and distributed application architectures. Its ability to handle multiple simultaneous high bandwidth connections makes it suitable for east west traffic intensive workloads where servers communicate frequently within the same cluster.
The adapter enhances network segmentation strategies by enabling multiple isolated network paths within a single physical interface. This allows administrators to design flexible network topologies that support production, development, and management traffic separation without requiring additional physical hardware components.
Cloud Infrastructure and Multi Tenant Environments
Cloud computing platforms benefit from the Intel X710T4LOCPV3 due to its support for high density virtual networking and efficient bandwidth utilization. Multi tenant environments require strict isolation between workloads, and this adapter provides hardware assisted mechanisms that ensure secure traffic separation between different users and applications.
The quad port architecture allows cloud service providers to allocate dedicated network channels for different service layers, such as storage access, application delivery, and administrative control. This improves overall service quality and reduces the likelihood of network contention between tenants sharing the same physical infrastructure.
Storage Networking and High Throughput Data Transfer
The Intel X710T4LOCPV3 is well suited for storage intensive environments where high speed data transfer is critical. Storage area networks, distributed file systems, and hyper converged infrastructure platforms benefit from its ability to sustain consistent 10 Gigabit throughput across multiple channels. This ensures that data replication, backup operations, and real time storage access are performed efficiently without introducing bottlenecks.
The adapter supports optimized data handling paths that reduce latency in storage communication protocols, improving responsiveness in database systems and large scale analytics platforms. Its ability to maintain stable performance under sustained load conditions makes it a reliable component in mission critical storage architectures.
Server Compatibility and Platform Integration
The Intel X710T4LOCPV3 is designed for compatibility with a wide range of enterprise server platforms that support OCP PCI Express network interfaces. It integrates seamlessly into rack mounted servers, blade systems, and modular compute nodes that are engineered for high performance networking operations. Compatibility extends across multiple operating environments, ensuring flexibility in deployment across heterogeneous infrastructure.
Server integration is streamlined through standardized driver support and firmware compatibility layers that ensure stable operation across different hardware generations. This reduces deployment complexity and enables faster scaling of network infrastructure in growing data center environments.
Driver Support and Operating System Integration
The adapter is supported by a broad range of operating systems commonly used in enterprise environments, including Linux distributions, Windows Server editions, and virtualization hypervisors. Driver optimization ensures efficient communication between the operating system kernel and the network hardware, reducing latency and improving throughput consistency.
Advanced driver features include support for interrupt moderation, adaptive load balancing, and traffic prioritization. These capabilities allow system administrators to fine tune network behavior based on application requirements and workload characteristics, improving overall system efficiency.
High Density Deployment Scenarios
In high density computing environments, the Intel X710T4LOCPV3 enables efficient network scaling without requiring additional physical space. Its quad port design reduces the need for multiple single port adapters, simplifying system architecture and reducing hardware complexity. This is particularly beneficial in large scale deployments where rack space optimization is essential.
The adapter supports flexible network topology configurations that allow administrators to design redundant and high availability systems. This improves fault tolerance and ensures continuous network operation even in the event of individual link failures.
Enterprise Scalability and Infrastructure Expansion
Scalability is a defining characteristic of the Intel X710T4LOCPV3, making it suitable for organizations that anticipate rapid infrastructure growth. Its ability to integrate into existing server environments without requiring major architectural changes allows for incremental scaling of network capacity.
The adapter supports consistent performance scaling across multiple nodes, ensuring that network expansion does not introduce performance inconsistencies. This is critical for maintaining service reliability in distributed computing systems and enterprise cloud platforms.
Reliability and Long Term Operational Stability
Designed for continuous operation in enterprise environments, the Intel X710T4LOCPV3 emphasizes reliability and long term stability. Its hardware architecture is built to withstand sustained workloads without degradation in performance, ensuring consistent network service availability.
The adapter includes built in diagnostic and monitoring capabilities that allow system administrators to track performance metrics and identify potential issues before they impact system operations. This proactive approach to hardware management contributes to reduced downtime and improved infrastructure resilience.
