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Intel E610-IT4 Internal Ethernet 2500 Mbit/s E610IT4M5

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Buy Intel E610-IT4 Internal Ethernet 2500 Mbit/s E610IT4M5

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Intel E610-IT4 Internal Ethernet 2500 Mbit/s E610IT4M5

iWARP/RDMA iWARP delivers converged low-latency fabric services to data centers through Remote Direct Memory Access (RDMA) over Ethernet. The key iWARP components that deliver low-latency are Kernel Bypass Direct Data Placement and Transport Acceleration. Intel Data Direct I/O Technology Intel Data Direct I/O Technology is a platform technolog... morey that improves I/O data processing efficiency for data delivery and data consumption from I/O devices. With Intel DDIO Intel Server Adapters and controllers talk directly to the processor cache without a detour via system memory reducing latency increasing system I/O bandwidth and reducing power consumption. PCI-SIG* SR-IOV Capable Single-Root I/O Virtualization (SR-IOV) involves natively (directly) sharing a single I/O resource between multiple virtual machines. SR-IOV provides a mechanism by which a Single Root Function (for example a single Ethernet Port) can appear to be multiple separate physical devices. Flexible Port Partitioning Flexible Port Partitioning (FPP) technology utilizes industry standard PCI SIG SR-IOV to efficiently divide your physical Ethernet device into multiple virtual devices providing Quality of Service by ensuring each process is assigned to a Virtual Function and is provided a fair share of the bandwidth. Virtual Machine Device Queues (VMDq) Virtual Machine Device Queues (VMDq) is a technology designed to offload some of the switching done in the VMM (Virtual Machine Monitor) to networking hardware specifically designed for this function. VMDq drastically reduces overhead associated with I/O switching in the VMM which greatly improves throughput and overall system performance
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Intel E610-XT4 Internal Ethernet 10000 Mbit/s E610IT4M5

Wired. PCI Express 4.0 Ethernet. Gigabit Ethernet, 10 Gigabit Ethernet, 5 Gigabit Ethernet, 2.5 Gigabit Ethernet 10000 Mbit/s. Internal Component for: Server. Intel® Trusted Execution Technology. Intel® Trusted Execution Technology for safer computing is a versatile set of hardware extensions to Intel® processors and chipsets that enhance the digit... moreal office platform with security capabilities such as measured launch and protected execution. It enables an environment where applications can run within their own space, protected from all other software on the system.. iWARP/RDMA. iWARP delivers converged, low-latency fabric services to data centers through Remote Direct Memory Access (RDMA) over Ethernet. The key iWARP components that deliver low-latency are Kernel Bypass, Direct Data Placement, and Transport Acceleration.. Intel® Data Direct I/O Technology. Intel® Data Direct I/O Technology is a platform technology that improves I/O data processing efficiency for data delivery and data consumption from I/O devices. With Intel DDIO, Intel® Server Adapters and controllers talk directly to the processor cache without a detour via system memory, reducing latency, increasing system I/O bandwidth, and reducing power consumption.. PCI-SIG* SR-IOV Capable. Single-Root I/O Virtualization (SR-IOV) involves natively (directly) sharing a single I/O resource between multiple virtual machines. SR-IOV provides a mechanism by which a Single Root Function (for example a single Ethernet Port) can appear to be multiple separate physical devices.. Flexible Port Partitioning. Flexible Port Partitioning (FPP) technology utilizes industry standard PCI SIG SR-IOV to efficiently divide your physical Ethernet device into multiple virtual devices, providing Quality of Service by ensuring each process is assigned to a Virtual Function and is provided a fair share of the bandwidth.. Virtual Machine Device Queues (VMDq). Virtual Machine Device Queues (VMDq) is a technology designed to offload some of the switching done in the VMM (Virtual Machine Monitor) to networking hardware specifically designed for this function. VMDq drastically reduces overhead associated with I/O switching in the VMM which greatly improves throughput and overall system performance. Ports & interfaces. Connectivity technology. Wired. Host interface. PCI Express. Interface. Ethernet. Ethernet LAN (RJ-45) ports. 4. PCI version. 4.0. PCI Card form factor. Full-height (low-profile). Network. Maximum data transfer rate. 10000 Mbit/s. Ethernet LAN. Yes. Ethernet interface type. Gigabit Ethernet, 10 Gigabit Ethernet, 5 Gigabit Ethernet, 2.5 Gigabit Ethernet. Ethernet LAN data rates. 1000,10000,5000,2500 Mbit/s. iSCSI support. Yes. LAN controller. Intel E610-XAT2. Design. Internal. Yes. Component for. Server. Product colour. Black, Green, Silver. LED indicators. Activity, Link. Power. Power consumption (typical). 9.6 W. System requirements. Compatible operating systems.
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iWARP/RDMA
iWARP delivers converged low-latency fabric services to data centers through Remote Direct Memory Access (RDMA) over Ethernet. The key iWARP components that deliver low-latency are Kernel Bypass Direct Data Placement and Transport Acceleration.

Intel Data Direct I/O Technology
Intel Data Direct I/O Technology is a platform technology that improves I/O data processing efficiency for data delivery and data consumption from I/O devices. With Intel DDIO Intel Server Adapters and controllers talk directly to the processor cache without a detour via system memory reducing latency increasing system I/O bandwidth and reducing power consumption.

PCI-SIG* SR-IOV Capable
Single-Root I/O Virtualization (SR-IOV) involves natively (directly) sharing a single I/O resource between multiple virtual machines. SR-IOV provides a mechanism by which a Single Root Function (for example a single Ethernet Port) can appear to be multiple separate physical devices.

Flexible Port Partitioning
Flexible Port Partitioning (FPP) technology utilizes industry standard PCI SIG SR-IOV to efficiently divide your physical Ethernet device into multiple virtual devices providing Quality of Service by ensuring each process is assigned to a Virtual Function and is provided a fair share of the bandwidth.

Virtual Machine Device Queues (VMDq)
Virtual Machine Device Queues (VMDq) is a technology designed to offload some of the switching done in the VMM (Virtual Machine Monitor) to networking hardware specifically designed for this function. VMDq drastically reduces overhead associated with I/O switching in the VMM which greatly improves throughput and overall system performance
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