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Systemkrav | |
Kompatibla operativsystem | https://www.intel.com/content/www/us/en/support/articles/000025890/ethernet-products.html |
Anslutningar | |
Gränssnitt | Fiber |
Anslutningsteknologi | Kabel |
Värdgränssnitt | PCI Express |
Fiberportar kvantitet | 2 |
Fiberoptiska kontakten | SFP28 |
PCI-version | 4.0 |
Vikt & dimension | |
Bredd | 167 mm |
Djup | 68 mm |
Miljökrav | |
Temperaturintervall (förvaring) | -40 - 70 ° C |
Temperatur vid drift | 0 - 55 ° C |
Nätverk | |
Kommunikationsstandarder | IEEE 1588, IEEE 1588v2, IEEE 802.1p |
LAN-styrenhet | Intel E810 |
Stöd för garanterad tjänstekvalitet (QoS) | ![]() |
Datahastighet för Ethernet-LAN | 1000,10000,25000 Mbit/s |
Typ av ethernet-gränssnitt | 10 Gigabit Ethernet, 25 Gigabit Ethernet, Gigabit Ethernet |
Övriga egenskaper | |
Typ av kabel | SFP28 ports - DAC, Optics, and AOC's |
Processorfamilj | 800 Network Adapters (up to 100GbE)-800 Network Adapters (up to 100GbE) |
Intel® Virtual Machine Device köer (VMDq) | ![]() |
PCI-SIG * SR-IOV Kan | ![]() |
On-chip QoS och trafikledning | ![]() |
Intel® Flexibel port Partitionering | ![]() |
Hastighet och spårbredd | 16.0 GT/s, x8 Lane |
Intelligenta avlastar | ![]() |
iWARP / RDMA | ![]() |
Intel® Data Direct I / O-teknik | ![]() |
Intel® Virtualization Technology för anslutning (VT-c) | ![]() |
Lagring över Ethernet | iSCSI, NFS |
Status | Launched |
Lanseringsdatum | Q3'20 |
Typ av nätverkskort | Server |
Nätverkskortets kabelmaterial | Copper, Fiber |
Produktserie | 800 Series Network Adapters (up to 100GbE) |
ARK-ID för Ethernet-kort | 189760 |
ECCN (Export Control Classification Number) | 5A991 |
CCATS (Commodity Classification Automated Tracking System) | NA |
Fästets höjd | Low-Profile (LP) / Full-Height (FH) |
Design | |
Intern | ![]() |
Certifiering | FCC B, UL, CE, VCCI, BSMI, RCM, KCC |
LED-indikatorer | Aktivitet, Länk |
Produktens färg | Svart, Grön, Silver |
Komponent för | Server |
Logistikdata | |
Harmonized System (HS)-kod | 85176990 |
EAN | 5032037175074 |
Garanti | 3 år |
Source: Icecat.biz |
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
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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Beräknad leveranstid: 01.09 - 04.09
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Beräknad leveranstid: 02.09 - 04.09
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Beräknad leveranstid: 02.09 - 03.09
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