Intel® PRO/1000 PT Dual Port Server Adapter
Specifications
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Essentials
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Product Collection
Intel® PRO/1000 PT Server Adapter Series
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Code Name
Products formerly Redwater
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Marketing Status
Discontinued
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Launch Date
Q4'05
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Vertical Segment
Server
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Cable Medium
Copper
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Cabling Type
Category-5 up to 100m
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Bracket Height
Low Profile & Full Height
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TDP
4.95 W
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Ethernet Controller
Intel® 82571EB Gigabit Ethernet Controller
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Supplemental Information
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Product Brief
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Networking Specifications
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Port Configuration
Dual
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Intel® Virtualization Technology for Connectivity (VT-c)
No
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Speed & Slot Width
2.5 GT/s, x4 Lane
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Controller
Intel 82571GB
Package Specifications
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System Interface Type
PCIe v1.0a (2.5 GT/s)
Intel® Virtualization Technology for Connectivity
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On-chip QoS and Traffic Management
No
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Flexible Port Partitioning
No
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Virtual Machine Device Queues (VMDq)
No
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PCI-SIG* SR-IOV Capable
No
Advanced Technologies
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iWARP/RDMA
No
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Intel® Ethernet Power Management
No
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Intelligent Offloads
Yes
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Storage Over Ethernet
iSCSI, NFS
Ordering and Compliance
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Retired and discontinued
Trade compliance information
- ECCN 5A992C
- CCATS G135872
- US HTS 8517620090
PCN Information
Compatible Products
Intel® Server Board S1600JP Family
Intel® Server Board S3420GP Family
Intel® Server Board S2400GP Family
Intel® Server Board S2400LP Family
Intel® Server Board S2600CO Family
Intel® Server Board S2600CP Family
Intel® Server Board S2600IP Family
Intel® Server Board S2600JF Family
Intel® Server Board S2600WP Family
Intel® Workstation Board W2600CR Family
Intel® Server Board S5500HC Family
Intel® Server Board S5000UR Family
Intel® Server Board S5000WB Family
Intel® Server Board S5500BC Family
Intel® Server Board S5500HCT Family
Intel® Server Board S5500HCV Family
Intel® Workstation Board S5520SC Family
Intel® Compute Module HNS2400LP Family
Intel® Compute Module HNS2600JF Family
Intel® Compute Module HNS2600WP Family
Intel® Server System R1000JP Family
Intel® Server System SR1600GP Family
Intel® Server System SR1600UR Family
Intel® Server System SR1625UR Family
Intel® Server System H2000JF Family
Intel® Server System H2000WP Family
Intel® Server System R2000IP Family
Intel® Server System SR2600UR Family
Intel® Server System SR2625UR Family
Intel® Server System P4000CP Family
Intel® Server System P4000IP Family
Intel® Workstation System P4300CR Family
Intel® Server System SC5000BC Family
Intel® Server System SC5000HC Family
Intel® Server System SR1000BC Family
Intel® Server System SR1000HG Family
Intel® Workstation System SC5000SC Family
Drivers and Software
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Launch Date
The date the product was first introduced.
TDP
Thermal Design Power (TDP) represents the average power, in watts, the processor dissipates when operating at Base Frequency with all cores active under an Intel-defined, high-complexity workload. Refer to Datasheet for thermal solution requirements.
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
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.
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® Ethernet Power Management
Intel® Ethernet Power Management Technology provides solutions to common power management approaches by reducing idle power, reducing capacity and power as a function of demand, operating at maximum energy efficiency whenever possible, and enabling functionality only when needed.
All information provided is subject to change at any time, without notice. Intel may make changes to manufacturing life cycle, specifications, and product descriptions at any time, without notice. The information herein is provided "as-is" and Intel does not make any representations or warranties whatsoever regarding accuracy of the information, nor on the product features, availability, functionality, or compatibility of the products listed. Please contact system vendor for more information on specific products or systems.
Intel classifications are for general, educational and planning purposes only and consist of Export Control Classification Numbers (ECCN) and Harmonized Tariff Schedule (HTS) numbers. Any use made of Intel classifications are without recourse to Intel and shall not be construed as a representation or warranty regarding the proper ECCN or HTS. Your company as an importer and/or exporter is responsible for determining the correct classification of your transaction.
Refer to Datasheet for formal definitions of product properties and features.
‡ This feature may not be available on all computing systems. Please check with the system vendor to determine if your system delivers this feature, or reference the system specifications (motherboard, processor, chipset, power supply, HDD, graphics controller, memory, BIOS, drivers, virtual machine monitor-VMM, platform software, and/or operating system) for feature compatibility. Functionality, performance, and other benefits of this feature may vary depending on system configuration.
“Announced” SKUs are not yet available. Please refer to the Launch Date for market availability.
System and Maximum TDP is based on worst case scenarios. Actual TDP may be lower if not all I/Os for chipsets are used.