Lenovo Intel P4600 Mainstream Nvme Pcie 3.0 X4 Flash Adapters User Guide

Lenovo Intel P4600 Mainstream Nvme Pcie 3.0 X4 Flash Adapters User Guide

Lenovo Intel P4600 Mainstream NVMe PCIe 3.0 x4 Flash Adapters User Guide
Lenovo Intel P4600 Mainstream NVMe PCIe 3.0 x4 Flash Adapters

The Intel P4600 Mainstream NVMe Flash Adapters are advanced server storage adapters optimized for mixed read-write performance, endurance, and strong data protection for Lenovo ThinkSystem servers. They are designed for greater performance and endurance in a cost-effective design, and to support a broader set of workloads.

The Intel P4600 adapters are based on Intel-developed controller, firmware, and leading manufacturing process NAND flash memory. Rigorous qualification and compatibility testing by Lenovo ensures a highly reliable storage adapter.
Product Overview
Figure 1. ThinkSystem HHHL Intel P4600 Mainstream NVMe PCIe3.0 x4  Flash Adapter

Did You Know?

NVMe (Non-Volatile Memory Express) is a technology that overcomes SAS/SATA SSD performance limitations by optimizing hardware and software to take full advantage of flash technology. Intel Xeon processors efficiently transfer data in fewer clock cycles with the NVMe optimized software stack compared to the legacy Advance Host Controller Interface (AHCI) stack, thereby reducing latency and overhead. These adapters connect directly to the processor via the PCIe bus, further reducing latency and TCO.

Part number information

The following table lists the ordering part numbers and feature codes for the adapters.

Withdrawn: P4600 Mainstream NVMe Flash Adapters are now withdrawn from marketing.

Table 1. Ordering information

Part number

Feature

Description

7SD7A05769B11XThinkSystem HHHL Intel P4600 2.0TB Mainstream NVMe PCIe3.0 x4 Flash Adapter
7SD7A05768B11YThinkSystem HHHL Intel P4600 4.0TB Mainstream NVMe PCIe3.0 x4 Flash Adapter

The part numbers for the adapters include the following items:

  • One adapter with full-height (3U) PCIe bracket attached
  • Separate low-profile (2U) PCIe bracket
  • Documentation

Features

Non-Volatile Memory Express (NVMe) is new PCIe 3.0 high performance flash technology that provides high I/O throughput and low latency. NVMe interfaces remove SAS/SATA bottlenecks found in solid-state drives and unleash all of the capabilities of contemporary NAND flash memory. The flash adapter has a PCIe 3.0 x4 connection which provides at least 2x more bandwidth and 2x less latency than SATA/SASbased solid-stage drive solutions. NVMe adapters are also optimized for heavy multi-threaded workloads by using internal parallelism and many other improvements, such as enlarged I/O queues.

The Intel P4600 NVMe adapters have the following key characteristics:

  • PCIe 3.0 x4 host connection
  • Ultra-low I/O latency, with an typical read latency of 10 µs and write  latency of 13 µs
  • Suitable for mixed read-write workloads
  • Variable sector size and end-to-end data-path protection
  • Enhanced power-loss data protection
  • Thermal throttling and monitoring
  • SMART health reporting

The key metric for flash storage adapters, like solid-state drives, is their endurance (life expectancy). Flash adapters have a huge, but finite, number of program/erase (P/E) cycles, which determines how long the devices can perform write operations and thus their life expectancy. Performance flash adapters have better endurance than Mainstream flash adapters like the P4600, which in turn have better endurance than Entry flash adapters.

Flash adapter write endurance is typically measured by the number of program/erase cycles that the adapter can incur over its lifetime, which is listed as TBW in the device specification. The TBW value that is assigned to a solid-state device is the total bytes of written data that a device can be guaranteed to complete. Reaching this limit does not cause the device to immediately fail; the TBW simply denotes the maximum number of writes that can be guaranteed.

A solid-state device does not fail upon reaching the specified TBW, but at some point after surpassing the TBW value (and based on manufacturing variance margins), the adapter reaches the end-of-life point, at which time the adapter goes into read-only mode. Because of such behavior, careful planning must be done to use flash adapters in the application environments to ensure that the TBW of the adapter is not exceeded before the required life expectancy.

For example, the 2.0 TB P4600 drive has an endurance of 11,080 TB of total bytes written (TBW). This means that for full operation over five years, write workload must be limited to no more than 6,071 GB of writes per day, which is equivalent to 3.0 full drive writes per day (DWPD). For the device to last three years, the drive write workload must be limited to no more than 10,119 GB of writes per day, which is equivalent to 5.1 full drive writes per day.

Technical specifications

The following table present technical specifications for the Intel P4600 adapters.

Table 2. Technical specifications

Feature

2.0 TB adapter

4.0 TB adapter

InterfacePCIe 3.0 x4PCIe 3.0 x4
Capacity2.0 TB4.0 TB
Endurance (total bytes written)11.08 PB23.23 PB
Endurance (drive writes per day over 5 years)3.0 DWPD3.2 DWPD
Data reliability< 1 in 1017 bits read< 1 in 1017 bits read
MTBF, hours2,000,0002,000,000
IOPS read (4 KB blocks)610,850617,500
IOPS write (4 KB blocks)196,650225,000
Sequential read rate3.2 GBps3.2 GBps
Sequential write rate1.575 GBps1.9 GBps
Read access latency sequential*10 µs10 µs
Read access latency random*85 µs115 µs
Write access latency sequential*13 µs13 µs
Write access latency random*15 µs15 µs
Shock, operating1,000 G (Max) at 0.5 ms1,000 G (Max) at 0.5 ms
Vibration, max, operating2.17 GRMS (5-700 Hz)2.17 GRMS (5-700 Hz)
Average power (Active Read / Active Write)9.4 / 17.0 W9.6 / 22.2 W

* Latency measured using 4 KB transfer size with queue depth = 1

Server support

The following tables list the ThinkSystem servers that are compatible.

Table 3. ThinkSystem server support (Part 1)

Part numberDescriptionIntel 2SAMD
ST550 (7X09/7X10)SR530 (7X07/7X08)SR550 (7X03/7X04)SR570 (7Y02/7Y03)SR590 (7X98/7X99)SR630 (7X01/7X02)SR650 (7X05/7X06)SR670 (7Y36/37/38)SR635 (7Y98/7Y99)SR655 (7Y00/7Z01)SR645 (7D2Y/7D2X)SR665 (7D2W/7D2V)
7SD7A05769ThinkSystem HHHL Intel P4600 2.0TB Mainstream NVMe PCIe3.0 x4 Flash AdapterNNNYYYYNNNNN
7SD7A05768ThinkSystem HHHL Intel P4600 4.0TB Mainstream NVMe PCIe3.0 x4 Flash AdapterNNNYYYYNNNNN

Table 4. ThinkSystem server support (Part 2)

Part numberDescriptionE1S Intel 

4S Intel

Dense/ Blade
SE350 (7Z46/7D1X)ST50 (7Y48/7Y50)ST250 (7Y45/7Y46)SR150 (7Y54)SR250 (7Y51/7Y52)SR850 (7X18/7X19)SR850P (7D2F/2D2G)SR860 (7X69/7X70)SR950 (7X11/12/13)SD530 (7X21)SD650 (7X58)SN550 (7X16)SN850 (7X15)
7SD7A05769ThinkSystem HHHL Intel P4600 2.0TB Mainstream NVMe PCIe3.0 x4 Flash AdapterNNNNNYYYYYNNN
7SD7A05768ThinkSystem HHHL Intel P4600 4.0TB Mainstream NVMe PCIe3.0 x4 Flash AdapterNNNNNYNYYYNNN

Operating system support

The adapters support the following operating systems:

Tip: These tables are automatically generated based on data from Lenovo ServerProven.

Table 5. Operating system support for ThinkSystem HHHL Intel P4600  2.0TB Mainstream NVMe PCIe3.0Flash Adapter, 7SD7A05769

Operating systemsSD530 (Gen 2)SR570 (Gen 2)SR590 (Gen 2)SR630 (Gen 2)SR650 (Gen 2)SR850 (Gen 2)SR850PSR860 (Gen 2)SR950 (Gen 2)SD530 (Gen 1)SR570 (Gen 1)SR590 (Gen 1)SR630 (Gen 1)SR650 (Gen 1)SR850 (Gen 1)SR860 (Gen 1)SR950 (Gen 1)
Microsoft Windows Server 2012 R2NNNNNNNNNYYYYYYYN
Microsoft Windows Server 2016YYYYYYYYYYYNYYYYN
Microsoft Windows Server 2019YYYYYYYYYYYYYYYYY
Microsoft Windows Server version 1709NNNNNNNNNYYNYYYNN
Microsoft Windows Server version 1803NNNNNNNNNYNNYYYYY
Red Hat Enterprise Linux 6.9NNNNNNNNNYYYYYYYY
Red Hat Enterprise Linux 7.3NNNNNNNNNYNNYYYNY
Red Hat Enterprise Linux 7.4NNNNNNNNNYYYYYYYY
Red Hat Enterprise Linux 7.5NNNNNNNNNYYYYYYYY
Red Hat Enterprise Linux 7.6YYYYYYYYYYYYYYYYY
Red Hat Enterprise Linux 8.0YYYYYYYYYYYYYYYYY
Red Hat Enterprise Linux 8.1YYYYYYYYYYYYYYYYY
Red Hat Enterprise Linux 8.2YYYYYYYYYYYYYYYYY
SUSE Linux Enterprise Server 11 SP4NNNNNNNNNYYYYYYYY
SUSE Linux Enterprise Server 12 SP2NNNNNNNNNYNNYYYNY
SUSE Linux Enterprise Server 12 SP3NNNNNNYNNYYYYYYYY
SUSE Linux Enterprise Server 12 SP4YYYYYYYYYYYYYYYYY
SUSE Linux Enterprise Server 12 SP5YYYYYYYYYYYYYYYYY
SUSE Linux Enterprise Server 12 SP5 with XenYYYYYYYYYYYYYYYYY
SUSE Linux Enterprise Server 15YYYYYYYYYYYYYYYYY
SUSE Linux Enterprise Server 15 SP1YYYYYYYYYYYYYYYYY
SUSE Linux Enterprise Server 15 SP1 with XenYYYYYYYYYYYYYYYYY
SUSE Linux Enterprise Server 15 SP2NNYNYNNNNNNYNYNNN
VMware vSphere Hypervisor (ESXi) 6.0 U3NNNNNNNNNYYYNYYYN
VMware vSphere Hypervisor (ESXi) 6.5NNNNNNNNNYNNNYYNN
VMware vSphere Hypervisor (ESXi) 6.5 U1NNNNNNNNNYYYNYYYN
VMware vSphere Hypervisor (ESXi) 6.5 U2YYYYYYYYYYYYYYYYY
VMware vSphere Hypervisor (ESXi) 6.7NNNNNNNNNYYYYYYYY
VMware vSphere Hypervisor (ESXi) 6.7 U2YYYYYYYYYYYYYYYYY

Table 6. Operating system support for ThinkSystem HHHL Intel P4600 4.0TB Mainstream NVMe PCIe3.0 Flash Adapter, 7SD7A05768

Operating systemsSD530 (Gen 2)SR570 (Gen 2)SR590 (Gen 2)SR630 (Gen 2)SR650 (Gen 2)SR850 (Gen 2)SR860 (Gen 2)SR950 (Gen 2)SD530 (Gen 1)SR570 (Gen 1)SR590 (Gen 1)SR630 (Gen 1)SR650 (Gen 1)SR850 (Gen 1)SR860 (Gen 1)SR950 (Gen 1)
Microsoft Windows Server 2012 R2NNNNNNNNYYYYYYYN
Microsoft Windows Server 2016YYYYYYYYYYNYYYYN
Microsoft Windows Server 2019YYYYYYYYYYYYYYYY
Microsoft Windows Server version 1709NNNNNNNNYYNYYYNN
Microsoft Windows Server version 1803NNNNNNNNYNNYYYYY
Red Hat Enterprise Linux 6.9NNNNNNNNYYYYYYYY
Red Hat Enterprise Linux 7.3NNNNNNNNYNNYYYNY
Red Hat Enterprise Linux 7.4NNNNNNNNYYYYYYYY
Red Hat Enterprise Linux 7.5NNNNNNNNYYYYYYYY
Red Hat Enterprise Linux 7.6YYYYYYYYYYYYYYYY
Red Hat Enterprise Linux 8.0YYYYYYYYYYYYYYYY
Red Hat Enterprise Linux 8.1YYYYYYYYYYYYYYYY
Red Hat Enterprise Linux 8.2YYYYYYYYYYYYYYYY
SUSE Linux Enterprise Server 11 SP4NNNNNNNNYYYYYYYY
SUSE Linux Enterprise Server 12 SP2NNNNNNNNYNNYYYNY
SUSE Linux Enterprise Server 12 SP3NNNNNNNNYYYYYYYY
SUSE Linux Enterprise Server 12 SP4YYYYYYYYYYYYYYYY
SUSE Linux Enterprise Server 12 SP5YYYYYYYYYYYYYYYY
SUSE Linux Enterprise Server 12 SP5 with XenYYYYYYYYYYYYYYYY
SUSE Linux Enterprise Server 15YYYYYYYYYYYYYYYY
SUSE Linux Enterprise Server 15 SP1YYYYYYYYYYYYYYYY
SUSE Linux Enterprise Server 15 SP1 with XenYYYYYYYYYYYYYYYY
SUSE Linux Enterprise Server 15 SP2NNYNYNNNNNYNYNNN
VMware vSphere Hypervisor (ESXi) 6.0 U3NNNNNNNNYYYNYYYN
VMware vSphere Hypervisor (ESXi) 6.5NNNNNNNNYNNNYYNN
VMware vSphere Hypervisor (ESXi) 6.5 U1NNNNNNNNYYYNYYYN
VMware vSphere Hypervisor (ESXi) 6.5 U2YYYYYYYYYYYYYYYY
VMware vSphere Hypervisor (ESXi) 6.7NNNNNNNNYYYYYYYY
VMware vSphere Hypervisor (ESXi) 6.7 U2YYYYYYYYYYYYYYYY

Warranty

The Intel P4600 adapters carry a 1-year, customer-replaceable unit (CRU) limited warranty. When installed in a supported Lenovo server, these adapters assume the system’s base warranty and any warranty upgrade.

Solid State Memory cells have an intrinsic, finite number of program/erase cycles that each cell can incur. As a result, each solid state device has a maximum amount of program/erase cycles to which it can be subjected. The warranty for Lenovo solid state drives (SSDs) is limited to drives that have not reached the maximum guaranteed number of program/erase cycles, as documented in the Official Published Specifications for the SSD product. A drive that reaches this limit may fail to operate according to its Specifications.

Physical specifications

The Intel P4600 adapters have the following physical dimensions and weight:

  • Height: 68 mm (2.67 in.)
  • Length: 168 mm (6.6 in.)
  • Thickness: 19 mm (0.74 in.)
  • Weight: up to 182 g (6.42 oz)

Operating environment
The Intel P4600 adapters are supported in the following environment:

  • Temperature (operational): 0 – 55 °C (32 – 131 °F) at 0 – 3,048 m (0 –  10,000 ft)
  • Relative humidity: 5 – 95% (non-condensing)
  • Maximum altitude (operational): 3,048 m (10,000 ft)
  • Shock: 1,000 G (Max) at 0.5 ms
  • Vibration: 2.17 G (5-700 Hz)

Agency approvals

The Intel P4600 adapters conform to the following regulations:

  • FCC Title 47, Part 15B, Class B
  • CA/CSA-CEI/IEC CISPR 22:02
  • EN 55024: 1998
  • EN 55022: 2006
  • EN-60950-1 2nd Edition
  • UL/CSA EN-60950-1 2nd Edition
  • Low Voltage Directive 2006/95/EC
  • C-Tick: AS/NZS3584
  • BSMI: CNS 13438
  • KCC Article 11.1
  • RoHS DIRECTIVE 2011/65/EU
  • WEEE Directive 2002/96/EC

Related publications and links
For more information, see the following documents:

Related product families
Product families related to this document are the following:

  • PCIe Flash Adapters

Notices

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Attention: Lenovo Director of Licensing

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The products described in this document are not intended for use in implantation or other life support applications where malfunction may result in injury or death to persons. The information contained in this document does not affect or change Lenovo product specifications or warranties. Nothing in this document shall operate as an express or implied license or indemnity under the intellectual property rights of Lenovo or third parties. All information contained in this document was obtained in specific environments and is presented as an illustration. The result obtained in other operating environments may vary. Lenovo may use or distribute any of the information you supply in any way it believes appropriate without incurring any obligation to you.

Any references in this publication to non-Lenovo Web sites are provided for convenience only and do not in any manner serve as an endorsement of those Web sites. The materials at those Web sites are not part of the materials for this Lenovo product, and use of those Web sites is at your own risk. Any performance data contained herein was determined in a controlled environment. Therefore, the result obtained in other operating environments may vary significantly. Some measurements may have been made on development level systems and there is no guarantee that these measurements will be the same on generally available systems.  Furthermore, some measurements mayhave been estimated through extrapolation. Actual results may vary. Users of this document should verify the applicable data for their specific environment.
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References

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