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Dell EMC PowerStore Hardware Information Guide for PowerStore 1000, 3000, 5000, 7000, and 9000 Owner's Manual

Summary

This document is the hardware information guide for Dell EMC PowerStore systems (1000, 3000, 5000, 7000, 9000) version 2.x. It covers platform architecture, base enclosure components, front and rear views, system identification, embedded modules, 4-port cards, expansion enclosures, and NVMe NVRAM architecture. Target users are storage administrators and IT professionals.

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Dell EMC Power Store Hardware Information Guide for Power Store 1000, 3000, 5000, 7000, and 9000 Version 2.x

January 2022 Rev. A03

Page Summary Contents For Dell EMC PowerStore Hardware Information Guide for PowerStore 1000, 3000, 5000, 7000, and 9000 Owner's Manual

Page 1 Dell EMC Power Store Hardware Information Guide for Power Store 1000, 3000, 5000, 7000, and 9000 Version 2.x January 2022 Rev. A03
Page 2 Notes, cautions, and warnings NOTE: A NOTE indicates important information that helps you make better use of your product. CAUTION: A CAUTION indicates either potential damage to hardware or loss of d...
Page 3 Contents Additional Resources.....................................................................................................................4 Chapter 1: Platform overview...........................
Page 4 Preface As part of an improvement effort, revisions of the software and hardware are periodically released. Some functions that are described in this document are not supported by all versions of the ...
Page 5 Platform overview Topics: Description Description The Power Store platform has a flexible design capable of meeting the requirements of multiple different storage applications with support for high av...
Page 6 Base enclosure component descriptions Topics: Base enclosure component overview Base enclosure front view Base enclosure rear view Node internal components Base enclosure component overview The 2U, 25...
Page 7 Node Each base enclosure contains two nodes. The node is the intelligent component providing the compute capability of the base enclosure. Node power supply module Each node contains a power supply mo...
Page 8 Figure 2. Base enclosure and drive LEDs Table 2. Base enclosure and drive LEDs LED Location State Description Drive fault Amber Fault has occurred. Off No fault has occurred. Drive activity Blue Drive...
Page 9 Figure 4. WWN Seed Tag location Base enclosure rear view The rear of the base enclosure contains two nodes: node A and node B. Each node contains the following hardware components: One embedded module...
Page 10 The first two ports of the 4-port card on the embedded module connect to a Top-of-Rack (To R) switch. NOTE: Both nodes must have the same type of embedded modules in the same slots. The embedded modul...
Page 11 The 4-port 10GBase T embedded module serves Ethernet traffic and i SCSI block protocol. Speeds of 1Gb E and 10 Gb E are supported. Embedded module and 4-port card LED status Figure 7. Embedded module ...
Page 12 Table 5. Embedded module LEDs (continued) LED Location State Description Off Safe to remove the node or embedded module when the node or embedded module has been properly prepared. Base enclosure I/O ...
Page 13 Port labels in Power Store Manager In Power Store Manager, on the Hardware > Rear View tab for an appliance, the following port abbreviations are used: FEPort - Physical Frontend Port h FEPort - Hy...
Page 14 Fan module Seven redundant fan modules connect to the motherboard within the node. These fans provide continuous airflow through the front drives and through the rear of the node to keep the component...
Page 15 Expansion enclosure component descriptions Topics: 2U, 25-drive expansion enclosure 2U, 25-drive expansion enclosure The 2U, 25-drive expansion enclosure includes slots for 25 2.5-inch drives. It uses...
Page 16 Table 9. 2U, 25-drive expansion enclosure and drive status LEDs (continued) LED Location Color State Description Off Powered down Drive fault Amber On Fault Off No fault Drive power and activity Blue ...
Page 17 Figure 12. 2U, 25-drive expansion enclosure LCC ports, LEDs, and connectors Table 10. 2U, 25 (2.5-inch) expansion enclosure LCC component locations Location Description Ejector latch handles LCC fault...
Page 18 LCCs have individual soft-start switches that protect the drives and LCCs when they are installed while the expansion enclosure is powered on. The enclosure cooling system includes two dual-blower mod...
Page 19 Technical specifications Topics: Physical specifications for Power Store X model and Power Store T model Dimensions and weight for Power Store X model and Power Store T model Power requirements for Po...
Page 20 Table 16. 2U, 25-drive expansion enclosure dimensions and weight (continued) Dimension Value Vertical size 2 NEMA units Height 8.64 cm (3.4 in) Width 44.45 cm (17.5 in) Depth 34.29 cm (13.5 in) NOTE: ...
Page 21 Power requirements for Power Store X model and Power Store T model Power requirements will vary depending on system configuration, loading, and environmental conditions. The table below describes the ...
Page 22 Power requirements for the 2U 25-drive expansion enclosure Power requirements vary depending on system configuration, loading, and environmental conditions. The table below describes the maximum expec...
Page 23 Table 21. Shipping and storage requirements Requirement Description Ambient temperature -40° F to 149°F (-40°C to 65°C) Temperature gradient 45°F/hr (25°C/hr) Relative humidity 10% to 90% noncondensin...
Page 24 Storage time (unpowered) recommendation: do not exceed 6 consecutive months of unpowered storage. Fire suppressant disclaimer Fire prevention equipment in the computer room should always be installed ...

Manual Details

Brand Dell
Pages 24
File Size 4.52 MB
Published June 23, 2026
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Frequently Asked Questions

What are the operating shock and vibration limits?

Non operational shock is 10 G’s, 7 ms duration; operational shock is 3 G’s, 11 ms duration.

What are the transportation testing limits?

Transportation shock is 10 G’s, 12 ms duration; random vibration is 1.15 Grms, 1–200 Hz, 1 hour.

What are the operational random vibration requirements?

0.21 Grms, 5–500 Hz, for 10 minutes.

What are the non-operational random vibration requirements?

0.40 Grms, 5–500 Hz, for 30 minutes.