Powerprotect data manager appliance 5.19 (68 pages)
Summary of Contents for Dell Data Domain DD9500
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Dell EMC Data Domain DD9500 and DD9800 Systems Version 6.1 Hardware Overview and Installation Guide 302-002-887 REV. 02...
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MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE. USE, COPYING, AND DISTRIBUTION OF ANY DELL SOFTWARE DESCRIBED IN THIS PUBLICATION REQUIRES AN APPLICABLE SOFTWARE LICENSE. Dell, EMC, and other trademarks are trademarks of Dell Inc. or its subsidiaries. Other trademarks may be the property of their respective owners. Published in the USA.
Install the Data Domain cable management assembly (CMA)..47 Installing the expansion shelves into the racks..........49 Chapter 4 Connect Cables and Power on Connecting the expansion shelves and the controllers....... 52 Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
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Enable administrative communication............86 Accepting the End User License Agreement (EULA)........88 Run the configuration wizard..............88 Configuring the network..............88 Configuring additional system parameters..........90 Configure HA for new installations.............. 91 Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Cabling for HA DD9500 and DD9800 systems with DD Cloud Tier......79 Cabling for DD9500 and DD9800 systems with ERSO..........81 DD9500/DD9800 HA interconnect................82 Power LED and power button..................87 Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
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FIGURES Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Revision history Table 1 Document revision history Revision Date Document Software Description part number/ version Revision Number June 2017 302-002-887, Editorial Rev. 01 revisions October 2016 302-002-887, Initial publication Rev. 01 Revision history...
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Revision history Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
CHAPTER 1 Planning and Site Preparation Tools and supplies needed.................. 12 Safety information....................12 Planning and Site Preparation...
A DD9500/DD9800 system must be operated only from a power supply input voltage range of 200–240 VAC and 50–60 Hz. ES30 shelves use 100-240 VAC and 50–60 Hz. DS60 shelves use 200–240 VAC and 50–60 Hz. Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Planning and Site Preparation Each component is intended to operate with all working power supplies installed. Provide a suitable power source with electrical overload protection. A safe electrical earth connection must be provided to each power cord. Check the grounding of the power sources before applying power. The plug on each power supply cord is used as the main device to disconnect power from the system.
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Do not extend components on slide rails until you have loaded at least three or more similarly weighted items in the rack, or unless the rack is bolted to the floor or overhead structure to prevent tipping. Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Power (VA) Weight Width Depth Height DD9500/ 1887 6444 1981 117 lb / 53.2 19 in / 48.3 29.5 in / 74.9 7 in / 17.8 cm DD9800 Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
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Hardware Overview Operating temperature: 50° to 95° F (10° to 35° C), derate 1.1° C per 1000 feet, above 7500 feet up to 10,000 feet Operating humidity: 20% to 80%, non-condensing Non-operating temperature: -40° to +149° F (-40° to +65° C) Operating acoustic noise: Sound power, LWAd, is 7.7 bels.
(SP) requires service. The Enclosure Service LED is normally off, but glows amber whenever the SP or other replaceable parts require service. The System Power and Enclosure Service LEDs are visible through the front bezel. Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Hardware Overview Figure 3 Service LEDs 1. SP service LED — Amber light indicates that the SP or one of its components needs service. 2. Enclosure Service LED — This is normally off, but amber light indicates that the enclosure or something within the enclosure— the fans, SP, I/O modules, management module etc—requires service.
2. SSD LED in slot 1 3. SSD LED in slot 2 4. SSD LED in slot 3 5. System power LED — Blue light indicates system running Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Hardware Overview Table 4 Front panel LED status indicators Part Description or Location State System, SP fault Exclamation point within a Dark indicates normal triangle operation. Amber indicates failure. System, chassis fault Exclamation point within a Dark indicates normal triangle operation.
4. NVRAM and IO modules (slots 0-11) The figure shows the location of the serial number tag on the left of the management module. Figure 8 Serial number tag location Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Hardware Overview Power supply units A DD9500/DD9800 system has four power supply units, numbered PSU0, PSU1, PSU2, and PSU3 from left to right. Each power supply has its own integral cooling fan. Note The DD9500/DD9800 system should be powered from redundant AC sources. This allows one AC source to fail or be serviced without impacting system operation.
- Lower right port: physical #2, logical ethMc - Top right port: physical #3, logical ethMd Rear LED Indicators The rear elements containing LEDs include each power supply, each I/O module, and the management module. Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Hardware Overview The figure shows the rear LEDS. Figure 12 Rear LEDs 1. Management module service LEDs 2. Power supply LEDs 3. NVRAM LEDs 4. IO Module LEDS The power supply LEDs include: AC LED on top DC LED in the middle Service Required LED on the bottom Figure 13 Power supply LEDs Table 5 Rear LED status indicators...
The following example is based on a four-port Ethernet I/O module installed in slot 1 of the system chassis. Table 6 Physical to logical port mapping example Physical port Logical identifier eth1a Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Hardware Overview Table 6 Physical to logical port mapping example (continued) Physical port Logical identifier eth1b eth1c eth1d Ethernet I/O modules A system can have up to a maximum of four Ethernet I/O modules of any type. The four Ethernet I/O module limit applies to any combination of the different types of Ethernet I/O modules.
FC, Ethernet or 10 Gb optical FC, Ethernet or 10 Gb optical empty Ethernet for empty Ethernet for interconnect interconnect between the between the Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Hardware Overview Table 7 DD9500 and DD9800 I/O module slot assignments (continued) Slot Base ER or DD Cloud DD Cloud Tier configuratio Tier and HA primary and primary and standby standby nodes in nodes in the HA the HA pair. pair.
Also do not carry the DD9500/DD9800 system or the SP by the handle. The handles are only intended to be used to insert or remove the SP module. Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
DIMMs, and I/O modules. Each fan has an LED which glows amber when the fan is failed or faulted. A system can run with one fan faulted. Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Hardware Overview Storage capacity The table lists the capacities of the systems. Data Domain system internal indexes and other product components use variable amounts of storage, depending on the type of data and the sizes of files. If you send different data sets to otherwise identical systems, one system may, over time, have room for more or less actual backup data than another.
Note ES30 SATA shelves are supported when upgrading from an older Data Domain single node system, but are not supported with HA pairs or new installations. Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Hardware Overview Table 12 DD9500/DD9800 with DS60 shelves DD9500 DD9500 DD9800 DD9800 Memory (GB) SAS I/O modules x ports per module DS60 support SAS 45, 60 SAS 45, 60 SAS 45, 60 SAS 45, 60 (TB) Maximum shelves per set Maximum number of sets Storage capacity...
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Hardware Overview Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
CHAPTER 3 Install the System in the Rack This chapter includes the following topics: Unpack the system.................... 38 Install the rack brackets..................38 Install the DD9500/DD9800 system into a rack..........45 Mount the cable management assembly.............47 Installing the expansion shelves into the racks...........
M5, M6, 12-24, and 10-32 threaded holes The controller rail kit includes the following items: Two bracket assemblies, one marked for the left side and one marked for the right side of the rack Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Install the System in the Rack Figure 19 Rail bracket inside 1. Left inside bracket 2. Right inside bracket Figure 20 Rail bracket outside 1. Left outside bracket 2. Right outside bracket A cable management assembly (CMA), for organization of cables at the rear of the system, is already installed onto the DD9500/DD9800 system on a Data Domain rack.
2. As needed, select the bracket marked right or left. The rear of the bracket contains an adjustable piece. Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Install the System in the Rack 3. From the rear of the system, hold the bracket against the inside of the rack posts. Align the rear guide pin and slide the bracket towards the front. The guide pins can help to temporarily hold the rack mount bracket in place. Attach the bracket to the rear of the rack using the furnished screws.
7. Repeat the steps to attach the remaining bracket to the other side of the rack. 8. After installing both brackets, make sure that they are level with one another. Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Install the System in the Rack Install rail brackets using the adapter hardware (for threaded hole racks) Note If you are using a rack with square or round holes, go to Install rail brackets on the Data Domain racks (for square or round hole racks) on page 40 section.
Attach the rails to the rack by installing the appropriate nuts onto the screws threaded into the rack. Use the supplied wrench to tighten the nuts. Do this for the front and rear of the rail kit. Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Install the System in the Rack d. Attach the rear of the rail/bracket assembly to the rear of the rack. Secure each screw. Figure 27 Attach front rail adapter 9. Repeat the steps for the second rail. 10. After installing both rails, make sure that they are level with one another. 11.
Inverting the bracket allows it to be used on the other side of the chassis. Figure 29 System on a rack Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Install the System in the Rack 7. Check the PSNT label at the rear of the chassis. Figure 30 Location of serial number tag 8. Repeat these steps to install the second node. Mount the cable management assembly A cable management assembly (CMA), for organization of cables at the rear of the system, is already installed onto the DD9500/DD9800 system on a Data Domain rack.
Align and insert the CMA tabs in the slots and the blue knob in the hole of the rail bracket on both sides. Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Install the System in the Rack Figure 33 Rear of the rack mount rail 5. Insert cable management assembly into rear of rack mount rails. 6. When the cable management assembly is securely installed into the rack mount rails, then rotate the two blue knobs clockwise or counterclockwise to lock the cable management assembly into the rack mount rails.
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SSD shelf is on the 1 shelf of a chain. Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
CHAPTER 4 Connect Cables and Power on This chapter includes the following topics: Connecting the expansion shelves and the controllers........52 ES30 cable information..................52 Connecting multiple ES30 shelves to the DD9500 /DD9800 system....56 DS60 cable information..................69 Connecting multiple DS60 shelves to the DD9500 /DD9800 system....
The cable end that connects to an ES30 from node 1 has a mini-SAS connector with a port. Cables between ES30s have mini-SAS connectors on both ends. Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Connect Cables and Power on Figure 34 Node 0 SAS I/O module to ES30 host port connector Table 13 Cables for node 0 to ES30 shelf loop HD-mini-SAS connector on controller, SFF-8088 connector keyed for host port on ES30 Cable model code Part number Cable length X-SAS-HDMS2...
HD-mini-SAS connector on controller, SFF-8088 connector keyed for expansion port on ES30 Cable model Part number Cable length X-HA-ES30-SAS-2 038-004-108 2 m (79 in) X-HA-ES30-SAS-5 038-004-111 5 m (196 in) Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Connect Cables and Power on Figure 36 Cables for ES30 to ES30 connections Table 15 ES30 to ES30 cable options Mini-SAS cable, SFF-8088 connectors on both ends, one end keyed for host ports and the other keyed for expansion ports Cable model Part number Cable...
DD9500 /DD9800 For a base DD9500 /DD9800 system: String I/O - Port Shelf Port Length (Loop) I/O 3 - Port 1 B controller HOST port of shelf V1.1 Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
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Connect Cables and Power on String I/O - Port Shelf Port Length (Loop) I/O 2 - Port 0 A controller HOST port of the highest number shelf in V1 I/O 3 - Port 0 B controller HOST port of shelf V2.1 I/O 6 - Port 1 A controller HOST port of the highest number...
Connect Cables and Power on Figure 37 Cabling for base DD9500 /DD9800 systems DD9500 /DD9800 with HA (one rack) For an HA DD9500 /DD9800 pair in one rack: Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Connect Cables and Power on Table 16 Primary node cabling instructions String I/O - Port Shelf Port Length (Loop) I/O 3 - Port 1 B controller HOST port of shelf V1.1 I/O 2 - Port 0 A controller HOST port of the highest number shelf in V1 I/O 3 - Port 0 B controller HOST...
Connect Cables and Power on Figure 38 Cabling for HA DD9500 /DD9800 systems in one rack DD9500 /DD9800 with HA (two racks) For an HA DD9500 /DD9800 pair in two racks: Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Connect Cables and Power on Table 18 Primary node cabling instructions String I/O - Port Shelf Port Length (Loop) I/O 3 - Port 1 B controller HOST port of shelf V1.1 I/O 2 - Port 0 A controller HOST port of the highest number shelf in V1 I/O 3 - Port 0 B controller HOST...
B controller EXPANSION port of the highest number shelf in V6 Cable lengths shown are designed for Data Domain racks. Longer cables (up to 5M) can be used. Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Connect Cables and Power on Figure 39 Cabling for HA DD9500 /DD9800 systems in two racks DD9500 /DD9800 with DD Cloud Tier (Single node or HA) For a DD9500 /DD9800 system with DD Cloud Tier (Single node or HA): DD9500 /DD9800 with DD Cloud Tier (Single node or HA)
I/O 9 - Port 1 B controller EXPANSION port of the highest number shelf in V2 I/O 2 - Port 1 A controller EXPANSION port of shelf V3.1 Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Connect Cables and Power on Table 21 Standby node cabling instructions (continued) String I/O - Port Shelf Port Length (Loop) I/O 6 - Port 0 B controller EXPANSION port of the highest number shelf in V3 I/O 3 - Port 3 A controller EXPANSION port of shelf V4.1 I/O 2 - Port 2...
I/O 3 - Port 1 B controller HOST port of shelf V1.1 I/O 2 - Port 0 A controller HOST port of the highest number shelf in V1 Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
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Connect Cables and Power on String I/O - Port Shelf Port Length (Loop) I/O 3 - Port 0 B controller HOST port of shelf V2.1 I/O 9 - Port 1 A controller HOST port of the highest number shelf in V2 I/O 2 - Port 1 B controller HOST port of shelf V3.1...
Connect Cables and Power on Figure 41 Cabling for DD9500 /DD9800 systems with ERSO Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Connect Cables and Power on DS60 cable information The primary and secondary nodes use the same cable type to connect to DS60 disk shelves. Figure 42 SAS I/O module to DS60 connector Table 22 Cables for node 0 and node 1 to DS60 shelf loop HD-mini-SAS connector on controller and enclosure Cable model code Part number...
I/O 2 - Port 1 B controller port 0 of the highest number shelf in V1 I/O 3 - Port 0 A controller port 0 of shelf V2.1 Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
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Connect Cables and Power on String I/O - Port Shelf Port Length (Loop) I/O 2 - Port 0 B controller port 0 of the highest number shelf in V2 I/O 6 - Port 1 A controller port 0 of shelf V3.1 I/O 3 - Port 1 B controller port 0 of the highest number shelf in V3 I/O 2 - Port 2 A controller port 0 of shelf V4.1 I/O 3 - Port 2 B controller port 0 of the highest number shelf in V4...
Connect Cables and Power on Figure 43 Cabling for base DD9500 and DD9800 systems Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Connect Cables and Power on DD9500 /DD9800 with HA For an HA DD9500 /DD9800 pair: Table 23 Primary node cabling instructions String I/O - Port Shelf Port Length (Loop) I/O 6 - Port 0 A controller port 0 of shelf V1.1 I/O 2 - Port 1 B controller port 0 of the highest number shelf in V1 I/O 3 - Port 0 A controller port 0 of shelf V2.1 I/O 2 - Port 0 B controller port 0 of the highest number shelf in V2...
Connect Cables and Power on Figure 44 Cabling for HA DD9500 and DD9800systems Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Connect Cables and Power on DD9500 and DD9800 with DD Cloud Tier (Single node) For a DD9500 and DD9800 system with DD Cloud Tier: String I/O - Port Shelf Port Length (Loop) I/O 6 - Port 0 A controller port 0 of shelf V1.1 I/O 2 - Port 1 B controller port 0 of the highest number shelf in V1 I/O 3 - Port 0 A controller port 0 of shelf V2.1 I/O 2 - Port 0 B controller port 0 of the highest number shelf in V2...
Figure 45 Cabling for DD9500 and DD9800 systems with DD Cloud Tier DD9500 and DD9800 with DD Cloud Tier (HA) For an HA DD9500 and DD9800 pair with DD Cloud Tier: Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Connect Cables and Power on Table 25 Primary node cabling instructions String I/O - Port Shelf Port Length (Loop) I/O 6 - Port 0 A controller port 0 of shelf V1.1 I/O 2 - Port 1 B controller port 0 of the highest number shelf in V1 I/O 3 - Port 0 A controller port 0 of shelf V2.1 I/O 2 - Port 0 B controller port 0 of the highest number shelf in V2 I/O 2 - Port 2 A controller port 0 of shelf V3.1...
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SSD shelf or DD Cloud Tier metadata shelf Cable lengths shown are designed for Data Domain racks. Longer cables (up to 5M) can be used. Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
SSD shelf or DD Cloud Tier metadata shelf Cable lengths shown are designed for Data Domain racks. Longer cables (up to 5M) can be used. Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Connect Cables and Power on Figure 47 Cabling for DD9500 and DD9800 systems with ERSO Connecting the HA interconnect The HA interconnect consists of a 10 GbE I/O module in slot 11 of each node in the HA pair. This connection between the two nodes provides the standby node with the information it needs to failover if the active node suffers a failure, and maintain the connections to hosts and clients after the failover is complete.
If using 1 Gb copper Ethernet, attach a Cat 5e or Cat 6 copper Ethernet cable to an RJ-45 Ethernet network port (start with ethMa and go up). Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Connect Cables and Power on b. If using 10 Gb copper Ethernet with an SFP+ connector, use a qualified SFP+ copper cable. c. If using 1/10 Gb fiber Ethernet, use MMF-850nm cables with LC duplex connectors. d. For 10GBaseT connections, use Cat6a S-STP Ethernet cables. 2.
The red circles identify the latches on each bezel. Make sure the handhold locks lock into place. Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
CHAPTER 5 Configure System For Use This chapter contains the following topics: Enable administrative communication..............86 Accepting the End User License Agreement (EULA)..........88 Run the configuration wizard................88 Configuring additional system parameters............90 Configure HA for new installations..............91 Configure System For Use...
4. In the front of the DD9500/DD9800 system, press the power button to turn the power on the system. Check that the front blue power LED (with the circle with a dot) also turns on. Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Configure System For Use Figure 49 Power LED and power button 1. Power LED 2. Power button Note The initial username is sysadmin and the initial password is the system serial number. Log into the Data Domain console using the sysadmin username. localhost.localdomain login: sysadmin 6.
3. Enter a fully qualified domain name (FQDN) for the host name; for example, . Or accept the host name, if the system was able to str01.yourcompany.com discover it. Enter the hostname for this system (fully-qualified domain name)[]: Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
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Configure System For Use 4. Enter the DNS (Domain Name System) domain name; for example, . Or accept the domain name, if the system was able to yourcompany.com discover it. Domainname Enter your DNS domainname []: 5. Enable and configure each Ethernet interface. Accept or decline DHCP for each interface.
The 'system reboot' command reboots the system. File access is interrupted during the reboot. Are you sure? (yes|no|?) [no]: yes ok, proceeding. The system is going down for reboot. Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
Configure System For Use 7. After the system completes the reboot, login again as using the serial sysadmin number as a password. Press to get through the EULA, sysadmin Ctrl-C password prompt, and config setup wizard. 8. Generate an autosupport sent to yourself to use as ACG input: # autosupport send your.email@emc.com OK: Message sent.
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The net config command with the float option is the only way to configure a floating IP address. There is no method available in Data Domain System Manager to configure a floating IP address. net config eth4a 2.2.2.1 netmask 255.255.255.0 type floating Data Domain DD9500 and DD9800 Systems 6.1 Hardware Overview and Installation Guide...
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