Hp Dl360 G5 Memory Slots
Maximum memory capacities for all AMP modes will increase with the availability of 4GB and 8GB FBDIMMs, including a maximum of 64GB in Advanced ECC mode. For the latest memory configuration information, refer to the QuickSpecs on the HPE website. Click here to view the HP ProLiant DL380 Generation 5 (G5) QuickSpecs. You can upgrade your Compaq ProLiant DL360 G5 Server to up to a maximum memory capacity of 64 GB Memory. How many total memory slots to install memory? The Server has 8 sockets (4 banks of 2) to install memory, already with 1.0 GB (removable) standard memory installed.
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Standard memory2GB PC2-5300 Fully Buffered DIMMs (DDR2-667) (2 x 1GB) Upgrading memory and memory interleavingWhen upgrading memory, DIMMs 1A and 3A must match. DIMMs 5B and 7B, DIMMs 2C and 4C, and DIMMs 6D and 8D must match and must be installed as a pair. When DIMMs 1A and 3A are populated the system is automatically configured for 2:1 interleaving. When all 4 banks are populated the system is automatically configured for 4:1 interleaving. When four, six, or eight DIMMs are populated with identical DIMMs the system is automatically configured for bank interleaving. Standard memory plus optional memoryUp to 50GB memory is available with the standard memory and the optional installation of PC2-5300 Fully Buffered DIMMs (DDR2-667) memory kits. Standard memory replaced with optional memoryUp to 64GB of memory is available with the removal of the standard memory and the optional installation of PC2-5300 Full Buffered DIMMs (DDR2-667) memory kits.
NOTE:
Memory optionsThis server contains eight FBDIMM slots. The server memory can be extended by installing supported Registered DDR-2 FBDIMMs. Memory configurationsThe server supports the following Advanced Memory Protection (AMP) options to optimize server availability.
Maximum memory capacities for all AMP modes will increase with the availability of 4GB and 8GB FBDIMMs, including a maximum of 64GB in Advanced ECC mode. For the latest memory configuration information, refer to the QuickSpecs on the HPE website. Click here to view the HP ProLiant DL380 Generation 5 (G5) QuickSpecs. The Advanced Memory Protection option is configured in RBSU. By default, the server is set to Advanced ECC mode. For more information, refer to HP ROM-Based Setup Utility. If the configured AMP mode is not supported by the installed FBDIMM configuration, the system boots in Advanced ECC mode. The following configuration requirements apply to all AMP modes:
The memory subsystem for this server is divided into two branches. Each memory branch is essentially a separate memory controller. The FBDIMMs map to the two branches as indicated in the following table:
<---– Front of Server
This multi-branch architecture provides enhanced performance in Advanced ECC mode. The concept of multiple branches is important for the operation of online spare mode and mirrored memory mode. If the server contains more than 4GB of memory, consult the operating system documentation about accessing the full amount of installed memory. Advanced ECC memoryAdvanced ECC memory is the default memory protection mode for this server. In Advanced ECC, the server is protected against correctable memory errors. The server provides notification if the level of correctable errors exceeds a pre-defined threshold rate. The server does not fail because of correctable memory errors. Advanced ECC provides additional protection over Standard ECC because it is possible to correct certain memory errors that would otherwise be uncorrectable and result in a server failure. Whereas standard ECC can correct single-bit memory errors, Advanced ECC can correct single-bit memory errors and multi-bit memory errors if all failed bits are on the same DRAM device on the FBDIMM. In addition to general configuration requirements, Advanced ECC memory also has the following configuration requirements:
In Advanced ECC mode, FBDIMMs must be populated as specified in the following table:
Online spare memory configurationOnline spare memory provides protection against degrading FBDIMMs by reducing the likelihood of uncorrectable memory errors. This protection is available without any operating system support. An understanding of single-rank and dual-rank FBDIMMs is required to understand memory usage in online spare mode. FBDIMMs can either be single-rank or dual-rank. Certain FBDIMM configuration requirements are based on these classifications. A dual-rank FBDIMM is similar to having two single-rank FBDIMMs on the same module. Although only a single FBDIMM module, a dual-rank FBDIMM acts as two separate FBDIMMs. The purpose of dual-rank FBDIMMs is to provide the largest capacity FBDIMM for the current DRAM technology. If the current DRAM technology allows for 2GB single-rank FBDIMMs, a dual-rank FBDIMM using the same technology would be 4GB. Some of you may have identified a market come on sports casino poker need based on your own experience, or you may have been approached by potential customers, or if you are corporate innovator you may have applied an innovative solution to an existing target market.The opposite side contains a. https://luckyrate.netlify.app/come-on-sports-casino-poker.html. Comeon sports casino poker Conversely, a 'hard' hand is one which does not include an ace, e.The game of Blackjack includes plenty of awareness on when to hit, when to stand, and comeon sports casino poker when to double, take insurance, or part a pair into just two hands. Casino, there are lots of other card and table games, too. Baccarat, mahjong, scratchcards, and other novelty casino games are available. If you’d like to take a break from the same card and table games you find everywhere else, check them out. Live Dealer Games. You can play baccarat, blackjack, roulette, and poker in the live dealer casino. In online spare mode, a single rank of memory acts as the spare memory. For single-rank FBDIMMs, the entire FBDIMM acts as the spare memory. For a dual-rank FBDIMM, only half of the FBDIMM acts as the spare memory while the other half is available for operating system and application usage. If one of the non-spare FBDIMMs receives correctable memory errors at a higher rate than a specific threshold, the server automatically copies the memory contents of the degraded rank to the online spare rank. The server then deactivates the failing rank and automatically switches over to the online spare. Because FBDIMMs that experience a high rate of correctable memory errors also have a higher probability of receiving an uncorrectable memory error, this configuration reduces the likelihood of uncorrectable memory errors that would result in server downtime. Online spare is performed per branch of the memory controller. For a server with both branches populated, two ranks are used for online spare memory. One branch can fail over to the associated online spare while the other branch is still protected. Each branch is made up of two banks:
Online spare FBDIMM configuration requirements (in addition to general configuration requirements):
In online spare mode, FBDIMMs must be populated as specified in the following table:
After installing FBDIMMs, use RBSU to configure the system for online spare memory support. Mirrored memory configurationMirroring provides protection against uncorrectable memory errors that would otherwise result in server downtime. Mirroring is performed on the branch level. Branch 0 and branch 1 mirror each other. Each branch maintains a copy of all memory contents. Memory writes go to both branches. Memory reads come from only one of the two branches (unless an uncorrectable error occurs). If a memory read on one branch returns incorrect data due to an uncorrectable memory error, the system automatically retrieves the proper data from the other branch. A branch is not necessarily disabled (thus losing mirroring protection) because of a single uncorrectable error. Mirroring protection is not lost because of transient and soft uncorrectable errors, resulting in systems that maintain mirroring protection (and thus improved uptime) unless there is a failure of both branches. Mirrored memory FBDIMM configuration requirements (in addition to general configuration requirements):
When using mirrored memory mode, FBDIMMs must be populated as specified in the following table:
After installing FBDIMMs, use RBSU to configure the system for mirrored memory support. |
Legal Disclaimer: Products sold prior to the November 1, 2015 separation of Hewlett-Packard Company into Hewlett Packard Enterprise Company and HP Inc. may have older product names and model numbers that differ from current models.
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OverviewThe DL360 G5 Server supports Fully Buffered DIMMs (FBDIMMs). The server supports up to 64 GB of memory using 8GB memory modules. Four banks of memory are supported by (8) slots of PC2-5300 FBDIMMs (DDR2-667). Figure 1: System memory Standard MemoryNOTE: Memory configurations listed do not apply to 'Factory Integrated Models'. NOTE: Memory DIMMs in systems with the Front Side Bus (FSB) running at 1333 MHz will run at 667 MHz and in systems with aFSB running at 1066 MHz or 667 MHz the memory DIMMs will run at 533 MHz. HP ProLiant DL360 G5 Entry and Base Models
HP ProLiant DL360 G5 Performance Models
Upgrading Memory and Memory InterleavingFollowing guidelines must be observed while upgrading memory and memory interleaving:
Standard Memory Plus Optional MemoryHP ProLiant DL360 G5 Entry and Base Models
HP ProLiant DL360 G5 Performance Models
Standard Memory Replaced with Optional MemoryUp to 64 GB of memory is available with the removal of the standard 512 MB or 1 GB of memory and the optional installation of PC2-5300Fully Buffered (DDR2-667) DIMM 8 GB memory kits. NOTE: 4 GB and 8 GB Fully Buffered DIMM memory kits will be available shortly following server availability to allow a maximum of 64 GB of memory. Today'smaximum is 16 GB utilizing 2 GB DIMMs. NOTE: The following chart does not represent all possible configurations.
NOTE: In the online spare configuration, the ROM automatically configures the last populated bank as the spare memory. If onlybanks A and B are populated, bank B is the spare bank. If banks A, B, and C are populated, bank C is the spare bank, If banks A, B,C and D are populated, bank D is the spare bank, Online spare memory is configured through RBSU. Mirrored Memory uses mirrored banks to provide a high level of memory redundancy. Customer chooses to implement ornot: User selectable via BIOS and default is off.
BIOS Memory ConfigurationsThe server supports the following Advanced Memory Protection (AMP) options in the system BIOS to optimize serveravailability.
Maximum memory capacities for all AMP modes will increase with the availability of 4-GB and 8-GBFBDIMMs, including a maximum of 64 GB in Advanced ECC mode. For the latest memory configurationinformation, refer to the QuickSpecs on the HP website. The Advanced Memory Protection option is configured in ROM Based Setup Utility (RBSU). By default, the server is set to AdvancedECC mode. For more information, refer to HP ROM-Based Setup Utility information on page 68 of the Proliant DL360 G5 User Guide. NOTE: If the configuredAMP mode is not supported by the installed FBDIMM configuration, the system boots in Advanced ECCmode. The following configuration requirements apply to all AMP modes:
The memory subsystem for this server is divided into two branches. Each memory branch is essentially aseparate memory controller. The FBDIMMs map to the two branches as indicated in the following table:
This multi-branch architecture provides enhanced performance in Advanced ECC mode. The concept ofmultiple branches is important for the operation of online spare mode and mirrored memory mode. If the server contains more than 4 GB of memory, consult the operating system documentation aboutaccessing the full amount of installed memory. Advanced ECC memory configuration requirementsAdvanced ECC memory is the default memory protection mode for this server. In Advanced ECC, theserver is protected against correctable memory errors. The server provides notification if the level ofcorrectable errors exceeds a pre-defined threshold rate. The server does not fail because of correctablememory errors. Advanced ECC provides additional protection over Standard ECC because it is possibleto correct certain memory errors that would otherwise be uncorrectable and result in a server failure. Whereas standard ECC can correct single-bit memory errors, Advanced ECC can correct single-bitmemory errors and multi-bit memory errors if all failed bits are on the same DRAM device on theFBDIMM.In addition to general configuration requirements, Advanced ECC memory also has the followingconfiguration requirements:
In Advanced ECC mode, FBDIMMs must be populated as specified in the following table:
Online spare FBDIMM configuration requirementsOnline spare memory provides protection against degrading FBDIMMs by reducing the likelihood ofuncorrectable memory errors. This protection is available without any operating system support. An understanding of single-rank and dual-rank FBDIMMs is required to understand memory usage inonline spare mode. FBDIMMs can either be single-rank or dual-rank. Certain FBDIMM configurationrequirements are based on these classifications. A dual-rank FBDIMM is similar to having two single-rankFBDIMMs on the same module. Although only a single FBDIMM module, a dual-rank FBDIMM acts as twoseparate FBDIMMs. The purpose of dual-rank FBDIMMs is to provide the largest capacity FBDIMM for the current DRAM technology. If the current DRAM technology allows for 2-GB single-rank FBDIMMs, a dualrankFBDIMM using the same technology would be 4-GB. In online spare mode, a single rank of memory acts as the spare memory. For single-rank FBDIMMs, theentire FBDIMM acts as the spare memory. For a dual-rank FBDIMM, only half of the FBDIMM acts as thespare memory while the other half is available for operating system and application usage. If one of the non-spare FBDIMMs receives correctable memory errors at a higher rate than a specificthreshold, the server automatically copies the memory contents of the degraded rank to the online sparerank. The server then deactivates the failing rank and automatically switches over to the online spare.Because FBDIMMs that experience a high rate of correctable memory errors also have a higherprobability of receiving an uncorrectable memory error, this configuration reduces the likelihood ofuncorrectable memory errors that would result in server downtime. Each branch is made up of two banks:
Online spare is performed per branch of the memory controller. For a server with both branchespopulated, two ranks are used for online spare memory. One branch can fail over to the associatedonline spare while the other branch is still protected. Online spare FBDIMM configuration requirements (in addition to general configuration requirements)
In online spare mode, FBDIMMs must be populated as specified in the following table:
NOTE: After installing FBDIMMs, use RBSU to configure the system for online spare memory support Mirrored memory FBDIMM configuration requirementsMirroring provides protection against uncorrectable memory errors that would otherwise result in serverdowntime.Mirroring is performed on the branch level. Branch 0 and branch 1 mirror each other. Each branch maintains a copy of all memory contents. Memory writes go to both branches. Memoryreads come from only one of the two branches (unless an uncorrectable error occurs). If a memory readon one branch returns incorrect data due to an uncorrectable memory error, the system automaticallyretrieves the proper data from the other branch. A branch is not necessarily disabled (thus losingmirroring protection) because of a single uncorrectable error. Mirroring protection is not lost because oftransient and soft uncorrectable errors, resulting in systems that maintain mirroring protection (and thusimproved uptime) unless there is a failure of both branches. Mirrored memory FBDIMMs configuration requirements (in addition to general configuration requirements)
When using mirrored memory mode, FBDIMMs must be populated as specified in the following table:
NOTE: After installing FBDIMMs, use RBSU to configure the system for mirrored memory support. |
Legal Disclaimer: Products sold prior to the November 1, 2015 separation of Hewlett-Packard Company into Hewlett Packard Enterprise Company and HP Inc. may have older product names and model numbers that differ from current models.
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