HP ProLiant SL270s HP ProLiant SL270s Gen8 Server User Guide - Page 34

Maximum memory configurations, Advanced ECC memory configuration, Online Spare memory configuration

Page 34 highlights

is degrading. This configuration enables DIMMs that have a higher probability of receiving an uncorrectable memory error (resulting in system downtime) to be removed from operation. Advanced Memory Protection options are configured in RBSU. If the requested AMP mode is not supported by the installed DIMM configuration, the server boots in Advanced ECC mode. For more information, see "HP ROM-Based Setup Utility (on page 73)." The server also can operate in independent channel mode or combined channel mode (lockstep). When running in lockstep mode, you gain reliability in one of two ways: • If running with UDIMMs (built with x8 DRAM devices), the system can survive a complete DRAM failure (SDDC). In independent channel mode, this failure would be an uncorrectable error. • If running with RDIMM (built with x4 DRAM devices), the system can survive the complete failure of two DRAM devices (DDDC). Running in independent mode, the server can only survive the complete failure of a single DRAM device (SDDC). Maximum capacity DIMM type RDIMM RDIMM UDIMM DIMM rank Single-rank Dual-rank Single-rank One processor 64GB 128 GB 32 GB Two processors 128 GB 256 GB 64 GB UDIMM Dual-rank 64 GB 128GB For the latest memory configuration information, see the QuickSpecs on the HP website (http://www.hp.com). Maximum memory configurations The server supports a maximum of 256 GB of memory with one processor (8 x 32 GB), or 512 GB of memory with two processors (16 x 32 GB). Advanced ECC memory configuration Advanced ECC memory is the default memory protection mode for this server. Standard ECC can correct single-bit memory errors and detect multi-bit memory errors. When multi-bit errors are detected using Standard ECC, the error is signaled to the server and causes the server to halt. Advanced ECC protects the server against some multi-bit memory errors. Advanced ECC can correct both single-bit memory errors and 4-bit memory errors if all failed bits are on the same DRAM device on the DIMM. Advanced ECC provides additional protection over Standard ECC because it is possible to correct certain memory errors that would otherwise be uncorrected and result in a server failure. Using HP Advanced Memory Error Detection technology, the server provides notification when a DIMM is degrading and has a higher probability of uncorrectable memory error. Online Spare memory configuration Online spare memory provides protection against degraded DIMMs by reducing the likelihood of uncorrected memory errors. This protection is available without any operating system support. Online spare memory protection dedicates one rank of each memory channel for use as spare memory. The remaining ranks are available for OS and application use. If correctable memory errors occur at a rate higher than a specific threshold on any of the non-spare ranks, the server automatically copies the memory Hardware options installation 34

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Hardware options installation 34
is degrading. This configuration enables DIMMs that have a higher probability of receiving an
uncorrectable memory error (resulting in system downtime) to be removed from operation.
Advanced Memory Protection options are configured in RBSU. If the requested AMP mode is not supported
by the installed DIMM configuration, the server boots in Advanced ECC mode. For more information, see
"HP ROM-Based Setup Utility (on page
73
)."
The server also can operate in independent channel mode or combined channel mode (lockstep). When
running in lockstep mode, you gain reliability in one of two ways:
If running with UDIMMs (built with x8 DRAM devices), the system can survive a complete DRAM failure
(SDDC). In independent channel mode, this failure would be an uncorrectable error.
If running with RDIMM (built with x4 DRAM devices), the system can survive the complete failure of two
DRAM devices (DDDC). Running in independent mode, the server can only survive the complete failure
of a single DRAM device (SDDC).
Maximum capacity
DIMM type
DIMM rank
One processor
Two processors
RDIMM
Single-rank
64GB
128 GB
RDIMM
Dual-rank
128 GB
256 GB
UDIMM
Single-rank
32 GB
64 GB
UDIMM
Dual-rank
64 GB
128GB
For the latest memory configuration information, see the QuickSpecs on the HP website
(
).
Maximum memory configurations
The server supports a maximum of 256 GB of memory with one processor (8 x 32 GB), or 512 GB of memory
with two processors (16 x 32 GB).
Advanced ECC memory configuration
Advanced ECC memory is the default memory protection mode for this server. Standard ECC can correct
single-bit memory errors and detect multi-bit memory errors. When multi-bit errors are detected using
Standard ECC, the error is signaled to the server and causes the server to halt.
Advanced ECC protects the server against some multi-bit memory errors. Advanced ECC can correct both
single-bit memory errors and 4-bit memory errors if all failed bits are on the same DRAM device on the DIMM.
Advanced ECC provides additional protection over Standard ECC because it is possible to correct certain
memory errors that would otherwise be uncorrected and result in a server failure. Using HP Advanced
Memory Error Detection technology, the server provides notification when a DIMM is degrading and has a
higher probability of uncorrectable memory error.
Online Spare memory configuration
Online spare memory provides protection against degraded DIMMs by reducing the likelihood of
uncorrected memory errors. This protection is available without any operating system support.
Online spare memory protection dedicates one rank of each memory channel for use as spare memory. The
remaining ranks are available for OS and application use. If correctable memory errors occur at a rate
higher than a specific threshold on any of the non-spare ranks, the server automatically copies the memory