A technician is setting up a high-performance desktop computer with a motherboard featuring four DDR4 DIMM slots divided into two memory channels: Channel A (Slots A1 and A2) and Channel B (Slots B1 and B2). Slots A2 and B2 are color-coded black, while slots A1 and B1 are color-coded gray. The technician installs two identical DDR4 non-ECC UDIMM modules into slots A1 and A2. When powered on, the system completes POST, but UEFI/BIOS diagnostics report that the memory is running in single-channel mode. Which of the following actions should the technician perform to resolve this issue and enable dual-channel memory performance?
- Move one memory module from slot A2 to slot B1 so that both modules reside in matching gray slots across separate memory channels.Cevap
- BPopulate slots B1 and B2 with two additional modules, as dual-channel operation requires all physical DIMM slots to be occupied.
- CReplace the installed desktop DIMM modules with dual-rank SO-DIMM modules designed to split single-channel slots into multi-channel buses.
- DEnable Error-Correcting Code (ECC) mode within the UEFI/BIOS setup to allow single-channel RAM configurations to simulate dual-channel bandwidth.
Cevap
Move one memory module from slot A2 to slot B1 so that both modules reside in matching gray slots across separate memory channels.
Dual-channel memory technology doubles communication bandwidth by accessing two memory modules simultaneously across separate data channels (Channel A and Channel B). Installing modules into adjacent slots belonging to the same channel (A1 and A2) restricts the system to single-channel mode. Relocating one module to a matching color slot on Channel B (such as moving from A2 to B1) balances the load across both channels and enables dual-channel operation.
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Dual-Channel RAM Slot Population Rules