A technician is tasked with installing RAM into a rackmount server whose motherboard chipset requires Registered DIMMs (RDIMMs) with Error-Correcting Code (ECC). The technician purchases and installs standard Unbuffered ECC DIMMs (ECC UDIMMs) of identical speed, pin count, and capacity. Upon powering on the system, the server fails to complete POST and emits a continuous beep code indicating a memory error. Which of the following best explains why the server failed to start?
- The motherboard memory controller cannot interface with unbuffered ECC modules because RDIMMs use a register chip to buffer control and address signals.Cevap
- BThe memory modules were installed into adjacent slots across different channels rather than populating alternating slots designated for dual-channel architecture.
- CThe technician selected SO-DIMM form-factor modules that do not fit standard full-sized server motherboard expansion slots.
- DThe motherboard requires non-ECC memory modules because ECC functionality is only supported when using SO-DIMM form factors.
Cevap
The server failed to boot because the motherboard chipset specifically requires Registered DIMMs (RDIMMs). Unbuffered ECC modules (ECC UDIMMs) lack the dedicated register chip needed to buffer electrical loads on control and address lines, making them electrically incompatible with motherboards that mandate RDIMMs.
Registered DIMMs (RDIMMs) feature an onboard hardware register that buffers address and control signals between the memory modules and the memory controller. This buffering reduces electrical loading on the controller, allowing systems to support high memory capacities and densities. Motherboards designed exclusively for RDIMMs cannot operate with Unbuffered DIMMs (UDIMMs)—even if those UDIMMs support ECC—because the electrical signaling and memory controller configuration differ fundamentally.
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Registered RAM (RDIMM) vs. Unbuffered RAM (UDIMM) Compatibility