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| Product Overview |
|---|
The MTC40F2046S1RC64BDY Micron 64GB DDR5-6400 PC5-51200 CL52 ECC Memory offers high-density 64GB capacity with DDR5 technology, delivering a data transfer rate of 6400 MT/s, low CAS latency of 52, and ECC capabilities to ensure error-free operation in critical computing environments. |
| General Information | |
|---|---|
| Brand | Micron |
| Part Number | MTC40F2046S1RC64BDY |
| Technical Information | |
|---|---|
| Memory Capacity | 64GB |
| Memory Technology | DDR5 |
| RAM Standard | PC5-51200 |
| Pin Count | 288-Pin |
| Error Correction | ECC |
| Performance | |
|---|---|
| Bus Speed | 6400 MT/s |
| Bandwidth | 51200 MB/s |
| Native Speed | 3200 MHz |
| CAS | 52 |
| Physical Characteristics | |
|---|---|
| Package | FBGA |
| Weight | 0.50 |
| Condition | Refurbished |
| Miscellaneous | |
|---|---|
| Assembly Required | No |
| Product Description |
|---|
The MTC40F2046S1RC64BDY Micron 64GB DDR5-6400 PC5-51200 CL52 ECC Memory is a high-capacity memory module designed to deliver robust performance and reliability for demanding computing environments. It supports ECC (Error-Correcting Code) functionality, which helps detect and correct memory errors, making it ideal for mission-critical applications. This memory module is commonly found in servers, workstations, and high-performance computing systems where stability and data integrity are paramount. Professionals in data centers, enterprise IT, and scientific research benefit from its enhanced speed and error correction. Key Features
Engineered by Micron, this module balances speed, capacity, and reliability, making it a suitable choice for upgrading or building advanced computing platforms. Its design supports the latest generation of processors and chipsets to maximize system performance. |
| Use Cases |
|---|
The MTC40F2046S1RC64BDY memory module is suited for high-end computing tasks requiring large memory capacity and reliable performance. How It's Used:
This memory module enables organizations and professionals to maintain high system reliability while handling intensive workloads efficiently. |