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Product Overview |
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The Kingston KVR21E15D8/8I is an 8GB DDR4 memory module running at 2133 MT/s with a CAS latency of 15. It includes ECC functionality to detect and correct single-bit memory errors, enhancing system stability. This unbuffered DIMM is designed for compatible servers and workstations requiring error-correcting memory. |
General Information |
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| Brand | Kingston |
Technical Information |
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| Memory Capacity | 8GB |
| Memory Technology | DDR4 |
| Module Type | UDIMM |
| RAM Standard | PC4-17000 |
| Pin Count | 288-Pin |
| Error Correction | ECC |
| Rank | 1Rx8 |
| Voltage | 1.2V |
Performance |
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| Bus Speed | 2133 MT/s |
| Bandwidth | 17064 MB/s |
| Native Speed | DDR4-2133 / 2133 MT/s |
| CAS | CL15 |
Physical Characteristics |
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| Weight | 3.00 |
| Condition | Refurbished |
Miscellaneous |
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| Eco Friendly | Yes |
| Compliance Standards | RoHS, CE |
| Assembly Required | No |
Product Description |
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The Kingston KVR21E15D8/8I is an 8GB DDR4-2133 ECC UDIMM memory module designed to provide error correction capabilities for compatible servers and workstations. It helps maintain data integrity by detecting and correcting memory errors during operation. This memory module is typically used in enterprise environments where system stability and data accuracy are critical, such as in database servers, workstations, and other professional computing systems. Key Features
The Kingston KVR21E15D8/8I serves a vital role in environments that require error detection and correction, helping to reduce system crashes and data corruption. Its specific design makes it suitable for use in systems that support ECC UDIMM memory, providing a balance between performance and reliability. |
Use Cases |
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This Kingston 8GB DDR4-2133 CL15 ECC UDIMM memory is commonly deployed in servers and professional workstations where error correction is essential for maintaining data integrity. It is suited for environments that handle critical workloads and require stable memory operation. How It's Used:
Its role is to enhance the reliability of memory operations by correcting single-bit errors, which is important in preventing system failures and data corruption in critical computing environments. |
FAQ's |
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