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Micron MTA36ASS4G72PF1Z-2G9 32GB DDR4-2933MHz NVDIMM 2Rx4 CL21 Memory
- Capacity: 32GB
- Type: DDR4 SDRAM
- Form Factor: NVDIMM-N
- Speed: 2933MHz (PC4-23466)
- Configuration: 2Rx4 (Dual Rank, x4 organization)
- Latency: CL21
- Persistent Memory Technology
- Designed for data-at-rest and data-in-transit protection
- Includes onboard capacitors for power loss protection
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Product Overview
The Micron MTA36ASS4G72PF1Z-2G9 is a 32GB DDR4-2933MHz NVDIMM-N memory module. It features a 2Rx4 configuration and CL21 latency, designed for applications requiring persistent memory.
Technical Information
| SKU | MTA36ASS4G72PF1Z-2G9 |
| Title | Micron MTA36ASS4G72PF1Z-2G9 32GB DDR4-2933MHz NVDIMM 2Rx4 CL21 Memory |
| Capacity | 32GB |
| Memory Type | DDR4 SDRAM |
| Form Factor | NVDIMM-N |
Additional Specifications
| Speed | 2933MHz |
| Rank | 2Rx4 |
| CAS Latency | CL21 |
| Persistence | Yes |
| Manufacturer | Micron |
Product Description
The Micron MTA36ASS4G72PF1Z-2G9 is a specialized 32GB DDR4 Persistent Memory module, also known as NVDIMM-N (Non-Volatile Dual In-line Memory Module). This advanced memory technology combines the speed of DRAM with the non-volatility of NAND flash, ensuring that data is retained even in the event of a power failure. Operating at 2933MHz (PC4-23466), it offers high performance for applications that require rapid data access while also providing data protection against unexpected power loss. This NVDIMM-N module features a 2Rx4 configuration, indicating it is dual-rank and uses x4 DRAM chips. The CL21 latency specifies its timing characteristics. The key differentiator of NVDIMM-N is its ability to capture and store data in its DRAM portion during normal operation and then, upon detecting a power loss event, transfer that data to its onboard NAND flash memory. This ensures data integrity for critical applications like databases, transaction logs, and in-memory analytics, preventing data corruption or loss. Designed for enterprise servers, the MTA36ASS4G72PF1Z-2G9 provides a unique solution for enhancing data resilience and performance. It allows applications to leverage the speed of RAM for active data while guaranteeing that critical information persists through power interruptions. This makes it invaluable for scenarios where downtime or data loss can have significant financial or operational consequences, offering a robust layer of data protection directly at the memory level.


