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Hynix HMA84GR7DJR4N-WMTGAC 32GB DDR4-2933MHz RDIMM 2Rx4 CL21 Memory
- 32GB DDR4 RDIMM Memory Module
- Operating Speed: 2933MHz
- CAS Latency: CL21
- Rank: 2Rx4 (Dual Rank, x4 organization)
- ECC Registered (RDIMM)
- Voltage: Standard DDR4 voltage (typically 1.2V)
- Designed for servers and workstations
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Product Overview
The Hynix HMA84GR7DJR4N-WMTGAC is a 32GB DDR4 RDIMM memory module designed for high-performance computing environments. It operates at a speed of 2933MHz with a CAS latency of 21, offering efficient data transfer for demanding applications.
Technical Information
| Capacity | 32GB |
| Memory Type | DDR4 SDRAM |
| Form Factor | RDIMM (Registered DIMM) |
| Speed | 2933MHz |
Additional Specifications
| CAS Latency | CL21 |
| Rank | 2Rx4 |
| ECC | Yes (Registered) |
| Voltage | 1.2V |
Product Description
This Hynix memory module, identified by SKU HMA84GR7DJR4N-WMTGAC, is engineered to deliver robust performance and reliability for enterprise-grade systems. With a substantial 32GB capacity, it is well-suited for memory-intensive tasks such as large database operations, virtualization, and complex scientific simulations. The DDR4 technology ensures high bandwidth and lower power consumption compared to previous generations. The module features a 2Rx4 configuration, indicating it is dual-ranked with each rank composed of x4 DRAM devices. This configuration can offer performance benefits in certain server workloads by allowing the memory controller to access different ranks concurrently. As an RDIMM, it includes an onboard register that buffers address and command signals, reducing electrical load on the memory controller and enabling higher memory capacities and speeds in systems. The 2933MHz operating frequency, coupled with a CL21 latency, strikes a balance between speed and stability. This makes it a versatile choice for a wide range of server and workstation platforms that support DDR4 memory. The module is designed to meet the stringent demands of continuous operation, providing the necessary performance and stability for critical business applications.



