4ZC7A08702-AA AddOn 16GB DDR4-2666MHz Memory Module
4ZC7A08702-AA Overview
4ZC7A08702-AA is a 16GB DDR4-2666MHz Unbuffered Non-ECC UDIMM designed for compatible Lenovo systems. It features a 288-pin DIMM form factor, Dual Rank x8 configuration, CL17 latency, and 1.20V operating voltage. The module is built to JEDEC standards and is suitable for compatible desktop and server systems, including Lenovo ThinkSystem ST50 configurations.
1,260.00 AED
Description
| Specification | Details |
|---|---|
| Brand | AddOn |
| Compatible Brand | Lenovo |
| Part Number | 4ZC7A08702-AA |
| Memory Capacity | 16GB |
| Memory Type | DDR4 SDRAM |
| Speed | 2666MHz |
| Memory Standard | DDR4-2666 / PC4-21300 |
| Form Factor | UDIMM |
| Pins | 288-pin |
| Rank | Dual Rank |
| Chip Organization | x8 |
| DIMM Type | Unbuffered |
| ECC | Non-ECC |
| Voltage | 1.20V |
| CAS Latency | CL17 |
| Module Configuration | 1 x 16GB |
| Application | Desktop / Server |
| Warranty | Limited Lifetime |
Frequently Asked Questions
1. What is the 4ZC7A08702-AA AddOn 16GB DDR4 memory module?
The 4ZC7A08702-AA is a 16GB DDR4-2666MHz memory module designed for compatible Lenovo systems. It features a 288-pin UDIMM form factor, Dual Rank x8 configuration, and Unbuffered Non-ECC memory architecture.
2. What is the speed and capacity of this DDR4 memory?
This AddOn memory module provides 16GB of memory capacity and operates at 2666MHz. It supports the DDR4-2666 or PC4-21300 memory standard.
3. Is this 16GB DDR4 memory Dual Rank and Unbuffered?
Yes, the module features a Dual Rank x8 configuration and Unbuffered memory architecture. It uses a 288-pin UDIMM form factor for compatible Lenovo desktop and server systems.
4. What are the voltage and CAS latency of this memory module?
The memory module operates at 1.20V and features CL17 CAS latency, providing reliable and efficient performance in compatible DDR4 systems.
5. Is the 4ZC7A08702-AA ECC memory?
No, this is Non-ECC memory. It is designed for compatible Lenovo systems that support 16GB DDR4-2666 Unbuffered UDIMM memory.
