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Micron MTC8C1084S1SC48B 16GB DDR5-4800MHz SODIMM 1Rx8 CL40 Memory
- 16GB DDR5 Memory Capacity
- 4800MHz Clock Speed
- SODIMM Form Factor
- 1Rx8 Memory Organization
- CL40 CAS Latency
- JEDEC Standard Compliance
- Low Voltage Operation
- Ideal for Laptops and Small Form Factor PCs
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Product Overview
This Micron 16GB DDR5 SODIMM memory module is designed for high-performance computing and gaming systems. It operates at a speed of 4800MHz with a CL40 latency, offering a significant boost in data transfer rates and overall system responsiveness.
Technical Information
| Memory Type | DDR5 |
| Capacity | 16GB |
| Form Factor | SODIMM |
| Speed | 4800MHz |
Additional Specifications
| Latency | CL40 |
| Organization | 1Rx8 |
| Voltage | 1.1V |
| Pins | 262-pin |
Product Description
The Micron MTC8C1084S1SC48B is a high-density 16GB DDR5 memory module engineered to meet the demanding requirements of modern computing. Its DDR5 technology brings advancements in speed, bandwidth, and power efficiency compared to previous generations. This SODIMM form factor makes it suitable for integration into a wide range of laptops, mini-PCs, and other compact systems where space is a constraint. Operating at a frequency of 4800MHz, this module provides substantial bandwidth for multitasking, gaming, and professional applications. The 1Rx8 memory organization ensures efficient data access, while the CL40 CAS latency, though higher than some DDR4 modules, is optimized for the DDR5 architecture to deliver excellent overall performance. This memory is designed to enhance system responsiveness and accelerate application loading times. Built to JEDEC standards, the MTC8C1084S1SC48B guarantees compatibility with a broad spectrum of motherboards and chipsets that support DDR5 SODIMM memory. Its low voltage operation contributes to reduced power consumption and heat generation, making it an energy-efficient choice for portable devices. This module is an ideal upgrade for users seeking to improve their system's performance and handle more intensive workloads.

