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- Desktop & Laptop memory (RAM)
Desktop & Laptop memory (RAM)
- 16 GB capacity DDR5 in SO‑DIMM form factor
- Speed: 5600 MHz (native / rated)
- Low operating voltage, high performance
- Ideal for laptop / small form factor systems
- JEDEC‑compliant, compatible with DDR5‑ready systems
- Improves multitasking, memory‑intensive workloads
Imation
Imation 16GB DDR5 5600MHz Desktop RAM – High-Speed UDIMM Memory Module - IM16GDR5UV03D11RD-US
- 16 GB DDR5 UDIMM (desktop form factor)
- Rated speed: 5600 MT/s (PC5‑44800)
- Operates at standard DDR5 voltage (1.1 V nominal)
- Unbuffered, non‑ECC memory module
- 288‑pin U‑DIMM design for desktop motherboards
- Ideal for high performance computing, gaming, multitasking
- JEDEC compliant & supports XMP/EXPO where applicable
Imation
Imation 32GB DDR5 5600MHz Desktop RAM – High-Speed UDIMM Memory Module - IM32GDR5UV03D32RD-UC
- 32 GB DDR5 unbuffered desktop memory module
- Rated speed: 5600 MT/s (PC5‑44800)
- Standard DDR5 operating voltage (≈ 1.1 V)
- Non‑ECC, unbuffered for consumer desktop use
- 288‑pin UDIMM form factor
- Ideal for gaming, creative workflows, multitasking, and future‑proof builds
- JEDEC compliant, suitable for DDR5 platform motherboards
- 16 GB DDR4 SO‑DIMM memory module
- 3200 MHz (PC4‑25600) rated speed
- CL22 (or typical latency) timing (check official spec)
- 1.2 V standard DDR4 operating voltage
- JEDEC‑compliant, non‑ECC, unbuffered design
- Ideal for upgrading laptops or small form factor systems
- Improves multitasking, responsiveness, and memory capacity
- 32 GB DDR5 SO‑DIMM module for laptops and compact systems
- Rated speed: 5600 MT/s / MHz
- Designed for modern DDR5 platforms (JEDEC‑compliant)
- Low voltage operation (≈ 1.1 V) typical for DDR5
- On‑die ECC (error correction) for improved data integrity
- Ideal for heavy multitasking, creative workloads, and gaming
- Supports dual‑channel configurations with matching modules
Memory refers to electronic components used for storing and retrieving digital information in computing systems. Memory plays a critical role in the performance and functionality of computers and other digital devices, as it allows for the rapid access and retrieval of data and programs.
There are two main types of memory used in modern computing systems: random-access memory (RAM) and non-volatile memory (NVM). RAM is used for temporary storage of data and instructions while a system is running, and is typically volatile, meaning that its contents are lost when the system is powered off. NVM, on the other hand, is used for permanent storage of data and programs, and is typically non-volatile, meaning that its contents are retained even when the system is powered off. Popular forms of NVM include solid-state drives (SSDs) and flash memory, while popular forms of RAM include dynamic RAM (DRAM) and static RAM (SRAM). The amount and type of memory used in a computing system can have a significant impact on its performance, speed, and overall capabilities.