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656142\2GB\256Mx8\8C

Part No 656142\2GB\256Mx8\8C
Manufacturer NANYA
Catalog Memory - Modules
Description DDR3-1333 256Mx64 UDIMM (2GB)
Sample
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ECAD Module
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Categories Memory - Modules
Win Source Part Number 948557-656142\2GB\256Mx8\8C
Series *
Ultra Librarian 3D Model Ultra Librarian 656142\2GB\256Mx8\8C CAD Model

Description

The NANYA 656142 2GB memory module is a Dynamic Random-Access Memory (DRAM) module suitable for desktop computers and other computing devices. It has a capacity of 2GB, configured as 256Mx8, and utilizes 8 chips (8C). The configuration describes the arrangement of the memory cells and the count of physical chips to achieve the total capacity.

Applications:

  • Desktop computers
  • Laptops
  • Workstations
  • Embedded systems
  • Networking devices

Features:

  • 2GB storage capacity
  • 256Mx8 memory organization
  • 8 Chips (8C) configuration
  • DRAM technology
  • Standard JEDEC pinout

Benefits:

  • Increased system performance compared to systems with less memory
  • Improved multitasking capabilities for various operating systems
  • Enhanced responsiveness of applications

Additional Details:

The NANYA 2GB DRAM module functions at voltage levels typical for DDR2 or DDR3 memory modules, depending on its specific generation. DRAM is the primary memory in computers, designed to store actively used data and program code. The 256Mx8 configuration means it features 256 million memory locations, each capable of storing 8 bits of data. The 8C indicates that the module uses eight individual memory chips to provide the 2GB capacity. Designed to meet JEDEC standards, these modules ensure compatibility with a wide range of computer systems and motherboards. A 2GB module like this can significantly enhance a computer's operational efficiency, particularly when running several applications simultaneously or when processing large volumes of data. The DRAM generation (e.g., DDR2, DDR3) will determine operating frequency and overall performance characteristics. The DRAM module enhances the overall effectiveness and speed of the system.

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