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NT5TB128M8DE-37B

Part No NT5TB128M8DE-37B
Manufacturer NANYA
Catalog Custom Parts (N - R)
Sample
Rohs State Need to verify
ECAD Module
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RoHS Non-Compliant
Win Source Part Number 1146898-NT5TB128M8DE-37B
Categories Custom Parts
Manufacturer NANYA
Popularity Medium
Supply and Demand Status Limited
Ultra Librarian 3D Model Ultra Librarian NT5TB128M8DE-37B CAD Model

Description

The NT5TB128M8DE-37B is a DDR3 SDRAM (Synchronous Dynamic Random-Access Memory) module manufactured by NANYA. This memory module is designed for use in various computing devices requiring high-speed data access and large memory capacity.

Applications:

  • Desktop Computers: Used as main memory in desktop computers.
  • Laptop Computers: Suitable for use in laptop computers to provide high-speed memory.
  • Servers: Implemented in server systems to support large memory requirements.
  • Embedded Systems: Used in embedded systems that require high-speed memory.

Features:

  • DDR3 SDRAM: Utilizes DDR3 technology for high-speed data transfer.
  • 128M x 8 Configuration: Offers a memory capacity of 128M x 8 bits.
  • High Bandwidth: Provides high bandwidth for fast data access.
  • Low Power Consumption: Designed for low power consumption to improve energy efficiency.
  • Double Data Rate: Transfers data on both rising and falling edges of the clock signal.

Benefits:

  • High Performance: Provides high-speed memory access for improved system performance.
  • Large Memory Capacity: Offers a large memory capacity for demanding applications.
  • Energy Efficiency: Low power consumption improves energy efficiency.
  • Reliable Operation: Ensures reliable operation in various computing environments.

Additional Details:

The NT5TB128M8DE-37B typically operates at a specific voltage and frequency as defined in the DDR3 standard. It is important to consult the datasheet for detailed specifications, timing parameters, and application notes to ensure proper installation and optimal performance in your system. The datasheet will provide information about module organization, timing characteristics, and thermal considerations.

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