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A high-density uMCP integrating DRAM and UFS A high-density uMCP integrating DRAM and UFS A high-density uMCP integrating DRAM and UFS

Samsung’s uMCP integrates DRAM and eStorage into a space-efficient package that provides high performance, low power, and flexible design options. It supports not only smartphones but a wide range of edge devices, expanding possibilities for product planning and system design.

Samsung’s uMCP integrates DRAM and eStorage into a space-efficient package that provides high performance, low power, and flexible design options. It supports not only smartphones but a wide range of edge devices, expanding possibilities for product planning and system design.

Samsung’s uMCP integrates DRAM and eStorage into a space-efficient package that provides high performance, low power, and flexible design options. It supports not only smartphones but a wide range of edge devices, expanding possibilities for product planning and system design.

LPDDR5 uMCP LPDDR5 uMCP LPDDR5 uMCP

Samsung’s uMCP integrates LPDDR5 DRAM and UFS 3.1 storage in a compact 297-FBGA package, delivering high-speed performance for mobile and embedded devices. With LPDDR5 speeds up to 6400 Mbps, it enables fast data access and responsive operation while reducing PCB footprint for space-efficient product designs.
LPDDR5 uMCP
  • Interface

    Interface

    UFS 3.1

  • DRAM Type

    DRAM Type

    LPDDR5

  • Capacity

    Capacity

    256GB, 128GB

  • DRAM Density

    DRAM Density

    96Gb, 64Gb

  • Package

    Package

    297 FBGA

  • Speed

    Speed

    6400 Mbps

Applications for uMCP

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* All data on products herein, including their performances, are based on internal testing using standard Samsung benchmarks under laboratory conditions.
* All design, features and specifications represented herein may change without notice.
* Images shown here have been adjusted for demonstration purposes and may appear differently on the actual products.
* Test results do not guarantee future performance under such test conditions, and the actual throughput or performance that any user will experience may vary depending upon many factors.
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