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uMCP storage (UFS-based MCP)

Our UFS-based multichip packages (uMCPs) take advantage of the ultra-fast Universal Flash 存储 (UFS) controller to provide big performance and power savings in a small footprint for slim designs.


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资源 & 文档

Winning the race to the IoT edge

Get an overview of the IoT edge landscape and learn how 微米's broad offering of high-performance memory and storage solutions supports the growing demands of the IoT edge.

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微米 is powering the automotive industry with leading, comprehensive automotive-qualified memory.

多芯片封装常见问题解答

Find answers to frequently asked questions about 微米's multichip packages. 

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微米uMCP5

微米’s uMCP5 product brings flagship-level performance into high-end phones, delivering unparalleled efficiency and battery life in a compact design. 微米uMCP5 offers the industry’s fastest storage and memory interface, able to process heavier workloads associated with 5G without compromising on performance or power use.

Unleashing 5G performance in high-end smartphones

The world is rapidly shifting to mobile networks powered by 5G, which will support immense amounts of data at the heart of disruptive technologies. 微米uMCP5 allows smartphones to handle data-intensive 5G data workloads with increased speed and power efficiency.

Building on the uMCP4 framework, uMCP5 uses 微米 LPDDR5记忆 to optimize 5G networks and provides a nearly 20% power efficiency boost compared to LPDDR4. Devices with uMCP5 will support a maximum DRAM bandwidth of up to 6.4 Gb/s, a 50% increase compared to previous generations of LPDDR technology. 微米’s uMCP5 also draws on the fastest UFS 3.基于1的存储接口, doubling sequential read performance and increasing download speeds by 20%, 与UFS 2相比.1.v

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主要性能特点

Maximum DRAM bandwidth of up to 6.4 Gb/s to enable full 5G support

2x storage interface speeds supported by UFS 3.1,与UFS 2相比.1

Almost half the footprint of discrete memory solutions

UFS 3.1 that consumes almost 40% less power than its predecessor UFS 2.1

Endurance boosted by 66%, extending smartphone life span for heavy-use cases

LPDDR5 that is nearly 20% more power efficient than LPDDR4X

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  • FBGA and component marking decoder
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  • 建立了模型
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