eMemory and UMC Expand Low-Power Memory Solutions with 22nm RRAM Qualification

The ChangeEMemory and UMC complete 22nm RRAM reliability verification, expanding low-power memory solutions for AIoT and mobile markets.

eMemory·Space, Defense & Strategic Deep Tech·TaiwanAI & TechnologyPremium Signal
Official SourceeMemory Newsroom (Chinese)ChineseOriginalememory.com.tw·
Indexed Mar 21, 2026
·
LinkedInX
Source ContexteMemory Newsroom (Chinese)

eMemory Technology Inc. and United Microelectronics Corporation (UMC) have completed reliability verification for 22nm Resistive Random-Access Memory (RRAM). This collaboration expands low-power memory solutions for the AIoT and mobile communication markets. The 22nm RRAM offers a compelling combination of high performance, low power consumption, and cost-effectiveness, making it ideal for a wide range of embedded applications.

Read Full Originalememory.com.tw
Why It Matters

The qualification of 22nm RRAM on UMC's process is a significant advancement for low-power memory solutions. It directly addresses the growing demand for energy-efficient memory in AIoT devices and mobile communications, where battery life and thermal management are critical. This collaboration enhances eMemory's portfolio of embedded memory IP and strengthens its competitive position in providing advanced memory technologies for these rapidly expanding markets.

Key Takeaways
1

eMemory and UMC completed 22nm RRAM reliability verification.

2

Expands low-power memory solutions for AIoT and mobile markets.

3

Offers high performance, low power consumption, and cost-effectiveness.

Regional Angle

This partnership between eMemory and UMC, both based in Taiwan, highlights the region's strength in semiconductor manufacturing and innovation. The 22nm RRAM qualification is vital for the development of next-generation AIoT and mobile devices originating from or manufactured in East Asia.

What to Watch
1

Offers high performance, low power consumption, and cost-effectiveness.

2

Strengthens eMemory's embedded memory IP portfolio.

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