Taiwan

The OCP Taiwan Regional Project Community discusses OCP Technology and Vertical Projects as they apply across Taiwan, serving as the feedback loop between the Taiwanese supply chain and global data center innovators. It leverages the region’s status as a global hardware powerhouse to accelerate open standards across three pillars. Semiconductor Innovation fosters an Open Chiplet Economy through Taiwan’s foundry and advanced-packaging leadership. DC IT Infrastructure drives design and high-volume manufacturing of OCP-standard servers, storage, and networking for Open Systems for AI. DC Physical Infrastructure advances high-efficiency Open Data Center designs for extreme-density AI workloads.

About This Sub-Project


OCP Technology and Vertical Projects are discussed as applicable across this region. Regional meetings are held in Taiwanese, aligned to Taiwanese time zones, and adapt requirements to suit the region.

By aligning local manufacturing excellence with OCP Tenets, this community serves as the vital feedback loop between the Taiwanese supply chain and global data center innovators.

Workstreams

Scope

The OCP Taiwan Community leverages the region’s status as a global hardware powerhouse to accelerate the development and adoption of open standards. The scope focuses on three critical pillars of the Taiwan technology ecosystem:

  • Semiconductor Innovation : Utilizing Taiwan’s leadership in foundry services and advanced packaging to foster an Open Chiplet Economy that aligns with OCP’s modular hardware goals.
  • DC IT Infrastructure : Driving the design and high-volume manufacturing of OCP-standard servers, storage, and networking to establish an Open System for AI ready for global hyperscale deployment.
  • DC Physical Infrastructure : Advancing standardized, high-efficiency Open Data Center designs optimized for extreme-density AI workloads, with fungible facility architectures incorporating next-generation power and cooling to enhance flexibility, reduce deployment delays, and unlock broader investment.

Resources

Welcome to the OCP Taiwan Community Project.

This Project is open to the public and we want to welcome all those who would like to be involved.

Disclaimer: Please do not submit any confidential information to the Project Community. All presentation materials, proposals, meeting minutes and/or supporting documents are published by OCP and are open to the public in accordance to OCP’s Bylaws and IP Policy. This can be found on the OCP OCP Policies page. If you have any questions please contact OCP.

Description

OCP Technology and Vertical Projects are discussed as applicable across this region. These regional meetings will occur in correlation to Taiwanese time zones, in the Taiwanese language and will modify requirements as suitable.

Licensing

This work is licensed under Creative Commons Attribution 4.0 International License. Copyright 2018 Open Compute Project Foundation.

Call Calendar:

These meetings are recorded via audio and video. By participating you consent that these recordings may be made publicly available. Any presentation materials, proposals and meeting minutes are published on the respective project’s wiki page and are open to the public in accordance to OCP’s Bylaws and IP Policy. This can be found at http://www.opencompute.org/about/ocp-policies/. If you have any questions please contact OCP.

Taiwan calendar


Sub-Projects


Unified DC-SCM Pinout

Unified DC-SCM Pinout is a Workstream of the OCP Taiwan Regional Project Community. It establishes a common DC-SCM pinout profile for x86 servers, enabling plug-and-deploy interoperability across vendors and platforms. Co-developed with end customers and ecosystem partners, its standardized DC-SCM / DC-SCI pinout unifies the electrical and logical interfaces between the management module and the host system board. A single pinout specification supports cross-vendor module interchangeability and reuse across platforms and generations while reducing design complexity, lowering cost, and accelerating time to market. Proprietary implementations and platform-specific optimizations are out of scope.