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SEEQC Establishes US-Taiwan Quantum Technology Ecosystem to Accelerate Chip-Based Scaling - Quantum Computing Report

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A US-Taiwan quantum alliance led by SEEQC aims to commercialize its SFQ-based quantum computing platform by merging proprietary digital quantum control IP with Taiwan’s semiconductor manufacturing expertise. The ecosystem unites Kinpo Group (scalable room-temperature electronics), ITRI (superconducting processor production), and academic partners like National Taiwan University and UC Berkeley for high-speed CMOS interfaces. A joint tape-out at TSMC will integrate classical and quantum logic into a single SoC architecture, addressing cryogenic system scaling bottlenecks while reducing energy demands. SEEQC retains core IP in the US while leveraging Taiwan’s semiconductor supply chain to transition quantum systems from lab prototypes to high-volume commercial deployment. The initiative strengthens US-Taiwan tech ties, supports partnerships with IBM and NVIDIA, and secures domestic manufacturing for national security and economic competitiveness.
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SEEQC Establishes US-Taiwan Quantum Technology Ecosystem to Accelerate Chip-Based Scaling SEEQC has announced the formation of a strategic quantum technology ecosystem between the United States and Taiwan to accelerate the commercialization of its Single Flux Quantum (SFQ)-based quantum computing platform. The initiative unites SEEQC’s proprietary digital quantum control intellectual property with Taiwan’s specialized semiconductor manufacturing and packaging infrastructure. By integrating partners across advanced electronics, process development, and academic research, the coalition aims to deliver a fully integrated, chip-based quantum computer that addresses the energy and scaling bottlenecks of current cryogenic systems. The ecosystem utilizes a multi-layered partnership model where each collaborator manages a specific technical domain of the hardware stack. Kinpo Group, acting as both a strategic investor and technical partner, is co-developing scalable room-temperature electronics optimized for SEEQC’s SFQ control chips.

The Industrial Technology Research Institute (ITRI) provides the manufacturing backbone for the alliance, supporting the process development and production of SEEQC’s superconducting control processors. Furthermore, National Taiwan University and UC Berkeley are collaborating on high-speed CMOS electronic interfaces, which include a joint tape-out at TSMC to advance the integration of classical and quantum logic on a single System-on-Chip (SoC) architecture. Strategically, this collaboration reinforces the technological alliance between the two regions while maintaining SEEQC’s core quantum architecture and intellectual property in the United States. According to SEEQC CEO John Levy, the goal is to leverage Taiwan’s unmatched concentration of semiconductor expertise to move quantum systems from laboratory prototypes to high-volume commercial deployment. This “allied supply chain” approach is intended to support SEEQC’s ongoing commercial relationships with partners like IBM and NVIDIA, while ensuring the domestic manufacturability of hardware critical to national security and global economic competitiveness. Read the official announcement from SEEQC here.

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energy-climate
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quantum-commercialization
quantum-computing
superconducting-qubits

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Source: Google News – Quantum Computing

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