Exhibit 99.1
IonQ Completes Acquisition of SkyWater Technology
Creates the Only Vertically Integrated Full-Stack Quantum Platform Company
Accelerates IonQ’s Fault-Tolerant Quantum Computing Roadmap
Facilitates Secure End-to-End Design through Delivery of IonQ’s Platform of Next-Generation Quantum Computing, Quantum Networking, Quantum Security, and Quantum Sensing Technologies
SkyWater Will Continue to Serve Customers as a U.S.-based Semiconductor Foundry
COLLEGE PARK, Md. & BLOOMINGTON, Minn.-- July 31, 2026 -- IonQ (NYSE: IONQ), the world’s leading quantum platform company, today completed its acquisition of SkyWater Technology (NASDAQ: SKYT), the largest exclusively U.S.-based semiconductor foundry.
“Acquiring SkyWater crystalizes IonQ’s vision to serve as a technology leader, merchant supplier and ecosystem enabler across the entire quantum industry. We are investing in capabilities from quantum foundry and advanced packaging to manufacturing and commercialization that the quantum ecosystem requires for future growth,” said Niccolo de Masi, Chairman and Chief Executive Officer of IonQ. “Building upon our existing merchant supplier track record providing quantum solutions for our customers, we expect this acquisition to accelerate all quantum platforms across the industry.”
“This combination enables IonQ to drive our quantum computing roadmap and secure a fully scalable supply chain domestically. It unlocks IonQ’s semiconductor-based approach to manufacturing new generations of our quantum computers, while ensuring SkyWater’s ability to deliver the excellent quality and attention customers expect,” said de Masi, who added, “Secure chip design, fabrication, and packaging will deliver vertical integration across our full stack of quantum applications for land, sea, air, and space.”
“Joining the IonQ team marks a pivotal moment in SkyWater’s evolution,” said Thomas Sonderman, Chief Executive Officer of SkyWater Technology. “As the largest semiconductor foundry based in the U.S., SkyWater is already the partner of choice for advanced development and manufacturing services in both the public and private sectors as quantum computing shifts from research to manufacturing. Being part of IonQ will accelerate multiple engineering pathways for next-generation quantum chips, delivering speed, precision, and scale. Importantly, SkyWater remains fully committed to all of our semiconductor foundry customers and will continue as the quantum supplier of choice with an even broader set of quantum sensing and quantum networking solutions for our customers and partners.”
Following today’s closing, SkyWater will operate as a subsidiary under the SkyWater name. Sonderman will lead the subsidiary and report to de Masi, which will ensure the continued delivery of industry-leading Advanced Technology, Wafer, and Advanced Packaging Services as well as atomic clocks and quantum interconnects to all SkyWater customers.
Transaction Details
Under the terms of the agreement, SkyWater shareholders are receiving $15.00 in cash and 0.4883 shares of IonQ common stock for each share of SkyWater common stock held at close of the transaction. The closing followed receipt of required regulatory approvals. The combined company is expected to hold its second quarter earnings call on Wednesday, Aug. 5, 2026 after the U.S. market closes and an investor day in the third quarter of 2026 (Sept. 8).
About IonQ
IonQ, Inc. [NYSE: IONQ] is the world’s leading quantum platform and foundry - delivering integrated quantum solutions across computing, networking, sensing, and security. IonQ’s newest generation of quantum computers, the IonQ Tempo, is the latest in a line of cutting-edge systems. Earlier systems have helped customers and partners including Amazon Web Services, AstraZeneca, and NVIDIA achieve a 20x performance increase over previous quantum solutions and accelerate innovation in drug discovery, materials science, financial modeling, logistics, cybersecurity, and defense. In 2025, the company achieved 99.99% two-qubit gate fidelity, setting a world record in quantum computing performance.