The UK INDUSTRIAL FUSION SOLUTIONS LTD has issued a Tender notice for the procurement of a Power Cycle and Cooling Development in the United Kingdom. This Tender notice was published on 10 Dec 2025 and is scheduled to close on 09 Jan 2026, with an estimated Tender value of Refer Document. Interested bidders can access detailed Tender information, eligibility criteria, and complete bidding documents by referencing TOT Ref No. 131721554, while the tender notice number is PP-UKIFS-509 and Registering on the platform.

Expired Tender

Procurement Summary

Country: United Kingdom

Summary: Power Cycle and Cooling Development

Deadline: 09 Jan 2026

Posting Date: 10 Dec 2025

Other Information

Notice Type: Tender

TOT Ref.No.: 131721554

Document Ref. No.: PP-UKIFS-509

Financier: Self Financed

Purchaser Ownership: Public

Tender Value: Refer Document

Purchaser's Detail

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Tender Details

The following summary is not intended as a complete or definitive specification of the requirement. A purpose of this engagement is to seek information from the market to help refine our understanding and aid the development of a future specification. UK Industrial Fusion Solutions (UKIFS) is a wholly owned subsidiary of UK Atomic Energy Authority (UKAEA) Group and has been established to lead a public-private partnership that will design, build and operate the STEP prototype plant at the West Burton site in Nottinghamshire, England. The Spherical Tokamak for Energy Production (STEP) is an ambitious programme to accelerate the delivery of sustainable fusion energy tasked with paving the way for the commercialisation of fusion. UKIFS's mission is to deliver sustainable fusion energy and maximise scientific and economic impact. STEP is seeking support over the remainder of "Tranche 2A" (01/04/2025 until 31/3/2029) to support both the design and technology development of the following level 2 systems: Thermal power transfer system (TPTS): this system integrates the coolant and heat from the Tokamak In-Vessel Components and transfers the heat to the working fluid and power generation system. Working fluid and power generation system (WFPGS): this system uses the integrated heat from the TPTS within a thermodynamic power cycle to generate power. For clarity this system is the thermodynamic power cycle and associated equipment. Site water and waste heat system (SWWHS): this system ...

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 Tender Notice


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