Equipment: 7T MRI System with a dedicated, high-performance, local gradient subsystem.
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Description
This solicitation is amended to add Amendment 0005 SF-30 and Continuation Sheet This solicitation is amended to add Amendment 0004 SF-30 This solicitation is amended to add Amendment 0003 SF-30 and Continuation Pages/Sheets and Wage Determination Attachment. There are no other changes to this solicitation. This solicitation is amended to add the following attachment: Amendment 0002 This solicitation is amended to add the following attachments: 1.Amendment 00001 Questions and Answers Log 2. Amendment 0001 Description of Modifications - Block 14 COMBINED SYNOPSIS / SOLICITATION SOLICITATION NUMBER: RFP-2026-NIH-7TMR AGENCY: National Institutes of Health (NIH) NAICS CODE: 334510 . Electromedical and Electrotherapeutic Apparatus Manufacturing CONTRACT TYPE: Firm-Fixed-Price (FFP), Single-Award PROCEDURE: Negotiated RFP - Combined FAR Part 12 and FAR Part 15 RELEASE DATE: September 5, 2026 QUESTIONS SUBMISSION DEADLINE: September 9, 2026, by 5pm EDT. RFP RESPONSE DEADLINE: September 18, 2026, by 5pm EDT POINT OF CONTACT: Tina Robinson @ robinsti@mail.nih.gov 1. Description of Requirement & Scope of Work This is a combined synopsis/solicitation for commercial products and commercial services prepared in accordance with the format in FAR Subpart 12.6, as streamlined by the active Federal Acquisition Regulation (FAR) commercial streamlining guidelines, and supplemented with additional information included in this notice. This announcement constitutes the only solicitation; proposals are being requested and a written solicitation will not be issued. The specific objective of this purchase is the acquisition of a 7T MRI System with a dedicated, high-performance, local gradient subsystem. The acquisition will allow the FMRIF to be able to provide the latest tools and techniques to NIH researchers to collect high quality brain imaging data from patients and research volunteers and develop novel scanning protocols advancing the state-of-the-art for structural and functional brai…