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This Government Contract opportunity from Department Of Commerce was posted on May 7, 2026. The submission period has ended. Browse the details below for market research, or find similar active opportunities.

Multi-Channel Microwave Synthesizer Design and Assembly

Closed
Federal

Contract Overview

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NAICS: 334516
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The contract involves the design, engineering, and integration of a custom multi-channel microwave synthesizer operating at 12 GHz, tailored specifically for chip-scale atomic clock applications. The synthesizer will feature five RF output channels with an exceptional frequency resolution of 0.001 Hz, support for external clock referencing, and will be controlled via a graphical user interface-based computer system. The project aims to deliver a high-precision, multi-channel device suitable for advanced timing systems. This subcontract, issued by the Department of Commerce’s National Institute of Standards and Technology (NIST), has a response deadline of May 18, 2026, and the work will be performed in Boulder, Colorado, under NAICS code 334516. The contract emphasizes advanced microwave synthesis technology and integration to meet stringent requirements for frequency stability and control, supporting the development and deployment of chip-scale atomic clocks.

General Info

Design and integration of 12 GHz multi-channel microwave synthesizer for chip-scale atomic clocks.

Agency

Department Of Commerce Nist

NAICS

334516 - Analytical Laboratory Instrument Manufacturing View NAICS

Place of Performance

Boulder, CO, 80305, USA

Set-Aside

NONE

Documents

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Timeline

PhaseClosed
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Submission Closed

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Organization & Contact Information

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AgencyDepartment Of Commerce Nist
ContactsNo contacts available
OfficeN/A
Organization / Agency
Department Of Commerce Nist
Office AddressN/A
ContactsNo contact information available

Full Description

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Design, engineering, and integration of a custom 12 GHz multi-channel microwave synthesizer with five RF output channels, 0.001 Hz resolution, external clock referencing, and GUI-based computer control for chip-scale atomic clock applications.