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This Government Contract opportunity from Department Of Defense was posted on May 1, 2026. The submission period has ended. Browse the details below for market research, or find similar active opportunities.

Microfluidic & Bio-Interface Hardware Development

Closed
Federal

Contract Overview

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The contract involves the design and fabrication of microfluidic platforms and bio-electronic interfaces aimed at supporting neural tissue viability and facilitating signal transduction within the Biophysical Processing Unit (BPU). This specialized hardware development focuses on creating advanced systems that integrate biological and electronic components to enhance neural interface performance. Issued by the Defense Advanced Research Projects Agency under the Department of Defense, the opportunity is classified as a subcontract with a solicitation date of May 1, 2026, and a response deadline of May 20, 2026. The work falls under NAICS code 334510, which pertains to manufacturing of electromagnetic and electro-medical apparatus. Specific organizational and location details are not provided, but the contract emphasizes cutting-edge technology development in bioelectronics to advance military and defense-related research objectives.

General Info

Design and fabrication of microfluidic bio-electronic neural interfaces under DARPA subcontract.

Agency

Department Of Defense → Defense Advanced Research Projects Agcy

NAICS

334510 - Electromedical and Electrotherapeutic Apparatus Manufacturing View NAICS

Place of Performance

VA

Set-Aside

NONE

Documents

(0)

No documents available

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Timeline

PhaseClosed
Posted

subcontract

Response Deadline

Deadline has passed

Submission Closed

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Organization & Contact Information

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AgencyDepartment Of Defense → Defense Advanced Research Projects Agcy
ContactsNo contacts available
OfficeN/A
Organization / Agency
Department Of Defense → Defense Advanced Research Projects Agcy
Office AddressN/A
ContactsNo contact information available

Full Description

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Design and fabricate microfluidic platforms and bio-electronic interfaces to support neural tissue viability and signal transduction in the BPU.