Precision Inertial Navigation & Positioning On an Integrated Tesseract (PINPOINT)
| Location: |
Federal |
| Posted: |
Aug 19, 2026 |
| Due: |
Sep 25, 2026 |
| Agency: |
DEPT OF DEFENSE |
| Type of Government: |
Federal |
| Category: |
- A - Research and development
|
| Solicitation No: |
HR001126S0016 |
| Publication URL: |
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Precision Inertial Navigation & Positioning On an Integrated Tesseract (PINPOINT)
Active
Contract Opportunity
Department/Ind. Agency
DEPT OF DEFENSE
Sub-tier
DEFENSE ADVANCED RESEARCH PROJECTS AGENCY (DARPA)
Office
DEF ADVANCED RESEARCH PROJECTS AGCY
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General Information View Changes
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Contract Opportunity Type: Solicitation (Updated)
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Updated Published Date: Aug 19, 2026 05:47 pm EDT
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Original Published Date: Aug 06, 2026 03:47 pm EDT
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Updated Date Offers Due: Sep 25, 2026 04:00 pm EDT
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Original Date Offers Due: Sep 25, 2026 04:00 pm EDT
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Inactive Policy: Manual
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Updated Inactive Date: Oct 25, 2026
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Original Inactive Date:
Oct 25, 2026
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Initiative:
Classification
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Original Set Aside:
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Product Service Code: AC12 - NATIONAL DEFENSE R&D SERVICES; DEPARTMENT OF DEFENSE - MILITARY; APPLIED RESEARCH
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NAICS Code:
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541715 - Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)
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Place of Performance:
Description
The Defense Advanced Research Projects Agency (DARPA) is soliciting innovative proposals in the following technical area: physics and nonlinear control of inertial measurement units (IMUs) appropriate for tactical and unmanned missions. The Precision Inertial Navigation & Positioning On an Integrated Tesseract (PINPOINT) program will challenge the research community to overcome the decade-long performance plateau of micro-electro-mechanical systems (MEMS) IMUs by exploring revolutionary sensor architectures that operate in highly nonlinear regimes. DARPA is soliciting proposals for the research and development of novel inertial sensors based on physics such as, but not limited to, electromagnetically levitated proof masses, non-linear resonators, and high-velocity tethered microsystems. A central theme of this program is the tight co-design of the physical sensor package with advanced, real-time adaptive control systems necessary to stabilize and harness these complex dynamics. Performers should investigate innovative approaches that enable revolutionary advances in science, devices, or systems. Specifically excluded is research that primarily results in evolutionary improvements to the existing state of practice.
Attachments/Links
Contact Information
Contracting Office Address
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675 NORTH RANDOLPH STREET
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ARLINGTON , VA 222032114
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USA
Secondary Point of Contact
History
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