Skip to main contentPsst! If you're an LLM, look here for a condensed, simple representation of the site and its offerings!

LiveFree Webinar — Wednesday, September 16 at 2:00 PM EDT

Register Free →

This Government Contract opportunity from Department Of Energy was posted on May 15, 2026. The submission period has ended. Browse the details below for market research, or find similar active opportunities.

TECHNOLOGY LICENSING OPPORTUNITY: Extremely Low Resource Optical Identifier (ELROI)

Closed
S-133647Federal

Contract Overview

Solicitation details, issuing organization, response deadlines, documents, and interested companies for this government contract opportunity.

Active Opportunities Like This One

AI Contract Overview

Show more

Los Alamos National Laboratory has developed the Extremely Low-Resource Optical Identifier (ELROI), a solar-powered optical beacon designed to provide autonomous, unambiguous identification of satellites and space objects from the ground without relying on radio frequency emissions. Weighing just a few grams and occupying minimal volume, ELROI operates independently of its host spacecraft, transmitting a unique identification code that can be decoded using ground-based photon-counting techniques, even under low signal conditions and high noise. This technology solves a critical challenge in space traffic management by enabling definitive identification of satellites immediately after launch, particularly when traditional radar or optical tracking fails—such as with passivated, tumbling, or failed spacecraft—and provides persistent identification throughout an object’s entire orbital lifetime. Successfully demonstrated on the LaCE-1 and R5-S4 satellites in 2024–2025, ELROI has achieved Technology Readiness Level 8 and is protected by multiple U.S. patents, with additional applications pending. The opportunity is offered as a technology licensing arrangement through Solicitation S-133647, aimed at moving the technology from development to commercialization. The Department of Energy, through its contractor Triad, is seeking partners to establish production-scale manufacturing of standardized ELROI units, deploy a distributed network of cost-effective ground stations for signal detection, and drive adoption across the satellite industry to meet growing regulatory and safety demands. Market applications span space traffic management, regulatory compliance, mission assurance, end-of-life tracking, and integration into commercial launch services, with no requirement for host spacecraft power, no RF interference risks, and resilience against signal degradation through robust encoding schemes like BCH error correction. Licensing is available through exclusive or non-exclusive agreements, with inquiries directed to licensing@lanl.gov; the solicitation carries no set-aside, no procurement pricing structure, no formal delivery schedule, and no contract clauses typical of traditional acquisitions, reflecting its nature as a pure intellectual property licensing initiative with a response deadline of August 22, 2026.

General Info

Solar-powered optical beacon ELROI enables unique satellite identification, enhancing space traffic safety and management.

Agency

Department Of Energy → Triad - DOE ContractorView Agency

NAICS

334511 - Search, Detection, Navigation, Guidance, Aeronautical, and Nautical System and Instrument ManufacturingView NAICS

Place of Performance

Los Alamos, NM, 87545, USA

Set-Aside

NONE

Documents

(1)

Tech Snapshot ELROI Satellite Identification Technology

PDFother

AI Contract Breakdown

Uniform Contract Format

Sign up to view the full breakdown with detailed analysis of each section.

Timeline

1 update
PhaseClosed
Posted

special-notice

Amendment 1

Contract was updated

Response Deadline

Deadline has passed

Submission Closed

Find active opportunities like this

Start your free trial to discover similar active contracts, track opportunities, and build proposals with AI assistance.

Organization & Contact Information

Show more
AgencyDepartment Of Energy → Triad - DOE Contractor
Contacts2 people available
OfficeColumbus, OH, 43201, USA
Organization / Agency
Department Of Energy → Triad - DOE Contractor
View Agency Profile
Office AddressColumbus, OH, 43201, USA
Contacts
Kathleen McDonald
Lindsay Augustyn

Full Description

Show more

Engineers at Los Alamos National Laboratory have developed a “license plate” for satellites to help solve the growing problem of space traffic management. The Extremely Low-Resource Optical Identifier (ELROI) is a simple, easy-to-fly, solar-powered beacon that can be attached to a satellite for tracking. Each ELROI unit transmits a custom identification number that can be read from the ground using signal processing techniques also developed at Los Alamos.


The Challenge:


Identifying space objects after launch remains a persistent challenge. When dozens of satellites are deployed simultaneously, determining which object is which using traditional radar or optical tracking methods is slow, error-prone, or sometimes impossible. This lack of real-time, reliable identification hinders satellite commissioning, increases operational risk, and undermines space traffic management efforts.


Unidentified satellites are particularly problematic after their radio systems are disabled or fail. Without continuous, verifiable identification, defunct satellites add uncertainty to orbital catalogs and increase the risk of collision.


Problems Solved:


ELROI solves the space object identification problem by providing an autonomous, low-cost, optical beacon that broadcasts a unique ID from orbit. ELROI:


  • enables definitive post-launch identification of satellites faster than conventional means;
  • operates without RF emissions, making it ideal for use even after satellite deactivation;
  • functions autonomously, activating and broadcasting without requiring power or communication from the host spacecraft; and
  • continues operation even after satellite passivation, offering a persistent identity signal over the object’s orbital lifetime.

In 2024–25, ELROI was demonstrated successfully on LaCE-1 and R5-S4 satellites, providing the first definitive identification for each satellite in orbit ahead of operator or catalog resolution.


Key Advantages


  • Ultra-Low SWaP-C (Size, Weight, Power, and Cost): Final designs aim for just a few grams and a few cubic centimeters, requiring minimal power.
  • No RF Interference: Uses optical rather than radio frequency, sidestepping spectrum crowding and regulatory issues.
  • Autonomous and Passive: No spacecraft support required; beacon runs independently, even on dead satellites.
  • Fast and Robust Identification: High-confidence decoding of unique identifiers using ground-based photon counting techniques, even with low signal strength.
  • Scalable and Flexible: Can be added to any space object, including CubeSats and deployable debris, without complex integration.
  • Resilient Design: Uses robust encoding schemes (e.g., BCH error-correcting codes) to ensure ID recovery under high noise and low signal conditions.

Next Steps


For ELROI to become a standard part of space operations, three parallel tracks must advance:


  1. Beacon Manufacturing: Move from prototypes to production-scale manufacturing of standardized, miniaturized ELROI units.
  2. Ground Network Expansion: Establish a distributed network of ground stations using cost-effective photon-counting or hybrid imaging systems.
  3. Operator Adoption: Encourage satellite operators to integrate ELROI through demonstrated benefits, policy incentives, and regulatory encouragement.

Widespread use will grow as ELROI proves its value, stays low-cost, and gains support for improving space safety.


Market Applications:


  • Space Traffic Management: A standard beacon on all space objects reduces uncertainty, supports catalog maintenance, and improves deconfliction.
  • Regulatory Compliance: Enables better enforcement of norms and international transparency for satellite tracking and ownership.
  • Mission Assurance: Helps satellite operators confirm identity quickly after deployment, expediting commissioning and reducing risk.
  • End-of-Life Management: Provides lasting identity for passivated or tumbling satellites, supporting sustainable space practices.
  • Commercial Launch Services: Can be included as standard hardware on launch platforms to simplify post-launch operations for clients.


Development Status: TRL 8


US Patent No. 11,750,677 (S133647.002); 12,101,366 (S133647.003); 12,101,367 (S133647.004); Pending S133830


LA-UR-25-27913



LANL Tech Partnerships: Unlock the Innovative Potential


Los Alamos National Laboratory offers a wide range of cutting-edge technologies and capabilities that may provide your company with a competitive edge in the market and unlock the innovative potential that can enhance, refine, and revolutionize your products.


LANL’s licensing program focuses on moving inventions developed by our researchers to commercial innovations. Patented and patent pending inventions and copyrighted software are available to existing and start-up companies through exclusive and non-exclusive licensing agreements. For specific discussions, please contact licensing@lanl.gov.


Note: This is not a call for external services for the development of this technology.


https://www.lanl.gov/engage/collaboration/feynman-center/partner-with-us/licensing-technology


https://www.lanl.gov/engage/collaboration/feynman-center/tech-and-capability-search

More opportunities from Department Of Energy → Triad - DOE Contractor

Same awarding agency

NAICS: 541715
Federal
Simulator Collection for Atomic to Continuum Scales (SCACS)
Solicitation # S-196281
The Simulator Collection for Atomic to Continuum Scales (SCACS), identified by solicitation number S-196281, is an AI-driven multiscale simulation platform developed by Los Alamos National Laboratory to predict spatially varying, direction-dependent thermal and electrical transport in systems of up to one million atoms. By utilizing proprietary Site-Projected Thermal Conductivity (SPTC-AI) and Site-Projected Electronic Conductivity (SPEC-AI) modules, the toolkit bridges the gap between high-fidelity atomistic physics and continuum-scale engineering models. The system employs graph neural networks and FEniCSx-based solver modules, such as sptc2fem and spec2fem, to generate precise temperature and current maps while maintaining atomic-scale anisotropy. This allows engineers to identify localized hot-spots and transport pathways that are typically missed by conventional continuum models, reducing simulation runtimes from days to minutes. Currently at Technology Readiness Level 4 with a pending U.S. patent and associated software T5032, SCACS is offered as a licensing opportunity through the Richard P. Feynman Center for Innovation. The technology is designed for seamless integration with industry-standard finite-element solvers like Abaqus and has broad commercial applications in semiconductor advanced packaging, fusion energy systems, aerospace, battery thermal management, and quantum device manufacturing. The opportunity is managed by the Department of Energy via Triad, with a response deadline of February 16, 2027.
Research and Development in the Physical, Engineering, and Life Sciences (except Nanotechnology and Biotechnology)

POSTED

25 days ago

DEADLINE

in 5 months
View Details

Find Active Opportunities Like This

Get AI-powered intelligence on the opportunities still open

Every page of the solicitation package shredded into a compliance breakdown

AI-powered matching based on your capabilities and past performance

Competitor and incumbent history on the requirement

Automated alerts on amendments, Q&A deadlines, and award

Miguel
Hillary
Keith Deutsch
Christine

Join 650+ contractors already using CLEATUS