KeeperSpace
Advanced Space Domain Awareness solutions for orbital defense and collision avoidance using AI and sensing.
Website: https://keeperspace.com/
Open sources
| Name | KeeperSpace |
| Tagline | Advanced Space Domain Awareness solutions for orbital defense and collision avoidance using AI and sensing. |
| Headquarters | Cape Canaveral, United States |
| Founded | 2025 |
| Stage | Pre-Seed |
| Business Model | B2B |
| Industry | Defense / Govtech |
| Technology | AI / Machine Learning |
| Geography | North America |
| Growth Profile | Venture Scale |
| Founding Team | Solo Founder |
| Funding Label | Undisclosed |
Links
Open sources
- Website: https://keeperspace.com/
- LinkedIn: https://www.linkedin.com/company/keeperspace
What an Investor Needs First
Open sources KeeperSpace is building a persistent, AI-driven orbital defense layer, a bet that space domain awareness will shift from passive tracking to active protection as the orbital environment grows more congested and contested. Founded in 2025 by Amanda Rose Fadely, a Florida Tech alumna and space systems architect, the company is headquartered in Cape Canaveral, positioning it at the nexus of U.S. launch activity and defense contracting. Its stated mission is to define the next generation of space domain awareness solutions, using sensing, data, and AI to help satellites avoid collisions and orchestrate autonomous responses to threats [Florida Tech News+, Fall 2025] [F6S, July 2026].
Early capital appears to be founder-led and angel-backed, with F6S listings indicating raised amounts of $50k to $81k from the founder and a small group of investors, including Adeo InterActive [F6S, July 2026]. The business model is B2B, targeting satellite operators, space agencies, and defense entities that require continuous monitoring and protection of on-orbit assets. The founder's background as a space systems architect provides relevant technical framing, though her parallel career in real estate investing means her operational experience in scaling a deep-tech defense startup is untested [LinkedIn, retrieved 2026].
Over the next 12-18 months, the critical watchpoints are the transition from concept to a demonstrable product or pilot, the securing of a first named commercial or government customer, and the ability to attract institutional capital to fund the significant R&D required for space-based sensing and autonomous response systems. The company's ambition to move beyond situational awareness into active defense represents a high-potential, high-risk wedge in a market currently dominated by established tracking catalogs. Partially corroborated -- Core company claims are sourced from its website and founder profiles; early funding figures are inconsistent across F6S listings and lack round details.
Taxonomy Snapshot
| Axis | Classification |
|---|---|
| Stage | Pre-Seed |
| Business Model | B2B |
| Industry / Vertical | Defense / Govtech |
| Technology Type | AI / Machine Learning |
| Geography | North America |
| Growth Profile | Venture Scale |
| Founding Team | Solo Founder |
| Funding | Undisclosed |
Inside the Company
Open sources
KeeperSpace was founded in 2025 by Amanda Rose Fadely, a Florida Institute of Technology alumna who began listing herself as Founder in February of that year [LinkedIn, Feb 2025]. The company is headquartered in Cape Canaveral, Florida, placing it at the center of the U.S. launch industry and adjacent to key government and commercial space operators [keeperspace.com, retrieved 2026]. Its founding narrative centers on developing a new generation of space domain awareness technology, with an explicit mission to ensure space remains a viable resource for the long term [Florida Tech News+, Fall 2025].
Public records indicate the company is structured as a limited liability company (LLC) in Florida [bizprofile.net, retrieved 2026]. The earliest verifiable public milestones are profile listings on founder networks and alumni directories in late 2025, followed by inclusion on industry lists for space infrastructure and AI companies by mid-2026 [Florida Tech, Fall 2025] [F6S, July 2026]. These listings, while not commercial contracts, signal the company's entry into the startup ecosystem and its chosen market categories.
Partially corroborated -- Core founding details are confirmed via LinkedIn and the company website, but specific incorporation dates and early operational milestones are sourced from a single business directory.
Under the Hood
Reported and inferred
KeeperSpace's public positioning is built on a specific technical ambition: to move beyond passive tracking to an active, AI-driven defense layer for spacecraft in orbit. The company describes its mission as "defining the next generation of space domain awareness solutions" [keeperspace.com, retrieved 2026], with a stated goal of ensuring space remains a viable resource for future generations. The core product concept, as detailed across multiple founder profiles and listings, is a "persistent orbital defense layer for spacecraft that actively tracks threats and orchestrates autonomous response" [F6S, retrieved 2026]. This framing suggests a system designed for continuous, on-orbit monitoring and automated decision-making, a step beyond traditional catalog-based space situational awareness (SSA).
The company's technical approach centers on integrating sensing, data, and artificial intelligence to support collision avoidance and threat detection. According to a Florida Tech alumni directory, KeeperSpace specializes in solutions that "help organizations monitor and understand activity in Earth’s orbit" using "advanced analytics and data-driven insights" [Florida Tech, Fall 2025]. A supporting Substack post further specifies the application is "using sensing, data, and AI to help satellites avoid collisions" [Substack]. While the exact sensor modalities (e.g., optical, radar) and AI model architectures are not publicly detailed, the repeated emphasis on autonomous response indicates a product wedge built on real-time analytics and automated maneuver planning, rather than human-in-the-loop advisory services.
Public sources do not disclose a detailed technology stack or specific product features. The company's small team size of 1-10 employees [LinkedIn, retrieved 2026] and early funding stage suggest the technology is likely in a development or prototype phase. There is no public record of a launched commercial product, customer deployments, or formal technology partnerships. The product vision, however, is clearly differentiated from legacy SSA providers by its focus on active defense and autonomous orchestration, positioning it within the emerging category of operational space domain awareness (OSDA).
Partially corroborated -- Product claims are consistent across multiple founder-facing sources but lack technical specification or independent validation. No customer or deployment data is publicly available.
Market Research
Open sources The market for space domain awareness (SDA) is expanding beyond military tracking into a core operational requirement for any entity with assets in orbit, driven by a surge in satellite deployments and a growing consensus on the need for space sustainability.
Quantifying the total addressable market for SDA is challenging, as public reports often bundle it within broader space situational awareness (SSA) or space surveillance and tracking (SST) segments. An analogous market sizing from Euroconsult, a leading space consultancy, estimated the global market for Space Situational Awareness and Space Traffic Management services at approximately $1.5 billion in 2023, with a projected compound annual growth rate of 15% through 2032 [Euroconsult, 2023]. This figure encompasses government contracts for surveillance, commercial data services for conjunction assessment, and supporting infrastructure. For a startup like KeeperSpace, the serviceable obtainable market (SOM) is narrower, focusing initially on commercial satellite operators and new space defense contracts, a segment analysts at BryceTech have noted is growing faster than the legacy government sector [BryceTech, 2024].
Demand is propelled by several converging tailwinds. The primary driver is the rapid increase in the number of active satellites, with over 2,000 launched in 2023 alone, creating a more congested and complex orbital environment [Union of Concerned Scientists Satellite Database, 2024]. This congestion directly increases collision risk, making automated monitoring and avoidance not just a convenience but a financial imperative for operators of large constellations. A secondary driver is the formalization of space sustainability regulations. The U.S. Federal Communications Commission now requires satellite operators to have a plan for post-mission disposal, and similar rules are being developed internationally, creating a regulatory push for better tracking and compliance tools [FCC, 2022]. Finally, the growing militarization of space and the recognition of orbital assets as critical national infrastructure have opened new budget lines within defense departments for commercial SDA solutions, a trend highlighted in recent U.S. Space Force procurement strategies [U.S. Space Force, 2023].
Key adjacent markets that could serve as substitutes or expansion paths include the broader commercial remote sensing sector and satellite operations software. Companies that provide high-resolution Earth imagery, for instance, have already built sophisticated tasking and data processing platforms; integrating collision avoidance data represents a logical adjacent product surface. The regulatory environment remains a double-edged macro force. While new rules create demand, they also risk consolidating power with incumbent government providers like the U.S. Space Force's 18th Space Defense Squadron, which provides basic tracking data for free. The commercial market's wedge, therefore, depends on offering higher fidelity, faster latency, or value-added services like autonomous response that government catalogs do not provide.
Partially corroborated -- Market sizing is based on analogous reports from established consultancies; specific TAM for 'orbital defense' is not publicly defined. Demand drivers are corroborated by multiple public industry and regulatory sources.
Competition and Substitutes
Reported and inferred KeeperSpace enters a specialized, high-stakes market where established players are building extensive sensor networks and data catalogs, but the company stakes its claim on a more active, AI-driven defense posture.
| Company | Positioning | Stage / Funding | Notable Differentiator | Source |
|---|---|---|---|---|
| KeeperSpace | AI-driven persistent orbital defense layer; autonomous threat tracking and response orchestration. | Pre-Seed; raised ~$50k-$81k (estimated) from founder and angels. | Focus on autonomous response and "persistent orbital defense," framing around long-term space sustainability. | [F6S, July 2026]; [Florida Tech News+, Fall 2025] |
| LeoLabs | Commercial provider of low-Earth orbit (LEO) mapping and collision avoidance services via global radar network. | Later-stage; raised $65M+ Series B in 2022. | Proprietary global radar network providing high-fidelity, high-update-rate tracking data. | [Crunchbase, 2022] |
| Slingshot Aerospace | Space situational awareness (SSA) and simulation software, including the "Slingshot Beacon" automated rendezvous product. | Growth stage; raised $40M+ Series A-2 in 2023. | Software-centric platform integrating simulation, training, and real-time operational data. | [Crunchbase, 2023] |
| True Anomaly | Combines spacecraft manufacturing, mission operations, and SSA for government and commercial defense. | Venture scale; raised $100M Series B in 2024. | Vertical integration of spacecraft hardware, mission control software, and SSA services. | [Crunchbase, 2024] |
| Odin Space | Focuses on in-situ sensing of small debris and particles in orbit using dedicated sensor satellites. | Early-stage; raised a $1.4M pre-seed in 2023. | Specialization in detecting sub-centimeter debris, a critical blind spot for ground-based radar. | [SpaceNews, 2023] |
| Turion | Develops autonomous spacecraft for on-orbit servicing, inspection, and debris removal. | Early-stage; raised a $1.7M seed round in 2023. | Direct physical intervention capability (e.g., docking, debris removal) rather than pure observation. | [SpaceNews, 2023] |
The competitive map splits into three primary segments. The first is data providers and catalog builders, led by LeoLabs and the U.S. Space Force's public catalog. These entities focus on the foundational task of detecting and characterizing objects, selling data feeds and basic conjunction alerts. The second segment is software and analytics platforms, where Slingshot Aerospace operates, layering mission simulation and operational tools on top of third-party data. The third, and most operationally complex, segment is active defense and remediation, which includes companies like True Anomaly (with its responsive spacecraft) and Turion (focused on debris removal). KeeperSpace's stated focus on a "persistent orbital defense layer" that "orchestrates autonomous response" suggests it aims to bridge the second and third segments, moving beyond passive tracking to command and control of defensive actions.
KeeperSpace's potential edge today is conceptual and architectural, not yet commercial. Its differentiation rests on framing the problem as one of continuous, AI-native defense rather than periodic risk assessment. This is a perishable edge, however, as it depends entirely on execution. The company has not publicly disclosed proprietary sensor assets, a unique data source, or patented algorithms that would create a technical moat. Its early capital, estimated at under $100k, is orders of magnitude smaller than the war chests of its listed competitors, limiting its runway to develop and prove its autonomous response technology. The talent edge is concentrated in the founder's background as a Space Systems Architect, a relevant credential, but the company lacks the publicly visible bench of seasoned aerospace engineers and AI researchers that its rivals have assembled.
The company's most significant exposure is to the capital-intensive nature of space infrastructure and the data advantage held by incumbents. LeoLabs' global radar network represents a multi-hundred-million-dollar asset that is difficult to replicate. Without equivalent sensing capability, KeeperSpace would be reliant on purchasing or licensing data from these very competitors, potentially eroding margins and strategic control. Furthermore, the "autonomous response" aspect of its vision likely requires regulatory approvals and trust-building with government agencies that have not yet been established. Competitors like True Anomaly, which are already building and launching spacecraft, are positioned to execute on similar active defense concepts with substantially more resources and demonstrated hardware capability.
The most plausible 18-month scenario is one of continued niche specialization. If KeeperSpace can secure a non-dilutive government research contract (e.g., from AFWERX or DARPA) to develop and test its AI response algorithms on simulated or existing data, it could validate its core thesis and attract a strategic seed round. In this case, the "winner" would be a company like Slingshot Aerospace, which could acquire or partner with KeeperSpace to add an autonomous response module to its existing software platform. Conversely, if the company cannot transition from concept to a demonstrable prototype or secure its next funding tranche, it risks being overtaken. The "loser" in a scenario where capital remains tight and customers prioritize proven data sources would be KeeperSpace, as larger, better-funded players like LeoLabs or True Anomaly could develop similar AI orchestration layers in-house, rendering a standalone software solution less compelling.
Partially corroborated -- Competitor profiles and funding stages are confirmed by public filings and news reports. KeeperSpace's positioning is sourced from its own materials and founder profiles; its competitive differentiation and edge are inferred from these statements, not yet demonstrated in the market.
Opportunity
Open sources If KeeperSpace can successfully deploy its persistent orbital defense layer, the company would be positioned to capture a foundational role in the emerging market for automated space traffic management and orbital security, a market projected to be worth billions as the number of active satellites grows exponentially.
The headline opportunity is the establishment of KeeperSpace as the default, autonomous threat-response infrastructure for commercial and government satellite constellations. The company's stated focus on building a "persistent orbital defense layer" that "orchestrates autonomous response" suggests a move beyond traditional catalog-based tracking toward active, on-orbit protection [F6S, July 2026]. This positions the company not as another data provider but as an integrated command-and-control system. The plausibility of this outcome rests on the accelerating congestion in low Earth orbit, which creates a clear demand for automated solutions that scale beyond human-in-the-loop monitoring, and the company's proximity to the Cape Canaveral ecosystem provides a relevant launchpad for early government and commercial partnerships [Florida Tech, Fall 2025].
Multiple paths exist for KeeperSpace to scale from its current early-stage position. The following scenarios outline specific, concrete routes to significant market capture.
| Scenario | What happens | Catalyst | Why it's plausible |
|---|---|---|---|
| Defense Prime Anchor | KeeperSpace's AI-driven threat detection is adopted as a software module within a major defense contractor's next-generation satellite bus, becoming a standard feature for national security space assets. | A contract with a U.S. Space Force program office or a prime contractor like Lockheed Martin or Northrop Grumman for a prototype or demonstration. | The company's positioning on "orbital defense" and autonomous response aligns directly with the Pentagon's focus on space resilience and threat awareness [F6S, July 2026]. Its Cape Canaveral location places it within the primary U.S. launch and military space corridor. |
| Commercial Constellation Standard | A leading mega-constellation operator (e.g., SpaceX's Starlink, Amazon's Project Kuiper) licenses KeeperSpace's collision avoidance and threat-response logic to autonomously manage its fleet of thousands of satellites. | A pilot program or technical partnership announced with a major commercial satellite operator. | The sheer scale of planned commercial constellations (tens of thousands of satellites) makes manual conjunction assessment impossible, creating a non-negotiable need for automated, AI-native solutions. KeeperSpace's mission focuses on "space sustainability" and "responsible operations," which aligns with operators' regulatory and public relations needs [Florida Tech News+, Fall 2025]. |
The company's potential for compounding growth hinges on the development of a proprietary data and response moat. Each new satellite or constellation integrated into the KeeperSpace layer would generate unique telemetry and threat-response data, continuously improving the AI models' accuracy and predictive capabilities. This creates a classic data network effect: a more comprehensive and active network delivers better threat prediction for all participants, making the system more valuable and harder for a new entrant to replicate. Early evidence of this flywheel is not yet public, but the company's foundational premise,using "sensing, data, and AI" for collision avoidance,is explicitly designed to create this type of virtuous cycle [Substack].
Quantifying the size of the win requires looking at comparable companies in adjacent markets. LeoLabs, a provider of commercial space situational awareness data and collision avoidance services, was valued at approximately $500 million during its Series B round in 2021 [Crunchbase, 2021]. A company that successfully evolves from situational awareness to active, autonomous defense could command a significant premium. If KeeperSpace executes on the "Defense Prime Anchor" scenario and captures a material portion of the U.S. government's future automated space defense budget, a valuation in the low billions is a plausible outcome (scenario, not a forecast). This upside is anchored in the strategic necessity of the problem it aims to solve, rather than in the company's current, minimal public traction.
Partially corroborated -- Opportunity analysis is based on company positioning and market logic; cited funding amounts are inconsistent and no commercial traction is publicly confirmed.
Sources
Open sources
[keeperspace.com, retrieved 2026] Home - KeeperSpace: Advanced Space Domain Awareness | https://keeperspace.com/
[LinkedIn, Feb 2025] Amanda Fadely - KeeperSpace | https://www.linkedin.com/in/amandarosefadely/
[LinkedIn, retrieved 2026] KeeperSpace | https://www.linkedin.com/company/keeperspace
[Florida Tech News+, Fall 2025] Fall 2025 AlumNotes - Florida Tech News+ | https://news.fit.edu/alumni/fall-2025-alumnotes/
[Florida Tech, Fall 2025] Fall 2025 AlumNotes | https://news.fit.edu/alumni/fall
[F6S, July 2026] Top Space Infrastructure Companies · July 2026 | https://www.f6s.com/companies/space-infrastructure/top
[F6S, July 2026] Top Space Technology Companies in Florida · July 2026 | https://www.f6s.com/companies/space-technology/florida/top
[F6S, retrieved 2026] KeeperSpace Inc F6S profile | https://www.f6s.com/company/keeperspace-inc
[Substack] 🗣️ AISW recap: 100 interviews on everyday ethical AI | https://sixpeas.substack.com/p/aisw-recap-100-interviews-everyday-ethical-ai
[bizprofile.net, retrieved 2026] KeeperSpace LLC Cape Canaveral, FL - filing information | https://www.bizprofile.net/fl/cape-canaveral/keeperspace-llc
[Euroconsult, 2023] Space Situational Awareness & Space Traffic Management Market | URL not provided in structured facts.
[BryceTech, 2024] Space Industry Reports | URL not provided in structured facts.
[Union of Concerned Scientists Satellite Database, 2024] UCS Satellite Database | URL not provided in structured facts.
[FCC, 2022] FCC Space Innovation | URL not provided in structured facts.
[U.S. Space Force, 2023] U.S. Space Force Acquisition | URL not provided in structured facts.
[Crunchbase, 2022] LeoLabs Funding | URL not provided in structured facts.
[Crunchbase, 2023] Slingshot Aerospace Funding | URL not provided in structured facts.
[Crunchbase, 2024] True Anomaly Funding | URL not provided in structured facts.
[SpaceNews, 2023] Odin Space Funding | URL not provided in structured facts.
[SpaceNews, 2023] Turion Funding | URL not provided in structured facts.
[Crunchbase, 2021] LeoLabs Series B Valuation | URL not provided in structured facts.
Articles about KeeperSpace
- KeeperSpace's AI Layer Aims to Orchestrate the Autonomous Satellite's Defense — The Cape Canaveral startup is betting on continuous, on-orbit threat response to stand out in a crowded space situational awareness market.