Current stock research snapshot · 8/26/26 Fresh

OKLOOklo Inc.

HOLD
Investment conviction●●○○○2 of 5 · current snapshot
Research target$80.00Current stock price target
Investment thesis statusINTACTLast reviewed 8/26/26
Market cap$7.27BSnapshot value · 8/26/26

What changed

See all OKLO changes ↗

Target
$79.69 $80.00

Thesis status
STRENGTHENED INTACT

Last reviewed
7/22/26 8/26/26

Advanced nuclear SMR developer. Fast-fission sodium-cooled Aurora microreactors (15-75 MWe) designed for AI data centers, off-grid, and industrial power. Groves isotope test reactor built in ~229 days at Lockhart TX — DOE approved final DSA Jul 2026, targeting first criticality imminently. First commercial Aurora powerhouse under construction at INL Idaho (excavation complete, PDSA approved Jun 2026, target first power late 2027). $2.5B cash/marketable securities (Q1 2026 10-Q/A). Meta 1.2GW prepayment deal (Pike County OH). Switch 12GW Master Power Agreement. Sam Altman ~6% stake (post-dilution). DOE Reactor Pilot Program accelerated pathway. NRC PDC topical report approved May 2026 on accelerated timeline. The ultimate AI data center power bottleneck play — only nuclear solves 24/7 baseload at scale for hyperscalers.

1. Groves test reactor first criticality (Jul 2026 — any day now) | 2. INL Aurora first power (late 2027/early 2028) | 3. NRC full COL application submission | 4. Additional hyperscaler PPAs beyond Meta/Switch | 5. IRA/Infrastructure nuclear tax credits (ITC/PTC) | 6. HALEU fuel supply chain milestone (Centrus LOI deliveries from 2029) | 7. Fuel recycling facility FID (TN Advanced Fuel Center $1.68B roadmap)

1. Groves reactor criticality failure or major safety incident | 2. INL construction cost overruns >50% or timeline slip past 2029 | 3. NRC full COL denied or indefinitely stalled | 4. HALEU fuel supply fails to materialize at commercial scale | 5. Sodium-cooled fast reactor safety issue requires fundamental redesign | 6. Key customer (Meta/Switch) terminates agreement or fails to fund | 7. Regulatory/policy reversal removes DOE RPP accelerated pathway

Strong momentum — AI power demand narrative dominates. Bulls: physical construction progress (Groves, INL) proves execution; $2.5B cash = no near-term dilution; Meta + Switch deals validate demand; Altman ecosystem alignment. Bears: pre-revenue, sodium fast reactor unproven commercially in US, NRC full licensing years away, HALEU supply chain immature. Heavy Form 4 insider activity noted but may include 10b5-1 plans.

Snapshot · 8/26/26

🟢 Lean-Bull · 13F 20+/5-×0.5 · short↓0.23

Snapshot · 8/26/26

Deep research update

879 words · Updated Aug 16, 2026 · 4 sources

Research in development: this latest 879-word update is published for context while it is expanded toward the 1,000-word editorial standard.

Oklo designs and is commercializing the Aurora powerhouse — a metal-fueled, sodium-cooled fast reactor producing 15–75 MWe (potential to 100 MWe+) that runs on fresh, recycled, or down-blended nuclear fuel — plus a nuclear fuel recycling (pyroprocessing) business that converts used LWR/EBR-II fuel into usable fast-reactor fuel. It also operates a radioisotope production line. The technology descends from the Experimental Breeder Reactor-II (EBR-II), a fast fission plant the US government operated for ~30 years.

Essentially pre-revenue. Q2 2026 (ended 06-30) revenue $1.21M (vs $0 in Q2 2025); H1 2026 net loss $81.6M, loss from operations $124.2M, net cash used in operations $65.5M. Cash + cash equivalents + marketable debt securities $3.006B as of 06-30-2026 — a multi-year runway. Market cap ~$7.27B at $44.38 (picks.db).

AI data centers face a structural electricity bottleneck — hyperscalers need firm, 24/7, carbon-free power at GW scale. Oklo's Aurora SFR is the enabling supply layer: the Dec 2024 12 GW Switch Master Power Agreement ("one of the largest corporate PPAs in history," non-binding) and the Jan 2026 Meta Prepayment Agreement (1.2 GW, Pike County, Ohio) are direct evidence that hyperscalers are underwriting advanced-nuclear capacity specifically for AI compute.

  • Groves Isotope Test Reactor achieved FIRST CRITICALITY on Aug 5, 2026 (DOE startup authorization July 23, 2026) — Oklo has now operated a reactor, a de-risking milestone no other 2026-era advanced-fission peer has matched this cycle. Source: Q2 10-Q "Recent Developments" (filed 08-07-2026).
  • DOE granted a site use permit at Idaho National Laboratory and a 5 metric-tonne HALEU fuel award (produced from recovered uranium from previously irradiated EBR-II fuel). Source: FY2025 10-K.
  • Dec 2025: completed a fast-spectrum plutonium criticality experiment with Los Alamos National Laboratory under DOE's Reactor Pilot Program — the system was taken critical and operated through controlled power maneuvers/transients. Source: 10-K.
  • Jan 5, 2026 Meta Prepayment Agreement: Meta prepays for power and provides funding to advance powerhouse deployment; Oklo uses Meta's funding to secure nuclear fuel for the 1.2 GW Ohio campus. Source: 10-K / 10-Q.
  • Fuel recycling facility roadmap of up to $1.68B investment, first-of-its-kind in the US, >800 jobs; completed a licensing project plan with the NRC and is in pre-application engagement. Source: 10-K.
  • NRC licensing: Oklo was the first advanced-fission company to submit a custom combined license application (COLA) in March 2020 (denied without prejudice 2022); July 2025 Phase I pre-application readiness assessment concluded "no significant gaps". Updated COLA pending. Source: 10-K.
  • June 15, 2026: acquired Creative Engineers, Inc. ($12.9M) for US sodium/alkali-metal chemical-process engineering — vertical integration of the SFR's sodium-system supply chain. Source: Q2 10-Q Note 3.

The moat is fuel-supply independence + licensing lead, not reactor IP alone. (1) Fast reactors + recycling unlock ~95% of uranium energy vs ~5% for LWRs; (2) the 5-tonne HALEU award + recycling facility sidestep the US commercial HALEU enrichment bottleneck (US commercial HALEU production is effectively zero — only Centrus' demonstration-scale ~900 kg/yr); (3) NRC combined-license path is a multi-year gate that incumbents (TerraPower, X-energy, Kairos) are also stuck behind, but Oklo has already cleared a Phase I readiness assessment with "no significant gaps." moat_durability in picks.db = IP_DURABLE.

  • Everything commercial is non-binding: the 12 GW Switch MPA and the Equinix/Diamondback/Prometheus LOIs have no firm price or take-or-pay terms. Zero contracted, revenue-producing backlog. Meta's prepayment is the only funding-backed deal.
  • NRC commercial license is the make-or-break: the first COLA was denied without prejudice (2022); the updated COLA is not yet submitted; first commercial Aurora is years away and "it is uncertain when, if at all, we will obtain NRC approvals" (10-K verbatim).
  • Groves is a DOE test reactor, not commercial revenue: first criticality ≠ a paying customer. It validates physics/operations but not economics.
  • Financing gap beyond seed capital: the $1.68B fuel facility + first powerhouse require multi-billion project financing on top of the $3.0B cash; Oklo depends on customer prepayments (Meta) and DOE cost-share.
  • Fuel supply chain: HALEU and recycled-fuel availability at "acceptable costs and under acceptable timelines" is an explicit 10-K risk factor.
  • What fraction of the 12 GW Switch MPA / Meta 1.2 GW converts to a binding PPA with price terms, and on what timeline?
  • When will the updated NRC COLA be submitted, and what is the expected review duration?
  • What is the capital stack for the first Aurora-INL unit and the fuel recycling facility (customer prepay vs DOE vs equity)?
  • What is the actual HALEU burn rate per Aurora (kg/MWe-yr) that the 5-tonne award + recycling output must cover?

STRENGTHENED — the Groves first criticality (Aug 5, 2026), $3.0B liquidity, and the Meta prepayment de-risk the technical and funding story; but the thesis remains a long-dated option whose conversion to revenue depends on NRC commercial licensing and binding PPAs that have not yet materialized.

Sources

4 sources preserved from the latest qualified research update.

  1. sec.govsec.govOpen source ↗
  2. sec.govsec.govOpen source ↗
  3. sec.govsec.govOpen source ↗
  4. data.sec.govdata.sec.govOpen source ↗

Oklo: The Nuclear Microreactor Play at the Heart of AI Power Demand

1,268 words · Research as of Jul 18, 2026

Preserved research context: this long-form synthesis reflects the evidence and valuation snapshot available on Jul 18, 2026. Use the current snapshot above for the latest signal, conviction, target and market-cap values.

Investment Thesis

Oklo is developing advanced nuclear microreactors — the Aurora powerhouse, a sodium-cooled fast fission design delivering 15-75 MWe — purpose-built to solve the AI data center power crisis. The thesis is elegantly simple: hyperscalers need 24/7 carbon-free baseload power at massive scale, renewables cannot provide it, natural gas is politically and environmentally unacceptable at the required scale, and only advanced nuclear can close the gap. Oklo is the most advanced pure-play developer of commercial fast fission microreactors in the United States, with a test reactor (Groves) already built in ~229 days, a first commercial power reactor under construction at Idaho National Laboratory (INL), and $2.5B in cash to fund development through the critical proof-of-performance window.

The market currently prices Oklo at $7.95B market cap with zero revenue — a pre-revenue deep tech bet that has already de-risked substantially since initial coverage. Key milestones that have been crossed: Groves test reactor built (concrete poured, DOE Final DSA approved), INL Aurora site excavation complete (PDSA approved June 2026), NRC Pre-Application Topical Report (PDC) approved May 2026 on accelerated timeline, Meta signed a 1.2GW prepayment deal for Pike County Ohio, Switch signed a 12GW Master Power Agreement, and Sam Altman retains a ~6% stake (post-dilution) providing strategic alignment with AI infrastructure buildout. Each milestone reduces technical and regulatory risk. The remaining binary risk is first criticality at Groves — imminent as of this writing (July 2026) — and first commercial power at INL targeted for late 2027.

Physical AI / Value-Chain Relevance

Oklo maps to Layer 2 of the Physical AI taxonomy — Grid, Power & Thermal Infrastructure. In the physical AI value chain, compute is useless without power. The hyperscaler buildout of AI data centers is running into physical grid constraints: 2-5 year interconnection queues, transmission bottlenecks, and the simple fact that the US grid was not designed for 500MW+ data center clusters. Oklo's Aurora microreactor is designed to bypass these constraints entirely, providing colocated 24/7 baseload power at the data center site without grid interconnection dependencies.

The sodium-cooled fast fission design offers two key advantages over conventional light-water SMRs: higher operating temperature (enabling more efficient power conversion and process heat applications) and intrinsic safety features (low-pressure sodium coolant eliminates the need for large containment structures and emergency coolant injection systems). The 15-75 MWe scale is designed to match data center module sizing — one Aurora per data center hall, scalable in 15 MWe increments.

Oklo's thesis is not about winning a technology beauty contest — it is about having the fastest path to licensed, commercial nuclear power for AI loads. The Groves test reactor (229 days from groundbreaking to completion) demonstrated that Oklo can build faster than any nuclear project in modern US history. If this speed can be replicated for commercial units, Oklo becomes the default power solution for hyperscalers facing multi-year grid interconnection delays.

Catalysts

Binary catalyst — Groves criticality (any day now): Groves test reactor received its Final DSA (Documented Safety Analysis) approval from the DOE in July 2026. First criticality is the single most important catalyst in Oklo's near-term timeline — it provides the first physical proof that the Aurora design works as modeled. Success here removes the biggest overhang on the stock (technology risk) and opens the door to full NRC Construction Permit Application.

Near-term — NRC licensing progress: The PDC topical report approval in May 2026 accelerated the regulatory pathway. Next milestone is submission of a full Construction Permit Application (COL application for NRC). Approval would mark the first NRC-licensed fast reactor in US history.

Medium-term — INL first power (late 2027): The first commercial Aurora at INL is under active construction with Kiewit as EPC partner. Excavation is complete, PDSA approved June 2026. First power by late 2027 would validate the commercial deployment model.

Commercial catalysts: Additional hyperscaler power purchase agreements beyond Meta (1.2GW) and Switch (12GW). Any deal with Microsoft, Amazon, or Google for dedicated nuclear capacity would validate that Oklo's approach is scaling.

Positioning / What the Market May Be Missing

Oklo's market positioning is poorly understood by the broader market. Most investors categorize it as a "SMR stock" alongside NuScale, GE Hitachi, or X-energy. But Oklo is fundamentally different: it is not selling small light-water reactors. The fast fission design gives it fuel flexibility (can use HALEU or recycled fuel) and a fuel utilization efficiency that is dramatically higher than conventional designs — Oklo's fuel recycling pathway (Tennessee Advanced Fuel Center, $1.68B roadmap) could reduce long-term fuel costs by extracting more energy per unit of uranium.

What the market may be missing is that Oklo's $2.5B cash position at a $132M annual burn rate provides ~19 years of runway. This is not a pre-revenue biotech racing against a cash-out date. Oklo has the financial staying power to weather NRC licensing delays, regulatory appeals, and construction cost overruns that would bankrupt less capitalized developers.

The market also underestimates the power bottleneck thesis. AI inference compute demand is growing at 10x per year according to NVIDIA. Every 100MW of AI compute needs ~150MW of power after cooling and overhead. At current hyperscaler expansion plans, total AI power demand in the US could exceed 50GW by 2030. The grid is not ready. Natural gas is carbon-exposed. Nuclear is the only 24/7 carbon-free solution at scale. Oklo is the most advanced pure-play developer targeting exactly this use case.

Risks and What Invalidates the Thesis

1. Groves reactor criticality failure. If Groves fails to achieve criticality, or has a safety incident during startup testing, the technical case for fast fission microreactors is substantially weakened. This is the single largest binary risk in the thesis.

2. INL cost overrun or timeline slip. If the first commercial Aurora at INL exceeds budget by >50% or slips past 2029, the economic case for distributed nuclear at data center scale is undermined. Kiewit partnership mitigates this but does not eliminate it.

3. NRC licensing denial. If the full Construction Permit Application is denied or indefinitely stalled, Oklo becomes a science project rather than a commercial venture. The May 2026 PDC approval on accelerated timeline is encouraging but not a guarantee of eventual NRC approval.

4. HALEU fuel supply failure. The domestic HALEU (High-Assay Low-Enriched Uranium) supply chain does not exist at commercial scale yet. Centrus is Oklo's primary supplier under a Letter of Intent with deliveries expected from 2029 — but if HALEU fuel fabrication fails to scale, Oklo's fuel supply is constrained.

5. Customer attrition. Meta's 1.2GW prepayment and Switch's 12GW MPA are non-binding framework agreements. If Meta or Switch walk away, the commercial thesis loses its anchor customers and the market will question real demand.

What to Watch Next

Groves test reactor criticality is the single most important binary event on Oklo's calendar — monitor for DOE announcements or company press releases. Then track INL construction progress: foundation pouring, reactor vessel installation, and the NRC COL application submission. On the commercial side, watch for customer announcements beyond Meta/Switch — any new hyperscaler PPA is strong positive signal.

Also watch the HALEU supply chain. Centrus production milestones and DOE funding for HALEU enrichment infrastructure are leading indicators of fuel availability when Oklo's first commercial reactors need to be loaded (~2028-2029). Fuel recycling progress at the Tennessee Advanced Fuel Center is a longer-term signal but important for the cost-advantage narrative.

Finally, monitor the broader regulatory and political environment. The DOE Reactor Pilot Program accelerated pathway was a Biden-era initiative — any Trump administration pivot away from advanced nuclear would create headwinds. Conversely, bipartisan nuclear support in the ADVANCE Act and the IRA's nuclear tax credits (ITC/PTC) provide a policy floor regardless of election outcomes.