NYSE:STDN Standard Nuclear Q2 2026 Earnings Report $15.00 +0.69 (+4.82%) As of 09:34 AM Eastern ProfileEarnings HistoryForecast Standard Nuclear EPS ResultsActual EPS-$0.12Consensus EPS -$0.04Beat/MissMissed by -$0.08One Year Ago EPSN/AStandard Nuclear Revenue ResultsActual Revenue$4.74 millionExpected Revenue$2.97 millionBeat/MissBeat by +$1.77 millionYoY Revenue GrowthN/AStandard Nuclear Announcement DetailsQuarterQ2 2026Date8/26/2026TimeAfter Market ClosesConference Call DateThursday, August 27, 2026Conference Call Time8:30AM ETConference Call ResourcesConference Call AudioConference Call TranscriptPress Release (8-K)Quarterly Report (10-Q)Earnings HistoryCompany ProfilePowered by Standard Nuclear Q2 2026 Earnings Call TranscriptProvided by QuartrAugust 27, 2026ShareShareShare This ReportLink copied to clipboard.Key Takeaways Positive Sentiment: First commercial full-core shipment completed: Standard Nuclear delivered its first commercial HALEU TRISO fuel to Radiant Industries, marking the company’s first complete reactor core supplied by an independent U.S. manufacturer. Positive Sentiment: Backlog expanded sharply: Total contract backlog rose from $91.3 million at March 31 to $241.5 million at June 30, while funded backlog increased to $61.9 million; including the August Antares agreement, funded backlog reached $119.3 million and total backlog $576.9 million. However, a substantial portion consists of customer options rather than binding commitments. Positive Sentiment: Capacity expansion is progressing: New Tennessee and Idaho facilities are substantially complete, with authorization to operate targeted for the fourth quarter of 2026 and initial combined capacity of up to 2.5 metric tons annually. The company is targeting production at the Framatome joint venture’s Richland facility in 2027 and has outlined potential expansion toward 40 metric tons annually by the end of the decade. Neutral Sentiment: Revenue began scaling, but losses remain: Second-quarter revenue increased to $4.7 million, including $3.1 million of TRISO product revenue, and gross margin was 67%; nevertheless, the company reported a $3.4 million net loss as public-company infrastructure and R&D investments increased. Management provided no financial guidance, focusing instead on operational milestones. AI Generated. May Contain Errors.Conference Call Audio Live Call not available Earnings Conference CallStandard Nuclear Q2 202600:00 / 00:00Speed:1x1.25x1.5x2xTranscript SectionsPresentationParticipantsPresentationSkip to Participants Operator00:00:00Good day, everyone. My name is Elizabeth, and I will be your conference operator today. At this time, I would like to welcome you to the Standard Nuclear Second Quarter 2026 Earnings Call. All lines have been placed on mute to prevent background noise. Today's call is being recorded. After the speakers' remarks, there will be a question and answer session. If you would like to ask a question, please use the raise hand icon at the bottom of your webinar application. At this time, I would like to turn the call over to Chris Koscielniak, Head of Investor Relations. Chris KoscielniakHead of Investor Relations at Standard Nuclear00:00:29Thank you, operator, and good morning, everyone. Welcome to Standard Nuclear's Second Quarter 2026 Earnings Call, our first as a public company. On July 16, our common stock began trading on the New York Stock Exchange under the ticker STDN. We are pleased to welcome our new shareholders and everyone joining us today. Yesterday, we issued our earnings press release reporting results for the three and six months ended June 30, 2026, and this morning we filed our quarterly report on Form 10-Q with the SEC. The press release is available in the investor relations section of our website, and an investor presentation will be posted there following this call. Before we begin, please note that our remarks today will include forward-looking statements and are based on assumptions as of today and are subject to significant risks and uncertainties. Actual results may differ materially. Chris KoscielniakHead of Investor Relations at Standard Nuclear00:01:21Please refer to the risk factors described in our Form 10-Q and our SEC filings. We undertake no obligation to update forward-looking statements except as required by law. During this call, we will refer to certain operating metrics, including funded backlog, total contract backlog, and qualified pipeline. Definitions of these metrics and important limitations on their use are included in yesterday's press release. With me today are Kurt Terrani, our President and Chief Executive Officer, and Kevin Harrill, our Chief Financial Officer. Kurt will open with an overview of the quarter's results and an update on our strategy, followed by Kevin, who will take you through the financial results, and then Kurt will close before we open the line for questions. With that, I'll turn the call over to Kurt. Kurt TerraniPresident and CEO at Standard Nuclear00:02:11Thank you, Chris, and thank you everyone for joining us on our first earnings call as a public company. Let me start with what Standard Nuclear is. We make the fuel that most advanced reactors run on. That fuel is TRISO, and it is worth spending a moment on why it matters. TRISO is not a new idea. This coated particle fuel form was first developed in the 1960s and used across a number of commercial nuclear power plants worldwide. Since 2002, the U.S. Department of Energy has put the latest generation of this fuel technology through the Advanced Gas Reactor Testing and Qualification Program, a rigorous testing and irradiation program that took the fuel to record burn-up and temperatures with essentially no fuel particle failures. Kurt TerraniPresident and CEO at Standard Nuclear00:02:53After irradiation, the fuel was then safety tested by exposing it to temperatures far beyond anything a reactor accident would produce to ensure the release of radioactivity from the fuel stayed below safe levels. This is why the DOE calls TRISO the most robust nuclear fuel on Earth. Each particle is a speck of uranium ceramic about the size of a poppy seed, wrapped in layers of carbon and silicon carbide. Those layers are the containment. Every particle is its own miniature pressure vessel, holding the radioactive material inside at temperatures well above anything the reactor will ever see. It does that passively, without the need for a pump, power, or operator to actively maintain the cooling on the fuel. Kurt TerraniPresident and CEO at Standard Nuclear00:03:38This is what we mean by functional containment, and it is why a reactor running on TRISO can be small, sited close to the customer it serves, and safe without relying on active safety systems. What is new here is not the fuel. It is the ability to make it at commercial scale. This quarter, we shipped our first commercial fuel core load. We signed contracts on the back of it, and the demand behind those contracts moved toward us on every measure we track. The quarter tells the story through five themes. First, microreactor deployment is accelerating from pilots to programs with named sites and targeted dates. Second, we manufactured and shipped the first full core load of modern commercial TRISO fuel ever produced in this country. Third, we converted pipeline into contracts and contracts into funded backlog. Fourth, we scaled. Kurt TerraniPresident and CEO at Standard Nuclear00:04:31Modular equipment is moving into both new sites now, putting capacity in place for up to 2.5 metric tons of annual throughput by year-end, subject to authorization. Fifth, we broadened the platform. The Framatome joint venture, selection for negotiation under the Surplus Plutonium Program, and fuel transportation package development. Deployment creates fuel demand. Demand becomes contracts. Contracts become funded backlog. Backlog is matched with capacity. The platform work widens the base underneath it all. Advanced Nuclear is moving from pilots to scheduled deployments. Five participants in the Department of Energy's reactor pilot program have now reached criticality, four of them by the program's July 4th target. The demand signals are structural. Hyper-scale data centers need firm, continuous power. The reindustrialization of the American grid is underway. Defense programs such as Project Janus are targeting reactor deployments at nine Army installations as we speak. Kurt TerraniPresident and CEO at Standard Nuclear00:05:32That is just the start before additional installations under the other branches come on. As I hope it is clear to you all, energy security is a national imperative. For anyone less familiar with it, the Army's Project Janus is Department of Defense's program to put microreactors, that is small nuclear reactors, sited at military bases so that critical missions are run on reliable around-the-clock power. Every reactor runs on fuel, and the advanced reactor fleet moving toward deployment will overwhelmingly run on TRISO. Project Janus has now announced its awardees, and Standard Nuclear is proud to be the fuel supplier to a number of the reactor developers under this program. We are not the direct awardee, our customers are. That is exactly the position we want to hold. For developers we supply, each awarded deployment creates a TRISO fuel requirement on a defined schedule. Kurt TerraniPresident and CEO at Standard Nuclear00:06:25We will not name specific customers or programs beyond what the government and our customers have made public. Let me be clear about where we are focused and when. Over the next five years, the demand that is real, funded, and scheduled is microreactors, starting with what is concentrated in government and defense, and quickly followed by commercial behind-the-meter. This is where we are pointed today, and it is what our capacity is being built against. Small modular reactors also represent a substantial market, but they arrive later, as those designs work through licensing and reach commercial viability towards the end of the decade. We are not waiting on that market to prove our model. Microreactors fund the business today, and the fuel development and customer relationships that come with them are exactly what an SMR supplier will need. Kurt TerraniPresident and CEO at Standard Nuclear00:07:12The same design-frozen modules produce fuel for both, so nothing we build now has to be rebuilt later. Standard Nuclear is currently the only independent U.S. company producing TRISO fuel at scale for commercial customers. We are reactor-agnostic. We do not compete with our customers. We fuel them. This quarter moved that position from a description to an actual demonstration. Three developments this quarter and shortly after translated that market movement into Standard Nuclear execution. We delivered fuel, we converted demand into contracts, and we scaled capacity. First, we delivered fuel. During the second quarter, we shipped our first commercial TRISO fuel, a 50 kg batch of HALEU TRISO to Radiant Industries for its Kaleidos demonstration unit microreactor. That fuel is now at Department of Energy's DOME facility at Idaho National Laboratory. Kurt TerraniPresident and CEO at Standard Nuclear00:08:06Shortly after quarter end, we delivered the balance, completing delivery of a full core load of TRISO fuel for Radiant's first microreactor. This is the first complete reactor core of a commercially produced TRISO fuel supplied by an independent U.S. manufacturer. The core will support a full-power, full-temperature demonstration using fuel from our Oak Ridge production line. Second, we converted. Our commercial engine did what we built it to do: move opportunities from pipeline to contracts to funded and binding commitments. Total contract backlog grew from $91.3 million at March 31st to $241.5 million at June 30th. Funded backlog, the portion under binding commitment with firm delivery obligations, grew from $8.2 million to $61.9 million over the same period. Kurt TerraniPresident and CEO at Standard Nuclear00:09:02In August, we entered into a fuel supply agreement with Antares Nuclear, providing a firm commitment of 1 metric ton of HALEU TRISO fuel, with a customer option for up to 7 additional metric tons over the next several years. Giving effect to that agreement, funded backlog approximately doubled from June 30th to $119.3 million, and total contract backlog reached $576.9 million, more than six times the March 31st level. That is conversion. It's not churn, and Kevin will walk you through the movement between these categories. It is how market acceleration reaches our order book. Deployment dates and government program timelines turn fuel from a planning item into a firm requirement with a date attached to it. The customer relationships make that conversion tangible. The binding term sheet we signed with Radiant Industries in May became a definitive multi-tranche fuel supply agreement in August. Kurt TerraniPresident and CEO at Standard Nuclear00:10:04Because the May term sheet was binding, those amounts were already reflected in our June 30 backlog. The August agreement formalized the relationship. Radiant is the customer whose first core we just completed, demonstrating the core-to-reload model. In announcing the agreement, Radiant described it as securing its planned deployments through the early 2030s, and its president called securing the fuel supply chain a strategic advantage to deploying at scale. That is the change we have been describing. Fuel availability has become a gating item for reactor deployment, and developers are prudently contracting years in advance. Separately, the fuel supply agreement with Antares Nuclear we announced earlier this week carries a firm commitment of one metric ton, with customer options extending as far as 2035. There are multi-year, multi-ton relationships with reactor developers moving toward deployment, and both of these customers are Project Janus awardees, by the way. Kurt TerraniPresident and CEO at Standard Nuclear00:11:04That is what makes these two agreements the most important thing we did this quarter. It is the demand signal completing its full circuit. A federal program puts deployment dates on the calendar, awards a reactor developer, and the developer contracts with us for fuel. So a national program decision arrives in our backlog as a firm requirement with a date attached. What was a demand signal two quarters ago is a signed contract today. Third, we scaled. Construction is substantially complete at our two new production facilities, SN-TN in Oak Ridge, Tennessee, and SN-ID in Idaho. The facilities are identical, each starting at up to one metric ton of TRISO fuel production per year and designed to scale to 2.5 metric tons each for a combined capacity of up to five metric tons per year. Kurt TerraniPresident and CEO at Standard Nuclear00:11:52The Department of Energy has approved the preliminary documented safety analysis for both sites. Commissioning of the manufacturing modules are underway, and we are targeting authorization to operate both facilities in the fourth quarter. The modular manufacturing equipment is on-site and moving into both buildings now. Subject to receiving authorization, SN-TN and SN-ID will join SN0, our original Oak Ridge line that is producing the fuel today, to put capacity in place for up to 2.5 metric tons of annual throughput by year-end, up to half a metric ton at SN0, and up to one metric ton initially at each new site. SN-TN and SN-ID are replicable by design. This quarter's process engineering and authorization work creates a template for repeated builds. Kurt TerraniPresident and CEO at Standard Nuclear00:12:37Our standard facility is designed to come online in approximately 11 months, and our long-term plan scales from the half metric ton we operate today, approaching up to 40 metric tons of annual capacity by the end of the decade, sized to the demand we can contract rather than to the theoretical market. For scale, in our base case, roughly seven gigawatts electric of cumulative TRISO fuel deployments by 2035 would require well over 100 metric tons annually. In a market where demand is arriving in metric tons and incumbent supply is measured in kilograms, an approximately 11-month capacity cycle is a strategic advantage. In July, we also acquired land on an existing Oak Ridge building for $5.5 million in cash with no debt, and disclosed in our Form 10-Q. Our Oak Ridge holdings now total approximately 57 acres, providing space for future design-frozen modules. Now, to manufacturing performance. Kurt TerraniPresident and CEO at Standard Nuclear00:13:37Process yield was 63.3% at the end of June, as reported in our Form 10-Q. The number measures speed, not waste. Material that does not make it through on the first pass is returned to the front of the line and used. We are not losing HALEU feedstock, we are taking another pass at it, and we expect the number to rise as the new facilities ramp. At the coating step, where each kernel gets the carbon and silicon carbide layers I described earlier, we ran 95%-97%. Process yield is a number that will move as we scale. Coating is already where we want it. Here is why that matters. Yield is a cost lever. Every point of improvement means more sellable fuel from the same labor, the same utilities, and the same equipment, and that flows straight to gross margin. Kurt TerraniPresident and CEO at Standard Nuclear00:14:32We earned 67% gross margin in this quarter at 63.3% yield. As yield improves and as the new facilities spread fixed costs across more output, that is the direction margin moves. Beyond our wholly owned facilities, several initiatives broaden the platform across regulatory pathways, feedstock, and logistics. First, the U.S. Nuclear Regulatory Commission approved the license amendment for Framatome's Richland, Washington facility, raising its license enrichment limit to just under 10 weight percent uranium-235 and authorizing TRISO particle fuel fabrication. That clears the regulatory path for our joint venture to begin production at Richland in 2027, with initial capacity of approximately 1 metric ton annually and ability to expand to two. This capacity would be incremental to our wholly owned sites. Our Tennessee and Idaho facilities are advancing towards authorization under an established Department of Energy framework through our Other Transaction Agreement. Kurt TerraniPresident and CEO at Standard Nuclear00:15:32Our DOE fuel authorization was granted under the fuel line pilot program, where the Department of Energy selected us as the first company accepted into the program. SN-TN and SN-ID are progressing through the same established framework towards authorization in the fourth quarter. Our relationship with Framatome adds a second independent pathway, production enrichment under Framatome's NRC license, a route we secured through the amendment in under two years. Two regulators, two frameworks, one company able to deliver under either. A new entrant would likely face a historically seven-to-nine-year path through this licensing, construction, and qualification process before its first kilogram. We hold an operating DOE authorization today with an NRC license route alongside it. Kurt TerraniPresident and CEO at Standard Nuclear00:16:23That diversification mitigates the impact from any one regulatory process or policy shift to constrain our ability to deliver, and it positions us to be able to serve government, defense, and commercial customers all in parallel. Second, the Department of Energy selected Standard Nuclear for advanced contract negotiations under the Surplus Plutonium Utilization Program. This selection positions us to fabricate plutonium-based TRISO as an independent supplier if the demand for this fuel form materializes. Selection for negotiation does not constitute a contract award, but it validates the TRISO silicon-carbon architecture as a potential pathway to convert a national liability in plutonium into useful fuel and extends our feedstock beyond uranium. We also have entered into a memorandum of understanding with Oklo that established a pathway for fabricating fuel from recycled material, completing the feedstock arc from uranium to surplus plutonium to recycled fuel as those streams mature. Kurt TerraniPresident and CEO at Standard Nuclear00:17:24Also, our continued strategic partnership with SHINE Technologies is intended to support that recycled material pathway as its planned recycling capabilities develop. Third, our R&D work extends to packages used to transport and store HALEU feedstock and TRISO fuel, with our designs progressing through the NRC's Part 71 process. Fuel must be transportable to be able to be delivered. Developing that pathway supports contract schedules and creates the potential for an adjacent revenue stream as the industry scales. Our fuel technology reaches beyond the grid. NASA's Space Nuclear Propulsion program lists Standard Nuclear on its nuclear thermal propulsion contract extension. Space is not in our forecast, but it represents long-term optionality from capabilities we already possess. Before I put the quarter in market context, let me take head-on the fuel supply chain question we get most often. HALEU. Our position is very straightforward. We are reactor-agnostic and feedstock-agnostic. Kurt TerraniPresident and CEO at Standard Nuclear00:18:30Under Department of Energy's HALEU Availability Program, material is allocated to project developers, who then engage a fabricator. This past December, we became the first company to receive the Department of Energy authorization and physical delivery of HALEU feedstock for TRISO production. Material allotted by DOE to Radiant and processed by us in Oak Ridge into a full core load for Radiant's first reactor startup. That is not a pilot. That is the fuel line working end-to-end. Standard Nuclear also holds its own conditional allocation under the same program, awarded in the second round in August 2025. Nine entities have now been named across three allocation rounds, and several of them are our customers or prospective customers. Every one of them needs a fuel fabricator. All right. Now let's put the quarter in market context. Kurt TerraniPresident and CEO at Standard Nuclear00:19:19Total contract backlog and qualified pipeline together represent approximately $1.3 billion, roughly 40% of our estimated $3.2 billion serviceable addressable market through the end of the decade. Qualified pipeline is not backlog, but together the categories show the scale of commercial engagement. The comparison also understates the full duration of our commercial relationships, which include customer options extending through 2030 and beyond. Our model moves customers from development agreements to deposits reserving production capacity, to long-term fuel supply agreements. Each first core can seed a recurring refueling relationship, and this quarter's conversion into binding fuel agreements shows the model working. Radiant has said publicly that each Kaleidos Microreactor runs up to five years before refueling across a 20-year operating profile. Kurt TerraniPresident and CEO at Standard Nuclear00:20:14On their numbers, every unit deployed is a first core, followed by roughly three reloads, and they have announced a commercial agreement with Equinix for 20 units, alongside their selection for Buckley Space Force Base. Those are their figures to update, not ours, but they show why we treat a first core as the start of a relationship rather than an individual sale. In summary, the July IPO gave us the balance sheet to press this advantage that we have. Our new facilities were already fully funded, and approximately $137.7 million of net proceeds gives us flexibility to add capacity ahead of demand, strengthen the supply chain, and convert backlog into recurring production revenue. With that, let me hand it to Kevin to take you through the numbers. Kevin, please. Kevin HarrillCFO at Standard Nuclear00:21:04Thank you, Kurt, and good morning, everyone. As this is our first earnings call, I will spend a moment on how to read our financial statements, then walk through the quarter, the balance sheet, and the backlog metrics that we believe are the best leading indicators of this business. First, the framing. The results we reported yesterday and the Form 10-Q we filed this morning are for the three and six months ended June 30, 2026. Our IPO priced on July 15 and closed on July 17, after quarter end. That means the June 30 balance sheet reflects the company's financial position before the offering. Share counts are adjusted for the split but exclude the 10 million shares issued in the IPO. I will bridge you to the post-IPO capital structure in a moment. Now for the quarter. Kevin HarrillCFO at Standard Nuclear00:21:55Revenue was $4.7 million compared to $0.6 million in the prior year period, an approximately eight-fold increase. The composition matters more than the multiple. $3.1 million of that was product revenue from deliveries of TRISO fuel under a fuel supply agreement, including our first commercial delivery with a balance of $1.6 million in service revenue from fuel development contracts and projects with U.S. government agencies. This is the quarter product revenue arrived, and it arrived from fuel sales, the recurring scalable part of our model. Cost of revenue was $1.6 million, up from $1.2 million, reflecting the scale-up of production operations as we qualified processes and manufactured our first commercial core. Gross profit was $3.2 million for the quarter and approximately 67% gross margin. That is the model working as designed, and we expect strong gross margins to be a durable feature of this business as volume scales. Kevin HarrillCFO at Standard Nuclear00:23:00The drivers underneath them are structural, not one time, converting the most valuable material in our process right the first time, an inline recycle loop that returns material rather than discarding it, and fixed cost absorption that improves as each module fills. General and administrative expense was $5.5 million compared to $1 million in the prior year period. I want to be direct about what this is. It is the build-out of the internal infrastructure required to operate as a public company. This spans finance, accounting, legal, and compliance capabilities, together with non-recurring costs of the IPO and public company readiness. Of the $4.5 million increase, $1.6 million was share-based compensation, $1.5 million was third-party consulting fees related to the public company transition, and finally, $1.4 million was payroll and related benefits. These costs were incurred substantially in advance of the revenue our new facilities are expected to generate. Kevin HarrillCFO at Standard Nuclear00:24:06We made a deliberate choice to stand this infrastructure up on day one. The right people, the right contracts, and the right vendors. Sized for the business we are building rather than the business we are today. That work is largely done. This quarter sets the baseline for that infrastructure, and we do not expect the cost of running it to increase substantially from here as production scales because it was built to scale with the business. This quarter, we reported research and development expense of $2 million. The largest focus was the process engineering and qualification work required to bring SN-TN and SN-ID into commercial production, including licensing and authorization deliverables under our Other Transaction Agreement, or OTA, with the Department of Energy. Kevin HarrillCFO at Standard Nuclear00:24:56During the quarter, that work supported DOE approval of the preliminary documented safety analysis for both facilities and the start of final documented safety analysis preparation at each site. This engineering investment supports the replicable facility model Kurt described earlier. A portion of R&D also supports fuel container development, the transport and storage infrastructure behind every fuel contract we sign. Bringing it together, loss from operations was $4.3 million compared to $1.6 million in the prior year period, with the increase driven by G&A and R&D investments I just described, partially offset by the $4.1 million increase in revenue. Net loss was $3.4 million, or $0.12 per share, compared to $1.6 million or $0.06 per share in the prior year quarter. Kevin HarrillCFO at Standard Nuclear00:25:52Sequentially, I think this is the more informative comparison, net loss narrowed from $7.7 million in the first quarter to $3.4 million in the second, primarily reflecting our first commercial product revenue. Briefly on the six-month view, revenue was $5.3 million versus $0.9 million in the prior year period. Gross loss was $1.2 million, reflecting first quarter process qualification and scale-up costs incurred before commercial deliveries began. Net loss was $11.1 million or $0.40 per share, versus $9.9 million or $0.35 per share in the prior year. The year-over-year comparison includes an $8.3 million favorable change in other income as the prior year period carried non-operating charges that did not recur. Let's turn to the balance sheet. We ended the quarter with $102.2 million of cash and cash equivalents, up from $63.1 million at year-end 2025, with no debt outstanding. Kevin HarrillCFO at Standard Nuclear00:27:00I'd also point you to deferred revenue, which grew from $1.1 million at year-end to $4 million at June 30th. That line is our commercial deposit model at work, seeking to have customers pay to reserve production capacity and queue position ahead of delivery. That structure matters. Customer deposits and milestone payments fund our capacity build with customer cash rather than stockholders' equity, and we intend to keep structuring our fuel sales agreements that way. For the six months, cash used in operating activities was $10.9 million, cash used in investing activities was $17.8 million, which was largely driven by $17.4 million of capital expenditures as we build out production capacity. Finally, financing activities provided $67.9 million, which reflected the private financing that was completed in January this year. Now the bridge to today. Kevin HarrillCFO at Standard Nuclear00:27:59The IPO of 10 million shares of Class A stock at $15 per share generated net proceeds of approximately $137.7 million after underwriting discounts, commissions, and offering expenses. On a pro forma basis, that brings cash to approximately $240 million on a debt-free balance sheet. I want to underscore the sequencing here. The $102.2 million we held at quarter end had already fully funded construction and commissioning of the Tennessee and Idaho facilities. The IPO was opportunistic. We accessed the public markets from a position of strength at a moment when demand for a secure domestic nuclear fuel supply chain has never been greater, and the proceeds give us flexibility to move faster than our existing plan. One more piece of the bridge, because it matters for your models. Kevin HarrillCFO at Standard Nuclear00:28:54The June 30th balance sheet shows the pre-conversion share count of roughly 28 million common shares, and that is also the weighted average behind our reported per-share figures. As Note 14 lays out in our Form 10-Q, we had approximately 132.7 million shares of Class A common stock outstanding and 11.6 million shares of Class B common stock outstanding going into the IPO immediately before the offering, which included the conversion of 116.1 million shares of preferred stock into Class A common stock. With the 10 million shares we issued, the go-forward count is approximately 154.3 million. Use that number as your denominator from here. Finally, the metrics I would ask you to watch. As Kurt said, this quarter demonstrates conversion. Kevin HarrillCFO at Standard Nuclear00:29:47Total contract backlog was $241.5 million at June 30th, consisting of $61.9 million of funded backlog, $156.5 million of purchase options under executed contracts, and $23.1 million of unfunded backlog. Giving effect to the August fuel supply agreement with Antares, funded backlog increased approximately 93% from June 30th to $119.3 million. Purchase options increased to $443.5 million. Unfunded backlog declined to $14.1 million, and total contract backlog reached $576.9 million. Funded backlog represents binding commitments with firm delivery obligations, net of revenue recognized. Purchase options are at the customer's sole discretion and are not reflected in our financial statements until exercised. Qualified pipeline is not included in backlog, and the story of the period is transition. Pipeline converted into funded backlog and purchase options as agreements were executed. Total contract backlog more than doubled over the period, and qualified pipeline stands at approximately $696.3 million as of today. Kevin HarrillCFO at Standard Nuclear00:31:06That movement between those categories is conversion, not lost demand, and it is exactly the progression our commercial model is designed to produce. We intend to report the conversion of qualified pipeline into contracted backlog each quarter so investors can track that progression over time. Before I hand it back over to Kurt, let me pull the financial themes together, because these are the same themes that Kurt opened with. We are capital efficient. Our facilities were fully funded before we came to the public markets. We add capacity in modular increments on an approximately 11-month cycle. We just added land and a building for $5.5 million in cash, and we hold approximately $240 million of pro forma cash with no debt. Our supply chain is fundamentally de-risked. Customers source and own their feedstock under our toll model. We carry no commodity exposure, and material is already flowing through the line. Kevin HarrillCFO at Standard Nuclear00:32:07We are bringing customers in and converting them, pipeline into contracts into funded backlog, at every stage this quarter. We are doing it with strong gross margins, 67% this quarter, and we expect strong margins to be durable as volumes scale because the drivers underneath them, first-pass conversion, the recycle loop, and fixed cost absorption, are structural features of the model rather than artifacts of the quarter. We are not providing financial guidance today. What we will give you are dated operational milestones, authorization to operate at SN-TN and SN-ID targeted for the fourth quarter of 2026, and the start of production at Richland through our Framatome joint venture in 2027. With that, I will turn it back to Kurt for closing. Kurt TerraniPresident and CEO at Standard Nuclear00:32:57Thank you, Kevin. This quarter reinforced our model. First commercial fuel, a full core, and funded backlog growing from $8.2 million at March 31 to $119.3 million, given effect to the August agreement. SN-TN and SN-ID are moving towards up to 2.5 metric tons of annual throughput by year-end, subject to DOE authorization. Richland production expected to begin in 2027 while we look to the plutonium program and Part 71 container work to broaden the platform. The U.S. government is doing something it has not done in two generations. It is deliberately catalyzing a new nuclear industry with programs, schedules, and money behind them. Project Janus targets reactor deployments across nine Army installations starting in 2027. That is just the start. The four additional Navy and Air Force bases to benefit from more reactor deployments. Kurt TerraniPresident and CEO at Standard Nuclear00:33:57It is a deployment program with dates, not a study, and its announced awardees include a number of reactor developers we supply. That is the demand side. On the supply side, Standard Nuclear is the only independent U.S. company producing TRISO at industrial scale for commercial customers, delivering fuel to our customers today, not in some aspirational future date. First mover is not a slogan in this business. It compounds. Every fuel development agreement, every fuel form developed and characterized to a unique customer specification, and every delivered core builds the customer relationship, and makes the next expansion cheaper. The supply chain behind that delivery is already stood up. We were the first company to both receive DOE authorization and physically take delivery of HALEU feedstock. Our customers source and own the feedstock under our toll manufacturing model. Kurt TerraniPresident and CEO at Standard Nuclear00:34:55We carry no commodity exposure, and our remaining inputs are standard industrial materials. No part of our model waits on a supply chain that does not yet exist. Our capital efficiency is equally important. We were gross margin positive in our very first quarter of commercial deliveries with facilities fully funded before the IPO, an 11-month modular build cycle, and roughly $240 million of cash with no debt. The contracts are signed. Capacity is going into the buildings. Deliveries are happening today. Advanced nuclear is no longer a question of if. There is a question of how fast, and the answer to how fast is fuel. Standard Nuclear exists to make sure fuel is never the reason the industry waits. Thank you to our employees, and thank you all for joining us today. Operator, please open the line for questions. Operator00:35:53Thank you. We will now begin the question and answer session. To ask a question, please use the raise hand icon at the bottom of your webinar application. When you are called on, please unmute your audio and ask your question. So that we can get to everyone, we ask that you limit yourself to one question and one follow-up. If you have additional questions, please rejoin the queue and we will take them as time permits. We will pause a moment to assemble the queue. Our first question comes from Rinny Singh with Bank of America. Please unmute and ask your question. Rinny SinghEquity Research Associate at Bank of America00:36:33Hi, guys. Congrats on the first quarter, and thanks for taking my call. First, I think you've highlighted that the funded backlog has grown substantially to $119 million. Could you help us think about the cadence of the revenue recognition for the backlog and how it works with the fuel delivery? Are there any meaningful manufacturing or contractual milestones that would accelerate this progress? Kevin HarrillCFO at Standard Nuclear00:37:04Yeah. Thanks, Rinny. Thanks for the call and thanks for the question. Yes. On the revenue recognition side, as you're well aware of, we have two main segments of the business that we lean into, fuel development as well as fuel supply or offtake agreements. On the fuel development agreements, we manage our revenue recognition, and obviously this is the lesser portion of the revenue that we reflect on our financial statements here and go forward, and that's on a percentage on completion basis. As we work through performing and determining the specs for our individual customers, that's going to be recognized proportionally throughout the timeframe in which we're developing their recipe. For the fuel supply agreement or the offtake arrangements, those are generally recognized from a revenue perspective upon delivery. Kevin HarrillCFO at Standard Nuclear00:37:57Each contract is a little different than the other, so we do have opportunities to be in a position to recognize revenue as they're going to be in work in process. It is going to be unique to the individual contract. Those are going to be the two foundational elements of how we're going to recognize revenue on those components. Rinny SinghEquity Research Associate at Bank of America00:38:17Okay. Makes sense. Thanks, Kevin. If I could ask about, I think, Kurt, you talked about the 40 MTU of annual capacity by the end of the decade. I just want to dig into how you guys are thinking about proactively building for this demand versus going in response to contracted demand and how you think that shifts over this timeframe through the decade, as there's a potential to ramp up past that 40 MTU. Kurt TerraniPresident and CEO at Standard Nuclear00:38:49Yeah. I appreciate your question. I think one of the themes that we've hit on over and over is that we're not going to build it and hope they'll come. I think one of the things that you see is how effective our commercial engine has been in seeing the opportunities, recognizing them, and converting them. The 40 MTU is our estimate based on what we foresee as the serviceable addressable market that's out there. If the deployments show up, we're going to be there to respond. What we're seeing right now is the demands signal from the government programs. We're seeing on the back of that the demand that our customers are getting for commercial applications, say, behind the meter and elsewhere. The 40 is not a commitment from our part. Kurt TerraniPresident and CEO at Standard Nuclear00:39:47Again, we're going to receive the contracts, we're going to receive the commitments, and it's really our ability to respond to the demand rapidly. It's that 11-month time cycle that we're talking about, where we can deploy incremental metric ton capacity to respond to the demand. We're going to use that agility to be responsive to the market. If the demand materializes below 40 or above 40, we're going to be well prepared to respond to it and capture it. Operator00:40:18Our next question comes from Brian Lee with Goldman Sachs. Please unmute and ask your question. Tyler BissetEquity Research Associate at Goldman Sachs00:40:25Hey, guys, this is Tyler Bisset on for Brian. Thanks for taking our questions. Appreciate the additional color for the next milestones for SN-TN and SN-ID. Sounds like you're on track to commence operations in 4Q of this year. Curious, how quickly could these facilities ramp to the 1 MTU capacity, and how are you thinking about the potential timing of expanding the capacity of these two facilities towards that total 5 MTU capacity as it relates to your current backlog and pipeline? Just a quick follow-up on that. It looks like you submitted your engagement plan for your SN-TN facility to transition from a DOE license to an NRC license. Can you provide any color on a potential timeline of achieving that NRC approval for that site? Kurt TerraniPresident and CEO at Standard Nuclear00:41:15Yeah. Thank you for your question, Tyler. Yeah. As you noted, the facilities are construction complete. The modules are being commissioned inside the facilities, and we are going through the additional steps of the DOE authorization process at SN-TN and SN-ID. As you recall, we have built the facilities. It is an envelope with all the structure, the utilities, to support operation of additional modules. If you come and look on the floor, there is empty space that says, "Hey, additional module for this process, that process," to be able to bring the capacities to their full potential of 2.5 metric ton each per facility. That requires us to trigger procurement of additional modules, and again, given the developments that we are seeing, as we continue to build our backlog, that gives us the signal to go ahead and proceed and do that. Kurt TerraniPresident and CEO at Standard Nuclear00:42:13That is all within the timelines that we have identified and again, our ability to bring those on in a matter of months if we see the demand. As far as our engagement with NRC, yeah, you are correct. We started an engagement with the Nuclear Regulatory Commission early this year. This builds on the memorandum of understanding between NRC and Department of Energy, allowing and facilitating a transition from the Department of Energy to NRC. This is really an option that we are exploring, but we are positioning ourselves well, and we are putting in the work. Kurt TerraniPresident and CEO at Standard Nuclear00:42:54Again, we are very fortunate to also be beneficiaries of the work that NRC staff are putting in to take some of the early steps. It will allow, and will facilitate a transition from a DOE to NRC jurisdiction if and when we choose to do so. We are engaged with the regulatory commission, and we have the option of transitioning from Department of Energy jurisdiction to NRC if and when we choose to do so. Tyler BissetEquity Research Associate at Goldman Sachs00:43:25Appreciate all the color, and congrats on that fuel supply agreement with Antares. It sounds like the option for the additional 7 MTUs could be secured by the end of 2027. So curious if you can provide any details on the considerations being done between now and then. Is that just based on the commercial success for Antares, or are there other considerations? I guess, what could give you confidence that you could secure the entirety of the 8 MTUs? Kevin HarrillCFO at Standard Nuclear00:43:55Yeah, that's a fantastic question, Tyler. What we've talked about, specifically in our disclosures, that 2027 is the earliest timeframe. We do anticipate that there is going to be a fair amount of that agreement, especially the options that we're going to be able to be in a position for them to exercise, through the end of 2030. But I think it is going to be the demand signals that are currently coming from certainly programs like Project Janus. We do believe that that's certainly going to be things that we're going to be planning towards, especially with our ramp-up from an expansion perspective. So I would say that certainly is something that we're working towards as it relates to how we're focusing in on our overall organization and on what we're going to build out as in a capacity form. Operator00:44:48Our next question comes from Mark Shooter with William Blair. Please unmute and ask your question. Mark ShooterAnalyst at William Blair00:45:01Hey, team. Yeah, congrats again on the supply agreement. The strong backlog conversion. Hey, Kevin. Thinking through the implications of Project Janus a bit. The minimum target for 20 reactor deployments, we calculate that at about 11 metric tons of TRISO demand. Your supply agreements for just Radiant and Antares, which are half of the Project Janus TRISO users. That gets to around that number. So should we read that Janus targets are just really conservative, or do you think that, are your customers seeing near-term demand outside of Janus as well? Kurt TerraniPresident and CEO at Standard Nuclear00:45:42Yeah, Mark, really a fantastic question. I think, I'll just say, if you ask my impression, we're just at the start of Project Janus. The project is launched, the first nine installations, all at Army bases. I would expect additional installations from other branches. Again, we're just seeing the start of Project Janus. Project Janus is going to continue to grow, and the demand is going to grow. It really is coming in at a fantastic time in that folks like Radiant, folks like Antares, they're coming on the heel of demonstrations and reactors being shipped and cores and whatnot. So they've proven their technology. Kurt TerraniPresident and CEO at Standard Nuclear00:46:29Now you have this phenomenal anchor in the Department of War, the government customer, that's now saying, "All right, folks, let's go ahead and put these systems to work." On the heel of that, our customers are gaining and realizing a lot of commercial opportunities behind the meter. So you can see just from these two entities, the fuel that they're coming in, and again, very prudently securing early on. We expect them to continue to secure additional fuel for their commercial partnerships, their commercial projects. Again, additional entities that are going to be serving the government and the commercial sector that we'll continue to talk to, and we're well-positioned. Again, that's our mission, to support and fuel them, to make sure all these folks can deliver on their promise of their reactors and energy source. Mark ShooterAnalyst at William Blair00:47:34That's great. Thanks, Kurt. We're excited about Project Janus as well. I'm just wondering if you could share some of your opinions, or your latest views on the competitive landscape for TRISO. Kurt, you mentioned the capital efficiency and how that gives you optionality. Strategically, as you are thinking about the capacity build, how do you balance the two poles of either building strictly to demand or building ahead of demand at lower cost to beat competitors to market? Kurt TerraniPresident and CEO at Standard Nuclear00:48:08Yeah, Mark. I'll tell you, we don't spend much time on our competitors. We wish them well. I'll tell you as where we sit today. We are offering the only industrial scale commercial TRISO fabrication facility in the country right now. We're under the DOE authorization pathway in Tennessee and Idaho, and we have an NRC licensing pathway through our JV with Framatome. We've delivered a full core load to a customer. The other folks in the market are still working on R&D and have aspirations for commercial deployment with a lot of gates ahead of them. The question is not when someone catches up. The question is who is fueling reactors between now and when someone is supposed to catch up. Right now that's us. We're not waiting on the end of the decade. Kurt TerraniPresident and CEO at Standard Nuclear00:49:06We are executing against the substantial contracts that we have, and we have already started delivering. Because of this position, you can imagine, we continue to benefit from incredible visibility into our customers' demand and also their customers. Say we get a Garmin customer. Remember, we built a business where we do not compete with our customers. When we say we are a reactor-agnostic fuel vendor, that really makes us unique. So that partnership and the trust that we have with the reactor customers and the end users of those reactors continues to give us really good visibility. I think that is what gives us the confidence to be able to see what is coming down the pipeline and really tune our capacity to respond to that. Operator00:49:53Our next question comes from Nick Amicucci from Evercore. Please unmute and ask your question. Nick AmicucciDirector of Equity Research at Evercore00:50:13Hey, Kurt and Kevin. Can you hear me? Kurt TerraniPresident and CEO at Standard Nuclear00:50:17Yep. We can hear you. Kevin HarrillCFO at Standard Nuclear00:50:18Hey, Nick. Nick AmicucciDirector of Equity Research at Evercore00:50:18Oh, all right. It still has the little mute icon in the bottom left, so I wasn't sure. I just wanted to kind of piggyback on Mark's question there on Project Janus, too. Just given what we've seen from the release and kind of the customers or the awardees disclosed. Obviously Radiant is in the wheelhouse for you guys, but Antares looks like it was a BWX Technologies fabricated fuel. Just if we could have some clarity, understanding that that's the mark zero and kind of the prototype, but then the contract agreement announced this morning, and as we think about the deployments in Project Janus, will the actual deployments be mark one, and will that be on leveraging your TRISO, or if we could contextualize that would be great. Kurt TerraniPresident and CEO at Standard Nuclear00:51:14Yeah. Nick, I'm going to be very careful not to speak on behalf of our customers. Our customers are engaging in technology development, reactor deployments, and their technologies are continuing to evolve as it's being deployed rapidly. If you recall our business, the customer comes to us, they give us a fuel specification, and again, given our incredibly flexible and robust manufacturing platform, we can manufacture the fuel to the customer's requirements and spec. If you saw the announcement this morning, we're thrilled and very proud to be able to support Antares as well as Radiant and ultimately the Project Janus. The customer, in this case, Antares, they've provided their fuel specification to us. We've done a lot of work with them in the past. They have confidence in our ability, and they've seen that we manufacture fuel to their requirements. Kurt TerraniPresident and CEO at Standard Nuclear00:52:23Frankly speaking, again, they see the incredible cost efficiencies that they get to realize by working with Standard Nuclear. We have the contract from them, firm commitment. We are, again, thrilled to support them, Radiant, and again, others in this space that need TRISO fuel. They need it on time, they need it to meet their requirements, and they need it to be cost efficient. Nick AmicucciDirector of Equity Research at Evercore00:52:50Got it. That makes sense. Thanks, Kurt. Kevin, if I could, just as we kind of think about the refuelings, obviously with Kaleidos, every five years, so you have about three refuelings. Just how do we think about the contract structure associated with those? Are those refuelings kind of contracted up front for each core, or are those negotiated separately at the time of refueling, just as we think about kind of the pricing dynamics and potential out years? Kevin HarrillCFO at Standard Nuclear00:53:27Yeah. Thanks, Nick. We can't get into the specifics of the actual contract as we have not disclosed that, so there is some business sensitivity surrounding that. What I would tell you is that in these initial days, specifically with the bases that Project Janus is earmarking and is leaning on companies like Radiant and Antares to basically supply for a microreactor, and we're the vehicle for the fueling. We see in the next five years that many of them will be the first reactors that are being deployed. Ultimately, we're developing and solidifying a long-term contract with these companies to fuel the next reactors, the new reactors, as well as refuel the existing reactors. So I think from a timing perspective, we see that as going to be being completed over the next 7-10 years, depending on the deployment of the actual underlying units. Kevin HarrillCFO at Standard Nuclear00:54:26Couldn't exactly get into specifics as to when the refuel cycle would be, because that's going to be contingent upon when the first delivery is going to be of the reactor when it's into commerciality at the individual basis. Operator00:54:42Our next question comes from Stephen Gengaro with Stifel. Please unmute and ask your question. Stephen GengaroManaging Director at Stifel00:54:49Thanks. Good morning, everybody. Kevin HarrillCFO at Standard Nuclear00:54:53Morning, Stephen. Stephen GengaroManaging Director at Stifel00:54:54Two questions from me. The first, the order flow and the robust backlog conversion that you've highlighted on the call. At a high level, is that supportive of the expectations you've already laid out during the IPO road shows? Is it better? Can you just give us any context in what that backlog conversion means relative to the expectations that have been out there? Kevin HarrillCFO at Standard Nuclear00:55:26I think it's fairly consistent with what we communicated as a part of the IPO. As we went through that process and we went on road shows and explained the theory of the case for Standard Nuclear, it was really mainly focused on ensuring that we solidified customers from a field development perspective, that we got in sticky with them by establishing their fuel specs and being fuel agnostic and having a very capital efficient model. Then moving that from a field development arrangement for really that to be a qualified pipeline and seeing that matriculate through the funnel that we see it go into purchase options under execute agreements as well as funded backlogs. When you look at how we've evolved since Q1, we've seen our total contract backlog go from $91 million to June 30th to be $241.5 million, and as of today, $576.9 million. Kevin HarrillCFO at Standard Nuclear00:56:31That is certainly exactly as we expected. I think it's showing, and especially Project Janus and the U.S. federal government and Department of Defense who are anchoring this demand is very promising, but it's exactly what we anticipated and we're very pleased as we've looked at what the total addressable market was over the next four years, that we've already made a sizable dent in that to the tune of about 40% through contracts, through establishing conversations, negotiations with additional customers that we anticipate to continue to mature in the next 6-12 months. Kevin HarrillCFO at Standard Nuclear00:57:09I think this is exactly what we talked about in the roadshow, and I think this will be a continued catalyst that we see in the coming quarters and we'll continue to report on how we're able to convert our conversations, our negotiations with our key customers and put them into really consummated agreements that will support us as we build out our infrastructure to deliver to those customers. Stephen GengaroManaging Director at Stifel00:57:38Great. Thank you for all the details. Then just to follow up, and I think Kurt had mentioned at the beginning of the call, the yield and the gross margin. I understand the gross margin's going to jump around just based on revenue mix, et cetera. But is there a way we should think about where that yield should go as you ramp up and kind of what that means for the gross margin profile? Kurt TerraniPresident and CEO at Standard Nuclear00:58:06Yeah. We are working day in, day out to increase our yield. As we said, that's a very important lever that directly affects our margin. Higher yield, higher margin, simple as that. As a part of our serial manufacturing process, we told you we've got some steps, like some of the critical steps, like where we coat the uranium with the coating layers of TRISO. We already have exceptional yields there. So there are other steps that we're focused on. We're doing the engineering and technology development to push those yields higher, too, and that's going to directly result in higher margins. But remember, we want to be an enabler in this market, right? So our story has been that we're going to continue offering lower and lower prices to our customers over the years, because when we realize these savings, we're going to pass it on to our customers. Kevin HarrillCFO at Standard Nuclear00:59:05Our intent has been to maintain these healthy margins that we have, and as we increase higher yield, higher operational efficiency, cost savings due to scale, we are going to pass all that to our customers because we want their business to proliferate and expand into starting with the government, commercial behind the meter, and ultimately grid and a variety of other applications. Operator00:59:30Our last question comes from Chris Dendrinos with RBC. Please unmute and ask your question. Chris DendrinosVP of Equity Research at RBC00:59:37Yeah, great. Good morning, and thanks for taking the question. Maybe I wanted to dive in a bit into these, the R&D efforts here, and maybe specifically the shipping transportation opportunity. I think you mentioned you are progressing through Part 71. I guess, how do you think about the timing of getting that approval in place, and then are there other gating factors, as far as the industry goes to being able to start transportation? Thanks. Kurt TerraniPresident and CEO at Standard Nuclear01:00:10Yeah. Fantastic question. Transportation is a key part. Delivering the fuel involves making it and then packaging and delivering it to a customer. There are packages available today, but frankly speaking, they are inefficient in the amount of material at the enrichments that our customers use. That is the payload material that they can transport. We are pursuing development and licensing of two, what we consider, highly efficient packages for transportation of this type of fuel to our customers. Kurt TerraniPresident and CEO at Standard Nuclear01:00:47We are doing that under Part 71, with the Nuclear Regulatory Commission. We have started the engagement with NRC this year, and we expect to own the resulting licenses, for these packages. A lot of the work right now is on the development and preparation of the SAR, safety analysis report. We have got target dates to get in front of the NRC staff and do all the additional testing that they require under Part 71. Ultimately, we expect these packages, these two packages, to be available in the 2028 and one in the 2029 timeframe. In the meantime, there is less efficient packages that are available, like we have used to deliver fuel to our existing customers. We want to make this, again, a lot more seamless and a lot more cost-effective for these folks to receive their fuel. Chris DendrinosVP of Equity Research at RBC01:01:42Got it. Thanks. Maybe just separately, as I look at the backlog and the pipe today, I guess maybe the backlog, it is obviously heavily skewed towards companies supporting government programs, Project Janus program, ANPI. I think you mentioned that Radiant and Equinix have an agreement as well. What is the kind of progression here, or I guess as you talk to these customers, how are they thinking about bridging from a DOE license to an NRC license to being able to start commercial deployments? How do you guys factor that into, I guess the cadence of your build-out? Thanks. Kurt TerraniPresident and CEO at Standard Nuclear01:02:27Yeah. Again, we are seeing everything we wanted to see. Aside from the government anchor customer, we are delighted to see that the customers that we are talking about today have commercial customers. There are a lot of companies we are not talking about right now, but we are not naming them, that we are discussing with, and they are going after purely commercial projects. The commercial projects are real. Just like we talked about our licensing platform where we have facilities under Department of Energy jurisdiction, we have facilities under NRC, and we have the ability, and we have started the process to give ourselves the optionality to transition some of our facilities, if we choose to, from the DOE to NRC authorization. Those reactor companies benefit from the same exact memorandum of understanding and the agreement between the Department of Energy and NRC. Kurt TerraniPresident and CEO at Standard Nuclear01:03:15They are enjoying also the improvements and the efficiencies that have been realized the last year and a half or so in the regulatory process. I think really those commercial deployments is going to be gated by commercial factors and the ability for these reactor developers to deliver those reactors to those commercial sites. We will be on standby to support them and make sure when the reactor gets there or when it is about to turn on, it has the fuel that it needs to run on. Operator01:03:49That concludes our question and answer session. Thank you for joining the Standard Nuclear Second Quarter 2026 Earnings Call. A replay will be available on the investor relations section of the company's website. You may now disconnect.Read moreParticipantsExecutivesChris KoscielniakHead of Investor RelationsKurt TerraniPresident and CEOKevin HarrillCFOAnalystsRinny SinghEquity Research Associate at Bank of AmericaTyler BissetEquity Research Associate at Goldman SachsMark ShooterAnalyst at William BlairNick AmicucciDirector of Equity Research at EvercoreStephen GengaroManaging Director at StifelChris DendrinosVP of Equity Research at RBCPowered by Earnings DocumentsPress Release(8-K)Quarterly report(10-Q) Standard Nuclear Earnings HeadlinesStandard Nuclear Announces Fuel Supply Agreement with Antares Nuclear, Inc.August 27 at 2:59 PM | finance.yahoo.comStandard Nuclear signs multi-year TRISO fuel deal with Antares NuclearAugust 27 at 2:59 PM | msn.comMajor Buy Alert Issued for August 31stKeith Kaplan has invested $17 million into his own AI research tools, building a platform now used by 180,000 people worldwide. His system has flagged a handful of stocks worth watching ahead of August 31st. See which stocks his AI research platform is flagging right now.August 28 at 1:00 AM | TradeSmith (Ad)Standard Nuclear, Inc. (STDN) Q2 2026 Earnings Call TranscriptAugust 27 at 2:00 PM | seekingalpha.comStandard Nuclear Reports Second Quarter and Year-to-Date 2026 ResultsAugust 26 at 8:00 PM | businesswire.comAugust energy winners: Ten stocks posting double-digit monthly gainsAugust 26 at 12:28 PM | msn.comSee More Standard Nuclear Headlines Get Earnings Announcements in your inboxWant to stay updated on the latest earnings announcements and upcoming reports for companies like Standard Nuclear? Sign up for Earnings360's daily newsletter to receive timely earnings updates on Standard Nuclear and other key companies, straight to your email. Email Address About Standard NuclearStandard Nuclear (NYSE:STDN) Inc. operates as a nuclear fuel company principally in the United States. It engages in design, engineer and manufacturing of advanced nuclear fuels with a primary focus on TRISO fuel that is utilized by advanced reactors. 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PresentationSkip to Participants Operator00:00:00Good day, everyone. My name is Elizabeth, and I will be your conference operator today. At this time, I would like to welcome you to the Standard Nuclear Second Quarter 2026 Earnings Call. All lines have been placed on mute to prevent background noise. Today's call is being recorded. After the speakers' remarks, there will be a question and answer session. If you would like to ask a question, please use the raise hand icon at the bottom of your webinar application. At this time, I would like to turn the call over to Chris Koscielniak, Head of Investor Relations. Chris KoscielniakHead of Investor Relations at Standard Nuclear00:00:29Thank you, operator, and good morning, everyone. Welcome to Standard Nuclear's Second Quarter 2026 Earnings Call, our first as a public company. On July 16, our common stock began trading on the New York Stock Exchange under the ticker STDN. We are pleased to welcome our new shareholders and everyone joining us today. Yesterday, we issued our earnings press release reporting results for the three and six months ended June 30, 2026, and this morning we filed our quarterly report on Form 10-Q with the SEC. The press release is available in the investor relations section of our website, and an investor presentation will be posted there following this call. Before we begin, please note that our remarks today will include forward-looking statements and are based on assumptions as of today and are subject to significant risks and uncertainties. Actual results may differ materially. Chris KoscielniakHead of Investor Relations at Standard Nuclear00:01:21Please refer to the risk factors described in our Form 10-Q and our SEC filings. We undertake no obligation to update forward-looking statements except as required by law. During this call, we will refer to certain operating metrics, including funded backlog, total contract backlog, and qualified pipeline. Definitions of these metrics and important limitations on their use are included in yesterday's press release. With me today are Kurt Terrani, our President and Chief Executive Officer, and Kevin Harrill, our Chief Financial Officer. Kurt will open with an overview of the quarter's results and an update on our strategy, followed by Kevin, who will take you through the financial results, and then Kurt will close before we open the line for questions. With that, I'll turn the call over to Kurt. Kurt TerraniPresident and CEO at Standard Nuclear00:02:11Thank you, Chris, and thank you everyone for joining us on our first earnings call as a public company. Let me start with what Standard Nuclear is. We make the fuel that most advanced reactors run on. That fuel is TRISO, and it is worth spending a moment on why it matters. TRISO is not a new idea. This coated particle fuel form was first developed in the 1960s and used across a number of commercial nuclear power plants worldwide. Since 2002, the U.S. Department of Energy has put the latest generation of this fuel technology through the Advanced Gas Reactor Testing and Qualification Program, a rigorous testing and irradiation program that took the fuel to record burn-up and temperatures with essentially no fuel particle failures. Kurt TerraniPresident and CEO at Standard Nuclear00:02:53After irradiation, the fuel was then safety tested by exposing it to temperatures far beyond anything a reactor accident would produce to ensure the release of radioactivity from the fuel stayed below safe levels. This is why the DOE calls TRISO the most robust nuclear fuel on Earth. Each particle is a speck of uranium ceramic about the size of a poppy seed, wrapped in layers of carbon and silicon carbide. Those layers are the containment. Every particle is its own miniature pressure vessel, holding the radioactive material inside at temperatures well above anything the reactor will ever see. It does that passively, without the need for a pump, power, or operator to actively maintain the cooling on the fuel. Kurt TerraniPresident and CEO at Standard Nuclear00:03:38This is what we mean by functional containment, and it is why a reactor running on TRISO can be small, sited close to the customer it serves, and safe without relying on active safety systems. What is new here is not the fuel. It is the ability to make it at commercial scale. This quarter, we shipped our first commercial fuel core load. We signed contracts on the back of it, and the demand behind those contracts moved toward us on every measure we track. The quarter tells the story through five themes. First, microreactor deployment is accelerating from pilots to programs with named sites and targeted dates. Second, we manufactured and shipped the first full core load of modern commercial TRISO fuel ever produced in this country. Third, we converted pipeline into contracts and contracts into funded backlog. Fourth, we scaled. Kurt TerraniPresident and CEO at Standard Nuclear00:04:31Modular equipment is moving into both new sites now, putting capacity in place for up to 2.5 metric tons of annual throughput by year-end, subject to authorization. Fifth, we broadened the platform. The Framatome joint venture, selection for negotiation under the Surplus Plutonium Program, and fuel transportation package development. Deployment creates fuel demand. Demand becomes contracts. Contracts become funded backlog. Backlog is matched with capacity. The platform work widens the base underneath it all. Advanced Nuclear is moving from pilots to scheduled deployments. Five participants in the Department of Energy's reactor pilot program have now reached criticality, four of them by the program's July 4th target. The demand signals are structural. Hyper-scale data centers need firm, continuous power. The reindustrialization of the American grid is underway. Defense programs such as Project Janus are targeting reactor deployments at nine Army installations as we speak. Kurt TerraniPresident and CEO at Standard Nuclear00:05:32That is just the start before additional installations under the other branches come on. As I hope it is clear to you all, energy security is a national imperative. For anyone less familiar with it, the Army's Project Janus is Department of Defense's program to put microreactors, that is small nuclear reactors, sited at military bases so that critical missions are run on reliable around-the-clock power. Every reactor runs on fuel, and the advanced reactor fleet moving toward deployment will overwhelmingly run on TRISO. Project Janus has now announced its awardees, and Standard Nuclear is proud to be the fuel supplier to a number of the reactor developers under this program. We are not the direct awardee, our customers are. That is exactly the position we want to hold. For developers we supply, each awarded deployment creates a TRISO fuel requirement on a defined schedule. Kurt TerraniPresident and CEO at Standard Nuclear00:06:25We will not name specific customers or programs beyond what the government and our customers have made public. Let me be clear about where we are focused and when. Over the next five years, the demand that is real, funded, and scheduled is microreactors, starting with what is concentrated in government and defense, and quickly followed by commercial behind-the-meter. This is where we are pointed today, and it is what our capacity is being built against. Small modular reactors also represent a substantial market, but they arrive later, as those designs work through licensing and reach commercial viability towards the end of the decade. We are not waiting on that market to prove our model. Microreactors fund the business today, and the fuel development and customer relationships that come with them are exactly what an SMR supplier will need. Kurt TerraniPresident and CEO at Standard Nuclear00:07:12The same design-frozen modules produce fuel for both, so nothing we build now has to be rebuilt later. Standard Nuclear is currently the only independent U.S. company producing TRISO fuel at scale for commercial customers. We are reactor-agnostic. We do not compete with our customers. We fuel them. This quarter moved that position from a description to an actual demonstration. Three developments this quarter and shortly after translated that market movement into Standard Nuclear execution. We delivered fuel, we converted demand into contracts, and we scaled capacity. First, we delivered fuel. During the second quarter, we shipped our first commercial TRISO fuel, a 50 kg batch of HALEU TRISO to Radiant Industries for its Kaleidos demonstration unit microreactor. That fuel is now at Department of Energy's DOME facility at Idaho National Laboratory. Kurt TerraniPresident and CEO at Standard Nuclear00:08:06Shortly after quarter end, we delivered the balance, completing delivery of a full core load of TRISO fuel for Radiant's first microreactor. This is the first complete reactor core of a commercially produced TRISO fuel supplied by an independent U.S. manufacturer. The core will support a full-power, full-temperature demonstration using fuel from our Oak Ridge production line. Second, we converted. Our commercial engine did what we built it to do: move opportunities from pipeline to contracts to funded and binding commitments. Total contract backlog grew from $91.3 million at March 31st to $241.5 million at June 30th. Funded backlog, the portion under binding commitment with firm delivery obligations, grew from $8.2 million to $61.9 million over the same period. Kurt TerraniPresident and CEO at Standard Nuclear00:09:02In August, we entered into a fuel supply agreement with Antares Nuclear, providing a firm commitment of 1 metric ton of HALEU TRISO fuel, with a customer option for up to 7 additional metric tons over the next several years. Giving effect to that agreement, funded backlog approximately doubled from June 30th to $119.3 million, and total contract backlog reached $576.9 million, more than six times the March 31st level. That is conversion. It's not churn, and Kevin will walk you through the movement between these categories. It is how market acceleration reaches our order book. Deployment dates and government program timelines turn fuel from a planning item into a firm requirement with a date attached to it. The customer relationships make that conversion tangible. The binding term sheet we signed with Radiant Industries in May became a definitive multi-tranche fuel supply agreement in August. Kurt TerraniPresident and CEO at Standard Nuclear00:10:04Because the May term sheet was binding, those amounts were already reflected in our June 30 backlog. The August agreement formalized the relationship. Radiant is the customer whose first core we just completed, demonstrating the core-to-reload model. In announcing the agreement, Radiant described it as securing its planned deployments through the early 2030s, and its president called securing the fuel supply chain a strategic advantage to deploying at scale. That is the change we have been describing. Fuel availability has become a gating item for reactor deployment, and developers are prudently contracting years in advance. Separately, the fuel supply agreement with Antares Nuclear we announced earlier this week carries a firm commitment of one metric ton, with customer options extending as far as 2035. There are multi-year, multi-ton relationships with reactor developers moving toward deployment, and both of these customers are Project Janus awardees, by the way. Kurt TerraniPresident and CEO at Standard Nuclear00:11:04That is what makes these two agreements the most important thing we did this quarter. It is the demand signal completing its full circuit. A federal program puts deployment dates on the calendar, awards a reactor developer, and the developer contracts with us for fuel. So a national program decision arrives in our backlog as a firm requirement with a date attached. What was a demand signal two quarters ago is a signed contract today. Third, we scaled. Construction is substantially complete at our two new production facilities, SN-TN in Oak Ridge, Tennessee, and SN-ID in Idaho. The facilities are identical, each starting at up to one metric ton of TRISO fuel production per year and designed to scale to 2.5 metric tons each for a combined capacity of up to five metric tons per year. Kurt TerraniPresident and CEO at Standard Nuclear00:11:52The Department of Energy has approved the preliminary documented safety analysis for both sites. Commissioning of the manufacturing modules are underway, and we are targeting authorization to operate both facilities in the fourth quarter. The modular manufacturing equipment is on-site and moving into both buildings now. Subject to receiving authorization, SN-TN and SN-ID will join SN0, our original Oak Ridge line that is producing the fuel today, to put capacity in place for up to 2.5 metric tons of annual throughput by year-end, up to half a metric ton at SN0, and up to one metric ton initially at each new site. SN-TN and SN-ID are replicable by design. This quarter's process engineering and authorization work creates a template for repeated builds. Kurt TerraniPresident and CEO at Standard Nuclear00:12:37Our standard facility is designed to come online in approximately 11 months, and our long-term plan scales from the half metric ton we operate today, approaching up to 40 metric tons of annual capacity by the end of the decade, sized to the demand we can contract rather than to the theoretical market. For scale, in our base case, roughly seven gigawatts electric of cumulative TRISO fuel deployments by 2035 would require well over 100 metric tons annually. In a market where demand is arriving in metric tons and incumbent supply is measured in kilograms, an approximately 11-month capacity cycle is a strategic advantage. In July, we also acquired land on an existing Oak Ridge building for $5.5 million in cash with no debt, and disclosed in our Form 10-Q. Our Oak Ridge holdings now total approximately 57 acres, providing space for future design-frozen modules. Now, to manufacturing performance. Kurt TerraniPresident and CEO at Standard Nuclear00:13:37Process yield was 63.3% at the end of June, as reported in our Form 10-Q. The number measures speed, not waste. Material that does not make it through on the first pass is returned to the front of the line and used. We are not losing HALEU feedstock, we are taking another pass at it, and we expect the number to rise as the new facilities ramp. At the coating step, where each kernel gets the carbon and silicon carbide layers I described earlier, we ran 95%-97%. Process yield is a number that will move as we scale. Coating is already where we want it. Here is why that matters. Yield is a cost lever. Every point of improvement means more sellable fuel from the same labor, the same utilities, and the same equipment, and that flows straight to gross margin. Kurt TerraniPresident and CEO at Standard Nuclear00:14:32We earned 67% gross margin in this quarter at 63.3% yield. As yield improves and as the new facilities spread fixed costs across more output, that is the direction margin moves. Beyond our wholly owned facilities, several initiatives broaden the platform across regulatory pathways, feedstock, and logistics. First, the U.S. Nuclear Regulatory Commission approved the license amendment for Framatome's Richland, Washington facility, raising its license enrichment limit to just under 10 weight percent uranium-235 and authorizing TRISO particle fuel fabrication. That clears the regulatory path for our joint venture to begin production at Richland in 2027, with initial capacity of approximately 1 metric ton annually and ability to expand to two. This capacity would be incremental to our wholly owned sites. Our Tennessee and Idaho facilities are advancing towards authorization under an established Department of Energy framework through our Other Transaction Agreement. Kurt TerraniPresident and CEO at Standard Nuclear00:15:32Our DOE fuel authorization was granted under the fuel line pilot program, where the Department of Energy selected us as the first company accepted into the program. SN-TN and SN-ID are progressing through the same established framework towards authorization in the fourth quarter. Our relationship with Framatome adds a second independent pathway, production enrichment under Framatome's NRC license, a route we secured through the amendment in under two years. Two regulators, two frameworks, one company able to deliver under either. A new entrant would likely face a historically seven-to-nine-year path through this licensing, construction, and qualification process before its first kilogram. We hold an operating DOE authorization today with an NRC license route alongside it. Kurt TerraniPresident and CEO at Standard Nuclear00:16:23That diversification mitigates the impact from any one regulatory process or policy shift to constrain our ability to deliver, and it positions us to be able to serve government, defense, and commercial customers all in parallel. Second, the Department of Energy selected Standard Nuclear for advanced contract negotiations under the Surplus Plutonium Utilization Program. This selection positions us to fabricate plutonium-based TRISO as an independent supplier if the demand for this fuel form materializes. Selection for negotiation does not constitute a contract award, but it validates the TRISO silicon-carbon architecture as a potential pathway to convert a national liability in plutonium into useful fuel and extends our feedstock beyond uranium. We also have entered into a memorandum of understanding with Oklo that established a pathway for fabricating fuel from recycled material, completing the feedstock arc from uranium to surplus plutonium to recycled fuel as those streams mature. Kurt TerraniPresident and CEO at Standard Nuclear00:17:24Also, our continued strategic partnership with SHINE Technologies is intended to support that recycled material pathway as its planned recycling capabilities develop. Third, our R&D work extends to packages used to transport and store HALEU feedstock and TRISO fuel, with our designs progressing through the NRC's Part 71 process. Fuel must be transportable to be able to be delivered. Developing that pathway supports contract schedules and creates the potential for an adjacent revenue stream as the industry scales. Our fuel technology reaches beyond the grid. NASA's Space Nuclear Propulsion program lists Standard Nuclear on its nuclear thermal propulsion contract extension. Space is not in our forecast, but it represents long-term optionality from capabilities we already possess. Before I put the quarter in market context, let me take head-on the fuel supply chain question we get most often. HALEU. Our position is very straightforward. We are reactor-agnostic and feedstock-agnostic. Kurt TerraniPresident and CEO at Standard Nuclear00:18:30Under Department of Energy's HALEU Availability Program, material is allocated to project developers, who then engage a fabricator. This past December, we became the first company to receive the Department of Energy authorization and physical delivery of HALEU feedstock for TRISO production. Material allotted by DOE to Radiant and processed by us in Oak Ridge into a full core load for Radiant's first reactor startup. That is not a pilot. That is the fuel line working end-to-end. Standard Nuclear also holds its own conditional allocation under the same program, awarded in the second round in August 2025. Nine entities have now been named across three allocation rounds, and several of them are our customers or prospective customers. Every one of them needs a fuel fabricator. All right. Now let's put the quarter in market context. Kurt TerraniPresident and CEO at Standard Nuclear00:19:19Total contract backlog and qualified pipeline together represent approximately $1.3 billion, roughly 40% of our estimated $3.2 billion serviceable addressable market through the end of the decade. Qualified pipeline is not backlog, but together the categories show the scale of commercial engagement. The comparison also understates the full duration of our commercial relationships, which include customer options extending through 2030 and beyond. Our model moves customers from development agreements to deposits reserving production capacity, to long-term fuel supply agreements. Each first core can seed a recurring refueling relationship, and this quarter's conversion into binding fuel agreements shows the model working. Radiant has said publicly that each Kaleidos Microreactor runs up to five years before refueling across a 20-year operating profile. Kurt TerraniPresident and CEO at Standard Nuclear00:20:14On their numbers, every unit deployed is a first core, followed by roughly three reloads, and they have announced a commercial agreement with Equinix for 20 units, alongside their selection for Buckley Space Force Base. Those are their figures to update, not ours, but they show why we treat a first core as the start of a relationship rather than an individual sale. In summary, the July IPO gave us the balance sheet to press this advantage that we have. Our new facilities were already fully funded, and approximately $137.7 million of net proceeds gives us flexibility to add capacity ahead of demand, strengthen the supply chain, and convert backlog into recurring production revenue. With that, let me hand it to Kevin to take you through the numbers. Kevin, please. Kevin HarrillCFO at Standard Nuclear00:21:04Thank you, Kurt, and good morning, everyone. As this is our first earnings call, I will spend a moment on how to read our financial statements, then walk through the quarter, the balance sheet, and the backlog metrics that we believe are the best leading indicators of this business. First, the framing. The results we reported yesterday and the Form 10-Q we filed this morning are for the three and six months ended June 30, 2026. Our IPO priced on July 15 and closed on July 17, after quarter end. That means the June 30 balance sheet reflects the company's financial position before the offering. Share counts are adjusted for the split but exclude the 10 million shares issued in the IPO. I will bridge you to the post-IPO capital structure in a moment. Now for the quarter. Kevin HarrillCFO at Standard Nuclear00:21:55Revenue was $4.7 million compared to $0.6 million in the prior year period, an approximately eight-fold increase. The composition matters more than the multiple. $3.1 million of that was product revenue from deliveries of TRISO fuel under a fuel supply agreement, including our first commercial delivery with a balance of $1.6 million in service revenue from fuel development contracts and projects with U.S. government agencies. This is the quarter product revenue arrived, and it arrived from fuel sales, the recurring scalable part of our model. Cost of revenue was $1.6 million, up from $1.2 million, reflecting the scale-up of production operations as we qualified processes and manufactured our first commercial core. Gross profit was $3.2 million for the quarter and approximately 67% gross margin. That is the model working as designed, and we expect strong gross margins to be a durable feature of this business as volume scales. Kevin HarrillCFO at Standard Nuclear00:23:00The drivers underneath them are structural, not one time, converting the most valuable material in our process right the first time, an inline recycle loop that returns material rather than discarding it, and fixed cost absorption that improves as each module fills. General and administrative expense was $5.5 million compared to $1 million in the prior year period. I want to be direct about what this is. It is the build-out of the internal infrastructure required to operate as a public company. This spans finance, accounting, legal, and compliance capabilities, together with non-recurring costs of the IPO and public company readiness. Of the $4.5 million increase, $1.6 million was share-based compensation, $1.5 million was third-party consulting fees related to the public company transition, and finally, $1.4 million was payroll and related benefits. These costs were incurred substantially in advance of the revenue our new facilities are expected to generate. Kevin HarrillCFO at Standard Nuclear00:24:06We made a deliberate choice to stand this infrastructure up on day one. The right people, the right contracts, and the right vendors. Sized for the business we are building rather than the business we are today. That work is largely done. This quarter sets the baseline for that infrastructure, and we do not expect the cost of running it to increase substantially from here as production scales because it was built to scale with the business. This quarter, we reported research and development expense of $2 million. The largest focus was the process engineering and qualification work required to bring SN-TN and SN-ID into commercial production, including licensing and authorization deliverables under our Other Transaction Agreement, or OTA, with the Department of Energy. Kevin HarrillCFO at Standard Nuclear00:24:56During the quarter, that work supported DOE approval of the preliminary documented safety analysis for both facilities and the start of final documented safety analysis preparation at each site. This engineering investment supports the replicable facility model Kurt described earlier. A portion of R&D also supports fuel container development, the transport and storage infrastructure behind every fuel contract we sign. Bringing it together, loss from operations was $4.3 million compared to $1.6 million in the prior year period, with the increase driven by G&A and R&D investments I just described, partially offset by the $4.1 million increase in revenue. Net loss was $3.4 million, or $0.12 per share, compared to $1.6 million or $0.06 per share in the prior year quarter. Kevin HarrillCFO at Standard Nuclear00:25:52Sequentially, I think this is the more informative comparison, net loss narrowed from $7.7 million in the first quarter to $3.4 million in the second, primarily reflecting our first commercial product revenue. Briefly on the six-month view, revenue was $5.3 million versus $0.9 million in the prior year period. Gross loss was $1.2 million, reflecting first quarter process qualification and scale-up costs incurred before commercial deliveries began. Net loss was $11.1 million or $0.40 per share, versus $9.9 million or $0.35 per share in the prior year. The year-over-year comparison includes an $8.3 million favorable change in other income as the prior year period carried non-operating charges that did not recur. Let's turn to the balance sheet. We ended the quarter with $102.2 million of cash and cash equivalents, up from $63.1 million at year-end 2025, with no debt outstanding. Kevin HarrillCFO at Standard Nuclear00:27:00I'd also point you to deferred revenue, which grew from $1.1 million at year-end to $4 million at June 30th. That line is our commercial deposit model at work, seeking to have customers pay to reserve production capacity and queue position ahead of delivery. That structure matters. Customer deposits and milestone payments fund our capacity build with customer cash rather than stockholders' equity, and we intend to keep structuring our fuel sales agreements that way. For the six months, cash used in operating activities was $10.9 million, cash used in investing activities was $17.8 million, which was largely driven by $17.4 million of capital expenditures as we build out production capacity. Finally, financing activities provided $67.9 million, which reflected the private financing that was completed in January this year. Now the bridge to today. Kevin HarrillCFO at Standard Nuclear00:27:59The IPO of 10 million shares of Class A stock at $15 per share generated net proceeds of approximately $137.7 million after underwriting discounts, commissions, and offering expenses. On a pro forma basis, that brings cash to approximately $240 million on a debt-free balance sheet. I want to underscore the sequencing here. The $102.2 million we held at quarter end had already fully funded construction and commissioning of the Tennessee and Idaho facilities. The IPO was opportunistic. We accessed the public markets from a position of strength at a moment when demand for a secure domestic nuclear fuel supply chain has never been greater, and the proceeds give us flexibility to move faster than our existing plan. One more piece of the bridge, because it matters for your models. Kevin HarrillCFO at Standard Nuclear00:28:54The June 30th balance sheet shows the pre-conversion share count of roughly 28 million common shares, and that is also the weighted average behind our reported per-share figures. As Note 14 lays out in our Form 10-Q, we had approximately 132.7 million shares of Class A common stock outstanding and 11.6 million shares of Class B common stock outstanding going into the IPO immediately before the offering, which included the conversion of 116.1 million shares of preferred stock into Class A common stock. With the 10 million shares we issued, the go-forward count is approximately 154.3 million. Use that number as your denominator from here. Finally, the metrics I would ask you to watch. As Kurt said, this quarter demonstrates conversion. Kevin HarrillCFO at Standard Nuclear00:29:47Total contract backlog was $241.5 million at June 30th, consisting of $61.9 million of funded backlog, $156.5 million of purchase options under executed contracts, and $23.1 million of unfunded backlog. Giving effect to the August fuel supply agreement with Antares, funded backlog increased approximately 93% from June 30th to $119.3 million. Purchase options increased to $443.5 million. Unfunded backlog declined to $14.1 million, and total contract backlog reached $576.9 million. Funded backlog represents binding commitments with firm delivery obligations, net of revenue recognized. Purchase options are at the customer's sole discretion and are not reflected in our financial statements until exercised. Qualified pipeline is not included in backlog, and the story of the period is transition. Pipeline converted into funded backlog and purchase options as agreements were executed. Total contract backlog more than doubled over the period, and qualified pipeline stands at approximately $696.3 million as of today. Kevin HarrillCFO at Standard Nuclear00:31:06That movement between those categories is conversion, not lost demand, and it is exactly the progression our commercial model is designed to produce. We intend to report the conversion of qualified pipeline into contracted backlog each quarter so investors can track that progression over time. Before I hand it back over to Kurt, let me pull the financial themes together, because these are the same themes that Kurt opened with. We are capital efficient. Our facilities were fully funded before we came to the public markets. We add capacity in modular increments on an approximately 11-month cycle. We just added land and a building for $5.5 million in cash, and we hold approximately $240 million of pro forma cash with no debt. Our supply chain is fundamentally de-risked. Customers source and own their feedstock under our toll model. We carry no commodity exposure, and material is already flowing through the line. Kevin HarrillCFO at Standard Nuclear00:32:07We are bringing customers in and converting them, pipeline into contracts into funded backlog, at every stage this quarter. We are doing it with strong gross margins, 67% this quarter, and we expect strong margins to be durable as volumes scale because the drivers underneath them, first-pass conversion, the recycle loop, and fixed cost absorption, are structural features of the model rather than artifacts of the quarter. We are not providing financial guidance today. What we will give you are dated operational milestones, authorization to operate at SN-TN and SN-ID targeted for the fourth quarter of 2026, and the start of production at Richland through our Framatome joint venture in 2027. With that, I will turn it back to Kurt for closing. Kurt TerraniPresident and CEO at Standard Nuclear00:32:57Thank you, Kevin. This quarter reinforced our model. First commercial fuel, a full core, and funded backlog growing from $8.2 million at March 31 to $119.3 million, given effect to the August agreement. SN-TN and SN-ID are moving towards up to 2.5 metric tons of annual throughput by year-end, subject to DOE authorization. Richland production expected to begin in 2027 while we look to the plutonium program and Part 71 container work to broaden the platform. The U.S. government is doing something it has not done in two generations. It is deliberately catalyzing a new nuclear industry with programs, schedules, and money behind them. Project Janus targets reactor deployments across nine Army installations starting in 2027. That is just the start. The four additional Navy and Air Force bases to benefit from more reactor deployments. Kurt TerraniPresident and CEO at Standard Nuclear00:33:57It is a deployment program with dates, not a study, and its announced awardees include a number of reactor developers we supply. That is the demand side. On the supply side, Standard Nuclear is the only independent U.S. company producing TRISO at industrial scale for commercial customers, delivering fuel to our customers today, not in some aspirational future date. First mover is not a slogan in this business. It compounds. Every fuel development agreement, every fuel form developed and characterized to a unique customer specification, and every delivered core builds the customer relationship, and makes the next expansion cheaper. The supply chain behind that delivery is already stood up. We were the first company to both receive DOE authorization and physically take delivery of HALEU feedstock. Our customers source and own the feedstock under our toll manufacturing model. Kurt TerraniPresident and CEO at Standard Nuclear00:34:55We carry no commodity exposure, and our remaining inputs are standard industrial materials. No part of our model waits on a supply chain that does not yet exist. Our capital efficiency is equally important. We were gross margin positive in our very first quarter of commercial deliveries with facilities fully funded before the IPO, an 11-month modular build cycle, and roughly $240 million of cash with no debt. The contracts are signed. Capacity is going into the buildings. Deliveries are happening today. Advanced nuclear is no longer a question of if. There is a question of how fast, and the answer to how fast is fuel. Standard Nuclear exists to make sure fuel is never the reason the industry waits. Thank you to our employees, and thank you all for joining us today. Operator, please open the line for questions. Operator00:35:53Thank you. We will now begin the question and answer session. To ask a question, please use the raise hand icon at the bottom of your webinar application. When you are called on, please unmute your audio and ask your question. So that we can get to everyone, we ask that you limit yourself to one question and one follow-up. If you have additional questions, please rejoin the queue and we will take them as time permits. We will pause a moment to assemble the queue. Our first question comes from Rinny Singh with Bank of America. Please unmute and ask your question. Rinny SinghEquity Research Associate at Bank of America00:36:33Hi, guys. Congrats on the first quarter, and thanks for taking my call. First, I think you've highlighted that the funded backlog has grown substantially to $119 million. Could you help us think about the cadence of the revenue recognition for the backlog and how it works with the fuel delivery? Are there any meaningful manufacturing or contractual milestones that would accelerate this progress? Kevin HarrillCFO at Standard Nuclear00:37:04Yeah. Thanks, Rinny. Thanks for the call and thanks for the question. Yes. On the revenue recognition side, as you're well aware of, we have two main segments of the business that we lean into, fuel development as well as fuel supply or offtake agreements. On the fuel development agreements, we manage our revenue recognition, and obviously this is the lesser portion of the revenue that we reflect on our financial statements here and go forward, and that's on a percentage on completion basis. As we work through performing and determining the specs for our individual customers, that's going to be recognized proportionally throughout the timeframe in which we're developing their recipe. For the fuel supply agreement or the offtake arrangements, those are generally recognized from a revenue perspective upon delivery. Kevin HarrillCFO at Standard Nuclear00:37:57Each contract is a little different than the other, so we do have opportunities to be in a position to recognize revenue as they're going to be in work in process. It is going to be unique to the individual contract. Those are going to be the two foundational elements of how we're going to recognize revenue on those components. Rinny SinghEquity Research Associate at Bank of America00:38:17Okay. Makes sense. Thanks, Kevin. If I could ask about, I think, Kurt, you talked about the 40 MTU of annual capacity by the end of the decade. I just want to dig into how you guys are thinking about proactively building for this demand versus going in response to contracted demand and how you think that shifts over this timeframe through the decade, as there's a potential to ramp up past that 40 MTU. Kurt TerraniPresident and CEO at Standard Nuclear00:38:49Yeah. I appreciate your question. I think one of the themes that we've hit on over and over is that we're not going to build it and hope they'll come. I think one of the things that you see is how effective our commercial engine has been in seeing the opportunities, recognizing them, and converting them. The 40 MTU is our estimate based on what we foresee as the serviceable addressable market that's out there. If the deployments show up, we're going to be there to respond. What we're seeing right now is the demands signal from the government programs. We're seeing on the back of that the demand that our customers are getting for commercial applications, say, behind the meter and elsewhere. The 40 is not a commitment from our part. Kurt TerraniPresident and CEO at Standard Nuclear00:39:47Again, we're going to receive the contracts, we're going to receive the commitments, and it's really our ability to respond to the demand rapidly. It's that 11-month time cycle that we're talking about, where we can deploy incremental metric ton capacity to respond to the demand. We're going to use that agility to be responsive to the market. If the demand materializes below 40 or above 40, we're going to be well prepared to respond to it and capture it. Operator00:40:18Our next question comes from Brian Lee with Goldman Sachs. Please unmute and ask your question. Tyler BissetEquity Research Associate at Goldman Sachs00:40:25Hey, guys, this is Tyler Bisset on for Brian. Thanks for taking our questions. Appreciate the additional color for the next milestones for SN-TN and SN-ID. Sounds like you're on track to commence operations in 4Q of this year. Curious, how quickly could these facilities ramp to the 1 MTU capacity, and how are you thinking about the potential timing of expanding the capacity of these two facilities towards that total 5 MTU capacity as it relates to your current backlog and pipeline? Just a quick follow-up on that. It looks like you submitted your engagement plan for your SN-TN facility to transition from a DOE license to an NRC license. Can you provide any color on a potential timeline of achieving that NRC approval for that site? Kurt TerraniPresident and CEO at Standard Nuclear00:41:15Yeah. Thank you for your question, Tyler. Yeah. As you noted, the facilities are construction complete. The modules are being commissioned inside the facilities, and we are going through the additional steps of the DOE authorization process at SN-TN and SN-ID. As you recall, we have built the facilities. It is an envelope with all the structure, the utilities, to support operation of additional modules. If you come and look on the floor, there is empty space that says, "Hey, additional module for this process, that process," to be able to bring the capacities to their full potential of 2.5 metric ton each per facility. That requires us to trigger procurement of additional modules, and again, given the developments that we are seeing, as we continue to build our backlog, that gives us the signal to go ahead and proceed and do that. Kurt TerraniPresident and CEO at Standard Nuclear00:42:13That is all within the timelines that we have identified and again, our ability to bring those on in a matter of months if we see the demand. As far as our engagement with NRC, yeah, you are correct. We started an engagement with the Nuclear Regulatory Commission early this year. This builds on the memorandum of understanding between NRC and Department of Energy, allowing and facilitating a transition from the Department of Energy to NRC. This is really an option that we are exploring, but we are positioning ourselves well, and we are putting in the work. Kurt TerraniPresident and CEO at Standard Nuclear00:42:54Again, we are very fortunate to also be beneficiaries of the work that NRC staff are putting in to take some of the early steps. It will allow, and will facilitate a transition from a DOE to NRC jurisdiction if and when we choose to do so. We are engaged with the regulatory commission, and we have the option of transitioning from Department of Energy jurisdiction to NRC if and when we choose to do so. Tyler BissetEquity Research Associate at Goldman Sachs00:43:25Appreciate all the color, and congrats on that fuel supply agreement with Antares. It sounds like the option for the additional 7 MTUs could be secured by the end of 2027. So curious if you can provide any details on the considerations being done between now and then. Is that just based on the commercial success for Antares, or are there other considerations? I guess, what could give you confidence that you could secure the entirety of the 8 MTUs? Kevin HarrillCFO at Standard Nuclear00:43:55Yeah, that's a fantastic question, Tyler. What we've talked about, specifically in our disclosures, that 2027 is the earliest timeframe. We do anticipate that there is going to be a fair amount of that agreement, especially the options that we're going to be able to be in a position for them to exercise, through the end of 2030. But I think it is going to be the demand signals that are currently coming from certainly programs like Project Janus. We do believe that that's certainly going to be things that we're going to be planning towards, especially with our ramp-up from an expansion perspective. So I would say that certainly is something that we're working towards as it relates to how we're focusing in on our overall organization and on what we're going to build out as in a capacity form. Operator00:44:48Our next question comes from Mark Shooter with William Blair. Please unmute and ask your question. Mark ShooterAnalyst at William Blair00:45:01Hey, team. Yeah, congrats again on the supply agreement. The strong backlog conversion. Hey, Kevin. Thinking through the implications of Project Janus a bit. The minimum target for 20 reactor deployments, we calculate that at about 11 metric tons of TRISO demand. Your supply agreements for just Radiant and Antares, which are half of the Project Janus TRISO users. That gets to around that number. So should we read that Janus targets are just really conservative, or do you think that, are your customers seeing near-term demand outside of Janus as well? Kurt TerraniPresident and CEO at Standard Nuclear00:45:42Yeah, Mark, really a fantastic question. I think, I'll just say, if you ask my impression, we're just at the start of Project Janus. The project is launched, the first nine installations, all at Army bases. I would expect additional installations from other branches. Again, we're just seeing the start of Project Janus. Project Janus is going to continue to grow, and the demand is going to grow. It really is coming in at a fantastic time in that folks like Radiant, folks like Antares, they're coming on the heel of demonstrations and reactors being shipped and cores and whatnot. So they've proven their technology. Kurt TerraniPresident and CEO at Standard Nuclear00:46:29Now you have this phenomenal anchor in the Department of War, the government customer, that's now saying, "All right, folks, let's go ahead and put these systems to work." On the heel of that, our customers are gaining and realizing a lot of commercial opportunities behind the meter. So you can see just from these two entities, the fuel that they're coming in, and again, very prudently securing early on. We expect them to continue to secure additional fuel for their commercial partnerships, their commercial projects. Again, additional entities that are going to be serving the government and the commercial sector that we'll continue to talk to, and we're well-positioned. Again, that's our mission, to support and fuel them, to make sure all these folks can deliver on their promise of their reactors and energy source. Mark ShooterAnalyst at William Blair00:47:34That's great. Thanks, Kurt. We're excited about Project Janus as well. I'm just wondering if you could share some of your opinions, or your latest views on the competitive landscape for TRISO. Kurt, you mentioned the capital efficiency and how that gives you optionality. Strategically, as you are thinking about the capacity build, how do you balance the two poles of either building strictly to demand or building ahead of demand at lower cost to beat competitors to market? Kurt TerraniPresident and CEO at Standard Nuclear00:48:08Yeah, Mark. I'll tell you, we don't spend much time on our competitors. We wish them well. I'll tell you as where we sit today. We are offering the only industrial scale commercial TRISO fabrication facility in the country right now. We're under the DOE authorization pathway in Tennessee and Idaho, and we have an NRC licensing pathway through our JV with Framatome. We've delivered a full core load to a customer. The other folks in the market are still working on R&D and have aspirations for commercial deployment with a lot of gates ahead of them. The question is not when someone catches up. The question is who is fueling reactors between now and when someone is supposed to catch up. Right now that's us. We're not waiting on the end of the decade. Kurt TerraniPresident and CEO at Standard Nuclear00:49:06We are executing against the substantial contracts that we have, and we have already started delivering. Because of this position, you can imagine, we continue to benefit from incredible visibility into our customers' demand and also their customers. Say we get a Garmin customer. Remember, we built a business where we do not compete with our customers. When we say we are a reactor-agnostic fuel vendor, that really makes us unique. So that partnership and the trust that we have with the reactor customers and the end users of those reactors continues to give us really good visibility. I think that is what gives us the confidence to be able to see what is coming down the pipeline and really tune our capacity to respond to that. Operator00:49:53Our next question comes from Nick Amicucci from Evercore. Please unmute and ask your question. Nick AmicucciDirector of Equity Research at Evercore00:50:13Hey, Kurt and Kevin. Can you hear me? Kurt TerraniPresident and CEO at Standard Nuclear00:50:17Yep. We can hear you. Kevin HarrillCFO at Standard Nuclear00:50:18Hey, Nick. Nick AmicucciDirector of Equity Research at Evercore00:50:18Oh, all right. It still has the little mute icon in the bottom left, so I wasn't sure. I just wanted to kind of piggyback on Mark's question there on Project Janus, too. Just given what we've seen from the release and kind of the customers or the awardees disclosed. Obviously Radiant is in the wheelhouse for you guys, but Antares looks like it was a BWX Technologies fabricated fuel. Just if we could have some clarity, understanding that that's the mark zero and kind of the prototype, but then the contract agreement announced this morning, and as we think about the deployments in Project Janus, will the actual deployments be mark one, and will that be on leveraging your TRISO, or if we could contextualize that would be great. Kurt TerraniPresident and CEO at Standard Nuclear00:51:14Yeah. Nick, I'm going to be very careful not to speak on behalf of our customers. Our customers are engaging in technology development, reactor deployments, and their technologies are continuing to evolve as it's being deployed rapidly. If you recall our business, the customer comes to us, they give us a fuel specification, and again, given our incredibly flexible and robust manufacturing platform, we can manufacture the fuel to the customer's requirements and spec. If you saw the announcement this morning, we're thrilled and very proud to be able to support Antares as well as Radiant and ultimately the Project Janus. The customer, in this case, Antares, they've provided their fuel specification to us. We've done a lot of work with them in the past. They have confidence in our ability, and they've seen that we manufacture fuel to their requirements. Kurt TerraniPresident and CEO at Standard Nuclear00:52:23Frankly speaking, again, they see the incredible cost efficiencies that they get to realize by working with Standard Nuclear. We have the contract from them, firm commitment. We are, again, thrilled to support them, Radiant, and again, others in this space that need TRISO fuel. They need it on time, they need it to meet their requirements, and they need it to be cost efficient. Nick AmicucciDirector of Equity Research at Evercore00:52:50Got it. That makes sense. Thanks, Kurt. Kevin, if I could, just as we kind of think about the refuelings, obviously with Kaleidos, every five years, so you have about three refuelings. Just how do we think about the contract structure associated with those? Are those refuelings kind of contracted up front for each core, or are those negotiated separately at the time of refueling, just as we think about kind of the pricing dynamics and potential out years? Kevin HarrillCFO at Standard Nuclear00:53:27Yeah. Thanks, Nick. We can't get into the specifics of the actual contract as we have not disclosed that, so there is some business sensitivity surrounding that. What I would tell you is that in these initial days, specifically with the bases that Project Janus is earmarking and is leaning on companies like Radiant and Antares to basically supply for a microreactor, and we're the vehicle for the fueling. We see in the next five years that many of them will be the first reactors that are being deployed. Ultimately, we're developing and solidifying a long-term contract with these companies to fuel the next reactors, the new reactors, as well as refuel the existing reactors. So I think from a timing perspective, we see that as going to be being completed over the next 7-10 years, depending on the deployment of the actual underlying units. Kevin HarrillCFO at Standard Nuclear00:54:26Couldn't exactly get into specifics as to when the refuel cycle would be, because that's going to be contingent upon when the first delivery is going to be of the reactor when it's into commerciality at the individual basis. Operator00:54:42Our next question comes from Stephen Gengaro with Stifel. Please unmute and ask your question. Stephen GengaroManaging Director at Stifel00:54:49Thanks. Good morning, everybody. Kevin HarrillCFO at Standard Nuclear00:54:53Morning, Stephen. Stephen GengaroManaging Director at Stifel00:54:54Two questions from me. The first, the order flow and the robust backlog conversion that you've highlighted on the call. At a high level, is that supportive of the expectations you've already laid out during the IPO road shows? Is it better? Can you just give us any context in what that backlog conversion means relative to the expectations that have been out there? Kevin HarrillCFO at Standard Nuclear00:55:26I think it's fairly consistent with what we communicated as a part of the IPO. As we went through that process and we went on road shows and explained the theory of the case for Standard Nuclear, it was really mainly focused on ensuring that we solidified customers from a field development perspective, that we got in sticky with them by establishing their fuel specs and being fuel agnostic and having a very capital efficient model. Then moving that from a field development arrangement for really that to be a qualified pipeline and seeing that matriculate through the funnel that we see it go into purchase options under execute agreements as well as funded backlogs. When you look at how we've evolved since Q1, we've seen our total contract backlog go from $91 million to June 30th to be $241.5 million, and as of today, $576.9 million. Kevin HarrillCFO at Standard Nuclear00:56:31That is certainly exactly as we expected. I think it's showing, and especially Project Janus and the U.S. federal government and Department of Defense who are anchoring this demand is very promising, but it's exactly what we anticipated and we're very pleased as we've looked at what the total addressable market was over the next four years, that we've already made a sizable dent in that to the tune of about 40% through contracts, through establishing conversations, negotiations with additional customers that we anticipate to continue to mature in the next 6-12 months. Kevin HarrillCFO at Standard Nuclear00:57:09I think this is exactly what we talked about in the roadshow, and I think this will be a continued catalyst that we see in the coming quarters and we'll continue to report on how we're able to convert our conversations, our negotiations with our key customers and put them into really consummated agreements that will support us as we build out our infrastructure to deliver to those customers. Stephen GengaroManaging Director at Stifel00:57:38Great. Thank you for all the details. Then just to follow up, and I think Kurt had mentioned at the beginning of the call, the yield and the gross margin. I understand the gross margin's going to jump around just based on revenue mix, et cetera. But is there a way we should think about where that yield should go as you ramp up and kind of what that means for the gross margin profile? Kurt TerraniPresident and CEO at Standard Nuclear00:58:06Yeah. We are working day in, day out to increase our yield. As we said, that's a very important lever that directly affects our margin. Higher yield, higher margin, simple as that. As a part of our serial manufacturing process, we told you we've got some steps, like some of the critical steps, like where we coat the uranium with the coating layers of TRISO. We already have exceptional yields there. So there are other steps that we're focused on. We're doing the engineering and technology development to push those yields higher, too, and that's going to directly result in higher margins. But remember, we want to be an enabler in this market, right? So our story has been that we're going to continue offering lower and lower prices to our customers over the years, because when we realize these savings, we're going to pass it on to our customers. Kevin HarrillCFO at Standard Nuclear00:59:05Our intent has been to maintain these healthy margins that we have, and as we increase higher yield, higher operational efficiency, cost savings due to scale, we are going to pass all that to our customers because we want their business to proliferate and expand into starting with the government, commercial behind the meter, and ultimately grid and a variety of other applications. Operator00:59:30Our last question comes from Chris Dendrinos with RBC. Please unmute and ask your question. Chris DendrinosVP of Equity Research at RBC00:59:37Yeah, great. Good morning, and thanks for taking the question. Maybe I wanted to dive in a bit into these, the R&D efforts here, and maybe specifically the shipping transportation opportunity. I think you mentioned you are progressing through Part 71. I guess, how do you think about the timing of getting that approval in place, and then are there other gating factors, as far as the industry goes to being able to start transportation? Thanks. Kurt TerraniPresident and CEO at Standard Nuclear01:00:10Yeah. Fantastic question. Transportation is a key part. Delivering the fuel involves making it and then packaging and delivering it to a customer. There are packages available today, but frankly speaking, they are inefficient in the amount of material at the enrichments that our customers use. That is the payload material that they can transport. We are pursuing development and licensing of two, what we consider, highly efficient packages for transportation of this type of fuel to our customers. Kurt TerraniPresident and CEO at Standard Nuclear01:00:47We are doing that under Part 71, with the Nuclear Regulatory Commission. We have started the engagement with NRC this year, and we expect to own the resulting licenses, for these packages. A lot of the work right now is on the development and preparation of the SAR, safety analysis report. We have got target dates to get in front of the NRC staff and do all the additional testing that they require under Part 71. Ultimately, we expect these packages, these two packages, to be available in the 2028 and one in the 2029 timeframe. In the meantime, there is less efficient packages that are available, like we have used to deliver fuel to our existing customers. We want to make this, again, a lot more seamless and a lot more cost-effective for these folks to receive their fuel. Chris DendrinosVP of Equity Research at RBC01:01:42Got it. Thanks. Maybe just separately, as I look at the backlog and the pipe today, I guess maybe the backlog, it is obviously heavily skewed towards companies supporting government programs, Project Janus program, ANPI. I think you mentioned that Radiant and Equinix have an agreement as well. What is the kind of progression here, or I guess as you talk to these customers, how are they thinking about bridging from a DOE license to an NRC license to being able to start commercial deployments? How do you guys factor that into, I guess the cadence of your build-out? Thanks. Kurt TerraniPresident and CEO at Standard Nuclear01:02:27Yeah. Again, we are seeing everything we wanted to see. Aside from the government anchor customer, we are delighted to see that the customers that we are talking about today have commercial customers. There are a lot of companies we are not talking about right now, but we are not naming them, that we are discussing with, and they are going after purely commercial projects. The commercial projects are real. Just like we talked about our licensing platform where we have facilities under Department of Energy jurisdiction, we have facilities under NRC, and we have the ability, and we have started the process to give ourselves the optionality to transition some of our facilities, if we choose to, from the DOE to NRC authorization. Those reactor companies benefit from the same exact memorandum of understanding and the agreement between the Department of Energy and NRC. Kurt TerraniPresident and CEO at Standard Nuclear01:03:15They are enjoying also the improvements and the efficiencies that have been realized the last year and a half or so in the regulatory process. I think really those commercial deployments is going to be gated by commercial factors and the ability for these reactor developers to deliver those reactors to those commercial sites. We will be on standby to support them and make sure when the reactor gets there or when it is about to turn on, it has the fuel that it needs to run on. Operator01:03:49That concludes our question and answer session. Thank you for joining the Standard Nuclear Second Quarter 2026 Earnings Call. A replay will be available on the investor relations section of the company's website. You may now disconnect.Read moreParticipantsExecutivesChris KoscielniakHead of Investor RelationsKurt TerraniPresident and CEOKevin HarrillCFOAnalystsRinny SinghEquity Research Associate at Bank of AmericaTyler BissetEquity Research Associate at Goldman SachsMark ShooterAnalyst at William BlairNick AmicucciDirector of Equity Research at EvercoreStephen GengaroManaging Director at StifelChris DendrinosVP of Equity Research at RBCPowered by