David Somo
Analyst · AmerX
Thank you, Jeff, and thank you to everyone joining us today. I'll begin with an update on our commercial progress from the start of the second quarter. Then Tim will review our financial results. And after our remarks, we look forward to your questions. Let me start with our lead Asia customer. We're finalizing our low current solid-state circuit breaker or SSCB prototype development for shipment to the customer later this month for their internal testing. B-TRAN-enabled SSCB prototypes are expected to be available from this customer for their 800-volt AI data center and energy grid customers in the fourth quarter of 2026. With initial low-volume orders to support the prototype builds also expected in the fourth quarter. Beyond that initial project in an order of priority, we are engaged with this customer on 2 additional projects, one for a medium current SSCB designed for 800-volt DC data centers, energy storage applications, EV charging and industrial microgrids and the second for a low current SSCB for smart industrial buildings. Technical discussions on the medium current SSCB are already underway. Second, under the letter of intent we signed in the second quarter, we advanced our co-development with an industry partner on a B-TRAN-enabled intelligent SSCB prototype for a planned evaluation by U.S. hyperscaler in its development for the NVIDIA Rubin Ultra 800-volt DC data center power system. We're targeting prototype delivery by the end of the fourth quarter of 2026. This prototype is also planned to be offered to additional hyperscalers and other AI data center operators adopting the NVIDIA Rubin Ultra Power architecture or comparable 800-volt DC AI data center power distribution systems for evaluation. The Ideal Power team will be attending the Open Compute Project Global Summit in October, together with our industry partner to introduce this intelligent SSCB prototype concept to AI data center and infrastructure providers for their consideration. Third, we delivered a second set of Gen 2 B-TRAN custom packaging samples and development kits to Stellantis for their evaluation. We are working closely with the customer on a detailed analysis of our solid-state contactor system-level specification to optimize the solution and align the remaining deliverables under the purchase order. While this has impacted the timing of our expected completions of deliverables under the PO, it is not delayed or otherwise impacted our expectations regarding the EV contactor opportunity with Stellantis. The deliverables we've completed support the next project milestone scheduled for the fourth quarter of 2026. We will work to promptly complete future deliverables as they are agreed with the customer to support subsequent project milestones. Fourth, we achieved an important operational milestone. We entered into a long-term supply agreement with a high-volume wafer foundry in Asia, not China, and achieved functional first silicon after initiating discussions with them in the first quarter of this year. This is an automotive-qualified fab that has built more than 1 billion power semiconductors. This foundry has the capacity to support high-volume industrial and automotive customers at a cost structure, we believe, supports our targeted gross margins at scale. Fifth, we're seeing accelerating demand to support 800-volt DC architectures from a growing number of potential customers, including leading global electromechanical breaker manufacturers now seeking SSCB solutions. I've been asked how we are helping customers speed up adoption. And I would like to take a moment to explain the progress we're making. We introduced a new SSCB reference design kit or RDK, to assist customers with evaluating our technology and accelerate the development of their own SSCB products. This is critical to adoption as companies that have traditionally supplied electromechanical breakers may not have internal expertise with solid-state solutions or may not have started developing SSCB products. With the rollout of 800-volt AI data center power architectures expected to start in the second half of next year, these companies need a close to market-ready solution to enable timely product introductions. We are already seeing traction as one of our distribution partners has placed its first stocking order for these SSCB RDKs for delivery in the coming weeks and multiple customers have requested access to our new RDKs. Sixth, after recently adding a Europe-based sales director, our team met with more than 20 potential customers at PCIM in Germany. Our European sales efforts have already led to early engagements with the European-based global automaker and Tier 1 automotive suppliers. We recently met with one of these global Tier 1s preproduction and production teams as we are finding significant interest in solid-state EV contactor and battery disconnect unit solutions. We also have a new engagement with the European-based circuit protection company interested in a broad set of applications, including solid-state breakers for data centers and energy storage as well as battery disconnect units for EVs. They're targeting both U.S. and European markets on an aggressive time line. Seventh, our newly formed Advisory Board now includes its first member, Dr. Sanjay Parthasarathi, Chief Marketing Officer of Coherent Corporation, a key supplier for AI data center infrastructure. Sanjay brings more than 35 years of leadership across data centers, optical networking and related technology markets, aligning with our near-term revenue opportunities. His deep market expertise and industry network directly support our plans to accelerate the commercialization of our high-value, high-impact solutions. Let me spend a moment on the data center market. When people picture the AI boom, they think graphics chips, processors and servers. But the bottleneck is increasingly power, getting it to the data center in distributing and managing it once there. The forthcoming migration to the 800-volt DC power architectures in AI data centers and the supporting energy infrastructure is a catalyst that is accelerating the demand for high-voltage power semiconductors. This is reflected in the industry's growing backlog for power semiconductors and is expected to drive rapid growth over the next several years. SSCBs are essential in high-voltage DC systems as they enable ultrafast fault handling for reliability. B-TRAN provides an ideal solution for solid-state circuit protection with its inherent bidirectional operation, low conduction losses, microsecond fault handling and 1200-volt rated operation provided ample safety margin for 800-volt power delivery systems. The industry is in the early stages of a secular megatrend in power semiconductors that presents an exciting growth opportunity. I'll briefly discuss our product reliability testing and qualification plans. A simple way to think about it is that industrial and automotive qualification typically reflect the requirements of each end market. JEDEC industrial qualification supports our near-term opportunities in AI data centers, energy storage and grid infrastructure markets while AECQ or automotive qualification is designed for automotive applications. Given the accelerating demand for power semiconductors to support AI data centers and energy infrastructure, which represent our nearest-term revenue opportunities, we are prioritizing work on industrial reliability testing and qualification. We plan to begin the industrial qualification process during the current quarter and completed in the fourth quarter. Automotive reliability testing and qualification will be planned to align with customer time lines. Importantly, automotive qualification is typically required for use in vehicle production but is not a gating item to advance product development for automotive opportunities, including our EV contactor opportunity with Stellantis. As such, adjusting the timing of automotive qualification is not expected to affect our sales opportunities. Our commercial progress is showing up in the size and quality of our sales funnel, which has grown to over $400 million in total revenue opportunity, up from about $300 million at our mid-May call. It's split roughly 50-50 between automotive and the combination of AI data centers and other industrial applications, and it is global. Applications are primarily SSCBs and solid-state EV contactors with growing interest in solid-state transformers, all of which broadly fit into the category of circuit protection. While growing funnel is encouraging, converting it into design wins, production orders and revenue remains our top priority. We are focused on execution and working closely with customers to complete their evaluations, product development and testing to advance projects through the funnel and into volume production orders and revenue growth. In closing, commercial momentum continued to build this quarter with prototype SSCB units being finalized for internal testing by our lead Asia customer, progress toward the planned evaluation of a co-developed intelligent SSCB prototype for U.S. hyperscaler, a growing pipeline of engagements with regional and multinational customers across multiple markets, and the rollout and first stocking order for our new SSCB reference design kit designed to accelerate customer adoption. We also achieved an important operational milestone by entering into a long-term supply agreement with a high-volume automotive qualified foundry that we expect to be a cost-effective partner for us for years to come. Overall, the industry's transition to high-voltage DC power architectures in AI data centers and energy infrastructure is serving as a catalyst for power semiconductors and solid-state circuit protection solutions, and B-TRAN enables a differentiated solution to fill that need. Our focus remains on advancing customer opportunities in the volume production orders, revenue growth and long-term shareholder value creation. Now I'd like to hand the call over to Tim Burns to review our financials. Tim?