Azimuth https://navigatingenergy.com/ Landing Wed, 24 Jun 2026 22:57:58 +0000 en-US hourly 1 https://wordpress.org/?v=7.0.5 https://navigatingenergy.com/wp-content/uploads/2024/09/Azimuth-White-Transparent-1-4-150x150.png Azimuth https://navigatingenergy.com/ 32 32 Semiconductor Supply Chains and the Critical Minerals Gap https://navigatingenergy.com/semiconductor-supply-chains-and-the-critical-minerals-gap/ Mon, 01 Jun 2026 09:00:13 +0000 https://navigatingenergy.com/?p=13062 The semiconductor industry leads all major critical mineral intensive manufacturing sectors – including
clean energy and defense – in both profit margins and growth, fueled by AI driven demand for chips and
data center infrastructure. However, this industry faces existential risk from an unpredictable supply of
critical minerals and metals driven by rising geopolitical risk and single source disruption. Every layer of
the semiconductor stack, from equipment to memory, depends on critical minerals sourced almost
exclusively through China, which has tightened rare earth export controls that expose semiconductor
companies to multi billion-dollar revenue risk. Azimuth has launched Nexaltis Minerals, a customer led
critical minerals processing platform dedicated to addressing resiliency for AI and semiconductor supply
chains. Nexaltis Minerals is aggregating critical minerals demand across the full chipmaking stack and
building midstream commercial scale critical minerals production, with an initial project focused on heavy
rare earth elements (HREEs).

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Executive Summary

The semiconductor industry leads all major critical mineral intensive manufacturing sectors – including clean energy and defense – in both profit margins and growth, fueled by AI driven demand for chips and data center infrastructure. However, this industry faces existential risk from an unpredictable supply of critical minerals and metals driven by rising geopolitical risk and single source disruption. Every layer of the semiconductor stack, from equipment to memory, depends on critical minerals procured from intensively concentrated production sources that expose semiconductor companies to multi billion-dollar revenue risk. Azimuth has launched Nexaltis Minerals, a customer led critical minerals processing platform dedicated to addressing resiliency for AI and semiconductor supply chains. Nexaltis Minerals is aggregating critical minerals demand across the full chipmaking stack and building midstream commercial scale critical minerals production, with an initial project focused on heavy rare earth elements (HREEs).

Why Semiconductors Are the Strongest End Market for Critical Minerals

Semiconductor manufacturing generates margins that most industrial sectors cannot approach, with gross margins spanning 25% at foundries (physical chip manufacturing) to 55% and above in lithography (machines that etch circuit patterns onto silicon) . The margins are protected because switching costs are enormous and qualification timelines are long, meaning customers have little choice but to pay. A modern fab costs tens of millions of dollars per day to operate at capacity. Any input shortage that stops the line is catastrophic relative to the cost of the input itself. When it comes to critical minerals, the cost of the mineral is negligible compared to production downtime.

However, the global semiconductor industry’s upstream suppliers are subject to existential global policy interventions in the form of export controls on rare earth elements (REEs), gallium, germanium, and tungsten, to name a few examples – all of which are critical for semiconductor and electronics production. For two of the most important semiconductor HREEs, dysprosium and terbium, countries outside of China are expected to meet less than a fifth of demand by 2035.

This dynamic makes the semiconductor supply chain the most durable end user for critical minerals. Companies qualify suppliers over years and remain sticky customers. A mineral processor that achieves semiconductor grade qualification sits in a position that is difficult to displace and nearly impossible for a late entrant to replicate quickly. Supplying the critical minerals relevant to each layer of the stack is, in that sense, closer to contracted infrastructure than to commodity supply.

Critical Mineral Demand Across the Semiconductor Stack

The type and form factor of critical minerals for semiconductor and electronics supply chains depends on the use case. Each layer demands specific inputs tied to its core processes, and for the majority of those inputs, processing capacity is concentrated in a handful of countries, creating a structural dependency that Western supply chains have only started to address. Below is a description of players tied to each layer of the global semiconductor supply stack, from those closest to raw materials, such as the equipment makers and subsystems (tools and specialty chemicals) to the downstream memory companies that drive their metals procurement cycle.

Equipment. The world’s leading equipment makers supply deposition and etching tools to every fab. These systems require tungsten for hard coatings and contact layers and HREEs including dysprosium and terbium for the high-performance magnets in their motors and actuators.

Subsystems and Component Suppliers. These companies produce lasers, optics, process control systems, and vacuum components for buyers across the entire semiconductor stack. Gallium and germanium are essential for compound semiconductor lasers and infrared optics. HREEs such as gadolinium are used in logic chips and memory devices, and magnetic materials such as terbium and dysprosium are used in electronic applications.

Lithography. Extreme ultraviolet (EUV) systems – the only commercially viable technology for sub-5nm logic manufacturing – depend on dysprosium for magnet systems and tin for the EUV plasma source. This industry has one primary supplier, thus customers face prohibitively high near-term switching costs, but this supplier is simultaneously dependent on hard-to-source minerals.

Foundries. These companies deploy gallium-based processes in advanced packaging and compound semiconductor lines. Gallium nitride and gallium arsenide are central to the radio frequency and power devices that AI hardware increasingly requires.

Memory. These companies produce memory chips that rapidly store and retrieve information to perform billions of calculations that enable data to be processed and consumed in mobile devices, server farms, and today’s growing AI applications. . Tungsten interconnects run through every memory device. Germanium is used in phase change memory and advanced node processes.

Why the Industry Cannot Solve This Alone: Nexaltis Minerals

The semiconductor industry’s critical mineral exposure is well understood across the value chain. However, individual buyers, including equipment makers, memory producers, and logic foundries, require volumes too small to justify the capital to anchor a singular, dedicated processing project on their own. The reward for solving the critical mineral supply chain benefits the entire industry, but the bill cannot fall on individual actors.

A demand aggregation market mechanism is an option to service the critical mineral needs of the semiconductor industry. By assembling offtake of critical minerals spanning the full stack of equipment makers, subsystem suppliers, foundries, and memory producers, the volume needed to anchor a Western processing project becomes accessible. With contracted offtake, a critical minerals processing project becomes bankable. The coalition approach distributes the commitment across buyers who collectively have far more ability to anchor a processing project.

Nexaltis Minerals is Azimuth’s development company built to serve as a critical minerals processing platform to produce semiconductor and electronics grade materials with a North America-led vertically integrated approach. Nexaltis Minerals sources advantaged feedstocks and established processing needed to convert those feedstocks into high value mineral products. Extensive customer conversations have shown the semiconductor industry to be highly collaborative and demand for a platform like Nexaltis Minerals is strong. Nexaltis is positioned to play a central role in providing resilient critical mineral supply chains over the next decade.

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New West Data Corp Signs Letter of Intent with Entrada Resources Inc https://www.globenewswire.com/news-release/2026/05/19/3297238/0/en/new-west-data-signs-letter-of-intent-to-acquire-significant-oil-and-gas-assets-near-rocky-mountain-house-alberta.html#new_tab Tue, 19 May 2026 15:00:49 +0000 https://navigatingenergy.com/?p=13356 New West Data Corp. (“New West Data”), North America’s first vertically integrated oil and gas producer and off-grid digital infrastructure operator, today announced that it has signed a Letter of Intent with Azimuth Capital Management (“Azimuth”) to acquire Entrada Resources Inc. (“Entrada Resources”). The proposed transaction is expected to more than triple production to 4,500 BOE/d and more than double self-powered off-grid compute capacity to 35 MW, with plans to expand off-grid compute beyond bitcoin mining into high-density HPC and AI.

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The North American Grid at an Inflection Point https://navigatingenergy.com/the-north-american-grid-at-an-inflection-point/ Sun, 01 Mar 2026 09:00:25 +0000 https://navigatingenergy.com/?p=13054 The North American grid is entering a structurally different phase. From 2000 to 2020, US electricity demand was essentially flat, growing at under 0.5% per year as efficiency gains offset population and economic growth. The system now faces a sharp reversal: concentrated industrial demand driven by AI data centers, electrification, and reshoring is pushing load growth to levels not seen in over 70 years. Interconnection queues are expanding, reserve margins are tightening, and transmission timelines are increasingly incompatible with hyperscaler deployment schedules.

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Monolith Will Expand Carbon Black Output, Build Data Center at Hallam Campus https://journalstar.com/news/local/business/article_5f3818f1-634a-462f-9da0-9d3dbabb9ead.html#new_tab Wed, 25 Feb 2026 09:00:53 +0000 https://navigatingenergy.com/?p=13354 Monolith will expand carbon black output, build data center at Hallam campus, Nebraska

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Critical Materials for North America – Current and Future https://navigatingenergy.com/critical-materials-for-north-america-current-and-future/ Sat, 01 Nov 2025 09:00:33 +0000 https://navigatingenergy.com/?p=13060 2025 is defined by a return to energy pragmatism – in line with Azimuth’s view as expressed in our Q1 2025 paper “Azimuth’s Philosophy on the Energy Transition”. Indeed, other thought leaders Jason Bordoff and Meghan O’Sullivan agree in their recent coverage on the weaponization of energy and critical in a Foreign Affairs fall essayi. Forward-thinking investors must navigate not only business and technology risks, but also opportunities and pitfalls from government interventions spanning export bans, trade tariffs, stockpiling, and equity stakes intended to orchestrate specific flows of minerals among allies and foes. This paper highlights how Azimuth is positioned in the context of today's renewed focus on domestic security and supply chains, illustrated in two parts: (1) Azimuth portfolio company Monolith’s positioning as a critical materials producer, and (2) Azimuth’s positioning in critical minerals that targets expansion of U.S.–Canada–Japan metals refining capacity, security, and industrial revival.

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Trump Must Deregulate U.S. Energy to Unleash AI Dominance https://www.wsj.com/opinion/trump-must-deregulate-u-s-energy-to-unleash-ai-dominance-79033320#new_tab Thu, 10 Apr 2025 16:29:01 +0000 https://navigatingenergy.com/?p=12139 America’s vast natural gas reserves can power data centers and help it win the AI race with China. Combined with carbon capture, this strategy is also sustainable - and exactly what PureVolt Energy Systems is set out to do.

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