Opportunity Information: Apply for DE FOA 0003236
The U.S. Department of Energy, through the Office of Energy Efficiency and Renewable Energy (EERE) and its Advanced Materials and Manufacturing Technologies Office (AMMTO), is soliciting proposals under the funding opportunity titled "Platform Technologies for Transformative Battery Manufacturing" (DE-FOA-0003236). The core intent is to move beyond one-off manufacturing improvements and instead develop platform technologies that can be reused, scaled, and adapted across multiple battery chemistries and designs. The FOA emphasizes manufacturing approaches that are flexible, scalable, and highly controllable, with the broader aim of strengthening domestic capability to produce next-generation energy storage technologies reliably and at high volume.
The opportunity is organized around two main thrusts. The first is "Platforms for Next Generation Battery Manufacturing," which focuses on making emerging battery technologies manufacturable at scale by tackling practical production constraints early, including equipment choices, process windows, repeatability, throughput, quality, and integration of components into complete systems. Within this area, AMMTO highlights three specific technology targets. One target is sodium-ion batteries, where the FOA is looking for advances in the processes and machines needed to manufacture sodium-ion battery components and cells efficiently and consistently. Another target is flow batteries, with an emphasis on process development and design-for-manufacturability so that flow battery components and architectures can be produced in ways that are practical for mass production rather than limited to custom or low-volume builds. The third target involves nanolayered films for energy storage, where the challenge is scaling manufacturing methods that can produce these films with the required uniformity, control, and throughput needed for real-world deployment.
The second thrust is "Smart Manufacturing Platforms for Battery Production." This area is aimed at modernizing and "digitizing" battery manufacturing by leveraging smart manufacturing methods to improve production performance. In practice, this typically means approaches that make manufacturing more data-driven and adaptive, such as improved sensing and metrology, automated monitoring and control, advanced analytics, digital tools that link design to production, and factory-level strategies to reduce variability and downtime while improving yield and quality. The FOA frames this as a way to revolutionize battery production by capturing the benefits of smart manufacturing, which usually includes faster learning cycles, more consistent output, and better ability to scale from pilot to full production.
Awards are expected to be made as cooperative agreements, which generally indicates substantial involvement by DOE during the project period (for example, active technical collaboration, milestone reviews, and alignment with program objectives). The awarding office is listed as the Golden Field Office, and the opportunity is categorized under energy assistance with CFDA number 81.086. The FOA anticipates making about 18 awards, with an award ceiling of $4,100,000 per project. Eligibility is listed broadly as "Others," and the official eligibility rules, cost share expectations (if any), required deliverables, and submission requirements are located in the full announcement on EERE Exchange.
The submission deadline shown in the source information is May 7, 2024, and applicants are directed to EERE Exchange for the complete FOA text, including the detailed topic descriptions and the specific evaluation criteria in Section III.A. Anyone considering applying would need to use that section to align their technical approach, project scope, and milestones to the stated topic areas, since DOE typically scores proposals heavily on how directly the work advances the FOA goals around scalable processes, manufacturing-ready equipment, and smart manufacturing-enabled improvements in quality, throughput, and control.Apply for DE FOA 0003236
- The Golden Field Office in the energy sector is offering a public funding opportunity titled "Platform Technologies for Transformative Battery Manufacturing" and is now available to receive applicants.
- Interested and eligible applicants and submit their applications by referencing the CFDA number(s): 81.086.
- This funding opportunity was created on 2024-01-29.
- Applicants must submit their applications by 2024-05-07. (Agency may still review applications by suitable applicants for the remaining/unused allocated funding in 2026.)
- Each selected applicant is eligible to receive up to $4,100,000.00 in funding.
- The number of recipients for this funding is limited to 18 candidate(s).
- Eligible applicants include: Others.
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Frequently Asked Questions (FAQs): Platform Technologies for Transformative Battery Manufacturing (DE-FOA-0003236)
What is this funding opportunity?
This is a U.S. Department of Energy (DOE) funding opportunity titled "Platform Technologies for Transformative Battery Manufacturing" (DE-FOA-0003236), released through the Office of Energy Efficiency and Renewable Energy (EERE) and its Advanced Materials and Manufacturing Technologies Office (AMMTO).
What is the main goal of the FOA?
The core goal is to develop reusable, scalable "platform" manufacturing technologies for batteries, rather than one-off process improvements. The emphasis is on approaches that can be adapted across multiple battery chemistries and designs and that strengthen domestic capability to produce next-generation energy storage technologies reliably and at high volume.
What does DOE mean by "platform technologies" in this FOA?
Based on the FOA summary, "platform technologies" refers to manufacturing methods, equipment approaches, and enabling capabilities that can be reused, scaled, and adapted across different battery types and designs, instead of being narrowly optimized for only a single chemistry or product configuration.
How is the opportunity structured?
The FOA is organized around two main thrusts: (1) Platforms for Next Generation Battery Manufacturing and (2) Smart Manufacturing Platforms for Battery Production.
What is Thrust 1: Platforms for Next Generation Battery Manufacturing?
This thrust focuses on making emerging battery technologies manufacturable at scale by addressing real-world production constraints early. The FOA highlights areas such as equipment choices, process windows, repeatability, throughput, quality, and integrating components into complete systems.
Which technology targets are highlighted under Thrust 1?
AMMTO highlights three specific technology targets under Thrust 1: sodium-ion batteries, flow batteries, and nanolayered films for energy storage.
What is DOE looking for related to sodium-ion batteries?
The FOA is seeking advances in the processes and machines needed to manufacture sodium-ion battery components and cells efficiently and consistently, with an emphasis on practical manufacturability and repeatable production.
What is DOE looking for related to flow batteries?
The FOA emphasizes process development and design-for-manufacturability so that flow battery components and architectures can be produced in practical, mass-producible ways rather than remaining limited to custom or low-volume builds.
What is DOE looking for related to nanolayered films for energy storage?
The FOA identifies the challenge of scaling manufacturing methods to produce nanolayered films with the uniformity, controllability, and throughput needed for real-world deployment.
What is Thrust 2: Smart Manufacturing Platforms for Battery Production?
This thrust focuses on modernizing and "digitizing" battery manufacturing using smart manufacturing methods to improve production performance. The FOA frames this as a pathway to more consistent output and improved ability to scale from pilot production to full production.
What kinds of activities fit within "smart manufacturing" for this FOA?
Examples described in the summary include improved sensing and metrology, automated monitoring and control, advanced analytics, digital tools that link design to production, and factory-level strategies aimed at reducing variability and downtime while improving yield and quality.
What benefits does the FOA associate with smart manufacturing approaches?
The FOA associates smart manufacturing with faster learning cycles, more consistent output, and better ability to scale manufacturing while improving yield, quality, throughput, and process control.
What type of award will DOE make under this opportunity?
Awards are expected to be made as cooperative agreements.
What is a cooperative agreement in this context?
The summary indicates cooperative agreements generally involve substantial DOE involvement during the project period, such as active technical collaboration, milestone reviews, and alignment with program objectives.
Which DOE office is listed as the awarding office?
The awarding office is listed as the Golden Field Office.
How many awards does DOE expect to make?
The FOA anticipates making about 18 awards.
What is the maximum award amount per project?
The award ceiling is $4,100,000 per project.
What is the CFDA number and program category?
The opportunity is categorized under energy assistance with CFDA number 81.086.
Who is eligible to apply?
Eligibility is listed broadly as "Others." The official eligibility rules are provided in the full announcement on EERE Exchange.
Is cost share required?
The summary notes that cost share expectations (if any) are located in the full announcement on EERE Exchange.
Where can applicants find the official FOA details and requirements?
The full announcement is posted on EERE Exchange and contains the official eligibility rules, required deliverables, submission requirements, and detailed topic descriptions.
What is the application deadline?
The submission deadline shown in the provided information is May 7, 2024.
Where are the evaluation criteria described?
The evaluation criteria are referenced as being in Section III.A of the full FOA text on EERE Exchange.
What should applicants focus on to align with DOE's interests in this FOA?
The summary indicates DOE will score proposals heavily on how directly they advance the FOA goals, including scalable processes, manufacturing-ready equipment, and smart manufacturing-enabled improvements in quality, throughput, and controllability.
Does the FOA prioritize one-off process improvements?
No. The FOA explicitly emphasizes moving beyond one-off improvements and instead developing platform approaches that can be reused and adapted across multiple battery chemistries and designs.
Does the FOA emphasize scaling from pilot to high-volume production?
Yes. The summary highlights scalability and reliability at high volume, and it describes smart manufacturing as improving the ability to scale from pilot to full production.
Does the FOA address manufacturing integration and complete systems?
Yes. Under the first thrust, the FOA mentions integration of components into complete systems as part of addressing practical production constraints.
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