What the FY2027 request buys
Verbatim from the R-2A exhibit for project 63670A of PE 0603601F. This is the budget justification's own description of work that has not happened yet — the one thing no other level of the budget carries.
- Complete demonstrating and assessing advanced distributed, embedded fuzing concepts for weapons long-term safety, survivability, and functionality, maturing high-speed weapon technologies to increase effectiveness across a diverse target set. Activities include finalizing technical data package and delivering for operational use. - Continue advanced development of ordnance technologies for tailored lethality through controlled fragmentation, enabling significantly improved air-to-air weapon lethality. Activities include arena tests of warhead design for an acquisition program. - Complete collecting complex arena test data for implementation into lethality modeling and simulation tools, maturing advanced ordnance technologies for rapid transition into high-speed strike weapon concepts. Activities include updating and testing analysis tools. - Complete developing test capabilities and high-fidelity analysis tools to quickly generate more accurate weaponeering data, maturing advanced ordnance technologies for rapid transition into high-speed strike weapon concepts. Activities include updating and testing analysis tools. - Complete developing advanced ordnance technologies for high-speed impact, maturing high-speed weapon technologies to increase effectiveness focusing on maritime targets. Activities include finalizing and delivering analysis tools for accurate weaponeering. - Complete developing advanced ordnance technologies/methodologies for functional defeat, maturing high-speed weapon technologies to increase effectiveness across a diverse target set. Activities include finalizing technical data package and delivering for operational use. - Complete conducting lethality analyses for weapons and lethality/survivability tools at the meso/micro-scale, maturing high-speed weapon technologies to increase effectiveness across a diverse target set. Activities include finalizing technical data package and delivering for operational use. - Complete the development of high-fidelity test capabilities and analysis tools to evaluate ordnance technologies in relevant environments, maturing state-of-the-art for maritime engagements with digital demonstrations. Activities include updating and testing analysis tools. - Complete incorporation of previously developed material models and improve/advance additional joint kinetic/directed energy common target models, improving joint kinetic and directed energy analysis tools. Activities include finalizing and delivering analysis tool to system program office. - Complete synthesis and incorporation of warhead models for progressive collapse, multiple point initiation, and other models to include those supportive of coordinated and distributed impact, maturing high-speed weapon technologies to increase effectiveness across a diverse target set. Activities include updating and testing analysis tools. - Commence conducting lethality analyses for weapons and lethality/survivability tools at the meso/micro-scale, maturing subsonic affordable mass weapon technologies to increase effectiveness across a diverse target set. Activities include updating and testing analysis tools. - Commence increased core lethality analyses and development of operational target vulnerability data to assess weapon concept effectiveness across a diverse target set. Activities include updating and testing analysis tools. - Commence synthesis and incorporation of warhead models for secondary debris, including those supportive of single large mass projectile impact, to mature hypersonic weapon technologies to increase effectiveness across a diverse target set. Activities include finalizing and delivering warhead models in lethality analysis tools. - Commence hypersonic weapon component design, weapon integration design and digital model development of warheads, explosives, fuzing and dispense technologies for hypersonic weapon applications, maturing open architecture standards for rapid transition to hypersonic weapon programs. Activities include establishing contracts for design enhancements based on initial assessments. - Commence optimized explosive fill integration into inventory warhead to deliver improved maritime lethality at low cost with mass. Activities include transitioning explosive into production, conducting full system qualification, and include updating weapon Operational Flight Program and flight testing. - Commence maturation of manufacturing and modeling tools of next-generation energetics for Advanced Shaped Charges, enabling development and miniaturization of ultra-high lethality weapon, accelerated design, and optimization of ordnance structures. Activities include warhead testing to quantify benefit of new CL-20 based Combined Effects Explosive in shape charge applications, and calibration of high-fidelity reactive flow models of advanced materials in collaboration with Los Alamos National Laboratory. - Commence developing test capabilities and high-fidelity analysis tools to quickly generate more accurate weaponeering data, maturing advanced ordnance technologies for rapid transition into hypersonic strike weapon concepts. Activities include finalizing and delivering analysis tools for accurate weaponeering. - Commence studies, assessments, digital modeling and analysis of warheads, explosives, fuzing and dispense technologies from components up through integrated designs for hypersonic weapon applications, maturing hypersonic weapon technologies for increased affordability, manufacturability and compatibility with open architecture standards. Activities include concluding studies and presenting data to operational stakeholders. - Commence studies, assessments, digital modeling and analysis of warheads, explosives, fuzing and dispense technologies for long-range, supersonic weapon applications, maturing supersonic weapon technologies for increased affordability, manufacturability and compatibility with open architecture standards.
FY 2027 increased compared to FY 2026 by $16.845 million for FY 2027 contract awards enhancing supersonic/hypersonic ordnance design, activities that will transition counter-maritime technologies into production, and next-generation energetics development. This increase reflects the urgent need to develop more affordable and easily producible components for supersonic/hypersonic munitions, high-speed weapons, low-cost cruise capabilities, and munitions technologies optimized for maritime attack.
FY2026: the year under way
Prior-year accomplishments and current-year plans from the same exhibit. Context for the FY2027 plan, not a series — an activity partitions its project exactly in the request year, but can under-cover it in earlier years.
- Continue demonstrating and assessing advanced distributed, embedded fuzing concepts for weapons long-term safety, survivability, and functionality, maturing high-speed weapon technologies to increase effectiveness across a diverse target set. - Continue advanced development of ordnance technologies for tailored lethality through controlled fragmentation, enabling significantly improved air-to-air weapon lethality. - Continue collecting complex arena test data for implementation into lethality modeling and simulation tools, maturing advanced ordnance technologies for rapid transition into high-speed weapon concepts. - Continue developing test capabilities and high-fidelity analysis tools to quickly generate more accurate weaponeering data, maturing advanced ordnance technologies for rapid transition into high-speed strike weapon concepts. - Continue developing advanced ordnance technologies for high-speed impact, maturing high-speed weapon technologies to increase effectiveness with a focus on maritime targets. - Continue developing advanced ordnance technologies/methodologies for functional defeat, maturing high-speed weapon technologies to increase effectiveness across a diverse target set. - Continue conducting lethality analyses for weapons and lethality/survivability tools at the meso/micro-scale, maturing high-speed weapon technologies to increase effectiveness across a diverse target set. - Continue the development of high-fidelity test capabilities and analysis tools to evaluate ordnance technologies in relevant environments, maturing state-of-the-art for maritime engagements with digital demonstrations. - Continue incorporation of previously developed material models and improve/advance additional joint kinetic/directed energy common target models, improving joint kinetic and directed energy analysis tools. - Continue synthesis and incorporation of warhead models for progressive collapse, multiple point initiation, secondary debris, and other models to include those supportive of coordinated and distributed impact, maturing high-speed weapon technologies to increase effectiveness across a diverse target set.
Three years, and no five-year plan
An R-2A activity publishes the prior year, the current year and the budget year. The FYDP outyears exist at project and program-element level and are deliberately absent here rather than inferred. Estimate types are colored and never summed into one figure.
| Fiscal Year | Estimate Type | Amount ($M) |
|---|---|---|
| FY2025 | Actual | 33.9 |
| FY2026 | Enacted | 27.4 |
| FY2027 | Request | 44.2 |
This activity is 34% of project 63670A's FY2027 request and 34% of PE 0603601F's. In the request year the activities under a project sum to it exactly; in the current year they under-cover it in about 9% of cases, so an activity's delta can legitimately exceed its parent's and the two must not be compared row to row.
4 activities in project 63670A
Every R-2A line of this project, largest FY2027 request first. Linked where the activity has enough of its own narrative to carry a page; the rest are shown in full on the project page.