Stand-in Attack Weapon (SiAW) AUR Sources Sought

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Title:  

Stand-in Attack Weapon (SiAW) AUR Sources Sought

Agency:  

U.S. Department Of Defense

State:  

Florida

NAICS Code:  

336414

Industry:  

Aerospace and Defense

Solicitation Type:  

Request for Information

Solicitation ID:  

SiAW-RFI-2026-001

Open Date:  

3/4/2026

Close Date:  

3/19/2026

Project Duration:  

48 months

Last Updated:  

Description:
The United States Air Force is seeking information from potential sources capable of providing a Stand-in Attack Weapon (SiAW) equivalent missile system. The system should include hardware and software, as well as logistics elements, trainers, and verification elements. The Air Force is looking for a system that can engage targets at significant standoff distances, with advanced targeting capabilities, electronic counter-countermeasures, and high lethality. The system should also be compatible with existing launch platforms and infrastructure. • The system must have extended range capabilities • The system must have advanced targeting capabilities, including anti-radiation seeker and precision navigation and guidance • The system must have electronic counter-countermeasures capabilities • The system must have high lethality and be able to engage a wide range of targets • The system must be compatible with existing launch platforms and infrastructure, including the F-35, F-16, F-47, and B-21.
Attached Files:

Please visit the bid source via the “Link to Bid Source” button below for documentation.

Contact Information:

Diana Graziano

diana.graziano@us.af.mil

(850) 882-1403

Budget Estimate (AI):

$500,000,000 – $2,000,000,000

The budget for this opportunity is difficult to estimate, as the document does not provide a specific amount. However, based on the description of the system and the fact that the Air Force is seeking a system that can engage targets at significant standoff distances, it is likely that the budget will be in the hundreds of millions of dollars. The Air Force is also seeking a system that can be produced in quantities of up to 600 units per year, which suggests that the budget could be substantial. A rough estimate of the budget could be between $500 million and $2 billion, depending on the complexity of the system and the production costs.

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