Rtx Corp
Capital Timeline
Capital this company has received, each line traceable to a primary record. Amounts are obligations, not contract ceilings.
A blank stage means the data is not ingested yet, not that the money stopped there.
Across the lifetime of these contracts, $333.7M has been obligated and $0 paid out. $333.7M has not been disbursed.
Cumulative from contract start through 2026-08-24. The total above covers only the transactions ingested in the tracking window — a different measure.
- Department of the Navy$1.16B7
- Department of the Air Force$304.9M3
- NASA$495K2
- Dept. of Energy$01
Group total $1.56B. The total above covers this legal entity only. Awards are recorded per entity, so which figure to read depends on the question — the entity if you are dealing with it, the group if you are tracking where capital lands.
- Lockheed Martin Corporation$16.80B
- Raytheon Company$6.34B
- The Boeing Company$3.96B
- Northrop Grumman Systems Corporation$3.56B
- Electric Boat Corporation$3.34B
- Dynetics, Inc.$729.5M
Aggregated from the largest awards in this theme; companies built on many small awards will not appear here.
Why It Matters
Not enough signal yet to assess this company's relevance to Japanese firms.
Events
Events used as evidence for Stage / LCI. Facts and interpretation are recorded separately.
RTX CORPORATION — Grant DEFE0032348
ELECTROCHEMICALLY MEDIATED AIR SEPARATION MODULES (EM-ASM) TO ADVANCE THE TECHNOLOGY READINESS LEVEL (TRL) OF A NOVEL ELECTROCHEMICALLY ACTIVATED OXYGEN SORBENT AND ELECTROCHEMICAL REACTOR COMBINATION.THE PROJECT TARGETS THE DEVELOPMENT OF A SCALABLE, EFFICIENT, COST-EFFECTIVE, AND DURABLE ELECTROCHEMICALLY MEDIATED OXYGEN SEPARATION TECHNOLOGY THAT GENERATES OXYGEN OF SUFFICIENT PURITY TO ENABLE HIGH-QUALITY SYNGAS PRODUCTION AND EFFICIENT PRE-COMBUSTION CARBON CAPTURE FOR HYDROGEN PRODUCTION FROM GASIFICATION OF BIOMASS AND WASTES. THE PROPOSED PROJECT IS COMPRISED OF FOUR MAJOR TECHNICAL ELEMENTS: (1) THEORETICAL SCREENING OF CANDIDATE TRANSITION METAL (TM) COMPLEXES VIA MOLECULAR MODELING FOR KEY METRICS FOR AN ELECTROCHEMICALLY ACTIVATED OXYGEN CARRIER WHICH MAY INCLUDE REVERSIBLE POTENTIAL, SOLUBILITY, AND OXYGEN BINDING, (2) SYNTHESIS AND EXPERIMENTAL SCREENING OF PROMISING CANDIDATE TM COMPLEXES, (3) SMALL-SCALE REACTOR DESIGN, FABRICATION, AND TESTING OF PROMISING TM COMPLEX
Timeline
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