STORAGENERGY TECHNOLOGIES INC Federal Contracts — Government Award History
Total (All Time)$2M
Latest FY$2M
Primary AgencyDepartment of Defense
STORAGENERGY TECHNOLOGIES INC has received $2M in total federal contract awards
across 1 fiscal year(s). Peak year was FY2022 ($2M).
Primary awarding agency: Department of Defense.
Data covers largest contracts by award amount. Source: USASpending.gov (FPDS).
Awards by Fiscal Year
| Year | Spending | Total | Contracts | Top Agency |
|---|---|---|---|---|
| FY2022 | $1.9M | 5건 | Department of Defense |
Notable Contracts
| Date | Agency | Amount | Description |
|---|---|---|---|
| 2023-09-27 | Department of Defense | $1.7M | SBIR PHASE II TOPIC A224-017, XTECH SEARCH 6 SBIR FINALIST OPEN TOPIC COMPETITIO |
| 2023-09-21 | Department of Defense | $1.2M | STTR PHASE II BASE AWARD-BAA: ARMY STTR 21.C (STTR) A LONG DURABILITY AND HIGH P |
| 2022-05-01 | Department of Defense | $1.1M | STTR PHASE II: ADDITIVE MANUFACTURING OF THERMOSET POLYMERS USING PROJECTION-BAS |
| 2019-08-15 | Department of Defense | $1,000,000 | STTR PHASE II AWARD |
| 2019-09-25 | Department of Defense | $751,507 | STTR PHASE II |
| 2022-03-11 | Department of Defense | $259,613 | THIS SBIR FIRM FIXED PRICE CONTRACT IS FOR 3D-PRINTED SOLID-STATE RESERVE MICRO- |
| 2026-01-12 | Department of Defense | $250,000 | STTR PHASE I TOPIC A25D-008: ADVANCED FIBER-BASED ELECTRONIC BATTERY SYSTEM |
| 2022-09-15 | Department of Defense | $250,000 | STORAGENERGY TECHNOLOGIES – SBIR PHASE I – TOPIC: A224-017 |
| 2022-04-28 | Department of Defense | $179,500 | STTR PHASE 1 |
| 2020-11-01 | Department of Defense | $171,500 | STTR PHASE I- ADDITIVE MANUFACTURING OF THERMOSET POLYMERS USING PROJECTION-BASE |
| 2022-07-25 | National Aeronautics and Space Administration | $156,499 | EO14042 PHASE I NONDESTRUCTIVE INSTRUMENTATION FOR REAL-TIME ON-DEMAND BATTERY S |
| 2021-09-29 | Department of Defense | $146,500 | SBIR PHASE I |
| 2020-08-10 | Department of Defense | $111,483 | SBIR PHASE I-EFFICIENT POTASSIUM FORMATE PRODUCTION BY ELECTROCHEMICAL CO2 REDUC |