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Ticker SLDP · Nasdaq · DE
Solid Power, Inc. is a U.S. business entity operating within the Miscellaneous Electrical Machinery, Equipment & Supplies sector (SIC 3690). Publicly traded on the Nasdaq under the ticker symbol SLDP, the company is incorporated in Delaware. Based on SEC EDGAR filings, SLDP reported fiscal year 2025 revenue of $17.9M, reflecting a year-over-year decline of 11.1%. Our proprietary Semantic Risk Score of 14 indicates high transparency and low reporting risk, derived from the frequency and consistency of 10-K, 10-Q, and 8-K filing patterns. As part of the SIC 3690 classification, Solid Power, Inc. serves as a key benchmark for investors and analysts monitoring Delaware corporate performance.
Comparison based on Standard Industrial Classification (SIC) mapping from SEC EDGAR filings.
Filing data sourced from SEC EDGAR signals. 10-K = annual report · 10-Q = quarterly · 8-K = material event.
⚠ Data quality note: Some metrics were filtered due to high volatility in XBRL tags. Only verified figures are shown below.
Solid Power, Inc. (SLDP) — Key efficiency & solvency metrics · FY2025
Debt-to-Equity
Sector avg: 1.17
Current Ratio
Sector avg: 2.52
| Key Metric | Company | Industry Avg | Status |
|---|---|---|---|
| Total RevenueYoY: -11.1% | $17.9M | $614.0M | ▼ Lagging |
| Net IncomeYoY: +3.2% | $-93,410,000 | — | — |
| Debt-to-EquityTotal liabilities / stockholders equity. Lower = safer. | 0.09 | 1.17 | ▲ Stable |
| Current RatioCurrent assets / current liabilities. Above 1.0 = solvent. | 15.92 | 2.52 | ▲ Outperform |
Source: SEC EDGAR XBRL filings (10-K annual reports). Industry benchmarks derived from 33 companies in SIC 3690.
Disclaimer: All financial data is sourced from raw SEC EDGAR filings. Sprytne.com provides automated data visualization and algorithmic analysis for informational purposes only. This is NOT financial advice, a recommendation to buy/sell, or a guarantee of accuracy. Always verify data via official SEC sources before making investment decisions.
Federal Contracts
IGF::OT::IGF BASIC RESEARCH FOR ALL SOLID-STATE RECHARGEABLE BATTERY FOR INTERCONTINENTAL BALLISTIC MISSILES
::IGF::OT::IGF SBIR PHASE II RESEARCH AND DEVELOPMENT. PROPOSAL B2-2068, ALL SOILD-STATE RECHARGEABLE BATTERIES FOR THROTTLEABLE DIVER ATTITUDE CONTROL SYSTEMS (TDACS)
HIGH ENERGY, LONG LIFE SOLID-STATE BATTERIES FOR AIR FORCE SPACECRAFT
IGF::OT::IGF THE USE OF LITHIUM (LI) METAL AS AN ANODE MATERIAL HAS EMERGED AS ONE HIGHLY ATTRACTIVE OPTION FOR ACHIEVING HIGH SPECIFIC ENERGY DUE TO LITHIUM HAVING THE HIGHEST CAPACITY (3876 MAH G-1) OF ALL POTENTIAL ANODE MATERIALS. HOWEVER, THE RELIABLE USE OF THESE EXCEPTIONALLY HIGH CAPACITY ANODES IN A COMMERCIAL CELL HAS NOT BEEN ACHIEVED DUE TO SAFETY AND RELIABILITY CONCERNS RESULTING FROM THERMAL RUNAWAY AND SHORT-CIRCUIT ISSUES DUE TO DENDRITIC GROWTH ON THE METAL ANODE FROM LITHIUM PLATING DURING CHARGE-DISCHARGE CYCLES. SOLID-STATE ELECTROLYTES (SSE) HAVE BEEN IDENTIFIED AS ONE OPTION TO ADDRESS THIS CELL FAILURE MODE, BUT SSE TECHNOLOGIES MUST BE DEVELOPED THAT COMBINE HIGH CONDUCTIVITY AND MECHANICAL PROPERTIES CONDUCIVE TO SMOOTH LI PLATING WITH FEASIBLE MANUFACTURING PROCESSES. ALSO, THE LI ANODE MUST BE COMBINED WITH AN ULTRA-HIGH CAPACITY CATHODE IN ORDER TO REACH NASA'S AGGRESSIVE CELL-LEVEL ENERGY GOALS. TO ADDRESS THIS NEED, SOLID POWER PROPOSES TO UTILIZE A LI-METAL-COMPATIBLE SOLID-STATE BATTERY DESIGN TO FAR EXCEED THE SPECIFIC ENERGIES ACHIEVED BY STATE-OF-THE-ART (SOTA) LI-ION BATTERIES IN A FORMAT THAT ALSO PROVIDES FOR INTRINSIC SAFETY AND ABUSE TOLERANCE. PHASE I WILL DEMONSTRATE THE FEASIBILITY OF SURPASSING 600 WH/KG AND 1000 WH/L AT THE CELL LEVEL WHICH WILL GIVE A 3-5X IMPROVEMENT OVER THE BEST BATTERY TECHNOLOGIES PLANNED FOR NASA MISSIONS TODAY.
IGF::OT::IGF DEVELOPE ULTRA-HIGH ENEGRY DENSITY BATTERY
IGF::OT::IGF HIGH ENERGY, LONG LIFE SOLID-STATE BATTERIES FOR AIR FORCE SPACECRAFT
IGF::OT::IGF PH I RESEARCH&DEVELOPMENT-ALL SOLID-STATE RECHARGEABLE BATTERIES FOR THROTTLEABLE DIVERT ATTITUDE CONTROL SYSTEMS (TDACS)
IGF::OT::IGF THE USE OF LITHIUM (LI) METAL AS AN ANODE MATERIAL HAS EMERGED AS ONE HIGHLY ATTRACTIVE OPTION FOR ACHIEVING HIGH SPECIFIC ENERGY DUE TO LITHIUM HAVING THE HIGHEST CAPACITY (3876 MAH G-1) OF ALL POTENTIAL ANODE MATERIALS. HOWEVER, THE RELIABLE USE OF THESE EXCEPTIONALLY HIGH CAPACITY ANODES IN A COMMERCIAL CELL HAS NOT BEEN ACHIEVED DUE TO SAFETY AND RELIABILITY CONCERNS RESULTING FROM THERMAL RUNAWAY AND SHORT-CIRCUIT ISSUES DUE TO DENDRITIC GROWTH ON THE METAL ANODE FROM LITHIUM PLATING DURING CHARGE DISCHARGE CYCLES. SOLID-STATE ELECTROLYTES (SSE) HAVE BEEN IDENTIFIED AS ONE OPTION TO ADDRESS THIS CELL FAILURE MODE, BUT SSE TECHNOLOGIES MUST BE DEVELOPED THAT COMBINE HIGH CONDUCTIVITY AND MECHANICAL PROPERTIES CONDUCIVE TO SMOOTH LI PLATING WITH FEASIBLE MANUFACTURING PROCESSES. ALSO, THE LI ANODE MUST BE COMBINED WITH AN ULTRA-HIGH CAPACITY CATHODE IN ORDER TO REACH NASA'S AGGRESSIVE CELL-LEVEL ENERGY GOALS.
IGF::OT::IGF
IGF::OT::IGF SBIR PH I SAFE SOLID STATE HIGH POWER, HIGH ENERGY CONFORMAL ENERGY STORAGE
Source: USAspending.gov (Official Federal Award Data). Reflects prime contracts only. Last sync: 2026-03-30.
Compared to 52 peers in Miscellaneous Electrical Machinery, Equipment & Supplies (SIC 3690)
Revenue
Net Margin
SEC EDGAR XBRL filings by fiscal year
Side-by-side financial showdown — revenue, margins, and growth.
Methodology & compliance note
Data is aggregated from SEC EDGAR and Secretary of State public records. Any analytics such as "market share" are statistical estimates (proxy models) and are not official audits, valuations, or investment advice. Sprytne.com is an independent data aggregator and is not affiliated with any government agency.Learn more →