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Ticker UNIT · Nasdaq · DE
25/100
Uniti Group Inc. is a U.S. business entity operating within the Telephone Communications (No Radiotelephone) sector (SIC 4813). Publicly traded on the Nasdaq under the ticker symbol UNIT, the company is incorporated in Delaware. Based on SEC EDGAR filings, UNIT reported fiscal year 2025 revenue of $2.23B, reflecting a year-over-year growth of 91.5%. 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 4813 classification, Uniti Group 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.
Uniti Group Inc. (UNIT) — Key efficiency & solvency metrics · FY2025
Operating Margin
Sector avg: -19.8%
Net Margin
Sector avg: 4.97%
Debt-to-Equity
Sector avg: -1.39
Current Ratio
Sector avg: 1.47
| Key Metric | Company | Industry Avg | Status |
|---|---|---|---|
| Total RevenueYoY: +91.5% | $2.23B | $15.04B | ▼ Lagging |
| Net IncomeYoY: +1296.9% | $1.30B | — | — |
| Operating MarginOperating income as % of revenue | 11.7% | -19.8% | ▲ Outperform |
| Net MarginNet income as % of revenue | 58.4% | 4.97% | ▲ Outperform |
| Debt-to-EquityTotal liabilities / stockholders equity. Lower = safer. | 30.65 | -1.39 | ▼ Leveraged |
| Current RatioCurrent assets / current liabilities. Above 1.0 = solvent. | 0.74 | 1.47 | ▼ Lagging |
Source: SEC EDGAR XBRL filings (10-K annual reports). Industry benchmarks derived from 19 companies in SIC 4813.
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
OPEN MANUFACTURING. THE CONTRACTOR SHALL ACCOMPLISH THE TASKS UNDER THE TRANSITION RELIABLE UNITIZED STRUCTURE (TRUST) PROGRAM.
BONDED UNITIZED COMPOSITES LARGE-SCALE STRUCTURAL DEMONSTRATION
SMAAART TASK ORDER: STATEMENT OF WORK (SOW.) TASK TITLE: HWB MULTI BAY TEST ARTICLE ANALYSIS AND ASSEMBLY 1.0 INTRODUCTION/BACKGROUND: NASA CREATED THE ENVIRONMENTALLY RESPONSIBLE AVIATION (ERA) PROJECT TO EXPLORE AND DOCUMENT THE FEASIBILITY, BENEFITS, AND TECHNICAL RISK OF VEHICLE CONCEPTS AND ENABLING TECHNOLOGIES THAT WILL REDUCE THE IMPACT OF AVIATION ON THE ENVIRONMENT. TODAY'S CURRENT GENERATION OF AIRCRAFT HAS BENEFITTED FROM NASA INVESTMENTS IN AERONAUTICAL RESEARCH THAT HAVE IMPROVED FUEL EFFICIENCIES, LOWERED NOISE LEVELS, AND LESSENED HARMFUL EMISSIONS. ALTHOUGH SUBSTANTIAL PROGRESS HAS BEEN MADE, MUCH MORE NEEDS TO BE DONE. THE NATION'S AIR TRANSPORTATION SYSTEM WILL EXPAND BY A FACTOR OF TWO OR THREE WITHIN THE NEXT TWO DECADES, POTENTIALLY INCREASING AVIATION'S CONTRIBUTION TO CLIMATE CHANGE. THE ERA PROJECT WORKS TO REDUCE THE ENVIRONMENTAL HARM THAT COULD RESULT FROM SUCH AN EXPANSION. AMONG THE TECHNOLOGIES TO BE EXPLORED IN THE ERA PROJECT ARE THE FOLLOWING: UNCONVENTIONAL AIRCRAFT CONFIGURATIONS THAT HAVE HIGHER LIFT TO DRAG RATIO, REDUCED DRAG AND REDUCED COMMUNITY NOISE; DRAG REDUCTION THROUGH LAMINAR FLOW; ADVANCED COMPOSITE STRUCTURAL CONCEPTS FOR WEIGHT REDUCTION; LOW NOX COMBUSTORS; AND PROPULSION AND AIRFRAME INTEGRATION FOR NOISE REDUCTION AND FUEL-BURN IMPROVEMENTS. THE ERA PROJECT WILL FOCUS ON ENVIRONMENTAL ISSUES ASSOCIATED WITH AIRCRAFT, INCLUDING FUEL BURN, EMISSIONS, AND NOISE. THE PROJECT WILL EXPLORE AND DOCUMENT THE FEASIBILITY, BENEFITS, AND TECHNICAL RISK OF VEHICLE CONCEPTS AND ENABLING TECHNOLOGIES IDENTIFIED TO HAVE THE POTENTIAL TO MITIGATE THE IMPACT OF AVIATION ON THE ENVIRONMENT. THIS RESEARCH DIRECTLY SUPPORTS THE NATIONAL AERONAUTICS RESEARCH AND DEVELOPMENT POLICY TO DEVELOP APPROPRIATE ENVIRONMENTAL PROTECTION MEASURES TO ENSURE CONTINUED GROWTH IN AIR TRANSPORTATION. THE PRIMARY STRUCTURAL CONCEPT BEING DEVELOPED UNDER THE ERA PROGRAM IN THE AIRFRAME TECHNOLOGY ELEMENT IS THE PULTRUDED ROD STITCHED EFFICIENT UNITIZED STRUCTURE (PRSEUS) DESIGN. THE PRSEUS DESIGN APPROACH IS PART OF THE ERA EFFORT TO ADDRESS FUEL BURN (C02 EMISSIONS) BY REDUCING THE WEIGHT OF ADVANCED STRUCTURES. REDUCING FUEL BURN REDUCES THE NEED TO USE RESOURCES AND REDUCES POLLUTION TO THE ENVIRONMENT. THE APPROACH MOVES FROM SAFE-LIFE TO FAIL-SAFE DESIGN WITH A LIGHTWEIGHT COMPOSITE STRUCTURE. PRSEUS REPRESENTS A NEW CONCEPT IN COMPOSITE DESIGN THEORY AND MANUFACTURING METHODS. IT IS A CONSCIOUS PROGRESSION AWAY FROM CONVENTIONAL LAMINATED AND BONDED ASSEMBLIES TOWARD LARGER ONE-PIECE PANEL DESIGNS WITH SEAMLESS TRANSITIONS AND DAMAGE-ARREST INTERFACES SUCH AS STITCH ROWS AND TEAR STRAPS. IT FOCUSES ON A NEW STRUCTURAL CONCEPT THAT INTEGRATES SKIN, STRINGERS, AND FRAME ELEMENTS INTO A SINGLE LARGE PANEL IN WHICH ALL ELEMENTS ARE SIMULTANEOUSLY CURED (OR CO-CURED) IN ONE HIGH-TEMPERATURE CURE CYCLE. THE RESULTING STRUCTURE IS A NOVEL SOLUTION FOR ADDRESSING THE DEMANDING FUSELAGE LOADING REQUIREMENTS INHERENT IN A PRESSURIZED SHAPED VEHICLE LIKE THE HYBRID WING BODY (HWB) OR BLENDED WING BODY (BWB) CONCEPT. THE PRSEUS CONCEPT BUILDS UPON, EXTENDS, AND TAILORS THESE STRUCTURAL TECHNOLOGIES IN ORDER TO MEET THE DEMANDING CHALLENGES ASSOCIATED WITH VEHICLES WITH SHAPES AND LOAD PATHS DIFFERENT FROM TODAY S TRADITIONAL WING AND CIRCULAR FUSELAGE STRUCTURES. HAVING DEMONSTRATED THE UNIQUE CAPABILITY OF THE HYBRID WING BODY (HWB) PULTRUDED ROD STITCHED EFFICIENT UNITIZED STRUCTURE (PRSEUS) STRUCTURAL CONCEPT TO ECONOMICALLY PRODUCE LARGE INTEGRATED STRUCTURAL PANELS, THE PRIMARY AIRFRAME DESIGN CHALLENGE NOW BECOMES THE VALIDATION OF THE STRUCTURAL PERFORMANCE IN THE COMBINED LOADING ENVIRONMENT OF THE HWB PRESSURE SHELL. UNDER THESE CONDITIONS, SKIN PANELS MUST NOT ONLY HAVE CONTINUOUS LOAD PATHS IN BOTH DIRECTIONS (I.E., NX AND NY), THEY MUST ALSO BE EFFECTIVE IN TRANSMITTING INTERNAL PRESSURE LOADS (I.E., NZ) FOR THE NEAR-FLAT PANEL GEOMETRY. DEMONSTRATION OF THIS CAP
UNITIONS AND EXPLOSIVES OF CONCERN REMOVAL AND CLOSURE OF MRS 10, ARTILLERY RANGE SOUTHWEST (FUDS PROJECT NO. K06TX001510), FORMER CAMP HOWZE, COOKE COUNTY, TEXAS 8(A) CONTRACT, ARS ALEUT
DESIGN AND MANUFACTURE FOR UNITIZATION AND AUTOMATION
IGF::OT::IGF UNITIFED CAPABILITIES AUDIO COMMUNICATIONS FUNCTIONALITY STATION PRODUCTION
BLIND WELD METHODS AND TOOLS FOR THIN FLIGHT SURFACE UNITIZED STRUCTURES
NASA HEADQUARTERS FACILITIES ENGINEERING AND PROJECT MANAGEMENT SERVICES. THE CONTRACTOR SHALL IMPLEMENT PROJECT REQUIREMENTS TO FULFILL NASA HEADQUARTERS SPACE PLANNING AND SERVICES. THE CONTRACTOR SHALL PROVIDE THE LABOR NECESSARY TO PRODUCE COLLABORATIVE, MULTIDISCIPLINARY METHODS TO DEVELOPING, DESIGNING, AND PROVIDING TURN-KEY PROJECT MANAGEMENT TO COORDINATE, SCHEDULE AND ACCOMPLISH THE MANY TASKS NECESSARY TO PROVIDE A WORK ENVIRONMENT UNITING REAL PROPERTY PLANS WITH ORGANIZATIONAL STRATEGIC BUSINESS GOALS.
TAS::80 0125::TAS RECOVERY ACT FUNDS RECOVERY - SMAAATAV TASK TITLE: HWB MULTI BAY TEST ARTICLE DESIGN AND TOOLING 1.0 BACKGROUND: NASA CREATED THE ENVIRONMENTALLY RESPONSIBLE AVIATION (ERA) PROJECT TO EXPLORE AND DOCUMENT THE FEASIBILITY, BENEFITS AND TECHNICAL RISK OF VEHICLE CONCEPTS AND ENABLING TECHNOLOGIES THAT WILL REDUCE THE IMPACT OF AVIATION ON THE ENVIRONMENT. TODAY'S CURRENT GENERATION OF AIRCRAFT HAS BENEFITTED FROM NASA INVESTMENTS IN AERONAUTICAL RESEARCH THAT HAVE IMPROVED FUEL EFFICIENCIES, LOWERED NOISE LEVELS AND LESSENED HARMFUL EMISSIONS. ALTHOUGH SUBSTANTIAL PROGRESS HAS BEEN MADE, MUCH MORE NEEDS TO BE DONE. THE NATION'S AIR TRANSPORTATION SYSTEM WILL EXPAND BY A FACTOR OF TWO OR THREE WITHIN THE NEXT TWO DECADES, POTENTIALLY INCREASING AVIATION'S CONTRIBUTION TO CLIMATE CHANGE. THE ERA PROJECT WORKS TO REDUCE THE ENVIRONMENTAL HARM THAT COULD RESULT FROM SUCH AN EXPANSION. AMONG THE TECHNOLOGIES TO BE EXPLORED IN THE ERA PROJECT ARE THE FOLLOWING: UNCONVENTIONAL AIRCRAFT CONFIGURATIONS THAT HAVE HIGHER LIFT TO DRAG RATIO, REDUCED DRAG AND REDUCED COMMUNITY NOISE; DRAG REDUCTION THROUGH LAMINAR FLOW; ADVANCED COMPOSITE STRUCTURAL CONCEPTS FOR WEIGHT REDUCTION; LOW NOX COMBUSTORS; AND PROPULSION AND AIRFRAME INTEGRATION FOR NOISE REDUCTION AND FUEL-BURN IMPROVEMENTS. THE ERA PROJECT WILL FOCUS ON ENVIRONMENTAL ISSUES ASSOCIATED WITH AIRCRAFT, INCLUDING FUEL BURN, EMISSIONS, AND NOISE. THE PROJECT WILL EXPLORE AND DOCUMENT THE FEASIBILITY, BENEFITS AND TECHNICAL RISK OF VEHICLE CONCEPTS AND ENABLING TECHNOLOGIES IDENTIFIED TO HAVE THE POTENTIAL TO MITIGATE THE IMPACT OF AVIATION ON THE ENVIRONMENT. THIS RESEARCH DIRECTLY SUPPORTS THE NATIONAL AERONAUTICS RESEARCH AND DEVELOPMENT POLICY TO DEVELOP APPROPRIATE ENVIRONMENTAL PROTECTION MEASURES TO ENSURE CONTINUED GROWTH IN AIR TRANSPORTATION. THE PRIMARY STRUCTURAL CONCEPT BEING DEVELOPED UNDER THE ERA PROGRAM IN THE AIRFRAME TECHNOLOGY ELEMENT IS THE PULTRUDED ROD STITCHED EFFICIENT UNITIZED STRUCTURE (PRSEUS) DESIGN. THE PRSEUS DESIGN APPROACH IS PART OF THE ERA EFFORT TO ADDRESS FUEL BURN (C02 EMISSIONS) BY REDUCING THE WEIGHT OF ADVANCED STRUCTURES. REDUCING FUEL BURN REDUCES THE NEED TO USE RESOURCES AND REDUCES POLLUTION TO THE ENVIRONMENT. THE APPROACH MOVES FROM SAFE-LIFE TO FAIL-SAFE DESIGN WITH A LIGHTWEIGHT COMPOSITE STRUCTURE. PRSEUS REPRESENTS A NEW CONCEPT IN COMPOSITE DESIGN THEORY AND MANUFACTURING METHODS. IT IS A CONSCIOUS PROGRESSION AWAY FROM CONVENTIONAL LAMINATED AND BONDED ASSEMBLIES TOWARD LARGER ONE-PIECE PANEL DESIGNS WITH SEAMLESS TRANSITIONS AND DAMAGE-ARREST INTERFACES SUCH AS STITCH ROWS AND TEAR STRAPS. IT FOCUSES ON A NEW STRUCTURAL CONCEPT THAT INTEGRATES SKIN, STRINGERS, AND FRAME ELEMENTS INTO A SINGLE LARGE PANEL IN WHICH ALL ELEMENTS ARE SIMULTANEOUSLY CURED (OR CO-CURED) IN ONE HIGH-TEMPERATURE CURE CYCLE. THE RESULTING STRUCTURE IS A NOVEL SOLUTION FOR ADDRESSING THE DEMANDING FUSELAGE LOADING REQUIREMENTS INHERENT IN A PRESSURIZED SHAPED VEHICLE LIKE THE HYBRID WING OR BLENDED WING BODY (HWB/BWB) CONCEPT. THE PRSEUS CONCEPT BUILDS UPON, EXTENDS, AND TAILORS THESE STRUCTURAL TECHNOLOGIES IN ORDER TO MEET THE DEMANDING CHALLENGES ASSOCIATED WITH VEHICLES WITH SHAPES AND LOAD PATHS DIFFERENT FROM TODAY S TRADITIONAL WING AND CIRCULAR FUSELAGE STRUCTURES. HAVING DEMONSTRATED THE UNIQUE CAPABILITY OF THE HYBRID WING BODY (HWB) PULTRUDED ROD STITCHED EFFICIENT UNITIZED STRUCTURE (PRSEUS) STRUCTURAL CONCEPT TO ECONOMICALLY PRODUCE LARGE INTEGRATED STRUCTURAL PANELS, THE PRIMARY AIRFRAME DESIGN CHALLENGE NOW BECOMES THE VALIDATION OF THE STRUCTURAL PERFORMANCE IN THE COMBINED LOADING ENVIRONMENT OF THE HWB PRESSURE SHELL. THE SKIN PANELS IN THE CENTER SECTION PRESSURE SHELL MUST SIMULTANEOUSLY SUPPORT THE INTERIOR CABIN PRESSURE (NZ) AND IN-PLANE LOADS IN BOTH DIRECTIONS (NX AND NY). TO MEET THIS REQUIREMENT, STIFFENING ELEMENTS MUST HAVE CONTINUOUS LOAD PATHS WIT
THIS PROGRAM HAS DIRECT RELEVANCE TO FUTURE NASA PROGRAMS AND INTERESTS, SPECIFICALLY, THE OBJECTIVES DESCRIBED IN NRA SUBTOPIC A.2.4.3, MATERIALS & STRUCTURES FOR WING COMPONENTS AND NON-CIRCULAR FUSELAGE. IT FOCUSES ON A NEW STRUCTURAL CONCEPT THAT INTEGRATES SKIN, STRINGERS, AND FRAME ELEMENTS INTO A SINGLE COCURED UNITIZED PANEL ASSEMBLY. THE RESULTING STRUCTURE IS A NOVEL SOLUTION FOR ADDRESSING THE DEMANDING FUSELAGE LOADING REQUIREMENTS INHERENT IN A PRESSURIZED SHAPED VEHICLE LIKE THE HYBRID WING OR BLENDED WING BODY (BWB) CONCEPT.THE PULTRUDED ROD STITCHED EFFICIENT UNITIZED STRUCTURE (PRSEUS) DESIGN APPROACH REPRESENTS A BOLD VISION IN COMPOSITE DESIGN THEORY AND MANUFACTURING METHODS. IT IS A CONSCIOUS PROGRESSION AWAY FROM CONVENTIONAL LAMINATED AND BONDED ASSEMBLIES TOWARD LARGER ONE-PIECE COCURED PANEL DESIGNS WITH SEAMLESS TRANSITIONS AND DAMAGE-ARREST INTERFACES. THE PRSEUS STRUCTURAL CONCEPT IS AN EVOLUTION OF THE STITCHED-COMPOSITE TECHNOLOGIES FIRST INTRODUCED UNDER THE NASA ADVANCED COMPOSITES TECHNOLOGY (ACT) WING PROGRAM. THE PROPOSED PROGRAM DESCRIBED IN THIS DOCUMENT BUILDS UPON, EXTENDS, AND TAILORS THESE STRUCTURAL TECHNOLOGIES IN ORDER TO MEET THE DEMANDING CHALLENGES INTRINSIC IN SHAPED-VEHICLE DESIGNS.THE PRIMARY THRUST OF PHASE I (BASE PERIOD) WILL BE TO QUANTIFY BY ANALYSIS THE BENEFITS OF A PRSEUS FUSELAGE CONCEPT IN THE COMPLEX LOADING ENVIRONMENT FOUND ON THE BWB. TO MINIMIZE DEVELOPMENT COSTS, AN EXISTING BOEING BWB FINITE ELEMENT MODEL (FEM) WILL BE ADAPTED FOR VEHICLE SIZING, WEIGHT STATEMENT DEVELOPMENT, AND INTERNAL LOADS GENERATION FOR THE TEST PROGRAM. THE WEIGHTS STATEMENT WILL BE USED TO ESTABLISH STRUCTURAL METRICS WHICH WILL BE USED TO QUANTITATIVELY ASSESS THE SUCCESS OF THE PRSEUS TEST PROGRAM, AS WELL AS TO APPRAISE THE COMPETITIVENESS RELATIVE TO ALTERNATE CONCEPTS AND TECHNOLOGIES. DURING PHASE II (OPTION I) MORE COMPLEX ASPECTS OF PRESSURIZED FLAT-PANEL DESIGNS WILL BE INVESTIGATED ANALYTICALLY AND TESTED. SECONDARY BENDING AFFECTS WILL BE ASSESSED USING A PRESSURE-BOX SUBCOMPONENT AND THIN-GAUGE SKIN DAMAGE-ARRESTMENT CONCERNS WITH MULTI-STRINGER TENSION SPECIMENS.
Source: USAspending.gov (Official Federal Award Data). Reflects prime contracts only. Last sync: 2026-03-30.
Compared to 34 peers in Telephone Communications (No Radiotelephone) (SIC 4813)
Revenue
Net Margin
SEC EDGAR XBRL filings by fiscal year
Side-by-side financial showdown — revenue, margins, and growth.
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