ADVANCED COUNTER-DRONE DEFENSE SYSTEM PROVIDING 360° HEMISPHERICAL COVERAGE WITH ADVANCED THERMAL DETECTION AND AI-POWERED THREAT ANALYSIS PROTOCOLS.
CURRENT C-UAS SYSTEMS EXHIBIT CRITICAL VULNERABILITIES AGAINST MODERN DRONE THREATS ACROSS DEFENSE AND CIVILIAN INFRASTRUCTURE SECTORS.
LEGACY SYSTEMS FAIL TO DETECT MICRO-DRONES UTILIZED FOR SURVEILLANCE, INFILTRATION, AND HOSTILE RECONNAISSANCE OPERATIONS.
THREAT PROFILE: DJI MINI 2 - 25CM X 25CM, 246G WEIGHT, MINIMAL THERMAL SIGNATURE
TRADITIONAL RADAR/OPTICAL SYSTEMS CREATE VULNERABILITY WINDOWS BETWEEN SCANNING INTERVALS.
VULNERABILITY WINDOW: 2-15 SECOND GAPS ALLOW THREAT INFILTRATION
LEGACY SYSTEMS OVERWHELMED BY COORDINATED MULTI-VECTOR DRONE SWARM ATTACKS.
SWARM SCENARIO: 10+ COORDINATED DRONES OVERWHELM SINGLE-TARGET SYSTEMS
ENVIRONMENTAL DISCRIMINATION FAILURES MAY TRIGGER UNNECESSARY COUNTERMEASURES.
ALERT FATIGUE: HIGH FALSE POSITIVE RATES COMPROMISE OPERATOR EFFECTIVENESS

TRADITIONAL C-UAS SYSTEMS RELY ON SCANNING TECHNOLOGY, WHICH ONLY MONITORS NARROW SECTORS AT A TIME. AS A RESULT, MULTIPLE UNITS ARE REQUIRED TO MAINTAIN BASIC COVERAGE — YET GAPS STILL REMAIN BETWEEN SWEEPS, LEAVING CRITICAL AREAS EXPOSED.
DEPLOYMENT CHALLENGE: MULTIPLE UNITS REQUIRED FOR BASIC PERIMETER COVERAGE
2,000+ DRONE INCIDENTS NEAR U.S. AIRPORTS (2021-2023) DEMONSTRATE URGENT REQUIREMENT FOR NEXT-GENERATION C-UAS TECHNOLOGY.
REVOLUTIONARY 8-CAMERA ARRAY PROVIDING 360° SURVEILLANCE WITH ZERO BLIND SPOTS AND CONTINUOUS THREAT MONITORING PROTOCOLS.
8 STRATEGICALLY POSITIONED IR CAMERAS DELIVER SEAMLESS HORIZON-TO-ZENITH SURVEILLANCE AT 60FPS WITH MINIMAL SENSOR OVERLAP.
ADVANCED ALGORITHMS COMBINE INDIVIDUAL CAMERA FEEDS INTO UNIFIED HEMISPHERICAL VIEW FOR COMPREHENSIVE SITUATIONAL AWARENESS.
CONTINUOUS MONITORING ELIMINATES THE 2-15 SECOND GAPS PRESENT IN TRADITIONAL SCANNING SYSTEMS.
TACTICAL VARIANTS OPTIMIZED FOR DIVERSE OPERATIONAL ENVIRONMENTS AND THREAT SCENARIOS.

TACTICAL BLACK CONFIGURATION FOR METROPOLITAN ENVIRONMENTS AND CRITICAL INFRASTRUCTURE PROTECTION.

CAMOUFLAGED MILITARY VARIANTS FOR DEMANDING ENVIRONMENTS AND FORWARD OPERATING BASE DEPLOYMENT.
ADVANCED MACHINE LEARNING ALGORITHMS PROVIDE REAL-TIME THREAT IDENTIFICATION WITH UNPRECEDENTED ACCURACY AND MINIMAL FALSE POSITIVES.
AI SYSTEM SUCCESSFULLY IDENTIFIES AND TRACKS SMALL DRONE WITH HIGH CONFIDENCE, DISTINGUISHING FROM ENVIRONMENTAL OBJECTS AND WILDLIFE. SPLIT-SCREEN VIEW SHOWS RAW THERMAL FEED VERSUS AI-ENHANCED DETECTION.
ADVANCED AI SIMULTANEOUSLY TRACKS AND CLASSIFIES MULTIPLE OBJECTS: DRONES, BIRDS, AND OTHER AERIAL TARGETS WITH HIGH CONFIDENCE SCORES AND TRAJECTORY TRACKING. CONSISTENT TEMPORAL FRAME-TO-FRAME TARGET IDENTIFICAION AND PERSISTENCE.
TERMINUS LEVERAGES ITS CUTTING-EDGE SYNTHETIC DATA GENERATION TO TRAIN AI MODELS WITH UNPRECEDENTED DIVERSITY AND ACCURACY, ELIMINATING TRADITIONAL DATA COLLECTION LIMITATIONS.
SYNTHETIC ENVIRONMENTS PROVIDE UNLIMITED TRAINING SCENARIOS INCLUDING RARE WEATHER CONDITIONS, LIGHTING VARIATIONS, AND COMPLEX MULTI-TARGET INTERACTIONS DIFFICULT TO CAPTURE IN REAL-WORLD DATASETS.
ADVANCED THERMAL SIMULATION ACCURATELY MODELS HEAT SIGNATURES, ATMOSPHERIC EFFECTS, AND SENSOR CHARACTERISTICS TO CREATE PHOTOREALISTIC IR TRAINING DATA INDISTINGUISHABLE FROM REAL SENSOR FEEDS.
PROPRIETARY SIM-TO-REAL TRANSFER TECHNIQUES ENSURE AI MODELS TRAINED ON SYNTHETIC DATA PERFORM OPTIMALLY IN DIVERSE REAL-WORLD OPERATIONAL ENVIRONMENTS.




ADVANCED HARDWARE COMPONENTS ENGINEERED FOR OPTIMAL PERFORMANCE IN DEMANDING OPERATIONAL ENVIRONMENTS.


COMPREHENSIVE COMMAND INTERFACE PROVIDING REAL-TIME SITUATIONAL AWARENESS AND TACTICAL CONTROL ACROSS ALL OPERATIONAL PLATFORMS.

FULL-FEATURED DESKTOP INTERFACE PROVIDES COMPLETE OPERATIONAL OVERVIEW WITH REAL-TIME THREAT TRACKING, SYSTEM STATUS MONITORING, AND TACTICAL DECISION SUPPORT TOOLS FOR COMMAND PERSONNEL.
RUGGEDIZED MOBILE INTERFACE ENABLES TACTICAL PERSONNEL TO MONITOR AND CONTROL HEMIR SYSTEMS FROM FORWARD POSITIONS WITH FULL FUNCTIONALITY.
ENCRYPTED DATA LINKS ENSURE SECURE COMMAND AND CONTROL COMMUNICATIONS BETWEEN MOBILE UNITS AND CENTRAL COMMAND FACILITIES.
RESPONSIVE DESIGN AUTOMATICALLY ADAPTS TO VARIOUS SCREEN SIZES AND OPERATIONAL CONDITIONS FOR OPTIMAL USABILITY.


OPERATIONAL LEADERS ACCESS COMPREHENSIVE TACTICAL DISPLAYS THROUGH SECURE DESKTOP INTERFACES FOR ENHANCED SITUATIONAL AWARENESS.

FIELD OPERATIVES UTILIZE RUGGEDIZED MOBILE INTERFACES FOR REAL-TIME THREAT MONITORING AND SYSTEM CONTROL IN FORWARD POSITIONS.
COMPREHENSIVE MARKET ANALYSIS DEMONSTRATES HEMIR'S STRATEGIC POSITIONING IN THE RAPIDLY EXPANDING C-UAS DEFENSE SECTOR.
C-UAS MARKET PROJECTED TO REACH $14.66 BILLION BY 2034, DRIVEN BY INCREASING DRONE THREATS AND REGULATORY REQUIREMENTS ACROSS DEFENSE AND CIVILIAN SECTORS.
DOD ALLOCATED $10.1 BILLION FOR C-UAS PROGRAMS THROUGH 2028, WITH EMPHASIS ON ADVANCED DETECTION AND AUTONOMOUS RESPONSE CAPABILITIES.
CRITICAL INFRASTRUCTURE, DATACENTRES, AIRPORTS, AND SPECIAL EVENTS REQUIRE ADVANCED C-UAS SOLUTIONS FOR PUBLIC SAFETY AND SECURITY COMPLIANCE.
MILITARY INSTALLATIONS, FORWARD OPERATING BASES, AND CRITICAL DEFENSE INFRASTRUCTURE REQUIRE ADVANCED C-UAS PROTECTION.
AIRPORTS, POWER PLANTS, AND GOVERNMENT FACILITIES MANDATE C-UAS SYSTEMS FOR REGULATORY COMPLIANCE AND SECURITY.
MAJOR SPORTING EVENTS, POLITICAL GATHERINGS, AND PUBLIC VENUES REQUIRE TEMPORARY C-UAS DEPLOYMENT FOR CROWD PROTECTION.
HEMIR'S UNIQUE HEMISPHERICAL COVERAGE AND AI-POWERED DETECTION PROVIDE DECISIVE ADVANTAGES OVER TRADITIONAL C-UAS SOLUTIONS.

HEMIR | 2025 | Safety. Innovation. Efficiency.
This website contains confidential and proprietary information. Unauthorized disclosure is prohibited.