Material Composition | High-performance drones, aerospace parts | Industry: Aluminum (Density: 2.7 g/cm³) Our Base: Carbon Fiber + Resin (1.6 g/cm³ ▲) Our Advanced: Carbon Fiber + Kevlar (1.4 g/cm³ ▲▲) | ▲ Lighter, reduces battery drain and improves agility ▲▲ Enhanced rigidity for high-stress maneuvers | Higher production cost compared to aluminum Requires specialized handling for repairs |
Durability | Industrial drones, rugged environments | Industry: 1,000 stress cycles (ASTM D638) Our Base: 2,000 cycles ▲ Our Advanced: 3,000 cycles ▲▲ | ▲ 2x longer lifespan in harsh conditions ▲▲ Withstands extreme vibrations and impacts | Advanced versions may have limited availability Requires periodic inspection for micro-cracks |
Weight Efficiency | Lightweight drones, FPV racing | Industry: 285 g/m² (Standard plastic composites) Our Base: 180 g/m² ▲ Our Advanced: 140 g/m² ▲▲ | ▲ 37% lighter for extended flight time ▲▲ Optimized lift-to-weight ratio for agile maneuvers | Higher cost per unit May require recalibration for balance |
Certifications | EU-regulated markets, export compliance | Industry: Basic CE certification Our Base: RoHS, EPR Germany/France ▲ Our Advanced: RoHS, EPR, MIL-STD-810G ▲▲ | ▲ Meets EU packaging laws ▲▲ Military-grade environmental resistance | Advanced certifications add 15–20% to production cost |
Customization | Bespoke drone builds, specialized projects | Industry: Standard sizes only Our Base: Custom sizes (±5% tolerance) ▲ Our Advanced: Full customization (thickness, surface finish) ▲▲ | ▲ Reduces prototyping time ▲▲ Tailored to specific aerodynamic needs | Base versions require minimum order quantities Advanced customization delays delivery by 2–3 weeks |
Power Efficiency | Battery-powered drones, long-endurance flights | Industry: 80% energy efficiency Our Base: 85% ▲ Our Advanced: 90% ▲▲ | ▲ 6% longer flight time per charge ▲▲ Reduces battery replacement frequency | Advanced versions may require specialized power management systems |