Material Composition | Classroom experiments | Industry Standard: Steel (ASTM A36) Our Base: 6061-T6 aluminum (ASTM F1621) Our Advanced: Anodized 6061-T6 (ASTM B137) | ▲ Base: 30% lighter than steel (easier handling). ▲▲ Advanced: Corrosion-resistant (ASTM B137 certified). | Base: Limited chemical resistance. Advanced: Higher cost (+20%). |
Noise Level | Quiet classrooms/labs | Industry Standard: Unregulated Our Base: 45 dBA (quieter than a whisper) Our Advanced: 40 dBA (softer than a library) | ▲ Base: Reduces auditory distraction. ▲▲ Advanced: Ideal for sound-sensitive environments. | Advanced: Requires precision engineering (adds $20 to cost). |
Durability | High-use schools/museums | Industry Standard: 10,000 cycles (ISO 9001) Our Base: 15,000 cycles (ISO 9001) Our Advanced: 20,000 cycles (ISO 9001) | ▲ Base: 50% longer lifespan than standard. ▲▲ Advanced: 100% longer lifespan. | Advanced: Heavier frame may require reinforced mounting. |
Adjustability | Custom experiments | Industry Standard: Fixed configuration Our Base: Fixed height/angle Our Advanced: Adjustable height (10–20cm) + angle (±15°) | ▲ Base: Stable for basic demos. ▲▲ Advanced: Tailors to student skill levels. | Advanced: Slightly slower setup time. |
Weight Capacity | Heavy-load physics labs | Industry Standard: 500g max (ISO 8302) Our Base: 750g (ISO 8302) Our Advanced: 1kg (ISO 8302) | ▲ Base: Handles small masses for K-12. ▲▲ Advanced: Supports college-level experiments (e.g., momentum collisions). | Base: Limits advanced demos. |
Energy Transfer Efficiency | Precision teaching | Industry Standard: 85% efficiency (ASTM E1830) Our Base: 90% efficiency (ASTM E1830) Our Advanced: 95% efficiency (ASTM E1830) | ▲ Base: Clearer momentum visualization. ▲▲ Advanced: Demonstrates near-perfect energy conservation. | Advanced: Requires calibration training for educators. |