Hydraulic Gear Pump | Low-pressure systems, agricultural machinery | Pressure: 150 bar (ISO 10757) Efficiency: 75% (ASTM D2412) | Cost-effective, simple design, low maintenance | Lower efficiency, higher noise (▲10 dB louder than TALUADA), unsuitable for high-pressure tasks |
Hydraulic Vane Pump | Medium-pressure systems, industrial equipment | Pressure: 200 bar (ISO 10757) Flow Rate: 12 L/min (ISO 10745) | Smooth operation, moderate efficiency | Prone to wear in abrasive fluids, requires precise alignment (▲5% lower durability vs piston pumps) |
Hydraulic Piston Pump | High-pressure systems, construction equipment | Pressure: 300 bar (ISO 10757) Efficiency: 85% (ASTM D2412) | High pressure capability, long lifespan | Complex design, expensive, maintenance-intensive (▲20% higher cost than gear pumps) |
Axial Piston Pump (Industry Standard) | Heavy-duty machinery, excavators | Pressure: 250 bar (ISO 10757) Flow Rate: 20 L/min (ISO 10745) | Industry benchmark for balance between cost and performance | Moderate noise (55 dB), limited cross-brand compatibility (▲10% fewer compatible models vs TALUADA) |
Radial Piston Pump | High-torque applications, marine systems | Pressure: 400 bar (ISO 10757) Efficiency: 88% (ASTM D2412) | Extreme pressure tolerance, high reliability | Bulky design, specialized use cases (▲25% heavier than TALUADA’s compact design) |
Hydraulic Pilot Pump (TALUADA) | Excavators (Doosan DH55, Kubota KX30), compact machinery | Pressure: 280 bar (ISO 10757) Compatibility: 3+ brands (Kubota, Doosan, Hyundai) Noise: 43 dB (▲quieter than refrigerator hum) | ▲15% higher efficiency than industry standard Cross-brand compatibility Durable metal construction (ASTM A36 steel) | Slightly higher upfront cost Limited to excavator applications (▲ narrower use cases than axial piston pumps) |