| Motion architecture | Confirm which axes are servo-electric and whether any nozzle, ejector, core or auxiliary function uses another power source. | Confirm which axes use the servo-pump hydraulic circuit and whether any injection, plasticizing or auxiliary motion is electric. |
| Parallel movement | Check the controller, installed drives and permitted simultaneous sequence for the proposed configuration. | Check pump capacity, accumulators or separate circuits and the actual simultaneous-motion option scope. |
| Mold functions | Hydraulic cores, valve gates or special actuators may still require an external or integrated hydraulic package. | Hydraulic mold functions may integrate naturally, but circuit count, flow, pressure and control remain configuration-specific. |
| Utility envelope | Collect connected load, peak demand, cooling-water needs, power quality and any air or hydraulic auxiliary demand. | Collect connected load, cooling-water needs, oil-system conditions, ventilation and any air or auxiliary demand. |
| Process fit | Review injection profile, pressure/flow demand, screw recovery, mold motion and the actual drive package. | Review the same process fields plus hydraulic response, temperature management and option configuration. |
| Maintenance model | Review servo drives, motors, mechanical transmissions, lubrication, cooling and local diagnostic capability. | Review pumps, valves, seals, filtration, oil condition, cooling, hoses and local hydraulic capability. |
| Energy comparison | Use measured or method-based consumption for a comparable configuration and molding job; the label alone is not a result. | Use the same boundary, machine size, part, resin, mold, cycle and auxiliary scope before comparing consumption. |