Robot joints and control cabinets combine fast PWM, repeated starts and mechanical vibration. A busbar and terminal design must stabilize the power path while leaving feedback, shielding and maintenance boundaries clear.

01

Separate fast commutation and braking paths

PWM paths are dominated by loop area and parasitic inductance; braking paths are dominated by peak energy, thermal accumulation and terminal strength. Applying one rule to both can create either EMI or hot spots.

02

Coordinate power terminals, shielding and ground springs

Power terminals provide low resistance while shield clips and grounding springs provide repeatable chassis contact. Fix contact direction, spring travel, plating and assembly force on the drawing so enclosure tolerance does not leave a marginal connection.

  • Measure power voltage drop and ground-contact resistance
  • Inspect spring relaxation, wear debris and loose screws after vibration
  • Include cable bend radius and tool reach in the mechanical review
03

Traceable RFQ fields for servo drives

Set current, switching frequency, braking duty, ambient range, vibration level, insulation, plating, inspection report and packaging direction as mandatory fields. If one is unknown, the quotation should state its assumption rather than silently filling it in.

Sources

  1. IEC 61800-5-1 adjustable-speed drive safety requirements
  2. ISO 16750-3 mechanical-load test reference