Robotics
Harnesses specified for the motion they actually see.
Joint and arm harnesses flex on every cycle. The failure is rarely the connector — it’s the conductor fatiguing inside a jacket that was never rated to bend. We build with flex-rated wire, service loops and strain relief sized to your bend radius, and test after flex where the spec calls for it.
What robotics teams send us
Joint and arm harnesses
Multi-branch, high-flex wire, braided sleeving where the loom rubs the casting.
Servo and encoder cables
Shielded twisted pairs, drain wires terminated per the drive maker’s pinout.
End-effector pigtails
Short, fine-pitch, labeled — built to land in the gripper the same way every time.
Base-to-controller looms
Power and signal in one bundle, breakouts at the cabinet, glands per drawing.
E-stop and safety circuits
Color-coded, ring-terminated, 100% continuity plus hi-pot.
Cable-carrier runs
Continuous-flex jackets for cable tracks, lengths held to spec.
What gets checked before the PO
Robotics buyers ask about flex life first and price second. Here is how each concern is handled.
| Flex life | High-strand-count flex-rated wire with TPE or PUR jackets, specified against your bend radius and cycle target |
| Shielding & EMI | Braided or foil shields, drain wires and 360° backshell termination per drawing |
| Bend radius & strain relief | Service loops and boots sized on the drawing — not improvised on the bench |
| Abrasion | Braided sleeving, spiral wrap or loom tube wherever the harness contacts the structure |
| Repeatability | Board-built so every branch lands at the same length, unit after unit |
| Testing | 100% continuity; hi-pot and pull-force per plan; flex testing on request |