Runs the assembly sequence
The robot picks each component and places it against the base part in the order and orientation agreed for the product.
An assembly system brings components together in a planned sequence against a fixtured base part. Where a part is pressed or snapped in rather than dropped in, the system works to a force instead of to a fixed position.
An assembly-and-insertion system presents components, locates the base part, and completes each placement or press-fit in a planned sequence.
The robot picks each component and places it against the base part in the order and orientation agreed for the product.
For press, snap, and interference fits the system drives until the part seats, then checks the force it took.
A force trace or presence check confirms each insertion, so a bad fit is caught at the station.
The system combines the robot, insertion tooling, component feeding, base-part fixture, and checks that confirm the assembly. Each part follows the component and product requirements.
The robot, gripper, and insertion tool, with a changer where more than one component needs a different grip.
How each component is presented, and what holds the base part while the rest goes into it.
The sensor or camera that confirms the assembly, and the route a failed part takes.
The system is designed around the components, base part, insertion force, feeding method, fixture, quality check, and planned product variants.
Check the components, base-part fixture, insertion method, feeding, quality check, and how product variants are handled.
Common questions about automated assembly and insertion.
The component count drives the cost more than the cycle time does, because each part needs its own way of being presented. Beyond a handful it becomes a line, and should be planned as one.
Feeders for the components in the quote are part of the scope. Feeders added later are a separate item, so send the component list early.
It goes to a reject route and the result is recorded. If you want it repaired at the station instead, that is scoped explicitly.
Usually within a family. The limit is the fixture and the feeding, not the robot.
Compare other assembly and finishing systems.
Use your production figures to explore a simple planning estimate.
Find out whether an assembly and insertion system is right for your process.