ABB IRB 660 — Specs & Review

Specifications

BrandABB
ModelIRB 660
Year2023
CategoryIndustrial Lite
Autonomyremote-controlled
Environmentindoor
Country of originSE

Key features

What is it?

The ABB IRB 660 is an industrial robotic arm engineered for high-precision, high-throughput manufacturing. Built with advanced actuators, servo drives, and industrial-grade controllers, it performs repetitive tasks with exceptional consistency and speed.

Who is it for?

Key specs

How it compares

Versus competitor models like the ABB IRB 6700, Yaskawa GP series, or KUKA KR series, the IRB 660 offers similar payload and reach at competitive pricing. Speed and cycle times are comparable; differentiation lies in integration ecosystem and regional support infrastructure.

Limitations

FAQ

What is the payload of the ABB IRB 660?

The IRB 660 supports a payload ranging from 15 to 600 kg depending on the specific configuration and extended reach. Consult the technical datasheet for exact specifications matching your application.

What applications is the IRB 660 used for?

The IRB 660 excels in assembly, welding, material handling, machine tending, pick-and-place operations, and palletizing. It is widely deployed in automotive, electronics, heavy machinery, and manufacturing sectors worldwide.

How does the IRB 660 compare to competing models?

The IRB 660 matches or exceeds competing industrial arms in speed, accuracy, and payload. Key differentiators include lower total cost of ownership, regional support infrastructure, and integration flexibility within existing production ecosystems.

Is the IRB 660 collaborative or cobot?

No. The IRB 660 is a traditional industrial robot designed for dedicated, high-speed manufacturing environments. It requires safety guarding and is not rated for direct human-robot collaboration without additional safety systems.

What is the reach of the IRB 660?

The IRB 660 offers a reach between 800 and 2,700 mm, depending on the specific variant. Extended or compact configurations are available to match your workspace constraints and cycle time requirements.