Ermaksan Machine
PRESS BRAKE WITH COBOT
Bending Automation – Robot & Cobot

PRESS BRAKE WITH COBOT

Automated Sheet Metal Bending with Cobots

Discover the next generation of sheet metal bending with Ermaksan’s press brakes, seamlessly integrated with advanced cobot solutions. These cobot-powered systems manage material feeding, positioning, and secure holding, enabling precise and efficient bending processes. This integration enhances productivity, simplifies complex tasks, and optimizes production workflows, saving valuable time and resources.

Designed for modern manufacturing, our cobot-integrated press brakes offer flexible, efficient solutions—even for intricate bending requirements. Featuring an intuitive, user-friendly interface, these cobots are easy to program and require minimal training. Setting up a bending sequence is as simple as placing the cobot in free-drive mode: the operator guides the cobot through each step while the software records the precise movements and speeds.

A unique feature of our cobots is the two control buttons on the 6th axis, where the vacuum holder is located. By pressing these buttons, the operator can move the robot manually, guiding its trajectory without needing a teach pendant or specialized software knowledge. The cobot’s sensors respond to the force applied by the operator, allowing easy, hands-on teaching of the bending path. This approach removes the need for conventional programming, making automation accessible to all users. Manual operation can also be resumed anytime without requiring major adjustments.

The system is CE-compliant and can operate safely alongside the operator without light or safety barriers, as the robot stops immediately upon any impact. Ermaksan’s cobot-integrated press brakes bring flexibility, cost-efficiency, and optimized performance to your manufacturing operations, empowering you to elevate productivity with ease.

Choosing a cobot-integrated bending system allows you to enjoy the benefits of automation without the significant upfront costs and safety requirements associated with traditional robotic cells.