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Application | Robot Spare Parts, Robot Components |
---|---|
Country of origin | Germany |
Country of shipment | Germany |
About Vendor | The company develop and produce innovative gripper components, complete gripper and tailor-made, customized solutions.In addition they also engineer and manufacture intelligent feeding systems and sprue cutting stations. |
Comments | Industries: Plastic, Molding, Automotive, Medical Devices and others |
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This gripper is designed to remove 4 rubber parts at once.
It uses 4 parallel grippers to grip the rubber parts at the neck, and an additional 4 parallel grippers
to enclose the bellows, preventing over stretching.
a range of grippers with additional functions that can provide enhanced capabilities and improved performance
in industrial automation applications.
These grippers are designed to be highly customizable and can be tailored
to meet the specific requirements of your application.
If you want to improve the performance and efficiency of industrial automation tasks
and can provide significant cost savings over traditional methods.
These grippers are with additional functions are designed to be easy to integrate with different robotic arms,
and can be controlled by different robotic controller platforms.
The Kuka KR 5 is a robotic arm that has gained popularity in industries that require automation. With its precise movements and ability to repeat tasks with high accuracy, the KR 5 has become a sought-after option for companies looking to streamline their manufacturing processes. Its compact design allows it to fit into tight spaces and its modular system makes it customizable for various applications. The KR 5 is also easy to program, making it a user-friendly option for both experienced operators and those new to robotics. Overall, the Kuka KR 5 offers a versatile solution for businesses seeking to increase efficiency and productivity.
This gripper removes finished overloaded components and also
inserts materials such as bushings, sheets, or screws into molds.
The kit was developed out of years of experience in gripper construction. The concept is to assemble the components in perpendicular orientation whenever possible and make only the active element, such as the vacuum cups, the sprue gripper or gripper finger freely adjustable. All channel nut components are compatible.
Advantages:
• Without channel nut
• High stiffness
• Components can be added at any place
• Only one tool required
• 90 degree orientation
It is a “building set” consisting of 2.500 parts. It will be assembled according to the customers needs.
These grippers are designed to be lightweight, durable, and customizable,
making them ideal for a wide range of industrial and laboratory applications.
These grippers are specially developed for use with collaborating robots (cobots)
and are built using the cobot gripper kit.
They are certified and designed to work seamlessly with cobot systems.
Lightweight: The Grippers for cobots are 3D printed using high-strength, lightweight materials,
making them easy to manipulate and reducing the load on the cobot’s arm.
Safe for human interaction: The grippers are designed to be compliant and safe for use
in collaborative environments where humans and robots work together.
Durable: The grippers are designed to withstand the rigors of industrial environments
and provide long-lasting performance.
Unlike conventional devices, the integration of imaging technologies on six-axis robotic arms gives a high degree of flexibility in monitoring the complex curvature on both sides of the inspected object, allowing non-destructive testing (NDT) to be expanded and improved. Robots allow to scan a sample with the use of X-ray from a different perspective to locate defects more easily, quickly, and better.
One of the major advantages is that the system can be moved to the object to be inspected. This is in sharp contrast to common industrial CT systems where the sample has to fit inside. Our machine can get to the sample.
This 3D Vision System is an eye for the robot. The advanced optical system, positioning and scanning algorithms allow for the offset of production processes and visual inspection of items. The robot arm with vision system scans the workspace and finds the items that are needed according to the models, and can also perform other activities on it – packing, pick & place, soldering, assembly.
KUKA linear units are translational motion units Linear units can be used to extend a robot?s work envelope or alternatively to move workpieces or tools within the work envelopes of a number of robots. This allows applications such as the tending of more than one machine or fixture, order picking from rows of pallets, or work on very large components. Control of the linear unit is integrated as a mathematically coupled axis in the robot controller, dispensing with the need for an additional controller.
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