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The St?ubli automatic tool changer MPS 020 covers the entire range of customer-specific applications and convinces with its multifunctional use of technology. The very compactly constructed robotic tool changing system – designed for small payloads – is suitable for robots of all manufacturers and represents an extremely flexible solution. These tool changer has integrated media ducts and can be optionally equipped with data and energy transmission modules.
Brand / Manufacturer | |
---|---|
Application | Robot Components |
Type of robots/model | MPS 032 |
State of product | New |
Country of origin | Germany |
Country of shipment | Germany |
About Vendor | |
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We have vast experience in providing robotics-integration services. We focus on the integration of palletizing and welding solutions.
Our trainers are experts in industrial automation and excel in conveying their knowledge to your staff.
The company integrates the following:
– Poly-articulated robots
– Collaborative robots
– Specific equipment for industrial applications
– Special machines
– Turnkey delivery and Project management
Customers that trusted them:
Fiat-Chrysler & PSA (Stellantis), Plastic Omnium, ABB, Heineken, Coca-Cola, Ikea, Fanuc, Renault, Saint-Gobain, startups etc…
AUBO COBOT I5 SPECIFICATIONS
Degrees of Freedom: 6 axes
Reach: 924 mm
Payload: 5 Kg
Weight: 24 Kg
Lifetime: 30000 h
Collaborative operation according to ISO 10218-1 :2001
Certification Compliance with EU CE certification, North American
certification, Korean KCs certification
Repeatability: +/- 0.02 mm
Linear Velocity <= 2.8 m/s
Power Consumption: 200 W (under normal working conditions)
Materials: Aluminum, Steel, Plastic
Ambient Humidity: 25% – 85%
Ambient Temperature: 0 – 45° C
IP Classification IP54
Programing Teach pendant with user interface
Communication CAN bus
Motor Type DC 48 V
Installation Orientation Any Ceiling, Floor, Wall
With the Aubo Cobot i5, users can benefit from its automated features that make it stand out from other robots. This cobot comes hand in hand with an easy-to-use guide to teach end users who may not be experienced in robotics. It is also ROS (Robot Operating System) compatible. Addressing safety concerns, this cobot comes with real-time feedback from the motor drives and emergency stop functions with braking distances less than 1mm. Additionally, this robot offers simulation and programming via a touch pendent for load and path testing. Altogether, these features make the Aubo Cobot i5 worth considering as it provides a versatile robotic system for many automation tasks without sacrificing safety or ease of control.
Other types of robots: Delta / Scara.
Finger Material: Silicone
Operating Pressure: -0.5 to 1.0 bar
Grip Force per Finger: 5 N
Durability: >10 Mio. Cycles: @1.0 bar, 0.5 Hz
Feed size: 5 mm – 120 mm
Weight: <450 g
Best for products of circular or cylindrical shape.
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.
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.
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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