• The Kit includes all elements to assemble 4 different soft grippers.
• We guarantee a lifetime of more than 10 million cycles at 1 bar pressure.
• Hygienic designed.
• Easy to use and essentially made for cobots.
€1.495,00
This product sold by vendor
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
The Kit includes all elements to assemble 4 different soft grippers.
– 6x Fingers
– 2 Fingers Parallel Base
– 3 Fingers Centric Base
– 4 Fingers Parallel Base
– 6 Fingers Centric Base
– Robot Flange ISO 9409-A50-R
– Robot Flange ISO 9409-A31,5-R
– Spacer
Suction Cup
– Screws, Tools, Pneumatic Accessories
Type of service | EOAT/Gripper |
---|---|
Type of Operation | Pneumatic |
Strength (N) | <100 N |
Type of product | EOAT/Gripper, Customized Gripper |
Country of origin | Germany |
Country of shipment | Germany |
Vendor ID | SP013-0139-SG |
About Vendor | The company manufactures pneumatic grippers. |
Comments | The pneumatic grippers are soft and light, capable to manipulate all kinds of food, hygienic designed easy to use and essentially made for cobots. Grippers are guaranteed 10 million cycle lifetime. The company can also provide a tailor-made solution for their customers. |
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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: <300 g
Best for products of rectangular or cubic shape.
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: <600 g
Best for products of rectangular or cubic shape.
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
The Engineering Kit will help you to do the ideal gripper for high-speed automation.
The kit contains the following :
– 6 soft actuator fingers
(easy to mount, to configurate and to adapt to the component of your choice).
The robot flange also offers holes for all common ISO standards and can be easily mounted with the included tool.
The kit comes in a case with corresponding accessories and pneumatic lines and connections.
The fingers are fixed to the oblong hole plates by means of adapters and can be moved along the plate at any time by loosening the screws to find the optimum distance and orientation.
6 fingers are ideal to grip, food, packaging, medicines or fragile objects in general.
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.
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: 40 mm – 120 mm
Weight: < 1200 g
Best for products of Rectangular or cylindrical shape.
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: <1200 g
Best for products of spherical 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.
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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