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Germany
Flat gripper with a neodymium magnet in a rubber-coated steel pot. The housing increases the adhesive force of the permanent magnet. The maximum adhesive force is achieved when the entire surface is placed on a metallic surface. The flat gripper has a threaded pin with an external thread.
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Rod gripper with a neodymium magnet in a steel housing. The maximum adhesive force is achieved when the entire surface is placed on a metallic surface. The rod gripper has no thread and is usually glued or pressed in.
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Rod gripper with a neodymium magnet in a brass housing. The maximum adhesive force is achieved when the entire surface is placed on a metallic surface. The rod gripper has no thread and is usually glued or pressed in.
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Flat gripper with a samarium-cobalt magnet in a steel pot. The housing increases the adhesive force of the permanent magnet. The maximum adhesive force is achieved when the entire surface is placed on a metallic surface. The flat gripper has a threaded socket with an internal thread.
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Flat gripper with a neodymium magnet in a steel pot. The housing increases the adhesive force of the permanent magnet. The maximum adhesive force is achieved when the entire surface is placed on a metallic surface. The flat gripper has no hole and is usually glued or pressed in.
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Germany
Flat gripper with a hard ferrite magnet in a steel pot. The housing increases the adhesive force of the permanent magnet. The maximum adhesive force is achieved when the entire surface is placed on a metallic surface. The flat gripper has a 10 mm threaded socket with an internal thread. It is characterized by a force of 125 N. The diameter is 40 mm, the total height is 18 mm.
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Flat gripper with a neodymium magnet in a rubber-coated steel pot. The housing increases the adhesive force of the permanent magnet. The maximum adhesive force is achieved when the entire surface is placed on a metallic surface. The flat gripper has a central internal thread.
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Flat gripper with a neodymium magnet in a rubber-coated steel pot. The housing increases the adhesive force of the permanent magnet. The maximum adhesive force is achieved when the entire surface is placed on a metallic surface. The flat gripper has a threaded pin with an external thread.
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The permanent holding magnets achieve a holding force of up to 35,000 N in the de-energized state and are designed for long holding of magnetic workpieces. When the DC-excited coil is switched on, the permanent magnetic field on the holding surface is neutralized and the workpiece to be held can be removed. The electromagnet holds loads even in the event of a power failure and only needs to be energized briefly to release the workpiece. It is characterized by its energy efficiency and high holding forces. The permanent holding solenoids are available in different sizes with forces between 8 and 3,500 N.
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The permanent holding magnets achieve a holding force of up to 35,000 N in the de-energized state and are designed for long holding of magnetic workpieces. When the DC-excited coil is switched on, the permanent magnetic field on the holding surface is neutralized and the workpiece to be held can be removed. The electromagnet holds loads even in the event of a power failure and only needs to be energized briefly to release the workpiece. It is characterized by its energy efficiency and high holding forces.
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The permanent holding magnet achieve a holding force of up to 3,500 N in the de-energized state and are designed for long holding of magnetic workpieces. When the DC-excited coil is switched on, the permanent magnetic field on the holding surface is neutralized and the workpiece to be held can be removed. The electromagnet holds loads even in the event of a power failure and only needs to be energized briefly to release the workpiece. It is characterized by its energy efficiency and high holding forces. The permanent holding solenoid is available in different sizes with forces between 8 and 3,500 N.
Request for a quoteGermany
The permanent holding magnets achieve a holding force of up to 35,000 N in the de-energized state and are designed for long holding of magnetic workpieces. When the DC-excited coil is switched on, the permanent magnetic field on the holding surface is neutralized and the workpiece to be held can be removed. The electromagnet holds loads even in the event of a power failure and only needs to be energized briefly to release the workpiece. It is characterized by its energy efficiency and high holding forces. The permanent holding solenoids are available in different sizes with forces between 8 and 3,500 N.
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