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What do you need to know about via-hole slip rings?

Article source:未知 Popularity:Published:2021-12-31 08:55

Conductive slip rings are essential in 360 rotating electromechanical systems. Equipment must transmit power and signals during continuous rotation. It can be installed on the outside or inside of mechanical equipment.

Through the through-hole conductive slip ring, the connected equipment can easily achieve continuous rotation in the same direction. In terms of rotating transmission power and electrical signals, the conductive slip ring is currently the most widely used cost-effective solution.

So, what do you need to know about slip rings?

This type of slip ring has a via in the center. It is mounted on a rotating shaft and is used to transmit power or signals to the electromechanical rotating end. In order to help the continuous and reliable operation of the electrical equipment, the use of this transmission structure can greatly reduce the wiring layout of the electrical equipment and simplify the mechanical structure. More and more applications are used for fully automatic equipment.

导电滑环

What is the difference between a via hole slip ring and other types of slip rings?

The through-hole conductive slip ring has a unique function, the principle is the same as other slip rings, but the structure is different. The thing to consider when choosing which slip ring to install is that, as a user, there is no need to understand the difference in depth. If possible, you only need to provide the relevant requirements to the supplier.

How to use via slip rings?

Insert the slip ring into the shaft, pre-tighten the 4 set screws, and turn the slip ring to make sure it turns smoothly. Be sure to turn normally and then tighten the screw. Insert the anti-rotation lever into the fork (rotation-stop), wire it correctly, and use it after powering on. It should be noted that the fork and anti-rotation rod cannot be forcibly fixed, because the conductive slip ring is assembled, and the rotor and stator are not absolutely concentric.