Welcome Customer !

Membership

Help

Shanghai Qiantuo Trading Co., Ltd
Custom manufacturer

Main Products:

instrumentb2b>Products

5322778 Installation position of Shike wire encoder

NegotiableUpdate on 05/23
Model
Nature of the Manufacturer
Producers
Product Category
Place of Origin

Overview

The installation position of the 5322778 Schr ö dinger encoder is located on a large-diameter hollow shaft and a wide range of clamping options, which eliminates the need for special couplings and can be quickly and easily integrated into many applications. The working voltage range is wide, making it easy to integrate into control systems. The installation time is reduced by the easy to install clamping ring and stator coupling. The design is compact, space saving, and easy to use in narrow installation spaces

Product Details

5322778 Installation position of Shike wire encoder

What is the difference between a wire encoder and a traditional displacement encoder? Traditional displacement encoders (such as gratings, magnetic gratings, LVDTs, etc.) are direct encoders

Sensors for measuring linear or rotational displacement, without the need for mechanical transmission structures, output signals through changes in physical quantities (optical, magnetic, inductive)

number. The principle of grating ruler is to use grating stripes to block light signals and count displacement through photoelectric elements.

Adjustable according to application: Multiple installation options are achieved through various flange specifications and universal stator couplings

Provide metric and imperial axes that can be used in different countries

High mechanical flexibility and support for multiple accessories, making it suitable for a wide range of applications

The compact casing saves valuable installation space

Encoders have a longer lifespan and operate more safely due to their higher protection level, temperature resistance, and bearing life.

Incremental encoders have opened up new application possibilities: they can reliably measure the rotation of large motor shafts at speeds up to 3600 revolutions per minute. The large hollow shaft diameters of the encoder (30 mm and 42 mm) and individually adjustable insulation clamps ensure this. As a result, there is no longer a need to painstakingly connect to smaller encoder shafts. Therefore, using this encoder can achieve numerous applications, even if the installation space of the device is very limited.

Compact and economical in structure, while not compromising basic functionality. Despite being a narrow shell, the allowable shaft loads of 40 N (radial) and 20 N (axial) provide high resistance, which is exactly what many applications require. In order to withstand the high impact and vibration loads of modern dynamic applications, special, mechanically adjustable locking threads are used. This ensures that the screws will not loosen on their own. The shell can also effectively prevent electromagnetic interference, which increases the possibility of using DLS40 in demanding applications.

The wire encoder drives the winding wheel to rotate by pulling out the wire rope, and the spring maintains tension to ensure that the wire strictly corresponds to the rotation angle.

The encoder converts the rotation angle into an electrical signal output, and the length and speed changes of the wire rope can be calculated based on the rotation angle value and the circumference of the winding wheel.

Imagine you have a tape measure in your hand, one end fixed in a certain place and the other end can be pulled out.

What are its functions and working principles? A wire encoder is a sensor used to measure linear displacement or position by pulling a wire

The extension and contraction of objects convert mechanical motion into electrical signals, thereby achieving precise measurement of object displacement, position, and velocity. How exactly is koala

Let me explain how the combination of lines and encoders is used to accomplish these tasks.

5322778 Installation position of Shike wire encoder