GS8362 Allicdata Electronics
Allicdata Part #:

GS8362-ND

Manufacturer Part#:

GS8362

Price: $ 181.50
Product Category:

Sensors, Transducers

Manufacturer: Honeywell Sensing and Productivity Solutions
Short Description: POTENTIOMETER
More Detail: Sensor
DataSheet: GS8362 datasheetGS8362 Datasheet/PDF
Quantity: 1000
100 +: $ 164.99700
Stock 1000Can Ship Immediately
$ 181.5
Specifications
Series: *
Part Status: Not For New Designs
Description

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Position sensors are broadly defined to include various types of devices capable of measuring the position of a target object with respect to a reference line, plane, or point. The GS8362 is a type of position sensor used to measure both angle and linear position, and is most commonly employed in a wide range of applications. This article provides an overview of the GS8362, including its various applications and its general working principle.

The GS8362 is a multi-dimensional, integrated sensor system, designed to measure both angle and linear position. It features high accuracy, fast response times, and a wide dynamic range. It is typically used to measure the angle and position of a rotating shaft, or similar target object, with respect to a stationary reference point. This makes it ideal for applications in which precision measurements of angle and/or linear position are required.

The GS8362 includes a multi-turn optical encoder for angle measurements, and a magnetostrictive linear positioning mechanism for linear measurements. The optical encoder works by using a focusing lens mounted on the rotating shaft to project an image onto a glass scale plate. A light source is used to illuminate the scale plate, allowing the focused images to be read and interpreted. This allows the GS8362 to detect and measure changes in the angle of the shaft with great accuracy.

The magnetostrictive linear positioning mechanism uses a combination of magnets, eddy current, and magnetic force to detect changes in linear position. A motioning actuator is attached to the reference point, and a magnetostrictive sensing device is attached to the rotating shaft. As the shaft is rotated, changes in the magnetic field created by the motioning actuator are detected by the magnetostrictive device and translated into changes in linear position.

The GS8362 is usually integrated into other sensors and devices to allow for more accurate measurements of a target object. For example, an encoder might be mounted on a motor shaft, and the GS8362 would measure the angle of the shaft with respect to the motor. Similarly, the GS8362 can be integrated with a linear position measurement system to measure the linear position of the shaft. In this way, the GS8362 can be used in combination with other sensors to measure and display changes in both angle and linear position.

The GS8362 is widely used in many industries, from manufacturing and robotics to automotive, aerospace, and defense. In robotics, it is often used to measure and regulate the movement of robotic arms and legs to ensure precision and accuracy in pre-programmed robotic tasks. In the automotive industry, it’s commonly employed to measure the position of steering rods, transmission gears, exhaust valves, and other components to maintain optimal performance. In manufacturing, the GS8362 can be used to measure the rate at which materials are fed into a machine, or the rate at which a production line is moved.

In aerospace and defense, the GS8362 is used to measure the angle and linear position of navigation controls in aircraft and helicopters. It can also be used in military radar systems to accurately measure the angle of the antenna to ensure optimal performance. The GS8362 is also employed in seismic sensing systems, allowing for precise detection and identification of seismic activity.

The GS8362 is an important component in many applications as it allows for precise and accurate measurements of both angles and linear positions. By incorporating the optical encoder and magnetostrictive linear positioning device, the GS8362 can be used for a wide range of applications, from robotics and manufacturing to military navigation and seismic sensing.

The specific data is subject to PDF, and the above content is for reference

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