6-1393048-1 Allicdata Electronics
Allicdata Part #:

6-1393048-1-ND

Manufacturer Part#:

6-1393048-1

Price: $ 83.05
Product Category:

Sensors, Transducers

Manufacturer: TE Connectivity AMP Connectors
Short Description: IND HOLLOW SHAFT RES
More Detail: Sensor Wire Leads
DataSheet: 6-1393048-1 datasheet6-1393048-1 Datasheet/PDF
Quantity: 1000
10 +: $ 75.49640
Stock 1000Can Ship Immediately
$ 83.05
Specifications
Series: --
Part Status: Active
For Measuring: --
Technology: --
Rotation Angle - Electrical, Mechanical: --
Linear Range: --
Output: --
Output Signal: --
Actuator Type: --
Linearity: --
Resistance Tolerance: --
Voltage - Supply: 4V
Mounting Type: --
Termination Style: Wire Leads
Operating Temperature: -55°C ~ 150°C
Description

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Position Sensors - Angle, Linear Position Measuring

Position sensors are used to accurately measure the position of an object in relation to a fixed or known reference point. This is usually accomplished by using a physical transducer to measure data, which is then converted into a digital signal that can be interpreted by a computer. The 6-1393048-1 is a type of position sensor, specifically designed for linear and angle measurements.

6-1393048-1 Application Field and Working Principle

The 6-1393048-1 is a type of linear and angle position measuring system. It is primarily used in motion control applications, where precise motion control is required, such as in robotics, machine tools, and automated production lines. The 6-1393048-1 is designed to measure linear and angular motion with excellent accuracy and repeatability. This is accomplished using a combination of physical transducers, such as potentiometers, strain gauges, or encoders, in combination with a digital signal processor (DSP). The 6-1393048-1 uses a series of transducers to measure linear and angular motion. The most common transducers used are potentiometers, which use a rotating shaft to cause resistance changes in the transducer as the shaft rotates, thus allowing for precise measurement of position. Strain gauges can also be used, which measure strain on the transducer, which can then be correlated to position. The 6-1393048-1 also uses a DSP to convert the measurement signals into digital signals. These digital signals are then fed to a computer, which is used to interpret the data and convert it into usable information. This information can then be used to control the position of the object that is being measured. The 6-1393048-1 is an accurate and reliable way to measure linear and angular motion. It is easy to install and use, and the data that it provides can be used to accurately control the position of objects in motion control applications.

Advantages and Disadvantages of 6-1393048-1

The 6-1393048-1 has many advantages that make it an attractive choice for position sensing applications. It has excellent accuracy and repeatability, which allows for precise control of motion. It also has a low cost, making it affordable for most applications. Additionally, the 6-1393048-1 is easy to install and use, meaning that it can be quickly implemented in most applications. The 6-1393048-1 also has some disadvantages. One of the most significant is that it is limited to linear and angular measurements, and is not suitable for applications requiring other types of position measurements. Additionally, the precision that the 6-1393048-1 can provide can be limited by the accuracy of the transducer used in the system. Furthermore, the 6-1393048-1 requires the use of a digital signal processor, which can add to the cost and complexity of the system.

Conclusion

The 6-1393048-1 is a type of position sensing system that is specifically designed for linear and angular measurements. It uses a combination of transducers and a digital signal processor to accurately measure motion, and is an accurate and reliable method of measuring position. However, it is limited to linear and angular measurements, and is not suitable for applications requiring other types of measurements. Additionally, the precision of the system can be limited by the accuracy of the transducers used.

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

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