Allicdata Part #: | S108802CR-ND |
Manufacturer Part#: |
S108802CR |
Price: | $ 0.00 |
Product Category: | Connectors, Interconnects |
Manufacturer: | Harwin Inc. |
Short Description: | JUMPER SMD |
More Detail: | Position Shunt Connector Silver |
DataSheet: | S108802CR Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | -- |
Packaging: | -- |
Part Status: | Obsolete |
Type: | -- |
Gender: | -- |
Number of Positions or Pins (Grid): | -- |
Pitch: | -- |
Height: | -- |
Contact Finish: | Silver |
Contact Finish Thickness: | -- |
Color: | -- |
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Shunts, Jumpers — S108802CR Application Field and Working Principle
A shunt, also known as a jumper, is a device used to create a temporary or semi-permanent connection between two electrical conductors without using a voltage source. They come in many shapes and sizes depending on their application, and are used in a variety of industrial and commercial applications. One such application is the use of the S108802CR shunt, a device that can provide an accurate measurement of electrical current.
The S108802CR is primarily designed for use in medium- and low-voltage control systems. Its main purpose is to allow the voltage to be directly measured without the need for additional equipment. It is used for a variety of applications such as detecting over current and monitoring system status. The S108802CR provides an accurate and reliable current measurement at the point of connection, allowing the user to monitor or regulate the current with precision.
The S108802CR is a split-core shunt. It consists of two basic parts, the primary shunt and the secondary shunt. The primary shunt is the component that is installed in the circuit. The secondary shunt is connected to the primary shunt via a pair of high-conductivity copper bars. The connection between the two shunt’s is used to measure the electrical current of the system.
The primary shunt of the S108802CR consists of two thin copper strips that are joined together. The strips form a U-shaped structure. The two ends of the strips connect to the two current conductors. When current flows through the primary shunt, the magnetic field created causes the strips to move apart, increasing the resistance between them. The increased resistance creates an electric current in the secondary shunt.
The secondary shunt is connected to a measuring device, such as a voltmeter, ammeter or other electronic measuring device. The measuring device measures the voltage between the two ends of the secondary shunt. The voltage across the secondary shunt is then used to calculate the current through the primary shunt, providing accurate measurements of electrical current.
The S108802CR is ideal for use in applications such as motor control, power monitoring, and power factor correction. The device can provide an accurate measurement of current without the need for additional equipment. The S108802CR is also available in custom sizes and configurations, which can be tailored to meet the specific requirements of the application.
In conclusion, the S108802CR is a versatile and effective solution for measuring electrical current. The device provides an accurate measurement of current at the point of connection without the need for additional equipment. Its compact size makes it easy to install and its split-core design allows for use in a variety of applications. The S108802CR is an ideal solution for applications such as motor control, power monitoring, and power factor correction.
The specific data is subject to PDF, and the above content is for reference
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