1-826853-1 Allicdata Electronics
Allicdata Part #:

1-826853-1-ND

Manufacturer Part#:

1-826853-1

Price: $ 1.40
Product Category:

Connectors, Interconnects

Manufacturer: TE Connectivity AMP Connectors
Short Description: SHUNT CONN.ASSY 1P
More Detail: 1 (1 x 1) Position Shunt Connector Gray Open Top ...
DataSheet: 1-826853-1 datasheet1-826853-1 Datasheet/PDF
Quantity: 1000
1000 +: $ 1.27553
Stock 1000Can Ship Immediately
$ 1.4
Specifications
Series: AMPMODU Mod I
Packaging: Bulk 
Part Status: Active
Type: Open Top
Gender: Female Sockets
Number of Positions or Pins (Grid): 1 (1 x 1)
Pitch: --
Height: 0.315" (8.00mm)
Contact Finish: Tin
Contact Finish Thickness: --
Color: Gray
Description

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Shunts and jumpers are two of the more common types of fields and working principles used in electrical circuits. But what exactly are these components and what do they do? In this article, we\'ll take a closer look at what they are and how they\'re used in the application field and working principle 1-826853-1.

What Is a Shunt?

A shunt is an electrical component that provides an alternate path for current flow in a circuit. This alternate path of current flow is known as the shunted path. By providing an alternative route for excess current to flow, the shunt allows the circuit to persist and operate without being overloaded.

One example of a shunt application is in an audio amplifier. The audio amplifier typically has an output stage that is driven by a voltage amplifier. The output stage may be temporarily overloaded, which in turn can cause the voltage amplifier to become overloaded when the shunt is not present. By having the shunt in the audio amplifier, it enables the amplifier to remain operational even under overloading conditions.

What Is a Jumper?

A jumper is an electrical connection that bridges two or more conductive points in a circuit. The jumper creates a continuous electrical path from one point to another, allowing current to flow freely from one side of the connection to the other. A jumper is most commonly used to bypass a break or gap in the circuits’ main path. This can increase the efficiency of the circuit as well as reduce the potential for shorts and other problems.

One example of a jumper application is in a car audio system. The factory stereo system may have a gap in its wiring harness where a new component is to be installed. To get the new component working properly, a jumper should be used to bridge the gap and provide the necessary electrical connection.

Shunts and Jumpers in the Application Field 1-826853-1

The application field and working principle 1-826853-1 is an industrial process control system. The primary purpose of this system is to manage multiple processes within an industry or manufacturing plant. The system can monitor data from a wide range of components, such as temperature, pressure, and flow. It can then process this data to trigger automated actions, such as opening and closing valves and controlling motors.

In this application, shunts and jumpers are used to create a continuous electrical path from one component to another. This allows current to flow through the entire system, thereby keeping it operational and allowing the data to be processed. Shunts and jumpers can be used to bypass any defects in the wiring or connections, and they can be used to bypass any faulty components.

In some applications, the shunts and jumpers may be inserted into the system as temporary connections until the other components are repaired or replaced. This helps to minimize downtime and optimize overall operations.

Conclusion

Shunts and jumpers are very useful and often overlooked components in the application field and working principle 1-826853-1. They provide a convenient and effective alternative to having to rewire an entire system in order to fix a single component. They are also useful for bypassing faulty components and providing a continuous flow of current.

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

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