339-10-104-40-000000 Allicdata Electronics
Allicdata Part #:

ED3270-ND

Manufacturer Part#:

339-10-104-40-000000

Price: $ 4.32
Product Category:

Connectors, Interconnects

Manufacturer: Mill-Max Manufacturing Corp.
Short Description: CONN SHUNT 4POS INSUL 2.54MM GLD
More Detail: 4 (1 x 4) Position Shunt Connector Insulated 0.10...
DataSheet: 339-10-104-40-000000 datasheet339-10-104-40-000000 Datasheet/PDF
Quantity: 38
1 +: $ 3.88710
10 +: $ 3.72519
25 +: $ 3.40150
50 +: $ 3.23946
100 +: $ 3.07749
250 +: $ 2.75356
500 +: $ 2.59157
1000 +: $ 2.26762
2500 +: $ 2.15424
Stock 38Can Ship Immediately
$ 4.32
Specifications
Series: 339
Packaging: Tube 
Part Status: Active
Type: Insulated
Gender: Male Pins
Number of Positions or Pins (Grid): 4 (1 x 4)
Pitch: 0.100" (2.54mm)
Height: --
Contact Finish: Gold
Contact Finish Thickness: 10.0µin (0.25µm)
Color: --
Description

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Shunts and jumpers, with their 339-10-104-40-000000 application fields and working principles, are widely used in electronic and electrical components. These components are responsible for facilitating the connection of various electrical circuits in a variety of applications.

Shunts are components used to connect two electrical points to form a single circuit. These are used in various applications, such as voltage and current metering, fault detection, and current-limiting applications. They are primarily used in circuits that need to control the voltages and currents within the circuit. They are usually a low-cost solution to make electrical connections between two points.

Jumpers, on the other hand, are components designed for connecting two or more electrical junctions to form a single circuit. These components are typically used when circuits need to be connected over a long distance. Jumpers can also be used in applications requiring higher currents, such as in in-line fuses and breakers. Jumpers are used in a variety of electrical applications, including power distribution, automotive electronics, and industrial control.

339-10-104-40-000000 application fields and working principles are based on the number of points present in an electrical circuit. To illustrate, the working principle of a four-point shunt is based on voltage division, while that of a two-point shunt is based on current division. Likewise, the working principle of a four-point jumper is based on voltage division, whereas the working principle of a two-point jumper is based on current division.

In general, 339-10-104-40-000000 application fields and working principles are based on the division of voltage or current in reference to the number of points present in an electrical circuit. The number of points in a circuit can vary depending on the complexity of the circuit and the amount of current that needs to be transferred. For instance, a two-point shunt is suitable for low-current applications, while a four-point jumper may be suitable for higher-current applications.

Shunts and jumpers are also used in parallel circuits where two or more paths of a circuit are connected in parallel. In such applications, the total current is divided among the two or more paths according to the respective capacities of the components. This helps to reduce the risk of overload and short circuit. In addition, various safety precautions are taken when implementing shunt and jumper connections to prevent damage to the electrical components.

Shunts and jumpers are essential components of virtually any electronic and electrical system. They have a wide range of applications and can be used in a variety of ways to improve circuit performance and reliability. It is important to ensure that the correct application fields and working principles are applied when using them in order to maximize their effectiveness.

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

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