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

339-40-104-40-000000-ND

Manufacturer Part#:

339-40-104-40-000000

Price: $ 9.23
Product Category:

Connectors, Interconnects

Manufacturer: Mill-Max Manufacturing Corp.
Short Description: HORIZ SMD JMPR
More Detail: 4 (1 x 4) Position Shunt Connector Insulated 0.10...
DataSheet: 339-40-104-40-000000 datasheet339-40-104-40-000000 Datasheet/PDF
Quantity: 1000
50 +: $ 8.39839
Stock 1000Can Ship Immediately
$ 9.23
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: Tin
Contact Finish Thickness: 200.0µin (5.08µm)
Color: --
Description

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Shunts and jumpers have become mainstays of power distribution systems, and are often used in various industrial applications where high power containment and control are required. But what are shunt and jumpers, and how do they work? In this article, we’ll explore the workings of 339-40-104-40-000000 application field and working theory of shunts and jumpers.

What Is a Shunt?

A shunt is a device that is installed within the power distribution circuit to allow for additional protection or more effective regulation of the flow of electrical current along the circuit. Shunts consist of two terminals, one of which is connected to the power line and the other which is connected to a control device, such as an overload protection system. The shunt diverts excess electrical current away from the power line, thereby protecting the integrity of the power line and protecting any downstream components from dangerous overloads.

What Is a Jumper?

A jumper is designed to allow for continuity within a circuit. Jumpers are typically used to bypass a component or to allow a current to pass through a circuit without actually affecting the current flow of the circuit. It is essentially an electrical short circuit that does not interfere with the power flow of the circuit. Jumpers are commonly used in conjunction with devices such as switches and relays in order to create a specific desired effect.

339-40-104-40-000000 Application Field and Working Principle

339-40-104-40-000000 application field and working principle are designed to have a capacity to be used in connection with the power supply line. It should be capable of carrying high voltage and current at the rated voltage and amperage. And since it is a highly efficient circuit breaker device, it needs to perform its function without any fluctuations or failures, and in a highly reliable manner. Ideally, any 339-40-104-40-000000 application field and working principle should have a better life span than the shunt it replaces and should have the ability to withstand the more rigorous environmental conditions.

339-40-104-40-000000 application fields are in widespread use in energy and power networks, especially in high voltage systems. It is used to protect the circuitry from overvoltage and overcurrent conditions. It redirects the excess electricity current away from the main circuit to a bypass circuit, preventing any type of permanent damages or system malfunctions. Typically, it is used with overload protectors like terminal blocks, wire insulation, and line protectors. In addition, this type of device is also used with power relays and surge protectors to control the flow of electricity and prevent sudden spikes and drops.

The working principle of a 339-40-104-40-000000 application field is quite simple. When the main power supply line is working normally, the current travels through the main circuit in the conventional manner. However, when the voltage level goes above a predetermined level, the current is diverted and redirected via the shunt into the bypass circuit. This protects the main circuit and prevents any malfunctions or permanent damage that could result from an overload. This is why a 339-40-104-40-000000 application field is so crucial for current control in high voltage and current applications.

In conclusion, shunt and jumpers are essential components of power and energy distribution systems. Shunts provide additional protection in cases of excessive current while jumpers allow for continuity in a circuit. And when technologies like the 339-40-104-40-000000 application field is combined with other protective elements like overload protectors and surge protectors, it provides a very effective and reliable current control system.

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

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