38118 0105000 Allicdata Electronics
Allicdata Part #:

BEL4872-5000-ND

Manufacturer Part#:

38118 0105000

Price: $ 0.69
Product Category:

Cables, Wires

Manufacturer: Belden Inc.
Short Description: HOOK-UP STR 18AWG XLPE
More Detail: 18 AWG Hook-Up Wire 16/30 Black 2000V 5000' (1524....
DataSheet: 38118 0105000 datasheet38118 0105000 Datasheet/PDF
Quantity: 1000
1 +: $ 0.63000
Stock 1000Can Ship Immediately
$ 0.69
Specifications
Series: --
Part Status: Active
Cable Type: Hook-Up
Wire Gauge: 18 AWG
Conductor Strand: 16/30
Conductor Material: Copper, Tinned
Jacket (Insulation) Material: Polyethylene (XLPE), Irradiated
Jacket (Insulation) Diameter: 0.209" (5.31mm)
Jacket (Insulation) Thickness: 0.078" (1.98mm)
Length: 5000' (1524.0m)
Voltage: 2000V
Operating Temperature: -40°C ~ 90°C
Jacket Color: Black
Features: --
Description

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Single Conductor Cables, commonly known as hook-up wire, are used in a variety of applications. This type of wire is used in the automotive, aerospace, electronics and telecommunications industries, as well as in residential, commercial and industrial wiring. The main purpose of using single conductor cables is to provide a reliable electrical connection between components, and to ensure that electrical signals can travel between components without interruption or interference. In this article, we will discuss the 38118 0105000 application field and working principle of single conductor cables.

The 38118 0105000 Application Field is primarily related to the aerospace, automotive and electronic industries. This cable is designed for use in the building of thin-gauge miniature wiring assemblies, which are very important in the aerospace and automotive industries. This cable is designed with an insulation thickness of 0.10 mm and it is made from a series of tightly wound insulated conductors. This cable is also designed to provide superior electrical performance, as well as excellent heat and vibration resistance. This cable is also designed to be resistant to abrasion and for additional protection against corrosion.

The working principle of single conductor cables is based on the mobility of charge carriers. These charge carriers, known as electrons, travel through the conductors and are able to transfer electrical energy from one component to another. The electrons are moved through the conductors by using a voltage potential, which is essentially an electric field. As the electrons travel through the cable, they experience a slight resistance, due to the materials used to make the cable. This resistance helps to maintain the stability of the current, and prevents the current from becoming too powerful.

In order to ensure that the current flows smoothly, single conductor cables must be tightly wound and insulated. The insulation helps to protect the cable against external interference, as well as direct contact with hazardous materials. The insulation also ensures that the electrons travel through the cable at the same speed, and that the current is able to travel through the conductors without interruption. The insulation also helps to protect the cable from moisture, and reduces the risk of electrical arcs occurring.

Single conductor cables are most commonly used in the automotive, aerospace and electronics industries, as they provide reliable and efficient circuits. These cables can also be used for telecommunications, as well as in residential and industrial electrical wiring. These cables are highly durable, and they can withstand extreme temperatures, vibrations and shocks, making them ideal for use in harsh environments. Single conductor cables are also very efficient, as they can have very low power losses, reducing the cost of electricity.

In conclusion, single conductor cables are used in a variety of applications, predominantly in the automotive, aerospace and electronics industries. The 38118 0105000 application field is primarily related to the aerospace and automotive industry, as this cable is designed for thin-gauge miniature wiring assemblies. The working principle of these cables is based on the movement of electrons through the cable, which is accomplished by using a voltage potential. Single conductor cables are highly durable, and they are also very efficient, meaning that they can reduce the cost of electricity.

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

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