9975 0011000 Allicdata Electronics
Allicdata Part #:

BEL4230-1000-ND

Manufacturer Part#:

9975 0011000

Price: $ 190.39
Product Category:

Cables, Wires

Manufacturer: Belden Inc.
Short Description: HOOK-UP 24AWG SOL BRN
More Detail: 24 AWG Hook-Up Wire Solid Brown 300V 1000.0' (304....
DataSheet: 9975 0011000 datasheet9975 0011000 Datasheet/PDF
Quantity: 1000
1 +: $ 173.08000
Stock 1000Can Ship Immediately
$ 190.39
Specifications
Series: --
Part Status: Active
Cable Type: Hook-Up
Wire Gauge: 24 AWG
Conductor Strand: Solid
Conductor Material: Copper, Tinned
Jacket (Insulation) Material: Poly-Vinyl Chloride (PVC)
Jacket (Insulation) Diameter: 0.040" (1.02mm)
Jacket (Insulation) Thickness: 0.010" (0.25mm)
Length: 1000.0' (304.8m)
Voltage: 300V
Operating Temperature: -20°C ~ 80°C
Jacket Color: Brown
Features: --
Description

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Single Conductor Cables (Hook-Up Wire) are a type of electrical wiring often used in a wide variety of applications. This type of wire is well-suited for direct current wiring applications, as well as a variety of industrial, automotive, and even commercial applications. This article will explore the features and functions of 9975 0011000 single conductor cables as well as their associated applications and working principles.

Construction

Single Conductor Cables are made up of one or more insulated cables. Each cable is made up of one or more strands of copper wire, which are individually insulated with either a thin plastic or vinyl coating. The thickness of the insulation will vary depending on the application, but it is typically between .011 and .016 inches in thickness. The cables are usually color-coded to indicate their different requirements.

The cables are usually enclosed in a PVC or polyolefin sheath. This sheath is designed to protect the individual copper strands from electrical shorts, corrosion, and other environmental factors. It also assists in preventing the wires from becoming tangled or abrasive when handled. The type of sheathing used will depend on the application for which the cable is intended, as well as the environment in which it will be used.

Features

9975 0011000 cables have several distinct advantages over other types of electrical wiring. First, because of their self-insulated design, these cables can be used in both wet and dry environments. This means they are suitable for marine use, as well as many other applications where the elements could potentially cause harm to exposed wiring.

These cables are also resistant to oil, abrasion, and heat, making them suitable for a wide variety of industrial applications. Additionally, the cables have a wide temperature range and can be used in temperatures ranging from -60°C to +105°C.

The cables\' thin construction allows them to be easily bent and shaped, making them much easier to install than standard electrical wires. Additionally, they can be quickly and easily joined together using connector plugs or a quick connector. This makes them suitable for a variety of applications where time-saving is a priority.

Applications

9975 0011000 cables can be used in a wide variety of applications. They are commonly used in automotive and industrial wiring, as well as marine applications. Additionally, these cables are also suitable for commercial applications such as lighting, audio/visual equipment, and communications systems.

Their ability to handle temperature extremes, oil, and abrasion makes them well-suited for use in industrial applications such as construction equipment and heavy machinery. These cables are also often used in marine applications such as oil rigs, underwater exploration, and other underwater applications. Additionally, their thin diameter makes them suitable for use in certain medical instruments as well.

Working Principle

9975 0011000 single conductor cables operate on two basic principles: electrical resistance and electrical conductivity. Electrical resistance refers to the amount of resistance a material has to the flow of electricity. Conductivity is the ability of a material to conduct electricity, and is affected by the material\'s ability to transfer/absorb energy.

As current passes through a single conductor cable, electric fields are formed around the wires due to the transfer of electrons. This electric field then affects nearby materials, creating an opposition to the flow of current. This opposition, or resistance, is what causes a voltage drop through the wire. As the voltage drop increases, so does the resistance of the material, resulting in a decrease in current.

The conductivity of a material also affects the flow of current. Electrons will move through materials that are good electrical conductors better than those that are poor electrical conductors. Therefore, materials that offer higher conductivity will result in a lower resistance to current and higher levels of efficiency.

Conclusion

9975 0011000 single conductor cables have a variety of features and benefits that make them suitable for a variety of applications. Their thin construction makes them easy to install in a wide range of environments. In addition, their ability to resist oil, temperature extremes, and abrasion makes them suitable for both wet and dry environments. Finally, their simple working principle of electrical resistance and conductivity makes them a reliable choice for many applications.

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

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