C0685A.18.10 Allicdata Electronics
Allicdata Part #:

C0685A.18.10-ND

Manufacturer Part#:

C0685A.18.10

Price: $ 216.70
Product Category:

Cables, Wires

Manufacturer: General Cable/Carol Brand
Short Description: CABLE 8COND 24AWG GRAY SHLD 500'
More Detail: 8 Conductor Multi-Conductor Cable Gray 24 AWG Foil...
DataSheet: C0685A.18.10 datasheetC0685A.18.10 Datasheet/PDF
Quantity: 1000
Moisture Sensitivity Level (MSL): 1 (Unlimited)
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
50 +: $ 197.00200
Stock 1000Can Ship Immediately
$ 216.7
Specifications
Shield Type: Foil, Braid
Shield Coverage: 100%, 70%
Shield Material: Aluminum; Copper, Tinned
Conductor Insulation: Polypropylene (PP)
Jacket (Insulation) Thickness: 0.0320" (0.813mm)
Usage: Computer
Operating Temperature: -20°C ~ 80°C
Voltage: 30V
Features: Low Capacitance
Ratings: UL Style 2919
Jacket Color: Gray
Length: 500.0' (152.4m)
Series: --
Jacket (Insulation) Diameter: 0.276" (7.01mm)
Jacket (Insulation) Material: Poly-Vinyl Chloride (PVC)
Conductor Material: Copper, Annealed Tinned
Conductor Strand: 7/32
Wire Gauge: 24 AWG
Number of Conductors: 8
Moisture Sensitivity Level (MSL): --
Cable Type: Multi-Conductor
Lead Free Status / RoHS Status: --
Part Status: Active
Description

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Multiple Conductor cables refer to a type of cable that contains two or more insulated conductors that are bundled or twisted together within a single outer sheath or jacket. C0685A.18.10 is one type of multiple conductor cable that has the capability of serving a wide array of applications. This article will describe the various application fields in which C0685A.18.10 is used and explain its practical workings.

Application Field

One of the key features of C0685A.18.10 is its ability to be integrated into a wide range of applications. Commonly, it is utilised in power and communication networks to transfer current and data through its multiple conduits. C0685A.18.10 is typically used to withdraw power from alternating current (AC) power sources in the commercial and industrial sectors. Due to its ability to deliver power and communication simultaneously, this cable type is frequently used to create internal networks among computers and media devices. Common application cases of C0685A.18.10 include:

  • AC power supply lines
  • Telephone and data transmission lines
  • Distribution of power and other signals for machinery such as elevators
  • Provision of signal pathways for signal transmitters and receivers.

Working Principle

The working mechanism of C0685A.18.10 is based on simple electrical principles. Each conductor is made of a special alloy or combination of alloys that have the capability to be superconductive and therefore capable of transferring electrical current within set limits. The outer sheath or jacket of the cable is designed to protect the conductors from elements such as dust, moisture and heat. It is also designed to prevent abrasion and mechanical damage to the conductors.

The design of C0685A.18.10 ensures that it can effectively transfer electrical current from one conductor to another. It is able to do this through a process called capacitance coupling. This process works by the alternating current (AC) signal entering the conductors and being seen as a capacitor. As capacitors, the conductors can store the electrical charges and exchange them with the other conductor or the conductor wire when an equal and opposite electrical charge is present. When this happens, the capacitors gain energy and separate the charges, allowing electrical current to travel through the cable. As a result, the current passes through all the conductors, allowing it to perform the duties for which it was designed.

Conclusion

C0685A.18.10 is a type of multiple conductor cable that is frequently used to power AC sources and distribute electrical current and data. Additionally, it is often used to create internal connections between machines and media devices. Furthermore, its working principle is based on the process of capacitance coupling, which allows the electrical charge to be stored and exchanged between the conductors so that electrical current can pass properly through the cable.

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

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