83702 0023000 Allicdata Electronics
Allicdata Part #:

BEL6369-3000-ND

Manufacturer Part#:

83702 0023000

Price: $ 11.78
Product Category:

Cables, Wires

Manufacturer: Belden Inc.
Short Description: CBL 2COND 16AWG SHLD
More Detail: 2 (1 Pair) Conductor Multi-Conductor Cable Red 16 ...
DataSheet: 83702 0023000 datasheet83702 0023000 Datasheet/PDF
Quantity: 1000
1 +: $ 10.71000
Stock 1000Can Ship Immediately
$ 11.78
Specifications
Shield Type: Foil, Braid
Length: 3000' (914.4m)
Jacket Color: Red
Voltage: 300V
Operating Temperature: -70°C ~ 200°C
Jacket (Insulation) Thickness: 0.0140" (0.356mm)
Conductor Insulation: Fluorinated Ethylene-Propylene (FEP)
Shield Material: Aluminum; Copper, Tinned
Shield Coverage: 100%, 85%
Series: --
Part Status: Active
Cable Type: Multi-Conductor
Number of Conductors: 2 (1 Pair)
Wire Gauge: 16 AWG
Conductor Strand: 19/29
Conductor Material: Copper, Tinned
Jacket (Insulation) Material: Fluorinated Ethylene-Propylene (FEP), Plenum
Jacket (Insulation) Diameter: 0.196" (4.98mm)
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

Multiple conductor cables, specifically 83702 0023000, are widely used in today’s advanced electrical and mechanical systems. Multiple conductor cables are generally defined as cables with more than one conductor in a single jacket. Each conductor is typically composed of multiple individual conductors of the same size and insulation type. The conductors are typically arranged side by side or in a helix pattern.

The application field of cables like 83702 0023000 is quite vast. Some applications include power and control cables used in commercial and industrial applications, audio and video cables, telecommunications cables, and medical device cables. Commonly used in instrumentation, automated factory controls, and audio systems, 83702 0023000 cables are designed for superior signal transmission. 83702 0023000 cables are also commonly utilized in medical equipment and laboratory experiments due to their incredibly high performance.

When looking at multiple conductor cables, one can identify differences in their performance by their working principles. 83702 0023000 cabling typically operates off an alternating current (AC) power supply, running an electric current through the conductors and passing the current along from one branch to the next in a single loop. While 83702 0023000 cables operate on a very basic principle, newer multiple conductor cabling can use a combination of AC and direct current (DC) power for enhanced performance in certain applications.

Another key factor in the working principle of 83702 0023000 cables is their use of a dielectric material, or insulating material that separates the conductors. The dielectric material used in 83702 0023000 cables is typically a foamed polyethylene that offers superior insulation performance and low thermal heating properties. This material is designed to ensure a low electrical resistance and minimal losses of signal resulting in strong signal transmission.

83702 0023000 cables are considered to be low-capacitance cables, meaning they are designed to reduce the amount of electrical storage component associated with signal transmission. This is achieved by strategically balancing the cable\'s capacity to arise and discharge voltage components as the current passes along the conductors. This design helps to minimize signal degradation over long cable runs.

Finally, 83702 0023000 cables are also considered to be noise-shielding cables, meaning they are designed to reduce the amount of noise and other electromagnetic interference. The noise-shielding layer of 83702 0023000 cables is typically made of a braided copper wire mesh or aluminum foil, which is designed to reduce electromagnetic induction. This layer helps to prevent noise from degrading the signal by reflecting the noise energy away from the conductors.

In conclusion, multiple conductor cables like 83702 0023000 are widely employed in today’s industrial and medical applications and offer superior performance and reliable signal transmission. Their working principles, including their adoption of an alternating current power supply, dielectric material, low capacitance design, and noise-shielding elements, enable them to accurately transfer signals over long cable runs with minimal signal loss.

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

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