02425.35T.05 Cables, Wires |
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Allicdata Part #: | 02425.35T.05-ND |
Manufacturer Part#: |
02425.35T.05 |
Price: | $ 238.36 |
Product Category: | Cables, Wires |
Manufacturer: | General Cable/Carol Brand |
Short Description: | CABLE 3COND 12AWG YELLOW 250' |
More Detail: | 3 Conductor Multi-Conductor Cable Yellow 12 AWG 2... |
DataSheet: | 02425.35T.05 Datasheet/PDF |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
1 +: | $ 216.69500 |
Series: | -- |
Part Status: | Active |
Lead Free Status / RoHS Status: | -- |
Cable Type: | Multi-Conductor |
Moisture Sensitivity Level (MSL): | -- |
Number of Conductors: | 3 |
Wire Gauge: | 12 AWG |
Conductor Strand: | 65/30 |
Conductor Material: | Copper, Bare |
Jacket (Insulation) Material: | Carolprene |
Jacket (Insulation) Diameter: | 0.595" (15.11mm) |
Shield Type: | -- |
Length: | 250.0' (76.2m) |
Jacket Color: | Yellow |
Ratings: | -- |
Features: | -- |
Voltage: | 600V |
Operating Temperature: | -40°C ~ 90°C |
Usage: | -- |
Jacket (Insulation) Thickness: | 0.0450" (1.143mm) |
Conductor Insulation: | Ethylene Propylene Terpolymer Rubber (EPDM) |
Shield Material: | -- |
Shield Coverage: | -- |
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Multiple conductors cables are becoming increasingly popular in a wide variety of applications. In the 02425.35T.05 application field, multiple conductors are used to transmit a variety of electrical signals over long distances. In this application, the multiple conductors are connected in a twisted formation that minimizes the interference of electrical fields generated by each conductor.
The individual wires of a multiple conductor cable are insulated from each other, resulting in a significantly lower level of interference than a single conductor cable. This is due to the fact that the multiple conductors act as an impedance buffer which reduces the amount of cross-talk between each conductor. Additionally, the twisted formation of the multiple conductors helps to reduce the amount of crosstalk that takes place over the entire length of the cable.
The 02425.35T.05 application field requires a significant amount of power transmission for long distances. This type of power transmission requires a steady current to maintain a steady voltage throughout the length of the cable. Multiple conductor cables are the best choice for this application because they can handle the high current loads without serious voltage drop. Furthermore, the multiple conductors minimize the amount of interference between each cable, and also reduce the risk of electrostatic discharge (ESD) from occurring.
The 02425.35T.05 application field also requires a high degree of reliability for data transmission. Multiple conductor cables are designed to minimize the amount of signal distortion that can occur between each conductor, making them well suited for long distance data transmission. Additionally, since multiple conductors are used in this application, each conductor can be tuned for specific frequency ranges, which allows data transmission between different frequencies to occur without interference.
In the 02425.35T.05 application field, multiple conductor cables are designed to be extremely reliable and capable of handling high currents. They offer the benefits of low interference, low voltage drop, and high signal accuracy. The multiple conductor cables are typically constructed using copper, as it is a great conductor of electricity and is very cost effective. Furthermore, copper cables are often encased in a plastic or rubber compound to increase their durability and longevity.
The working principle of multiple conductor cables for the 02425.35T.05 application field is quite simple. When a direct current is applied, the individual conductors of the cable create an electric field that results in an electric current being generated. This electric current is then carried along the length of the cable, and depends on the individual resistance of each conductor.
It is important to note that the multiple conductor cable works most effectively when the current is kept within an optimal range. This means that if the current is too high, it can increase the amount of resistance that the cables will experience. This can cause the voltage drop to increase and result in a decrease in signal accuracy. Additionally, if the current is too low, the cables may not be able to carry enough voltage to efficiently transmit data.
In summary, the 02425.35T.05 application field utilizes multiple conductor cables to provide a reliable, low interference, low voltage drop, and accurate data transmission. The individual conductors of these cables are insulated from each other, minimizing the amount of interference that takes place. Additionally, these cables can be used to carry power over long distances and can be tuned to different frequencies for specific applications. Lastly, the working principle of these cables is based on the amount of current that is running across the wire, which determines the amount of resistance experienced by the individual conductors.
The specific data is subject to PDF, and the above content is for reference
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