30-00525 Allicdata Electronics

30-00525 Cables, Wires

Allicdata Part #:

T1352-153-ND

Manufacturer Part#:

30-00525

Price: $ 232.66
Product Category:

Cables, Wires

Manufacturer: Tensility International Corp
Short Description: CABLE 9COND 24AWG BLK 153M
More Detail: 9 Conductor Multi-Conductor Cable Black 24 AWG 50...
DataSheet: 30-00525 datasheet30-00525 Datasheet/PDF
Quantity: 4
Moisture Sensitivity Level (MSL): 1 (Unlimited)
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
1 +: $ 211.51000
5 +: $ 188.00900
10 +: $ 170.38400
25 +: $ 158.63300
Stock 4Can Ship Immediately
$ 232.66
Specifications
Shield Type: --
Shield Coverage: --
Shield Material: --
Conductor Insulation: Poly-Vinyl Chloride (PVC)
Jacket (Insulation) Thickness: 0.0299" (0.759mm)
Usage: --
Operating Temperature: 80°C
Voltage: 300V
Features: --
Ratings: UL Style 2464
Jacket Color: Black
Length: 500.0' (152.4m)
Series: --
Jacket (Insulation) Diameter: 0.236" (5.99mm)
Jacket (Insulation) Material: Poly-Vinyl Chloride (PVC)
Conductor Material: Copper, Tinned
Conductor Strand: 11/34
Wire Gauge: 24 AWG
Number of Conductors: 9
Moisture Sensitivity Level (MSL): --
Cable Type: Multi-Conductor
Lead Free Status / RoHS Status: --
Part Status: Active
Description

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Multiple Conductor Cables are among the most versatile and popular types of cables used for a wide variety of electrical applications. These cables consist of two or more conductors that are rolled together in a flexible sheath, forming a “bus” or “mesh” of conductors. Depending on the type of cable, the number of conductors can vary from two to twenty or more. The primary function of multiple conductor cables is to provide an efficient and reliable means of delivering power over longer distances, as they are capable of withstanding greater levels of resistance than individual wires.

30-00525 applications field and working principle relates to the electrical performance of multiple conductor cables. These cables are designed to reduce impedance value, meaning that they are able to conduct electricity with less loss of energy or signal strength. The insulation surrounding the conductors also helps to reduce electrical losses by keeping the electrical signals relatively stable over longer distances. This makes multiple conductor cables ideal for use in applications that require high power levels over long distances, such as power transmission or broadcast transmission. Additionally, the flexibility of these cables also allows them to be used in applications where individual wires are too inflexible, such as those in robotic arms or other articulated structures.

Multiple conductor cables operate using a variety of different principles, such as twisting multiple strands together to form a bundle, or using conductors of different sizes that are adjusted to minimize radio frequency interference. In most cases, the individual conductors are entangled with one another in order to minimize the flow of electrical current through the conductor, reducing energy loss and improving performance. Additionally, these cables can also be configured to provide different levels of electrical resistance, ensuring that the cable is suitable for the application.

In addition to providing efficient power transmission, multiple conductor cables are often required to support data and communication systems. Data can be provided via a variety of different methods, such as through digital signals or physical connections that link different devices in a network. For example, digital signals carried over multiple conductor cables can be used to support high-speed data transfer, allowing for a greatly increased level of data throughput.

Crossover cables are another type of multiple conductor cable that are often used in technology and communication systems. These cables are specifically designed so that each conductor interconnects with a conductor on the opposite side of the cable, hence the “crossover” name. Crossover cables are often used in situations where two or more devices must be connected directly, without the need for an intermediary device or platform.

While multiple conductor cables are most commonly used in applications where power and data transmission are required, these cables can also be used to create energy efficient lighting systems. By utilizing multiple conductors in a series, low voltage lighting systems can be created that require less energy to operate yet still provide enough illumination for a large room or space.

Overall, multiple conductor cables are an important tool in the electrical and technology industries and can be used in a vast range of applications. They are highly reliable and efficient for power and data transfer, and can be used in a variety of situations where individual wires are not suitable.

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

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