30-00341 Allicdata Electronics
Allicdata Part #:

T1253-305-ND

Manufacturer Part#:

30-00341

Price: $ 165.23
Product Category:

Cables, Wires

Manufacturer: Tensility International Corp
Short Description: CBL 1COND 22AWG SHLD BLK 305M
More Detail: 22 AWG Hook-Up, Shielded Wire 17/34 Black 300V 100...
DataSheet: 30-00341 datasheet30-00341 Datasheet/PDF
Quantity: 1000
Moisture Sensitivity Level (MSL): 1 (Unlimited)
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
1 +: $ 150.21100
5 +: $ 133.52100
10 +: $ 121.00300
25 +: $ 112.65900
50 +: $ 108.48600
Stock 1000Can Ship Immediately
$ 165.23
Specifications
Jacket (Insulation) Material: Poly-Vinyl Chloride (PVC)
Features: --
Ratings: UL Style 1185
Jacket Color: Black
Operating Temperature: -20°C ~ 80°C
Voltage: 300V
Length: 1000.0' (304.8m)
Jacket (Insulation) Thickness: 0.015" (0.38mm)
Jacket (Insulation) Diameter: 0.108" (2.74mm)
Series: --
Conductor Material: Copper, Tinned
Conductor Strand: 17/34
Wire Gauge: 22 AWG
Moisture Sensitivity Level (MSL): --
Cable Type: Hook-Up, Shielded
Lead Free Status / RoHS Status: --
Part Status: Active
Description

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Single Conductor Cables (Hook-Up Wire) are used in various applications where lightweight, low current circuits are needed. The 30-00341 is one such type used for applications requiring flexibility and high electrical resistance to corrosion and abrasion. The conductors of this cable are typically constructed with several strands of copper wire which are twisted together to form a single conductor. Then the single conductor cable is surrounded in either a semi-rigid or a highly flexible jacket material.

Application Field

The 30-00341 Single Conductor Cable is commonly used in internal wiring applications for automotive, electronic, medical, HVAC and instrumentation applications. The cable is also popular in the industrial, appliance, transportation and military industries due to its lightweight and flexibility. It is also often used in short-distance communications such as telecom, audio, alarm systems and broadcast. Due to its corrosion resistance, 30-00341 Single Conductor Cable can be used in environments involving trace moisture or condensation.

Construction

30-00341 Single Conductor Cable is constructed of both solid and stranded wire. The internal conductors typically have from seven to 19 strands of copper wire. The way in which the wire is formed affects the flexibility and resistance of the single conductor cable. The single strand wires are usually flattened or twisted to lessen their diameter, which allows them to be more flexible. The surface of the wire is then coated with a protective jacketing that can range from rubber to Teflon.

Working Principle

The 30-00341 Single Conductor Cable functions by providing an electrical pathway for electrical current to travel from one point to another. The single conductor cable is designed to support current and voltage levels specified by the manufacturer. When a voltage is applied to the single conductor cable, it starts to conduct electricity, which eventually creates a flow of electrons through it. The amount of current and the amount of electrical Potential Energy (PE) that the cable can conduct depends on the material it is made of. For instance, low-voltage cables are usually made of copper or aluminum whereas high-voltage cables are made of composite materials that can handle higher voltages.

The current and voltage that the single conductor cable is capable of handling depends greatly on the nature of the environment in which it is being used. The environmental conditions such as temperature, humidity, air pressure, and vibration can all contribute to variations in the amount of current the single conductor cable is capable of handling. Single conductor cables are also limited by their outside diameter. The outside diameter of the cable is important for both the clearance in the surrounding cable conduit and the performance of the single conductor cable. If the outside diameter is too small, then the cable may be subject to greater levels of electric field and voltage stress.

In order to minimize impedance losses within the single conductor cable, it is important to choose the proper shielding materials. The shielding materials can help reduce interference from external sources, prevent accidental grounding and provide overall protection against mechanical and environmental stresses. Shielding is also important for Maximising the performance of the cable. The insulation and the shielding materials should be chosen based on the specific application requirements such as current and voltage stresses, length of the cable, and environment conditions.

30-00341 Single Conductor Cables are used in a variety of applications and provide an efficient method of transferring electric current from point A to point B. The cable is designed to provide flexibility and to resist corrosion while operating in adverse conditions. In addition, the cable is also designed with an appropriate shielding material to reduce interference and provide protection against mechanical and environmental stresses.

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

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