09607.99.01 Allicdata Electronics
Allicdata Part #:

09607.99.01-ND

Manufacturer Part#:

09607.99.01

Price: $ 0.96
Product Category:

Cables, Wires

Manufacturer: General Cable/Carol Brand
Short Description: CABLE 7COND 16AWG BLACK 1=1FT
More Detail: 7 Conductor Multi-Conductor Cable Black 16 AWG
DataSheet: 09607.99.01 datasheet09607.99.01 Datasheet/PDF
Quantity: 1000
Moisture Sensitivity Level (MSL): 1 (Unlimited)
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
28000 +: $ 0.86814
Stock 1000Can Ship Immediately
$ 0.96
Specifications
Shield Type: --
Shield Coverage: --
Shield Material: --
Conductor Insulation: Ethylene Propylene Terpolymer Rubber (EPDM)
Jacket (Insulation) Thickness: 0.0300" (0.762mm)
Usage: --
Operating Temperature: -40°C ~ 90°C
Voltage: 600V
Features: --
Ratings: --
Jacket Color: Black
Length: --
Series: --
Jacket (Insulation) Diameter: 0.540" (13.72mm)
Jacket (Insulation) Material: Super Vu-Tron®
Conductor Material: Copper, Bare
Conductor Strand: 26/30
Wire Gauge: 16 AWG
Number of Conductors: 7
Moisture Sensitivity Level (MSL): --
Cable Type: Multi-Conductor
Lead Free Status / RoHS Status: --
Part Status: Active
Description

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Multiple Conductor CablesThe 09607.99.01 application field and working principle is a relatively new field that covers the use of multiple conductor cables. It is designed to identify and document the details and capabilities of multiple conductor cables in terms of their electrical features, mechanical characteristics, and practical applications. This new standard has been developed to help ensure the safe, reliable, and timely exchange of signal and power for a variety of electrical products.The 08607.99.01 application field and working principle is based on the conventional definition of "cable" as a support structure for the transportation of electric current or signals. Specifically, multiple conductor cables generally refer to two or more conductors bundled together and protected by a single insulating material, usually a rubber or plastic sheath. The multiple conductors are typically arranged in a single or multiple twisted pairs, multiple or parallel insulated bundles, or combination of both.The application of multiple conductor cables in the 08607.99.01 application field and working principle are defined in six separate categories, which are: electrical, thermal, mechanical, environmental, shock, and vibration. Within each of these categories, specific requirements and standards are specified to ensure that the cables are suitable for their intended application in terms of performance, safety, reliability, and cost-effectiveness.Electrical aspects of multiple conductor cables include current-carrying capacity, conductor insulation, and specific conductor resistance. The current carrying capacity of a multiple conductor cable will depend on the number of conductors used, the type of conductor material, and its resistance. Specific conductor resistance (R) is determined by resistance per unit length (Ω per foot) of the conductor and its insulation. The R value may need to be known in order to determine the design and operation of the system.Thermal aspects of multiple conductor cables include temperature ratings and temperature rise limits. Temperature ratings refer to the maximum temperature that the cable can safely reach without introducing any damage either to the cable supports or to the electrical components. Temperature rise limits refer to the maximum temperature increase that is expected by a cable when it is operating under normal load. Temperatures in excess of these limits will cause insulation breakdown and eventual cable failure.The mechanical aspects of multiple conductor cables include flexing, cycling, strain relief, bend radius, and safety margins. The flexing characteristics of a cable can impact its performance in terms of flex-life, fatigue, and mechanical longevity. Flex cycling is a technique used to test the flex-life of a cable and determine its susceptibility to flexibility and fatigue related damage. Strain relief measures are designed to protect the cable from any stress that may result from external forces such as cable clamping or attachment. The bend radius of a cable is the minimum acceptable radius for a bend when the cable is in use. Safety margins are determined when cables are subjected to extreme forces, and help determine the cable\'s durability and longevity.Environmental aspects of multiple conductor cables include operating temperature, resistance to moisture and other chemicals, and flexibility. The operating temperature of a cable should be within the temperature range specified for a given application and is dependent on the type of insulation used (rubber, PVC, etc.). The cable\'s resistance to moisture and other chemicals can affect its lifetime and performance as well. A cable\'s flexibility is important to determine its physical flexibility characteristics and suitability for a given application.The shock and vibration aspects of multiple conductor cables are important in determining the physical limitations of the cable when subjected to sudden forces. The shock and vibration performance of a cable will largely depend on the type of shielding, grounding, and termination used as well as the type of insulation material. Shock and vibration requirements are often certified or tested at an independent laboratory such as UL or TÜV to ensure that the cables meet the requirements of the application. In summary, the 08607.99.01 application field and working principle is a relatively new field that covers the use of multiple conductor cables. The application of multiple conductor cables in this field is specified in six separate categories, which are electrical, thermal, mechanical, environmental, shock, and vibration. These categories are often certified or tested at independent laboratories to ensure that the cables meet the requirements of the application.

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

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