Allicdata Part #: | BEL6007-1000-ND |
Manufacturer Part#: |
9890 0101000 |
Price: | $ 1.39 |
Product Category: | Cables, Wires |
Manufacturer: | Belden Inc. |
Short Description: | 10 #20 PP SHLD PE |
More Detail: | 10 Conductor Multi-Conductor Cable Black 20 AWG Fo... |
DataSheet: | 9890 0101000 Datasheet/PDF |
Quantity: | 1000 |
1 +: | $ 1.26000 |
Jacket (Insulation) Diameter: | 0.310" (7.87mm) |
Shield Coverage: | 100% |
Shield Material: | Aluminum |
Conductor Insulation: | Polypropylene (PP) |
Jacket (Insulation) Thickness: | 0.0400" (1.016mm) |
Operating Temperature: | -40°C ~ 80°C |
Jacket Color: | Black |
Length: | 1000.0' (304.8m) |
Shield Type: | Foil |
Series: | -- |
Jacket (Insulation) Material: | High Density Polyethylene (HDPE) |
Conductor Material: | Copper, Tinned |
Conductor Strand: | Solid |
Wire Gauge: | 20 AWG |
Number of Conductors: | 10 |
Cable Type: | Multi-Conductor |
Part Status: | Active |
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Multiple Conductor Cables are cables with multiple sets of conductors. A common type of multiple conductor cable is the 9890 0101000 cable, which is widely used in a variety of industrial and commercial applications. This type of cable is characterized by its multiple strands of insulated conductors. It is typically used in applications where a large number of conductors need to be connected to form a larger circuit.
The 9890 0101000 cable is most commonly used for general-purpose power and control systems such as motor control circuits, industrial instrumentations, and telecommunications systems. It typically consists of multiple insulated conductors, each insulated with a material that can handle higher levels of voltage than the surrounding environment. The conductors can be made from many different types of metal such as copper, aluminum, and stainless steel. The level of insulation provided by the insulation material can range from low-voltage applications to high-voltage applications.
The most common type of 9890 0101000 cable is constructed with an outer jacket that is typically made of a polyvinyl chloride (PVC) material. Inside the PVC jacket are typically a number of insulated conductors. These conductors are bound together with copper or aluminum shielding to minimize the effect of electromagnetic interference on the signal being transmitted. Each conductor is also individually insulated with a material that can handle the voltage required for the application.
The electrical performance of a 9890 0101000 cable is determined by the number and arrangement of the conductors and their insulation materials. The type of insulation material, its thickness, and its resistance to temperature and other environmental factors all affect the overall performance of the cable. The number and type of conductors and their arrangement also play a part in the performance of the cable. The amount of shielding applied to the cables and the type of connectors used to connect the cables to other components can also have an effect on the electrical performance of the cable.
The working principle of the 9890 0101000 cable is quite simple. Current flows through the conductors of the cable, and the insulation material blocks any other electric field from interfering with the signal. This allows for a more reliable connection that is less susceptible to interference and is less likely to cause grounds or short circuits. The shielding applied to the cables further helps to protect the signal from any outside interference and reduce the chances of any hazardous conditions occurring.
In summary, the 9890 0101000 cable is an excellent choice for electrical applications that require multiple conductors and superior performance. Its multiple conductors and shielding provide excellent electrical performance in numerous applications. Its insulation material and shielding ensure a reliable connection and prevent any hazardous conditions from occurring. It is also common for this type of cable to be used in multiple applications, making it a versatile and reliable choice.
The specific data is subject to PDF, and the above content is for reference
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