Foam PE Tinned Copper Wire Shield CAN BUS Cable is a specialized cable designed for Controller Area Network (CAN) applications, providing reliable and efficient communication in various automation and control systems. This article will explore the structure, characteristics, and applications of this cable and compare it with Profibus L2 cables to highlight the differences and specific uses of each type of cable.
Conductor: This cable typically features tinned copper conductors, which are known for their excellent conductivity and resistance to oxidation. Tinning the copper enhances its durability and suitability for data transmission over long distances.
Insulation: The insulation is made from Foam Polyethylene (PE), which offers a lightweight and durable barrier against environmental factors. Foam PE is particularly effective due to its low dielectric constant, which improves signal transmission by reducing signal loss.
Shielding: A crucial feature of the Foam PE Tinned Copper Wire Shield CAN BUS Cable is its tinned copper wire shield. This shielding protects against electromagnetic interference (EMI), ensuring that the data transmitted over the cable is secure from external noise and disruptions.
Outer Jacket: The outer jacket is typically made from PVC or a similar durable material, providing resistance against abrasion, chemicals, and various weather conditions, making it suitable for both indoor and outdoor installations.
Foam PE Tinned Copper Wire Shield CAN BUS Cables are used in a variety of settings:
While both Foam PE Tinned Copper Wire Shield CAN BUS Cable and Profibus L2 cables are used in industrial and automation environments, their specific applications and construction differ:
Choosing between Foam PE Tinned Copper Wire Shield CAN BUS Cable and Profibus L2 cable depends largely on the specific requirements of the communication network, including the protocol used, environmental conditions, and the necessary range of data transmission. CAN BUS cables offer excellent EMI protection and flexibility, making them ideal for environments with high electronic noise and where installation spaces are compact or irregular. Understanding the distinctions between these cables ensures that engineers and technicians can optimize their network installations for maximum reliability and performance.
conductor size
Ø
[mm]
Cu(kg)
G(kg)
1X2X0.22mm²
6
17
38
2X2X0.22mm²
7.5
36
70
1X2X0.34mm²
6.6
23
55
2X2X0.34mm²
8.5
46.4
88
1X2X0.5mm²
7.3
42
83
2X2X0.5mm²
9
59.4
106
1X2X0.75mm²
8.9
53
108
2X2X0.75mm²
12.4
81
141
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