3 Core PVC Flat Cables from Swami Cables LLP are engineered to deliver reliable power transmission for submersible pumps and demanding electrical applications. Manufactured using high-purity electrolytic copper conductors and premium-grade PVC insulation, these cables ensure excellent conductivity, electrical safety, and consistent performance under continuous load conditions.
The flat cable design enables easy handling, faster installation, and improved space utilization, especially in borewell and underground installations. With strong resistance to moisture, abrasion, and environmental stress, Swami Cables’ 3 Core PVC Flat Cables offer long service life, low maintenance, and dependable operation in both domestic and industrial environments.
| Core Configuration | 3 Core |
| Conductor Material | Electrolytic Grade Annealed Copper |
| Conductor Construction | Stranded |
| Insulation Type | PVC |
| Voltage Rating | Up to 1100 V |
| Operating Temperature | Up to 70°C |
| Cable Shape | Flat |
| Standard Sizes | 1.5 / 2.5 / 4.0 / 6.0 sq.mm (custom sizes available) |
| "SWAMI CABLES” copper conductor, PVC insulated and sheathed 3 core flat cable | |||||||||||
| Size / Area in Sq.mm. | No. & size of wire | Nominal Insulation thickness (mm) | Overall core Diameter (mm) | Sheath thickness (mm) | Overall size (W X T) (mm) | Max. resistance @20°C (ohm/km) | Current rating (Amp.) | ||||
| 1.50 | 22/0.30 | 0.60 | 3.00 | 0.90 | 11.5 X 5.5 | 12.10 | 14 | ||||
| 2.50 | 36/0.30 | 0.70 | 3.60 | 1.00 | 14.0 X 6.4 | 7.41 | 18 | ||||
| 4.00 | 56/0.30 | 0.80 | 4.50 | 1.10 | 16.5 X 7.2 | 4.61 | 25 | ||||
| 6.00 | 84/0.30 | 1.00 | 5.20 | 1.15 | 18.2 X 8.0 | 3.08 | 32 | ||||
| 10.00 | 140/0.30 | 1.00 | 6.50 | 1.30 | 23.0 X 9.8 | 1.83 | 45 | ||||
| Note: Insulation thickness, sheath thickness, and overall dimensions provided in the table are nominal values. The number of strands and strand diameter are designed to meet the conductor resistance requirements as per IS 8130:1984, and the cable conforms to IS 694:2010. | |||||||||||
| Rating Factor for Low Voltage:For low voltage conditions, multiply the motor full load current (FLC) by the applicable correction factor based on the actual supply voltage to determine the appropriate cable selection. | |||||||||||||||
| Voltage | 415 | 400 | 350 | 300 | 275 | 250 | |||||||||
| Rating factor | 1.00 | 1.05 | 1.15 | 1.25 | 1.3 | 1.35 | |||||||||
| Derating Factors:For varying ambient temperatures, apply the relevant derating factor to the motor full load current to ensure proper cable selection. | |||||||||||||
| Ambient Temperature °C | 30 | 35 | 40 | 45 | 50 | ||||||||
| Rating factor | 1.09 | 1.04 | 1.00 | 0.95 | 0.77 | ||||||||