With a corrosion-resistant aluminum sheath,
The ESP Power Cable for Electrical Submersible Pump is engineered for reliable power transmission in demanding underground applications. Featuring pure copper conductors and dual rubber insulation/jacket layers, it ensures optimal conductivity, flexibility, and resistance to environmental stress. Designed for submersible pump systems, this multi-core cable combines durability with safety, making it ideal for harsh industrial and commercial settings.
Feature | Specification | Benefit |
---|---|---|
Conductor Material | Pure Copper | High conductivity, low resistance |
Insulation/Jacket | Rubber (dual-layer) | Enhanced flexibility, chemical resistance |
Core Configuration | 3-core multi-core | Efficient power distribution for pumps |
Application | Underground, submersible systems | Withstands moisture, abrasion, and UV exposure |
Voltage Rating | Customizable (up to 10kV) | Adaptable to diverse power requirements |
Adjustable parameters include core count, voltage rating, and cable diameter to meet specific submersible pump requirements. For extreme environments, request reinforced rubber jackets or temperature-resistant additives.
Ideal for submersible pump installations in wells, mines, or industrial wastewater systems, this cable ensures uninterrupted power flow even in submerged or corrosive conditions. Its rubber jacket provides 20% greater flexibility than PVC, simplifying installation in tight underground spaces.
Parameter | Base Model | Advanced Model | Pro Model |
---|---|---|---|
Temperature Range | -25°C to 70°C | -30°C to 80°C | -40°C to 90°C* |
Flexibility | Standard bend radius | 15% tighter bends | 30% tighter bends |
Voltage Capacity | Up to 6kV | Up to 8kV | Up to 10kV |
Chemical Resistance | Basic | Oil-resistant | Corrosion-proof |
Key Technical Breakthroughs:
Version Selection Guide:
With the Pro Model’s -40°C rating, you can deploy pumps in Arctic conditions while maintaining operational integrity. Pair its corrosion-proof jacket with high-voltage capacity to ensure uninterrupted power for critical submersible systems.
Note: All performance claims are validated against IEC 60502 standards for power cables.
Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
---|---|---|---|---|
Conductor Material | High-current industrial systems | Industry: Aluminum (IACS 61%) ▲ Base: Copper (IACS 100%) ▲▲ Advanced: Cu+Ag (103%) | Base: 65% lower energy loss (IACS 100% vs. 61%); Advanced: 2% higher conductivity (ASTM B3) | Advanced: 30% higher cost due to silver plating (IEC 60228) |
Insulation | Harsh environments with chemicals | Industry: PVC (105°C) ▲ Base: Rubber (120°C) ▲▲ Advanced: Silicone (200°C) | Base: Withstands 50+ chemical exposures (ASTM D543); Advanced: 1.5x higher temp resistance (UL 1569) | Advanced: 20% heavier jacket (ISO 4034) |
Mechanical Strength | Underground installations | Industry: PVC jacket (500 N/m²) ▲ Base: Rubber (800 N/m²) ▲▲ Advanced: Kevlar (1200 N/m²) | Base: 60% stronger against crushing (IEC 60502); Advanced: 2.4x higher tensile strength (ASTM D638) | Advanced: Requires specialized tools for installation (ISO 1122) |
Corrosion Resistance | Coastal/chemical plants | Industry: No sheath (needs conduit) ▲ Base: Aluminum (ASTM B209) ▲▲ Advanced: SS316 (ASTM A240) | Base: 30% lower corrosion rate (ISO 9227); Advanced: 100% resistance to saltwater (ASTM B117) | Advanced: 40% heavier than base (NACE RP0175) |
Flexibility | Tight spaces (e.g., pump installations) | Industry: Rigid PVC ▲ Base: Flexible rubber ▲▲ Advanced: Braided armor (ISO 11801) | Base: 50% easier bending (IEC 60227); Advanced: 360° bend radius (IEC 60332-1) | Advanced: 15% thicker profile (ASTM D2464) |
Temperature Range | High-temperature environments | Industry: -15°C to 105°C ▲ Base: -25°C to 120°C ▲▲ Advanced: -40°C to 200°C | Base: Operates in tropical climates (ISO 10303); Advanced: Survives furnace exhaust (ASTM E119) | Advanced: 25% higher material cost (IEC 60216) |
⭐⭐⭐⭐⭐ James Carter - Oil & Gas Field Operations
"We installed the Pro Model ESP Power Cable in a deep-well submersible pump system in a remote oil field last May. After 7 months of continuous operation in high-pressure, corrosive conditions, the cable shows zero signs of degradation. The aluminum sheath and rubber jacket have held up perfectly against abrasion and moisture. Voltage stability is excellent even at 9.8kV. This is the most reliable cable we’ve used in five years."Purchase Date: May 2024 | Usage Period: 8 months
⭐⭐⭐⭐⭐ Linda Patel - Off-Grid Well System Owner
"Living off-grid means my well pump runs daily, year-round. I replaced an old PVC-insulated cable with the Base Model ESP Power Cable in November 2024, and it’s been flawless. The flexibility of the rubber jacket made installation through tight conduit much easier than expected. Even during winter freezes, the cable performed without issue down to -20°C. Pure copper really does make a difference in power delivery."Purchase Date: November 2024 | Usage Period: 4 months
⭐⭐⭐⭐☆ Marcus Lee - Chemical Processing Plant
"We chose the Advanced Model for our wastewater submersible pumps due to its oil-resistant rubber insulation. Installed in January 2025, now at 3 months of use. Performance has been solid—no EMI interference, and the tighter bend radius helped route through congested underground trenches. Only reason for 4 stars: the cable is slightly stiffer than expected, requiring two people for pulling. But durability seems top-tier."Purchase Date: January 2025 | Usage Period: 3 months
⭐⭐⭐⭐⭐ Elena Rodriguez - Offshore Drilling Infrastructure Lead
"For a subsea pump array in the Gulf, we needed a cable rated for extreme temps, saltwater exposure, and mechanical stress. The Pro Model with -40°C to 90°C rating and corrosion-proof jacket was the only option that met all specs. Customized to 500 meters with 10kV capacity. Installed in February 2025. After two months underwater and under constant load, zero insulation breakdown or voltage drop. This cable is engineered for mission-critical environments."Purchase Date: February 2025 | Usage Period: 2 months
⭐⭐⭐⭐☆ David Kim - Field Electrician, Infrastructure Contractor
"Used the Base Model across three commercial construction sites for temporary dewatering pumps. Rugged enough for direct burial and repeated relocations. The rubber insulation resisted UV and mud exposure better than any PVC cable I've handled. After 6 months on the job, only one section damaged due to trench collapse—not from wear. Would buy again for tough job site conditions."Purchase Date: September 2024 | Usage Period: 6 months
Average Rating: 4.8/5 ⭐ (89 Reviews)
Dr. Alan Foster - Power Cable Engineering Consultant
"Among ESP power cables, this product stands out due to its triple-layer protection and pure copper conductors. Independent testing confirms a 50% longer service life in submerged environments compared to industry-standard PVC-aluminum cables. The customizable voltage up to 10kV makes it ideal for next-gen smart well systems."
Rebecca Tran - Civil Engineer, Utility Networks
"After evaluating multiple cables for municipal dewatering projects, I consistently specify the Advanced and Pro Models for their mechanical strength and corrosion resistance. The rubber jacket’s 50% greater flexibility than PVC reduces installation time by nearly 30% in confined spaces—critical for urban underground work."
Posted: 5 days ago
"Deployed the Pro Model in a -35°C mining sump. No cracking, no insulation failure. Kept pumps running through blizzards. Exactly what we needed for extreme environments."
Posted: 1 week ago
"Ordered a 300m, 6kV configuration for our automated irrigation wells. Precise delivery, excellent labeling, and seamless integration. The supplier’s customization support was outstanding."
Posted: 2 weeks ago
"Upgraded an aging pump system in a factory basement. The rubber jacket’s moisture barrier stopped recurring short circuits. Only suggestion: include more color-coded core markings for faster termination."
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