| Availability: | |
|---|---|
| Model | Outer Diameter (mm) | Breaking Force (kN) | Resistance (Ω/km) | Fiber Units | Operating Voltage (kV) | Weight (kg/km) |
| HSC-1000-61.7 | 61.7 | 1000 | 0.387 / 0.524 / 3.08 | 4 | 1.0 | 12600 |
| HSC-750-46.4 | 46.4 | 750 | 0.524 / 7.41 | 12 | 3.3 | 7500 |
| HSC-150-28.6 | 28.6 | 150 | 3.4 / 8.2 / 39 | 4 | 0.38 | 2400 |
| HSC-900-54.0 | 54.0 | 900 | 1.04 / 1.45 / 7.98 | 8 | 6 | 9300 |
| HSC-70-56.5 | 56.5 | 70 | 1.2 / 7.98 / 10 | 8 | 3.3 | 3900 |
| HSC-130-35 | 35 | 130 | 3.4 / 8.2 | 12 | 3.3 | 1160 |
| HSC-85-29.8 | 29.8 | 85 | 18.1 / 36 / 53 | 4 | 4.5 | 900 |
| HSC-12-21.2 | 21.2 | 12 | 9.9 / 8.3 | 4 | 0.3 | 350 |
| HSC-5-11.5 | 11.5 | 5 | 18.1 / 83 | 2 | 0.3 | 100 |
| HSC-70-54.3 | 54.3 | 70 | 0.795 / 3.39 / 8.2 | 6 | 1 | 4300 |
Product Advantages
Modified insulation material replaces traditional cross-linked polyethylene insulation material, meeting higher temperature resistance standards, with long-term operating temperatures exceeding 110℃.
Customized aramid armor design allows for multiple layers and counts of aramid layered armor design and manufacturing based on the product's operating conditions, solving the slippage problem of traditional aramid armor under high stress values.
Core Technologies
Aramid armor manufacturing technology, equipped with a high-precision hysteresis brake and tension controller, and a multi-layered, low-gap, high-strength, anti-slip non-metallic armor process, achieves higher output efficiency, tighter wrapping, and a more compact structure.
Water-blocking filling technology increases the viscosity of the water-blocking material, resulting in superior gap-blocking performance.
Zero-buoyancy design and implementation technology allows for customized design of the outer protective layer and buoyancy layer to achieve different underwater weight requirements based on the product's needs for zero buoyancy, positive buoyancy, and microgravity.