The Parallel Groove Clamp is a high-precision electrical fitting engineered for the seamless splicing of aluminum stranded wires and steel core aluminum stranded wires. Specifically designed for small to medium cross-sections, these clamps are essential for overhead lightning protection lines and non-linear tower route connections where tension is not the primary load, ensuring a stable and reliable electrical path.
By leveraging a robust mechanical clamping design, these fittings optimize electrical conductivity and mechanical stability. Whether used in power distribution or communication networks, our parallel groove clamps provide a versatile solution that adapts to various wire specifications, significantly reducing resistance and enhancing the overall efficiency of power transmission in demanding outdoor environments.
| Product Type | Parallel Groove Clamp (PG Clamp) | Material Options | Aluminum Alloy / Galvanized Steel / Stainless Steel |
|---|---|---|---|
| Applicable Wire | Aluminum / Steel Core Aluminum / Copper | JB Type Range | 16-240mm² Cross-section |
| Core Function | Parallel Splicing & Connection | Installation Method | Bolt-Tightening Mechanism |
| Application Area | Power & Communication Lines | Load Capacity | Non-tension positions / Jumper connections |
| Environmental Resistance | High Corrosion Resistance | Electrical Performance | Low Contact Resistance |
Utilizing galvanized steel and premium aluminum alloys to prevent rust and ensure longevity in harsh outdoor climates.
Simple slot-and-bolt design allows for fast deployment without the need for specialized heavy tools, boosting site efficiency.
Engineered to maintain a firm grip under high loads, eliminating contact failure caused by vibration or external forces.
Material selection focuses on low resistance, ensuring stable power transmission and minimizing energy loss at connection points.
Flexible design accommodates various wire types including bare aluminum, aluminum alloy, and copper wires.
Easily adjustable to suit different wire specifications, providing maximum flexibility for diverse engineering projects.
Precision tracking of clamp specifications to ensure the right fit for every project phase.
Rigorous testing of bolt pressure and conductivity to meet international power standards.
Scheduled inspection cycles to verify clamping force and corrosion levels in the field.
Digital toolsets to match wire cross-sections with the appropriate JB type clamps.
Streamlined delivery of electrical fittings to remote tower construction sites.
Ensuring all materials meet the specific safety requirements of regional electrical grids.
| Performance Metric | Standard Clamps | Our Premium Clamps |
|---|---|---|
| Installation Speed | Moderate | Ultra-Fast |
| Corrosion Life | 3-5 Years | 10+ Years |
| Contact Resistance | Standard | Ultra-Low |
| Maintenance Cost | High Frequency | Minimal |
| System Reliability | Basic | Industrial Grade |
Our clamps are manufactured from high-grade aluminum alloy, galvanized steel, or stainless steel, depending on the required corrosion resistance and electrical conductivity for the specific environment.
Parallel Groove Clamps are designed for positions that do not bear tension, such as jumper connections and overhead lightning protection lines. For high-tension applications, we recommend using our Tension Clamps.
The JB type aluminum parallel groove wire clamp is specifically designed for splicing aluminum stranded wires and steel core aluminum stranded wires with cross-sections ranging from 16mm² to 240mm².
Stability is achieved through a high-pressure bolt mechanism that firmly presses the parallel wires into the groove, reducing contact resistance and ensuring a consistent flow of current.
Yes, our parallel groove clamps are designed to be compatible with various wire types, including bare aluminum, aluminum alloy, and copper wires, providing versatile connectivity.
For coastal or highly humid areas, we recommend our stainless steel or specially coated galvanized options which offer superior resistance to salt spray and oxidation.